Results for:
Species: Pseudomonas corrugate

Benzaldehyde

Mass-Spectra

Compound Details

Synonymous names
Phenylmethanal benzenecarboxaldehyde
Benzenecarboxaldehyde
Phenylformaldehyde
PENTADEOTERO BENZALDEHYDE
benzanoaldehyde
Benzenecarbonal
Benzenemethylal
Benzylaldehyde
Phenylmethanal
Phenylmethanone
benzaidehyde
benzaldehvde
benzaldehyde
Benzene carboxaldehyde
Benzyaldehyde
Benzadehyde
benzaldehyd
Benzaldehyde Natural
Benzene carbaldehyde
Natural Benzaldehyde
Aromatic aldehyde
HUMNYLRZRPPJDN-UHFFFAOYSA-N
Benzaldehyde FFC
Benzaldehyde, analytical standard
Benzene methylal
Benzoic aldehyde
Benzoyl hydride
Almond artificial essential oil
Bitter almond
Artificial almond oil
Benzoic acid aldehyde
HBX
Artificial bitter almond oil
bitter almond oil synthetic
(phenyl)methanone
Artificial essential oil of almond
Ben zoyl hydride
Artifical essential oil of almond
2vj1
Benzaldehyde (natural)
Ethereal oil of bitter almonds
SCHEMBL573
Synthetic oil of bitter almond
AC1L18SM
AC1Q6PV7
Benzaldehyde [USAN]
Benzaldehyde, pharmaceutical secondary standard; traceable to USP
Bitter almond oil, synthetic
Oil Of bitter almond
Benzaldehyde (NF)
NATURAL RSTD CASSIA OIL DIST FLAVOR
WLN: VHR
Benzaldehyde, European Pharmacopoeia (EP) Reference Standard
KSC176K2J
ACMC-1C91Y
CHEMBL15972
LS-27
NSC7917
UN1990
B2379
BDBM60953
Benzaldehyde, United States Pharmacopeia (USP) Reference Standard
CTK0H6524
HMDB06115
HSDB 388
nchembio814-comp15
TA269SD04T
BIDD:ER0249
LS41490
RP18863
C00193
C00261
CCRIS 2376
D02314
DSSTox_CID_134
UNII-TA269SD04T
ZINC895145
AK109012
BENZALDEHYDE REACTION PRODUCTS WITH HEPTANAL DISTN. LIGHTS
DTXSID8039241
NA 1989
NSC 7917
NSC-7917
OR035988
OR192667
PL039416
A800226
Benzaldehyde, AR, >=99%
Benzaldehyde, LR, >=99%
CHEBI:17169
NCI-C56133
AJ-24149
ANW-14310
DSSTox_GSID_39241
SC-19173
BDBM50139371
Caswell No. 076
DSSTox_RID_79432
MFCD00003299
MFCD00801585
ZINC00895145
AI3-09931
Benzaldehyde, purified by redistillation, >=99.5%
Benzaldehyde, ReagentPlus(R), >=99%
DB-023673
KB-250682
LT00939687
ST24030100
TC-103055
AKOS000119172
EPA Pesticide Chemical Code 008601
ghl.PD_Mitscher_leg0.170
I01-1667
I14-7330
FEMA No. 2127
FT-0622622
Benzaldehyde, >=98%, FG, FCC
Benzaldehyde, for synthesis, 95.0%
I14-90980
Benzaldehyde, 98% 250g
Benzaldehyde, SAJ special grade, >=98.0%
Tox21_113069
Tox21_113244
Tox21_200634
100-52-7
Ald3-H_000012
Benzaldehyde, Vetec(TM) reagent grade, 98%
F1294-0144
MCULE-7744113682
NCGC00091819-01
NCGC00091819-02
NCGC00091819-03
NCGC00258188-01
Benzaldehyde, natural, >=98%, FCC, FG
CAS-100-52-7
EINECS 202-860-4
55279-75-9
SR-01000944375
Ald3.1-H_000160
Ald3.1-H_000479
Ald3.1-H_000798
5044-EP2269979A1
5044-EP2269990A1
5044-EP2272491A1
5044-EP2272827A1
5044-EP2275404A1
5044-EP2275411A2
5044-EP2275412A1
5044-EP2277858A1
5044-EP2277865A1
5044-EP2277878A1
5044-EP2281818A1
5044-EP2284157A1
5044-EP2286915A2
5044-EP2287152A2
5044-EP2287159A1
5044-EP2289868A1
5044-EP2292593A2
5044-EP2295402A2
5044-EP2295410A1
5044-EP2295441A2
5044-EP2298767A1
5044-EP2298776A1
5044-EP2301534A1
5044-EP2301536A1
5044-EP2301538A1
5044-EP2305625A1
5044-EP2305629A1
5044-EP2305662A1
5044-EP2305679A1
5044-EP2305687A1
5044-EP2305769A2
5044-EP2305808A1
5044-EP2308562A2
5044-EP2311451A1
5044-EP2311455A1
5044-EP2311806A2
5044-EP2311840A1
5044-EP2314295A1
5044-EP2314586A1
5044-EP2314587A1
5044-EP2314593A1
5044-EP2316450A1
5044-EP2316832A1
5044-EP2316833A1
5044-EP2371831A1
5044-EP2374454A1
5044-EP2374783A1
5044-EP2377841A1
5044-EP2380871A1
Benzaldehyde, purum, >=98.0% (GC)
53585-EP2305651A1
53585-EP2308854A1
Benzaldehyde [UN1990] [Class 9]
Benzaldehyde on polystyrene, 0.8-1.5 mmol/g
125826-EP2287158A1
125826-EP2295422A2
SR-01000944375-1
Benzaldehyde [UN1990] [Class 9]
Benzaldehyde, puriss. p.a., >=99.0% (GC)
InChI=1/C7H6O/c8-6-7-4-2-1-3-5-7/h1-6
Microorganism:

Yes

IUPAC namebenzaldehyde
SMILESC1=CC=C(C=C1)C=O
InchiInChI=1S/C7H6O/c8-6-7-4-2-1-3-5-7/h1-6H
FormulaC7H6O
PubChem ID240
Molweight106.124
LogP1.69
Atoms14
Bonds14
H-bond Acceptor1
H-bond Donor0
Chemical ClassificationBenzenoids Aldehydes Aldehyde

mVOC Specific Details

Volatilization
The Henry's Law constant for benzaldehyde is 2.67X10-5 atm-cu m/mole(1). This Henry's Law constant indicates that benzaldehyde is expected to volatilize from water surfaces(2). Based on this Henry's Law constant, the volatilization half-life from a model river (1 m deep, flowing 1 m/sec, wind velocity of 3 m/sec)(2) is estimated as 1.5 days (SRC). The volatilization half-life from a model lake (1 m deep, flowing 0.05 m/sec, wind velocity of 0.5 m/sec)(2) is estimated as 14 days(SRC). Benzaldehyde's Henry's Law constant indicates that volatilization from moist soil surfaces may occur(SRC). Benzaldehyde is expected to volatilize from dry soil surfaces(SRC) based upon a vapor pressure of 1.27 mm Hg at 25 deg C(3).
Literature: (1) Betterton EA, Hoffmann MR; Environ Sci Technol 22: 1415-8 (1988) (2) Lyman WJ et al; Handbook of Chemical Property Estimation Methods. Washington, DC: Amer Chem Soc pp. 15-1 to 15-29 (1990) (3) Ambrose D et al; J Chem Therm 7: 1143-57 (1975)
Soil Adsorption
Using a structure estimation method based on molecular connectivity indices(1), the Koc of benzaldehyde can be estimated to be 11(SRC). According to a classification scheme(2), this estimated Koc value suggests that benzaldehyde is expected to have very high mobility in soil.
Literature: (1) US EPA; Estimation Program Interface (EPI) Suite. Ver. 4.1. Nov, 2012. Available from, as of May 30, 2016: http://www2.epa.gov/tsca-screening-tools/ (2) Swann RL et al; Res Rev 85: 17-28 (1983)
Vapor Pressure
PressureReference
1.27 mm Hg at 25 deg CAmbrose D et al; J Chem Therm 7: 1143-57 (1975)
MS-Links
1D-NMR-Links

Microorganisms emitting the compound
KingdomSpeciesBiological FunctionOrigin/HabitatReference
BacteriaAlcaligenes FaecalisInhibition of Mycelium growth of Paecilomyces lilacinus and Pochonia chlamydosporia.Zou et al., 2007
BacteriaArthrobacter NitroguajacoliusInhibition of Mycelium growth of Paecilomyces lilacinus and Pochonia chlamydosporia.Zou et al., 2007
BacteriaBacillus Amyloliquefaciens FZB42Agriculture University of Nanjing, ChinaTahir et al. 2026
BacteriaBacillus SimplexReduction of movement or death of Panagrelleus redivivus and Bursaphelenchus xylophilus.Gu et al., 2007
BacteriaBacillus Spp.Inhibition of Mycelium growth of Paecilomyces lilacinus and Pochonia chlamydosporia.Zou et al., 2007
BacteriaBacillus SubtilisReduction of movement or death of Panagrelleus redivivus and Bursaphelenchus xylophilus.Gu et al., 2007
BacteriaBacillus Subtilis GB03n/aLee et al., 2012
BacteriaBacillus WeihenstephanensisReduction of movement or death of Panagrelleus redivivus and Bursaphelenchus xylophilus.Gu et al., 2007
BacteriaBranhamella CatatthalisclinicPreti., 2009
BacteriaBurkholderia Sp. AD24bacterial interationsrhizosphere and bulk soil of Carex arenariaTyc et al. 2017
BacteriaChryseobacterium Sp. AD48nanaTyc et al., 2015
BacteriaCitrobacter FreundiiAmerican Type Culture Collection Robacker and Bartelt 1997
BacteriaCytophaga-Flavobacterium-Bacteroides Group Strain ARK 10223n/aDickschat et al., 2005_3
BacteriaCytophaga-Flavobacterium-Bacteroides Group Strain ARK 10063n/aDickschat et al., 2005_3
BacteriaCytophaga-Flavobacterium-Bacteroides Group Strain ARK 10146n/aDickschat et al., 2005_3
BacteriaCytophaga-Flavobacterium-Bacteroides Group Strain ARK 10267n/aDickschat et al., 2005_3
BacteriaHaemophilus InfluenzaeclinicPreti., 2009
BacteriaJanthinobacterium Sp. AD80nanaTyc et al., 2015
BacteriaKlebsiella PneumoniaeAmerican Type Culture Collection Robacker and Bartelt 1997
BacteriaLactobacillus Casei NCIB 8010n/aTracey and Britz, 1989
BacteriaLactobacillus Helveticus CIRM449nayoghurtPogačić et al., 2016
BacteriaLactobacillus Plantarumn/aSchulz and Dickschat, 2007
BacteriaLactobacillus Plantarum NCIB 6376n/aTracey and Britz, 1989
BacteriaLactococcus Lactis DSM 20202n/aTracey and Britz, 1989
BacteriaLeuconostoc Cremoris DSM 20346n/aTracey and Britz, 1989
BacteriaLeuconostoc Dextranicum DSM 20484n/aTracey and Britz, 1989
BacteriaLeuconostoc Mesenteroides DSM 20343n/aTracey and Britz, 1989
BacteriaLeuconostoc Oenos B66n/aTracey and Britz, 1989
BacteriaLeuconostoc Oenos 19n/aTracey and Britz, 1989
BacteriaLeuconostoc Oenos 30n/aTracey and Britz, 1989
BacteriaLeuconostoc Oenos 36n/aTracey and Britz, 1989
BacteriaLeuconostoc Oenos 37Dn/aTracey and Britz, 1989
BacteriaLeuconostoc Oenos 7Bn/aTracey and Britz, 1989
BacteriaLeuconostoc Oenos DSM 20252n/aTracey and Britz, 1989
BacteriaLeuconostoc Oenos DSM 20255n/aTracey and Britz, 1989
BacteriaLeuconostoc Oenos DSM 20257n/aTracey and Britz, 1989
BacteriaLeuconostoc Oenos Lc5xn/aTracey and Britz, 1989
BacteriaLeuconostoc Paramesenteroides DSM 20288n/aTracey and Britz, 1989
BacteriaLysobacter GummosusInhibition of Mycelium growth of Paecilomyces lilacinus and Pochonia chlamydosporia.Zou et al., 2007
BacteriaMicrobacterium OxydansReduction of movement or death of Panagrelleus redivivus and Bursaphelenchus xylophilus.Gu et al., 2007
BacteriaOctadecabacter Sp. ARK10255bn/aDickschat et al., 2005_3
BacteriaPaenibacillus Sp. AD87bacterial interationsrhizosphere and bulk soil of Carex arenariaTyc et al. 2017
BacteriaPediococcus Damnosus DSM 20331n/aTracey and Britz, 1989
BacteriaPedobacter Sp. V48narhizosphere of Marram grass in sandy dune soils, NetherlandsGarbeva et al., 2014
BacteriaPseudomonas Aurantiacan/aFernando et al., 2005
BacteriaPseudomonas Chlororaphisn/aFernando et al., 2005
BacteriaPseudomonas Corrugaten/aFernando et al., 2005
BacteriaPseudomonas Fluorescensn/aFernando et al., 2005
BacteriaPseudomonas Fluorescens ALEB7Bpromotes volatile oil accumulation, activating plant defensefrom geo-authentic Atractylodes lanceaZhou et al., 2016
BacteriaPseudomonas Jessenii S34naphyllosphere of field-grown potato plantsHunziker et al., 2015
BacteriaPseudomonas Syringae S22naphyllosphere of field-grown potato plantsHunziker et al., 2015
BacteriaPseudomonas Veronii R02narhizosphere of field-grown potato plantsHunziker et al., 2015
BacteriaSerratia MarcescensReduction of movement or death of Panagrelleus redivivus and Bursaphelenchus xylophilus.Gu et al., 2007
BacteriaSporosarcina GinsengisoliInhibition of Mycelium growth of Paecilomyces lilacinus and Pochonia chlamydosporia.Zou et al., 2007
BacteriaStenotrophomonas MaltophiliaInhibition of Mycelium growth of Paecilomyces lilacinus and Pochonia chlamydosporia.Zou et al., 2007
BacteriaStigmatella Aurantiaca DW4/3-1n/aDickschat et al., 2005_5
BacteriaStigmatella Aurantiaca Sg A15n/aDickschat et al., 2005_5
BacteriaStreptococcus PneumoniaeclinicPreti., 2009
BacteriaStreptomyces LateritiusReduction of movement or death of Panagrelleus redivivus and Bursaphelenchus xylophilus.Gu et al., 2007
BacteriaThermomonospora Fusca DSM 43792nasoilWilkins, 1996
BacteriaTsukamurella Sp. AD106nanaTyc et al., 2015
FungiAscocoryne Sarcoides NRRL 50072n/aMallette et al. 2012
Fungi Aspergillus Sp.Takeuchi et al. 2013
FungiBjerkandera Adusta CBS 595.78n/aLapadatescu et al., 2000
Fungi Botrytis Sp.Kikuchi et al 1983
Fungi Fomes FomentariusFäldt et al. 1999
FungiFomitopsis PinicolanaGermanyRösecke et al., 2000
FungiFusarium Graminearum 15AcDONn/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON 1001tan/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON ZFR 29n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_4n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_5n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_6n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_7n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_8n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_9n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON 1002tn/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON 11791n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON 1509n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON 8046n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON NRRL38369n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON NRRL6394n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON ZFR 15n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON ZFR 37n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON ZFR 51n/aBusko et al., 2014
FungiFusarium Graminearum NIVn/aBusko et al., 2014
FungiFusarium Graminearum NIV ZFR 119n/aBusko et al., 2014
FungiFusarium Graminearum NIV ZFR 23n/aBusko et al., 2014
FungiFusarium Graminearum NIV ZFR 48n/aBusko et al., 2014
FungiFusarium Graminearum NIV_5n/aBusko et al., 2014
FungiFusarium Graminearum NIV_6n/aBusko et al., 2014
FungiFusarium Graminearum NIV_7n/aBusko et al., 2014
FungiFusarium Graminearum NIV_8n/aBusko et al., 2014
FungiFusarium Graminearum NIV_9n/aBusko et al., 2014
Fungi Fusarium Spp.Takeuchi et al. 2013
Fungi Penicillium SppTakeuchi et al. 2012
FungiPiptoporus BetulinusnaSachsenwald near HamburgRösecke et al., 2000
FungiPleurotus CystidiosusnanaUsami et al., 2014
FungiPleurotus Eryngii Var. TuoliensisnanaUsami et al., 2014
Fungi Pleurotus OstreatusBeltran-Garcia et al. 1997
FungiPolyporus Tuberaster K2606Kawabe et al. 1994
FungiTrametes Suaveolensnanear Zachersmühle, Göppingen, southern GermanyRösecke et al., 2000
FungiTrichodema Viriden/aWheatley et al., 1997
FungiTuber Aestivumn/aFortywoodland of the Basilicata regionMauriello et al., 2004
FungiTuber Excavatumn/aFortywoodland of the Basilicata regionMauriello et al., 2004
FungiTuber Melanosporumn/aAgricultural Centre of Castilla and León Community (Monasterio de la Santa Espina, Valladolid, Spain) and Navaleno (Soria, Spain).Diaz et al., 2003
FungiTuber Mesentericumn/aFortywoodland of the Basilicata regionMauriello et al., 2004
FungiTuber Panniferumn/aFortywoodland of the Basilicata regionMauriello et al., 2004
Fungi Bjerkandera AdustaSpinnler at al. 1997
FungiTuber IndicumNoneT. melanosporum, T. borchii were collected from northern Italy (Piedmont) and T. indicum from Yunnan and Sichuan Provinces (China). Splivallo et al., 2007b
FungiTuber MelanosporumNoneT. melanosporum, T. borchii were collected from northern Italy (Piedmont) and T. indicum from Yunnan and Sichuan Provinces (China). Splivallo et al., 2007b
Method
KingdomSpeciesGrowth MediumApplied MethodVerification
BacteriaAlcaligenes Faecalisn/an/a
BacteriaArthrobacter Nitroguajacoliusn/an/a
BacteriaBacillus Amyloliquefaciens FZB42LBSPME-GC-MSno
BacteriaBacillus Simplexn/an/a
BacteriaBacillus Spp.n/an/a
BacteriaBacillus Subtilisn/an/a
BacteriaBacillus Subtilis GB03Tryptic soy agarSPME coupled with GC-MS
BacteriaBacillus Weihenstephanensisn/an/a
BacteriaBranhamella CatatthalisBlood agar/chocolate blood agaHS-SPME/GC-MS no
BacteriaBurkholderia Sp. AD24TSBAGC-Q-TOFno
BacteriaChryseobacterium Sp. AD48Tryptic soy broth agarGC/MS-Q-TOFNo
BacteriaCitrobacter Freundiitryptic soy broth SPME, GC-MSyes
BacteriaCytophaga-Flavobacterium-Bacteroides Group Strain ARK 10223n/an/a
BacteriaCytophaga-Flavobacterium-Bacteroides Group Strain ARK 10063n/an/a
BacteriaCytophaga-Flavobacterium-Bacteroides Group Strain ARK 10146n/an/a
BacteriaCytophaga-Flavobacterium-Bacteroides Group Strain ARK 10267n/an/a
BacteriaHaemophilus InfluenzaeBlood agar/chocolate blood agaHS-SPME/GC-MS no
BacteriaJanthinobacterium Sp. AD80Tryptic soy broth agarGC/MS-Q-TOFNo
BacteriaKlebsiella Pneumoniaetryptic soy broth SPME, GC-MSyes
BacteriaLactobacillus Casei NCIB 8010n/an/a
BacteriaLactobacillus Helveticus CIRM449curd-based broth mediumGC/MSYes
BacteriaLactobacillus Plantarumn/an/a
BacteriaLactobacillus Plantarum NCIB 6376n/an/a
BacteriaLactococcus Lactis DSM 20202n/an/a
BacteriaLeuconostoc Cremoris DSM 20346n/an/a
BacteriaLeuconostoc Dextranicum DSM 20484n/an/a
BacteriaLeuconostoc Mesenteroides DSM 20343n/an/a
BacteriaLeuconostoc Oenos B66n/an/a
BacteriaLeuconostoc Oenos 19n/an/a
BacteriaLeuconostoc Oenos 30n/an/a
BacteriaLeuconostoc Oenos 36n/an/a
BacteriaLeuconostoc Oenos 37Dn/an/a
BacteriaLeuconostoc Oenos 7Bn/an/a
BacteriaLeuconostoc Oenos DSM 20252n/an/a
BacteriaLeuconostoc Oenos DSM 20255n/an/a
BacteriaLeuconostoc Oenos DSM 20257n/an/a
BacteriaLeuconostoc Oenos Lc5xn/an/a
BacteriaLeuconostoc Paramesenteroides DSM 20288n/an/a
BacteriaLysobacter Gummosusn/an/a
BacteriaMicrobacterium Oxydansn/an/a
BacteriaOctadecabacter Sp. ARK10255bn/an/a
BacteriaPaenibacillus Sp. AD87TSBAGC-Q-TOFno
BacteriaPediococcus Damnosus DSM 20331n/an/a
BacteriaPedobacter Sp. V48sand containing artificial root exudatesGC/MSNo
BacteriaPseudomonas Aurantiacan/an/a
BacteriaPseudomonas Chlororaphisn/an/a
BacteriaPseudomonas Corrugaten/an/a
BacteriaPseudomonas Fluorescensn/an/a
BacteriaPseudomonas Fluorescens ALEB7BMS rooting agarGC/MS + comparison to NIST
BacteriaPseudomonas Jessenii S34LB mediumGC/MSYes
BacteriaPseudomonas Syringae S22LB mediumGC/MSYes
BacteriaPseudomonas Veronii R02LB mediumGC/MSYes
BacteriaSerratia Marcescensn/an/a
BacteriaSporosarcina Ginsengisolin/an/a
BacteriaStenotrophomonas Maltophilian/an/a
BacteriaStigmatella Aurantiaca DW4/3-1n/an/a
BacteriaStigmatella Aurantiaca Sg A15n/an/a
BacteriaStreptococcus PneumoniaeBlood agar/chocolate blood agaHS-SPME/GC-MS no
BacteriaStreptomyces Lateritiusn/an/a
BacteriaThermomonospora Fusca DSM 43792Nutrient agar CM3GC/MS
BacteriaTsukamurella Sp. AD106Tryptic soy broth agarGC/MS-Q-TOFNo
FungiAscocoryne Sarcoides NRRL 50072Minimal mediumPTR-MS and SPME GC-MS
Fungi Aspergillus Sp.no
FungiBjerkandera Adusta CBS 595.78Minimal media plus glucose and L-phenylalanineExtraction with dichloromethane or with ethyl acetate, concentration under N2 stream /GC-MS.
Fungi Botrytis Sp.no
Fungi Fomes Fomentariusno
FungiFomitopsis PinicolanaGC/MSNo
FungiFusarium Graminearum 15AcDONyeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON 1001tayeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON ZFR 29yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_4yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_5yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_6yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_7yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_8yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_9yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON 1002tyeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON 11791yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON 1509yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON 8046yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON NRRL38369yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON NRRL6394yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON ZFR 15yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON ZFR 37yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON ZFR 51yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIVyeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV ZFR 119yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV ZFR 23yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV ZFR 48yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV_5yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV_6yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV_7yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV_8yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV_9yeast extract sucrose agarSPME/GC-MS
Fungi Fusarium Spp.no
Fungi Penicillium Sppno
FungiPiptoporus BetulinusnaGC/MSNo
FungiPleurotus CystidiosusnaGC/MS, GC-O, AEDANo
FungiPleurotus Eryngii Var. TuoliensisnaGC/MS, GC-O, AEDANo
Fungi Pleurotus Ostreatusno
FungiPolyporus Tuberaster K2606PGYGC-MSno
FungiTrametes SuaveolensnaGC/MSNo
FungiTrichodema VirideMalt extractGC/MS
FungiTuber Aestivumn/amicroextraction-gas chromatography-mass spectrometry analysis (SPME-GC-MS)
FungiTuber Excavatumn/amicroextraction-gas chromatography-mass spectrometry analysis (SPME-GC-MS)
FungiTuber Melanosporumn/an/a
FungiTuber Mesentericumn/amicroextraction-gas chromatography-mass spectrometry analysis (SPME-GC-MS)
FungiTuber Panniferumn/amicroextraction-gas chromatography-mass spectrometry analysis (SPME-GC-MS)
Fungi Bjerkandera Adustano
FungiTuber IndicumNoneNoneYes
FungiTuber MelanosporumNoneNoneYes


1,3-benzothiazole

Mass-Spectra

Compound Details

Synonymous names
Benzosulfonazole
benzothiazol
BENZOTHIAZOLE
benzthiazole
IOJUPLGTWVMSFF-UHFFFAOYSA-N
Benzothiazole, analytical standard
BOT
Vangard BT
BENZO[D]THIAZOLE
benzo[d]thiazol
AC1L1OA4
Benzothiazole, 96%
SCHEMBL8430
1,3-Benzothiazole
KSC486M5N
NSC8040
B0092
CTK3I6656
G5BW2593EP
W9729
ZINC19726
1,3-Benzothiazole #
ACMC-209rv5
CHEMBL510309
RP20214
1-Thia-3-azaindene
CCRIS 7893
HSDB 2796
UNII-G5BW2593EP
AC-3297
AK105881
Benzothiazole, >=96%, FG
DTXSID7024586
FEMA Number 3256
HE020667
HE419098
Jsp004380
LS-1973
MP-2108
NSC 8040
NSC-8040
SBB058513
SCHEMBL9304593
STL268890
ZB000761
CHEBI:45993
DSSTox_CID_4586
O-2857
AJ-08402
AK-72791
AN-13114
ANW-40383
BR-72791
CJ-00148
DSSTox_GSID_24586
KB-47702
SC-18067
ST2412661
TL8005981
TRA0008463
USAF EK-4812
BDBM50444460
DSSTox_RID_77458
MFCD00005775
ZINC00019726
AI3-05742
DB-057562
RTR-029662
ST51023425
TR-029662
AKOS000120178
Epitope ID:138946
I01-0420
Q-100900
WLN: T56 BN DSJ
BRN 0109468
FEMA No. 3256
FT-0622731
FT-0660763
FT-0689534
MLS001050134
SMR001216577
95-16-9
Tox21_201853
Tox21_303232
Benzothiazole, Vetec(TM) reagent grade, 96%
F0001-2268
Z1245735190
CAS-95-16-9
MCULE-5257468117
NCGC00091399-01
NCGC00091399-02
NCGC00257070-01
NCGC00259402-01
EINECS 202-396-2
128366-28-9
MolPort-001-779-851
11895-EP2269978A2
11895-EP2269985A2
11895-EP2269991A2
11895-EP2270010A1
11895-EP2270113A1
11895-EP2270505A1
11895-EP2272828A1
11895-EP2272832A1
11895-EP2272935A1
11895-EP2272972A1
11895-EP2272973A1
11895-EP2275105A1
11895-EP2275409A1
11895-EP2275411A2
11895-EP2276085A1
11895-EP2277858A1
11895-EP2277869A1
11895-EP2277872A1
11895-EP2280000A1
11895-EP2281563A1
11895-EP2281818A1
11895-EP2281824A1
11895-EP2284150A2
11895-EP2284151A2
11895-EP2284152A2
11895-EP2284153A2
11895-EP2284155A2
11895-EP2284156A2
11895-EP2284157A1
11895-EP2284164A2
11895-EP2284920A1
11895-EP2287140A2
11895-EP2287148A2
11895-EP2287150A2
11895-EP2287165A2
11895-EP2287166A2
11895-EP2289871A1
11895-EP2289876A1
11895-EP2292586A2
11895-EP2292590A2
11895-EP2292592A1
11895-EP2292593A2
11895-EP2292611A1
11895-EP2292620A2
11895-EP2292630A1
11895-EP2295419A2
11895-EP2295421A1
11895-EP2295433A2
11895-EP2298732A1
11895-EP2298767A1
11895-EP2298828A1
11895-EP2301534A1
11895-EP2301912A2
11895-EP2301913A1
11895-EP2301914A1
11895-EP2301916A2
11895-EP2301923A1
11895-EP2301983A1
11895-EP2302003A1
11895-EP2305219A1
11895-EP2305637A2
11895-EP2305642A2
11895-EP2305643A1
11895-EP2305651A1
11895-EP2305652A2
11895-EP2305662A1
11895-EP2305675A1
11895-EP2305695A2
11895-EP2305696A2
11895-EP2305697A2
11895-EP2305698A2
11895-EP2308510A1
11895-EP2308562A2
11895-EP2308832A1
11895-EP2308840A1
11895-EP2308849A1
11895-EP2308850A1
11895-EP2308854A1
11895-EP2308863A1
11895-EP2311451A1
11895-EP2311796A1
11895-EP2311797A1
11895-EP2311798A1
11895-EP2311799A1
11895-EP2311842A2
11895-EP2314575A1
11895-EP2314582A1
11895-EP2314587A1
11895-EP2315303A1
11895-EP2316450A1
11895-EP2316459A1
11895-EP2371810A1
11895-EP2371811A2
11895-EP2371812A1
11895-EP2372804A1
11895-EP2378585A1
29076-EP2272517A1
29076-EP2277868A1
29076-EP2277869A1
29076-EP2277870A1
29076-EP2281815A1
29076-EP2305250A1
29076-EP2305640A2
29076-EP2305671A1
29076-EP2305675A1
29076-EP2305769A2
29076-EP2311826A2
29076-EP2311842A2
62566-EP2308812A2
87422-EP2270018A1
87422-EP2298780A1
87422-EP2305689A1
AC-907/25014160
4-27-00-01069 (Beilstein Handbook Reference)
InChI=1/C7H5NS/c1-2-4-7-6(3-1)8-5-9-7/h1-5
Microorganism:

Yes

IUPAC name1,3-benzothiazole
SMILESC1=CC=C2C(=C1)N=CS2
InchiInChI=1S/C7H5NS/c1-2-4-7-6(3-1)8-5-9-7/h1-5H
FormulaC7H5NS
PubChem ID7222
Molweight135.18
LogP2.11
Atoms14
Bonds15
H-bond Acceptor1
H-bond Donor0
Chemical ClassificationBenzenoids Thiazole sulfur compounds nitrogen compounds heterocylic compounds thiazoles

mVOC Specific Details

Boiling Point
DegreeReference
227-228 DEG C AT 765 MM HGBudavari, S. (ed.). The Merck Index - An Encyclopedia of Chemicals, Drugs, and Biologicals. Whitehouse Station, NJ: Merck and Co., Inc., 1996., p. 186
Volatilization
The Henry's Law constant for benzothiazole is estimated as 3.7 X 10-7 atm-cu m/mole(SRC) using a fragment constant estimation method(1). This value indicates that benzothiazole will volatilize slowly from water surfaces(2,SRC). Based on this Henry's Law constant, the volatilization half-life from a model river (1 m deep, flowing 1 m/sec, wind velocity of 3 m/sec) is estimated as approximately 114 days(2,SRC). The volatilization half-life from a model lake (1 m deep, flowing 0.05 m/sec, wind velocity of 0.5 m/sec) is estimated as approximately 832 days(2,SRC). Benzothiazole's Henry's Law constant(1,SRC) indicates that volatilization from moist soil surfaces should be slow(SRC).
Literature: (1) Meylan WM, Howard PH; Environ Toxicol Chem 10: 1283-93 (1991) (2) Lyman WJ et al; Handbook of Chemical Property Estimation Methods. Washington DC: Amer Chem Soc pp. 15-1 to 15-29 (1990)
Soil Adsorption
The Koc of benzothiazole is estimated as approximately 295(SRC), using an experimental log Kow of 2.01(1,SRC) and a regression-derived equation(2,SRC). According to a recommended classification scheme(3), this estimated Koc value suggests that benzothiazole has moderate mobility in soil(SRC).
Literature: (1) Hansch C et al; Exploring QSAR Hydrophobic, Electronic and Stearic Constants Washington DC: Amer Chem Soc (1995) (2) Lyman WJ et al; Handbook of Chemical Property Estimation Methods. Washington DC: Amer Chem Soc pp. 4-9 (1990) (3) Swann RL et al; Res Rev 85: 23 (1983)
MS-Links
1D-NMR-Links

Microorganisms emitting the compound
KingdomSpeciesBiological FunctionOrigin/HabitatReference
FungiTrichodema Viriden/aWheatley et al., 1997
FungiTrichoderma Viride (T60)n/anot shownWheatley et al., 1997
BacteriaChondromyces Crocatus Cm C2n/aSchulz et al., 2004
BacteriaChondromyces Crocatus Cm C5n/aSchulz et al., 2004
BacteriaAlcaligenes FaecalisInhibition of Mycelium growth of Paecilomyces lilacinus and Pochonia chlamydosporia.Zou et al., 2007
BacteriaArthrobacter NitroguajacoliusInhibition of Mycelium growth of Paecilomyces lilacinus and Pochonia chlamydosporia.Zou et al., 2007
BacteriaBacillus Spp.Inhibition of Mycelium growth of Paecilomyces lilacinus and Pochonia chlamydosporia.Zou et al., 2007
BacteriaCyanobacteriaIt has been shown to inhibit development of sclerotia of fungi.Schulz and Dickschat, 2007
BacteriaLysobacter GummosusInhibition of Mycelium growth of Paecilomyces lilacinus and Pochonia chlamydosporia.Zou et al., 2007
BacteriaMyxobacterium Spp.It has been shown to inhibit development of sclerotia of fungi.Schulz and Dickschat, 2007
BacteriaNannocystis Exedens Na EB37n/aDickschat et al., 2007
BacteriaNannocystis Exedens Subsp. Cinnabarina Na C29n/aDickschat et al., 2007
BacteriaPseudomonas AurantiacaInhibition of mycelium growth and spore germinationFernando et al., 2005
BacteriaPseudomonas ChlororaphisIt has been shown to inhibit development of sclerotia of fungi.Schulz and Dickschat, 2007
BacteriaPseudomonas CorrugateInhibition of mycelium growth and spore germinationFernando et al., 2005
BacteriaPseudomonas FluorescensInhibition of mycelium growth and spore germinationFernando et al., 2005
BacteriaPseudomonas Simiae AUnarhizosphere of a soybean field in the province of Rajasthan, IndiaVaishnav et al., 2016
BacteriaSalinispora Tropica CNB-440namarine sedimentGroenhagen et al., 2016
BacteriaSporosarcina GinsengisoliInhibition of Mycelium growth of Paecilomyces lilacinus and Pochonia chlamydosporia.Zou et al., 2007
BacteriaStenotrophomonas MaltophiliaInhibition of Mycelium growth of Paecilomyces lilacinus and Pochonia chlamydosporia.Zou et al., 2007
BacteriaStreptomyces Sp. GWS-BW-H5.n/aDickschat et al., 2005_2
BacteriaStreptomyces Spp.It has been shown to inhibit development of sclerotia of fungi.Schulz and Dickschat, 2007
Fungi Aspergillus Sp.Seifert and King 1982
Fungi Trichoderma Sp.Nemcovic et al. 2008
FungiTuber Magnatumn/aItalian geographical areas (Umbria, Emilia Romagna, Border region area between Emilia Romagna and Marche)Gioacchini et al., 2008
Method
KingdomSpeciesGrowth MediumApplied MethodVerification
FungiTrichodema VirideMalt extract/Low mediumGC/MS
FungiTrichoderma Viride (T60)minimal agarVOCS were analysed by Integrated Automated Thermal Desorbtion-GC-MS. The isolates were grown on a minimal agar medium with the carbon:nitrogen levels similar to that found in Scots pine wood. Covered cultures were incubated at 25°C for 48h.
BacteriaChondromyces Crocatus Cm C2n/an/a
BacteriaChondromyces Crocatus Cm C5n/an/a
BacteriaAlcaligenes Faecalisn/an/a
BacteriaArthrobacter Nitroguajacoliusn/an/a
BacteriaBacillus Spp.n/an/a
BacteriaCyanobacterian/an/a
BacteriaLysobacter Gummosusn/an/a
BacteriaMyxobacterium Spp.n/an/a
BacteriaNannocystis Exedens Na EB37n/an/a
BacteriaNannocystis Exedens Subsp. Cinnabarina Na C29n/an/a
BacteriaPseudomonas Aurantiacan/an/a
BacteriaPseudomonas Chlororaphisn/an/a
BacteriaPseudomonas Corrugaten/an/a
BacteriaPseudomonas Fluorescensn/an/a
BacteriaPseudomonas Simiae AUNutrient broth; King's B agarGC/MSNo
BacteriaSalinispora Tropica CNB-440seawater-based A1GC/MS
BacteriaSporosarcina Ginsengisolin/an/a
BacteriaStenotrophomonas Maltophilian/an/a
BacteriaStreptomyces Sp. GWS-BW-H5.n/an/a
BacteriaStreptomyces Spp.n/an/a
Fungi Aspergillus Sp.no
Fungi Trichoderma Sp.no
FungiTuber Magnatumn/amicroextraction-gas chromatography-mass spectrometry analysis (SPME-GC-MS)


2-ethylhexan-1-ol

Mass-Spectra

Compound Details

Synonymous names
Ethylhexanol
YIWUKEYIRIRTPP-UHFFFAOYSA-N
2-ethylhexylalcohol
2 Ethylhexanol
2-Aethylhexanol
2-Ethylhexanol
AC1L1PEC
2-Ethylhexyl alcohol
Exxal 8N
2-ETHYL HEXANOL
2-ethyl-hexanol
AC1Q2V9L
AC1Q7BK8
2-ethyl hexyl alcohol
Alcohol, 2-ethylhexyl
KSC175S7B
L260
ACMC-1B65F
ACMC-20msz8
CHEMBL31637
NSC9300
SCHEMBL16324
CTK0H5970
E0122
Ethylhexanol, 2-
2-Aethylhexanol [German]
LS-380
2-ethyl 1-hexanol
2-ETHYL-1-HEXANOL
2-Ethylhexan-1-ol
C02498
CCRIS 2292
DSSTox_CID_605
HMS2268N10
HSDB 1118
AK114196
DTXSID5020605
LP121394
NSC 9300
NSC-9300
OR025415
SBB059906
STL453673
CHEBI:16011
2-Ethyl-1-hexanol, analytical standard
ANW-15107
DSSTox_GSID_20605
TRA0052020
xi-2-Ethyl-1-hexanol
2-Ethyl-hexan-1-ol
DSSTox_RID_75686
LMFA05000703
MFCD00004746
AI3-00940
KB-170355
RTR-001032
ST24040552
ST51046173
TR-001032
AKOS000120105
AKOS016843836
W-109057
BRN 1719280
FEMA No. 3151
FT-0612231
FT-0627437
MLS002415694
SMR000112222
1-Hexanol, 2-ethyl-
I14-17807
Tox21_202071
Tox21_300019
WLN: Q1Y4 & 2
104-76-7
3B1-005666
2-Ethyl-1-hexanol, >=99%
MCULE-1768780358
NCGC00091294-01
NCGC00091294-02
NCGC00091294-03
NCGC00254215-01
NCGC00259620-01
Alcohols, C7-9-branched, C8-rich
CAS-104-76-7
EINECS 203-234-3
EINECS 295-250-2
2-Ethylhexan-1-ol, United States Pharmacopeia (USP) Reference Standard
91994-92-2
111675-57-1
128821-84-1
Alcohols, C7-9-iso-,C8-rich
2-Ethyl-1-hexanol, >=99.6%
MolPort-001-787-201
2-Ethyl-1-hexanol, >=99%, FG
33017-EP2305033A1
33017-EP2311815A1
33017-EP2371805A1
33017-EP2377844A2
2-Ethyl-1-hexanol, 99% 500ml
2-Ethyl-1-hexanol, SAJ first grade, >=99.0%
1-Hexanol, 2-ethyl-, (S)-
4-01-00-01783 (Beilstein Handbook Reference)
1070-10-6 (titanium(4+) salt)
2-Ethyl-1-hexanol, puriss., >=99.0% (GC)
InChI=1/C8H18O/c1-3-5-6-8(4-2)7-9/h8-9H,3-7H2,1-2H
Microorganism:

Yes

IUPAC name2-ethylhexan-1-ol
SMILESCCCCC(CC)CO
InchiInChI=1S/C8H18O/c1-3-5-6-8(4-2)7-9/h8-9H,3-7H2,1-2H3
FormulaC8H18O
PubChem ID7720
Molweight130.231
LogP2.5
Atoms27
Bonds26
H-bond Acceptor1
H-bond Donor1
Chemical ClassificationAlcohols

mVOC Specific Details

Volatilization
The Henry's Law constant for 2-ethylhexanol is estimated as 2.6X10-5 atm-cu m/mole(SRC) derived from its vapor pressure, 0.136 mm Hg(1), and water solubility, 880 mg/L(2). This Henry's Law constant indicates that 2-ethylhexanol is expected to volatilize from water surfaces(3). Based on this Henry's Law constant, the volatilization half-life from a model river (1 m deep, flowing 1 m/sec, wind velocity of 3 m/sec)(3) is estimated as 41 hours(SRC). The volatilization half-life from a model lake (1 m deep, flowing 0.05 m/sec, wind velocity of 0.5 m/sec)(3) is estimated as 16 days(SRC). 2-Ethylhexanol's estimated Henry's Law constant indicates that volatilization from moist soil surfaces may occur(SRC). 2-Ethylhexanol is not expected to volatilize from dry soil surfaces(SRC) based upon its vapor pressure(1).
Literature: (1) Daubert TE, Danner RP; Data Compilation Tables of Properties of Pure Compounds. New York, NY: Amer Inst for Phys Prop Data (1989) (2) Amidon GL et al; J Pharm Sci 63: 1858-66 (1974) (3) Lyman WJ et al; Handbook of Chemical Property Estimation Methods. Washington, DC: Amer Chem Soc pp. 15-1 to 15-29 (1990)
Soil Adsorption
Using a structure estimation method based on molecular connectivity indices(1), the Koc of 2-ethylhexanol can be estimated to be 35(SRC). According to a classification scheme(2), this estimated Koc value suggests that 2-ethylhexanol is expected to have very high mobility in soil.
Literature: (1) US EPA; Estimation Program Interface (EPI) Suite. Ver. 4.1. Nov, 2012. Available from, as of Feb 5, 2014: http://www.epa.gov/oppt/exposure/pubs/episuitedl.htm (2) Swann RL et al; Res Rev 85: 17-28 (1983)
Vapor Pressure
PressureReference
0.136 mm Hg at 25 deg CDaubert TE, Danner RP; Physical and Thermodynamic Properties of Pure Chemicals Data Compilation. Washington, DC: Taylor and Francis, 1985
MS-Links
1D-NMR-Links

Microorganisms emitting the compound
KingdomSpeciesBiological FunctionOrigin/HabitatReference
BacteriaCarnobacterium Divergens 9Pn/aErcolini et al., 2009
BacteriaCarnobacterium Maltaromaticumn/aErcolini et al., 2009
BacteriaPseudomonas Aurantiacan/aFernando et al., 2005
BacteriaPseudomonas Chlororaphisn/aFernando et al., 2005
BacteriaPseudomonas Corrugaten/aFernando et al., 2005
BacteriaPseudomonas Fluorescensn/aFernando et al., 2005
BacteriaSerratia Spp. B2675n/aBruce et al., 2004
BacteriaSerratia Spp. B675n/aBruce et al., 2004
FungiAspergillus VersicolorSchleibinger et al.,2005
FungiChaetomium GlobosumSchleibinger et al.,2005
FungiEurotium AmstelodamiSchleibinger et al.,2005
FungiFusarium Graminearum 15AcDONn/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON 1001tan/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON ZFR 29n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_4n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_5n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_6n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_7n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_8n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_9n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON 1002tn/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON 11791n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON 1509n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON 8046n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON NRRL38369n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON NRRL6394n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON ZFR 15n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON ZFR 37n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON ZFR 51n/aBusko et al., 2014
FungiFusarium Graminearum NIVn/aBusko et al., 2014
FungiFusarium Graminearum NIV 357n/aBusko et al., 2014
FungiFusarium Graminearum NIV ZFR 119n/aBusko et al., 2014
FungiFusarium Graminearum NIV ZFR 23n/aBusko et al., 2014
FungiFusarium Graminearum NIV ZFR 48n/aBusko et al., 2014
FungiFusarium Graminearum NIV_5n/aBusko et al., 2014
FungiFusarium Graminearum NIV_6n/aBusko et al., 2014
FungiFusarium Graminearum NIV_7n/aBusko et al., 2014
FungiFusarium Graminearum NIV_8n/aBusko et al., 2014
FungiPenicillium BrevicompactumSchleibinger et al.,2005
FungiPleurotus CystidiosusnanaUsami et al., 2014
FungiPleurotus Eryngii Var. TuoliensisnanaUsami et al., 2014
FungiRhizoctonia Solani AG2-2 IIIBcollection of the Sugar Beet Research Institute, Bergen op Zoom, The NetherlandsCordovez et al. 2017
FungiSaccharomyces Cerevisiae Y1001n/aBruce et al., 2004
FungiTuber Aestivumn/aAgricultural Centre of Castilla and León Community (Monasterio de la Santa Espina, Valladolid, Spain) and Navaleno (Soria, Spain).Diaz et al., 2003
FungiTuber Borchiin/aSplivallo et al., 2007
FungiTuber Melanosporumn/aAgricultural Centre of Castilla and León Community (Monasterio de la Santa Espina, Valladolid, Spain) and Navaleno (Soria, Spain).Diaz et al., 2003
BacteriaAzospirillum Brasilense Cdpromotion of performance of Chlorella sorokiniana Shihculture collection DSMZ 1843Amavizca et al. 2017
BacteriaBacillus Pumilus ES4promotion of performance of Chlorella sorokiniana ShihAmavizca et al. 2017
BacteriaCitrobacter FreundiiAmerican Type Culture Collection Robacker and Bartelt 1997
BacteriaEscherichia Coli DH5apromotion of performance of Chlorella sorokiniana ShihAmavizca et al. 2017
BacteriaKlebsiella PneumoniaeAmerican Type Culture Collection Robacker and Bartelt 1997
FungiAspergillus Versicolor Tiraboschinadamp indoor environments, food productsSunesson et al., 1995
Method
KingdomSpeciesGrowth MediumApplied MethodVerification
BacteriaCarnobacterium Divergens 9Pn/an/a
BacteriaCarnobacterium Maltaromaticumn/an/a
BacteriaPseudomonas Aurantiacan/an/a
BacteriaPseudomonas Chlororaphisn/an/a
BacteriaPseudomonas Corrugaten/an/a
BacteriaPseudomonas Fluorescensn/an/a
BacteriaSerratia Spp. B2675n/an/a
BacteriaSerratia Spp. B675n/an/a
FungiAspergillus Versicoloringrain wallpaperGC/MS-SIMYes
FungiChaetomium Globosumingrain wallpaperGC/MS-SIMYes
FungiEurotium Amstelodamiingrain wallpaperGC/MS-SIMYes
FungiFusarium Graminearum 15AcDONyeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON 1001tayeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON ZFR 29yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_4yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_5yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_6yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_7yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_8yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_9yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON 1002tyeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON 11791yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON 1509yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON 8046yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON NRRL38369yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON NRRL6394yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON ZFR 15yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON ZFR 37yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON ZFR 51yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIVyeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV 357yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV ZFR 119yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV ZFR 23yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV ZFR 48yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV_5yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV_6yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV_7yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV_8yeast extract sucrose agarSPME/GC-MS
FungiPenicillium Brevicompactumingrain wallpaperGC/MS-SIMYes
FungiPleurotus CystidiosusnaGC/MS, GC-O, AEDANo
FungiPleurotus Eryngii Var. TuoliensisnaGC/MS, GC-O, AEDANo
FungiRhizoctonia Solani AG2-2 IIIBPotato Dextrose Agar9Tenax TA / TDGC-MSno
FungiSaccharomyces Cerevisiae Y1001n/an/a
FungiTuber Aestivumn/an/a
FungiTuber Borchiin/an/a
FungiTuber Melanosporumn/an/a
BacteriaAzospirillum Brasilense CdTSASPME-GCno
BacteriaBacillus Pumilus ES4TSASPME-GCno
BacteriaCitrobacter Freundiitryptic soy broth SPME, GC-MSyes
BacteriaEscherichia Coli DH5aTSASPME-GCno
BacteriaKlebsiella Pneumoniaetryptic soy broth SPME, GC-MSyes
FungiAspergillus Versicolor TiraboschiMEAGC/MS


Benzene-1,4-diamine

Mass-Spectra

Compound Details

Synonymous names
Paraphenylenediamine
Fenylenodwuamina
para-phenylenediamine
paraphenylene diamine
paraphenylene-diamine
Paraphenylen-diamine
CBCKQZAAMUWICA-UHFFFAOYSA-N
p-Phenylenediamine
p-Benzenediamine
p-Diaminobenzene
p-Fenylendiamin
p-Phenyldiamine
4-aminophenylamine
4-Phenylenediamine
Orsin
p-Aminoaniline
p-phenylenediamine base
PARA PHENYLENE DIAMINE
Phenylenediamine, para
Aminogen II
Developer PF
Fouramine D
Futramine D
JAROCOL PPD
Santoflex IC
Santoflex LC
4-Aminoaniline
Benzofur D
Fourrine D
Fur Yellow
P-PHENYLENE DIAMINE
p-phenylene-diamine
Pelagol D
Pelagol DR
Tertral D
Fenylenodwuamina [Polish]
Furro D
Peltol D
Renal PF
Rodol D
Ursol D
ACMC-1CUCB
Durafur Black R
Fourrine 1
Nako H
Pelagol Grey D
Phenylenediamine, para-
BASF ursol D
Zoba Black D
1,4-Phenylenediamine
4-amino-aniline
AC1L1PM0
AC1Q53DE
Developer 13
PHENYLENEDIAMINE, P-
1,4 diaminobenzene
1,4-BENZENEDIAMINE
1,4-Diaminobenzene
AC1Q521T
AC1Q521U
AC1Q521V
AC1Q521W
I809
KSC174M0N
Oxidation base 10
UNII-TJX894Z2PK component CBCKQZAAMUWICA-UHFFFAOYSA-N
CI Developer 13
NSC4777
p-Fenylendiamin [Czech]
PubChem22180
SCHEMBL27981
1,4 phenylene diamine
1,4-phenylene diamine
CCRIS 509
CTK0H4606
P0170
U770QIT64J
1,4-diamino benzene
1,4-DIAMINO-BENZENE
ACT07286
AS00466
benzene-1,4-diamine
CHEMBL403741
CI Oxidation Base 10
LS-402
NE10526
RP09002
STR01091
WLN: ZR DZ
C19499
HSDB 2518
p-Phenylenediamine, sublimed, >=99%
UNII-U770QIT64J
AK110185
BBL011602
DTXSID9021138
NSC 4777
NSC-4777
OR000317
STL163334
UN 1673
Usaf ek-394
CHEBI:51403
DSSTox_CID_1138
ZINC8294962
AB1002877
AJ-57421
AN-22438
ANW-15356
CI 76060
CJ-13205
DSSTox_GSID_21138
KB-80078
LABOTEST-BB LTBB002107
SC-77433
ST2419110
TRA0038404
1,4-Phenylenediamine-13N2
ATTERCOP-CHM AT126215
BB_SC-7053
DSSTox_RID_75969
Fur Black 41866
Fur Black 41867
FUR Brown 41866
MFCD00007901
ZINC08294962
AI3-00710
C.I. Developer 13
RTR-013269
AKOS005716327
Epitope ID:114080
I01-4376
C.I. Oxidation Base 10
FT-0606928
p-Phenylenediamine, flakes, >=99.5%
p-Phenylenediamine, zone-refined, purified by sublimation, >=99%
Z426537038
EN300-19064
OTAVA-BB 1509975
Tox21_111615
Tox21_201993
Tox21_302943
106-50-3
3B1-000655
3B1-001622
F0001-0125
C.I. 76060
MCULE-9588027148
NCGC00159375-02
NCGC00159375-03
NCGC00159375-04
NCGC00159375-05
NCGC00256482-01
NCGC00259542-01
CAS-106-50-3
EINECS 203-404-7
HSDB 6256 (Salt/Mix)
56481-76-6
82785-55-5
Tox21_111615_1
p-Phenylenediamine, >=99.0% (GC/NT)
MolPort-001-766-737
540-24-9 (mono-hydrochloride)
624-18-0 (di-hydrochloride)
1,4-Benzenediamine; 1,4-Diaminobenzene; 1,4-Phenylenediamine
p-Phenylenediamine, technical, >=97.0% (GC/NT)
16245-77-5 (monosulfate)
62654-17-5 (monooxalate)
p-Phenylenediamine [UN1673] [Keep away from food]
C.I. 76076 (Salt/Mix)
p-Phenylenediamine [UN1673] [Keep away from food]
InChI=1/C6H8N2/c7-5-1-2-6(8)4-3-5/h1-4H,7-8H
Microorganism:

Yes

IUPAC namebenzene-1,4-diamine
SMILESC1=CC(=CC=C1N)N
InchiInChI=1S/C6H8N2/c7-5-1-2-6(8)4-3-5/h1-4H,7-8H2
FormulaC6H4(NH2)2
PubChem ID7814
Molweight108.144
LogP0.32
Atoms16
Bonds16
H-bond Acceptor2
H-bond Donor2
Chemical ClassificationBenzenoids Amines nitrogen compounds

mVOC Specific Details

Volatilization
The Henry's Law constant for 1,4-benzenediamine is estimated as 6.7X10-10 atm-cu m/mole(SRC) using a fragment constant estimation method(1). This value indicates that 1,4-benzenediamine will be essentially nonvolatile from water surfaces(2,SRC). 1,4-Benzenediamine is not expected to volatilize from dry soil surfaces based on an extrapolated vapor pressure of 0.005 mm Hg at 25 deg C(3).
Literature: (1) Meylan WM, Howard PH; Environ Toxicol Chem 10: 1283-93 (1991) (2) Lyman WJ et al; Handbook of Chemical Property Estimation Methods. Washington DC: Amer Chem Soc pp. 15-1 to 15-29 (1990) (3) Yaws CL; Handbook of Vapor Pressure. Vol 2 C5-C7 Compounds. Houston, TX: Gulf Publ Co (1994)
Soil Adsorption
Based on a recommended classification scheme(1), an estimated Koc value of 16(SRC), determined from a measured log Kow of -0.3(2) and a recommended regression-derived equation(3), indicates that 1,4-benzenediamine is expected to have high mobility in soil(SRC); however it may form covalent bonds to humic material which would limit movement through soil(4).
Literature: (1) Swann RL et al; Res Rev 85: 23 (1983) (2) Hansch C, Leo A; Exploring QSAR Fundamentals and Applications in Chemistry and Biology. Washington, DC: Amer Chem Soc (1995) (3) Lyman WJ et al; Handbook of Chemical Property Estimation Methods. Washington DC: Amer Chem Soc pp. 5-4, 5-10 (1990) (4) Adrian P et al; Chemosphere 18: 1599-1609 (1989)
Vapor Pressure
PressureReference
<1 mm Hg at 21 deg C (technical product)IARC. Monographs on the Evaluation of the Carcinogenic Risk of Chemicals to Humans. Geneva: World Health Organization, International Agency for Research on Cancer, 1972-PRESENT. (Multivolume work). Available at: http://monographs.iarc.fr/ENG/Classification/index.php, p. V16 126 (1978)

Microorganisms emitting the compound
KingdomSpeciesBiological FunctionOrigin/HabitatReference
BacteriaPseudomonas Aurantiacan/aFernando et al., 2005
BacteriaPseudomonas Chlororaphisn/aFernando et al., 2005
BacteriaPseudomonas Corrugaten/aFernando et al., 2005
BacteriaPseudomonas Fluorescensn/aFernando et al., 2005
Method
KingdomSpeciesGrowth MediumApplied MethodVerification
BacteriaPseudomonas Aurantiacan/an/a
BacteriaPseudomonas Chlororaphisn/an/a
BacteriaPseudomonas Corrugaten/an/a
BacteriaPseudomonas Fluorescensn/an/a


Cyclohexanol

Mass-Spectra

Compound Details

Synonymous names
Hydroxycyclohexane
Cyanomethylthioacetic acid
Cyclohexanone cyclohexanol mixture
Hexahydrophenol
Cicloesanolo
CYCLOHEXANOL
Cyclohexanols
Cykloheksanol
Hydrophenol
Cyclohexyl alcohol
cyclohexyl-alcohol
HPXRVTGHNJAIIH-UHFFFAOYSA-N
Hydralin
Adronal
Adronol
Cyclohexanol, analytical standard
Hexalin
Anol
Naxol
CXL
cykloheksanol(polish)
1-Cyclohexanol
BDBM5
AC1L1PYO
Cicloesanolo [Italian]
Cyclohexane, hydroxy-
Cykloheksanol [Polish]
AC1Q7AM2
Cyclohexan-1-ol
ACMC-1BU4Y
Phenol, hexahydro-
SCHEMBL5545
HSDB 61
KSC175M7H
CHEMBL32010
BIDD:ER0291
DB03703
LS-474
RP18714
8E7S519M3P
bmse000431
C00854
CCRIS 5896
CYCLOHEXYL, 1-HYDROXY-
HMS3039K08
WLN: L6TJ AQ
AK113065
BBL013186
DTXSID4021894
NSC403656
OR025413
OR188686
OR242167
SBB060483
STL163965
CHEBI:18099
DSSTox_CID_1894
UNII-8E7S519M3P
ZINC1532765
AJ-26810
AN-42916
CJ-05270
CJ-24252
DSSTox_GSID_21894
SC-47179
TRA0058880
TRA0078627
BB_SC-7055
DSSTox_RID_76390
MFCD00003855
ZINC01532765
AI3-00040
DB-040851
KB-251250
NSC 403656
NSC-403656
ST51046660
TC-167349
TR-002010
AKOS000119038
Cyclohexanol, ReagentPlus(R), 99%
Q-200903
ZINC100502981
BRN 0906744
FT-0624192
MLS001055343
SMR000677941
I14-16591
I14-20888
Cyclohexanol, 99% 100ml
Cyclohexanol, JIS special grade, >=98.0%
Tox21_201481
Tox21_302803
108-93-0
Cyclohexanol, SAJ first grade, >=95.0%
Cyclohexanol, Vetec(TM) reagent grade, 98%
F0001-0184
MCULE-8217921343
NCGC00090982-01
NCGC00090982-02
NCGC00256434-01
NCGC00259032-01
CAS-108-93-0
EINECS 203-630-6
603-EP2270113A1
603-EP2272817A1
603-EP2272849A1
603-EP2272935A1
603-EP2275411A2
603-EP2275469A1
603-EP2277861A1
603-EP2280005A1
603-EP2281810A1
603-EP2284154A1
603-EP2284157A1
603-EP2286811A1
603-EP2287158A1
603-EP2287165A2
603-EP2287166A2
603-EP2287940A1
603-EP2289884A1
603-EP2289965A1
603-EP2292620A2
603-EP2298746A1
603-EP2298828A1
603-EP2301918A1
603-EP2301983A1
603-EP2305033A1
603-EP2308471A1
603-EP2308812A2
603-EP2308857A1
603-EP2308926A1
603-EP2309564A1
603-EP2311815A1
603-EP2311820A1
603-EP2314558A1
603-EP2374783A1
603-EP2380568A1
Cyclohexanol, p.a., 99.0%
MolPort-001-783-729
Cyclohexanol, puriss., >=99.0% (GC)
4-06-00-00020 (Beilstein Handbook Reference)
Microorganism:

Yes

IUPAC namecyclohexanol
SMILESC1CCC(CC1)O
InchiInChI=1S/C6H12O/c7-6-4-2-1-3-5-6/h6-7H,1-5H2
FormulaC6H12O
PubChem ID7966
Molweight100.161
LogP1.28
Atoms19
Bonds19
H-bond Acceptor1
H-bond Donor1
Chemical ClassificationAlcohols

mVOC Specific Details

Volatilization
The Henry's Law constant for cyclohexanol is 4.40X10-6 atm-cu m/mole(1). This Henry's Law constant indicates that cyclohexanol is expected to volatilize from water surfaces(2). Based on this Henry's Law constant, the volatilization half-life from a model river (1 m deep, flowing 1 m/sec, wind velocity of 3 m/sec)(2) is estimated as 8.4 days(SRC). The volatilization half-life from a model lake (1 m deep, flowing 0.05 m/sec, wind velocity of 0.5 m/sec)(2) is estimated as 64 days(SRC). Cyclohexanol's Henry's Law constant indicates that volatilization from moist soil surfaces may occur(SRC). Cyclohexanol is not expected to volatilize from dry soil surfaces(SRC) based upon a vapor pressure of 0.657 mm Hg(3).
Literature: (1) Altschuh JR et al; Chemosphere 39: 1871-87 (1999) (2) Lyman WJ et al; Handbook of Chemical Property Estimation Methods. Washington, DC: Amer Chem Soc pp. 15-1 to 15-29 (1990) (3) Daubert TE, Danner RP; Physical and Thermodynamic Properties of Pure Chemicals Data Compilation. Washington, DC: Taylor and Francis (1998)
Soil Adsorption
The Koc of cyclohexanol is estimated as 11(SRC), using a log Kow of 1.23(1) and a regression-derived equation(2). According to a classification scheme(3), this estimated Koc value suggests that cyclohexanol is expected to have very high mobility in soil.
Literature: (1) Hansch C et al; Exploring QSAR. Hydrophobic, Electronic, and Steric Constants. ACS Prof Ref Book. Heller SR, consult. ed., Washington, DC: Amer Chem Soc p. 24 (1995) (2) US EPA; Estimation Program Interface (EPI) Suite. Ver. 4.0. Jan, 2009. Available from, as of March 29, 2010: http://www.epa.gov/oppt/exposure/pubs/episuitedl.htm. (3) Swann RL et al; Res Rev 85: 17-28 (1983)
Vapor Pressure
PressureReference
0.657 mm Hg at 25 deg CDaubert TE, Danner RP; Physical and Thermodynamic Properties of Pure Chemicals Data Compilation. Washington, D.C.: Taylor and Francis, 1998.

Microorganisms emitting the compound
KingdomSpeciesBiological FunctionOrigin/HabitatReference
BacteriaPseudomonas AurantiacaInhibition of mycelium growth and spore germinationFernando et al., 2005
BacteriaPseudomonas ChlororaphisInhibition of mycelium growth and spore germinationFernando et al., 2005
BacteriaPseudomonas CorrugateInhibition of mycelium growth and spore germinationFernando et al., 2005
BacteriaPseudomonas FluorescensInhibition of mycelium growth and spore germinationFernando et al., 2005
FungiTuber Indicumn/aSplivallo et al., 2007
Method
KingdomSpeciesGrowth MediumApplied MethodVerification
BacteriaPseudomonas Aurantiacan/an/a
BacteriaPseudomonas Chlororaphisn/an/a
BacteriaPseudomonas Corrugaten/an/a
BacteriaPseudomonas Fluorescensn/an/a
FungiTuber Indicumn/an/a


2-methylpyrazine

Mass-Spectra

Compound Details

Synonymous names
Methylpyrazine
CAWHJQAVHZEVTJ-UHFFFAOYSA-N
methyl pyrazine
2-METHYLPYRAZINE
5-methylpyrazine
AC1L1PZI
2-METHYL PYRAZINE
2-methyl-pyrazine
5-methyl pyrazine
AC1Q4X6O
PubChem8601
Pyrazine, methyl-
KSC174Q5L
I837
2-Methylpyrazine, pharmaceutiical secondary standard; traceable to PhEur
ACMC-1BQ03
M0736
RVC6500U9C
CTK0H4855
VP40104
NSC30412
NSC49138
RP18574
CHEMBL479791
2-Methylpyrazine, >=99%
UNII-RVC6500U9C
CCRIS 2927
SBB060830
HE020642
DTXSID4047620
AC-3331
Jsp000741
LS-2959
Pyrazine, 2-methyl-
2-Methylpyrazine, European Pharmacopoeia (EP) Reference Standard
M-6097
ZINC1661081
CHEBI:89015
ST2410153
NSC-49138
NSC-30412
NSC 30412
AJ-28911
AK-88672
AN-13077
ANW-75353
CJ-26824
KB-25557
DSSTox_GSID_47620
SC-00320
DSSTox_CID_27620
MFCD00006142
ZINC01661081
TC-164098
DB-002464
AI3-36550
TC-060297
ST51046936
Q-100051
WLN: T6N DNJ B1
I01-1852
2-Methyl-1,4-diazine
AKOS009156584
FT-0613074
FEMA No. 3309
10-98-0
Tox21_303776
109-08-0
2- methyl-1,4-diazine
Z1245664655
F8889-9211
NCGC00188126-01
MCULE-8697656728
NCGC00357068-01
CAS-109-08-0
EINECS 203-645-8
2-Methylpyrazine, >=99%, FCC, FG
MolPort-000-157-481
InChI=1/C5H6N2/c1-5-4-6-2-3-7-5/h2-4H,1H
Microorganism:

Yes

IUPAC name2-methylpyrazine
SMILESCC1=NC=CN=C1
InchiInChI=1S/C5H6N2/c1-5-4-6-2-3-7-5/h2-4H,1H3
FormulaC5H6N2
PubChem ID7976
Molweight94.117
LogP-0.33
Atoms13
Bonds13
H-bond Acceptor2
H-bond Donor0
Chemical ClassificationPyrazines nitrogen containing compounds nitrogen compounds heterocyclic compounds

Microorganisms emitting the compound
KingdomSpeciesBiological FunctionOrigin/HabitatReference
BacteriaPseudomonas Aurantiacan/aFernando et al., 2005
BacteriaPseudomonas Chlororaphisn/aFernando et al., 2005
BacteriaPseudomonas Corrugaten/aFernando et al., 2005
BacteriaPseudomonas Fluorescensn/aFernando et al., 2005
BacteriaKlebsiella Pneumoniaeclinical isolate,bacteremic patientsRees et al. 2017
BacteriaAlcaligenes Faecalisn/aZou et al., 2007
BacteriaArthrobacter Nitroguajacoliusn/aZou et al., 2007
BacteriaBacillus Spp.n/aZou et al., 2007
BacteriaLysobacter Gummosusn/aZou et al., 2007
BacteriaSporosarcina Ginsengisolin/aZou et al., 2007
BacteriaStenotrophomonas Maltophilian/aZou et al., 2007
FungiPleurotus CystidiosusnanaUsami et al., 2014
BacteriaCitrobacter FreundiiAmerican Type Culture Collection Robacker and Bartelt 1997
BacteriaCytophaga-Flavobacterium-Bacteroides Group Strain ARK 10267n/aDickschat et al., 2005_3
BacteriaKlebsiella PneumoniaeAmerican Type Culture Collection Robacker and Bartelt 1997
BacteriaStenotrophomonas MaltophiliaclinicPreti., 2009
BacteriaStreptomyces Sp. GWS-BW-H5.n/aDickschat et al., 2005_2
Fungi Aspergillus Sp.Dickschat 2022
Fungi Fusarium Sp.Dickschat 2017
BacteriaPseudomonas Putida BP25nablack pepper rootSheoran et al., 2015
BacteriaPseudomonas Putida BP25Rpositive influence of the plant root growth and protection against soil-borne pathogensSheoran et al., 2015
Method
KingdomSpeciesGrowth MediumApplied MethodVerification
BacteriaPseudomonas Aurantiacan/an/a
BacteriaPseudomonas Chlororaphisn/an/a
BacteriaPseudomonas Corrugaten/an/a
BacteriaPseudomonas Fluorescensn/an/a
BacteriaKlebsiella PneumoniaeBHI, LB, MHB, TSBSPME / GCxGC-TOFMS
BacteriaAlcaligenes Faecalisn/an/a
BacteriaArthrobacter Nitroguajacoliusn/an/a
BacteriaBacillus Spp.n/an/a
BacteriaLysobacter Gummosusn/an/a
BacteriaSporosarcina Ginsengisolin/an/a
BacteriaStenotrophomonas Maltophilian/an/a
FungiPleurotus CystidiosusnaGC/MS, GC-O, AEDANo
BacteriaCitrobacter Freundiitryptic soy broth SPME, GC-MSyes
BacteriaCytophaga-Flavobacterium-Bacteroides Group Strain ARK 10267n/an/a
BacteriaKlebsiella Pneumoniaetryptic soy broth SPME, GC-MSyes
BacteriaStenotrophomonas MaltophiliaBlood agar/chocolate blood agaHS-SPME/GC-MS no
BacteriaStreptomyces Sp. GWS-BW-H5.n/an/a
Fungi Aspergillus Sp.no
Fungi Fusarium Sp.no
BacteriaPseudomonas Putida BP25Luria Bertani AgarHeadspace GC/MSNo
BacteriaPseudomonas Putida BP25RTSBPropak Q adsorbent trap/GC-MS


Compound Details

Synonymous names
BKIMMITUMNQMOS-UHFFFAOYSA-N
NONANE
OyEEIe
nonan
Nonyl hydride
nonyl group
Nonane, analytical standard
AC1L1QCW
AC1Q2VWN
DD9
n-Nonane
n-nonyl radical
Fluorochemical surfactant, Zwitterionic / non-ionic
Heptane, ethyl-
KSC181E3H
Shellsol 140
CTK0I1233
HSDB 107
N0286
S0281
T9W3VH6G10
ACMC-2099ay
CHEMBL335900
Fluorochemical surfactant, anionic / non-ionic
LS-541
n-C9H20
Nonane, 99%
NSC72430
CCRIS 6081
LTBB002319
UNII-T9W3VH6G10
DTXSID9025796
Jsp000889
LP004031
LP067689
Nonane, anhydrous, >=99%
UN 1920
A802420
CHEBI:32892
DSSTox_CID_5796
ZINC1698517
ANW-16328
DSSTox_GSID_25796
NONANE MFC9 H20
NSC 72430
NSC-72430
SC-96410
TRA0006056
DSSTox_RID_77926
LMFA11000579
MFCD00009574
MFCD02099450
DB-041010
RTR-002319
TR-002319
AKOS015904046
W-108667
FT-0626750
FT-0631631
I14-17869
Nonane, ReagentPlus(R), 99%
Tox21_201479
Tox21_303148
111-84-2
CH3-[CH2]7-CH3
MCULE-1865327912
NCGC00091787-01
NCGC00091787-02
NCGC00257029-01
NCGC00259030-01
CAS-111-84-2
EINECS 203-913-4
32757-65-6
61193-19-9
66039-00-7
n-Nonane, 99% 100ml
MolPort-003-929-477
15417-EP2275407A1
15417-EP2275469A1
15417-EP2287940A1
15417-EP2289965A1
15417-EP2298828A1
15417-EP2301983A1
15417-EP2305683A1
15417-EP2308926A1
15417-EP2309564A1
15417-EP2311839A1
15417-EP2314589A1
15417-EP2316837A1
72705-EP2269986A1
72705-EP2277871A1
72705-EP2289509A2
72705-EP2292576A2
72705-EP2308492A1
72705-EP2371811A2
72705-EP2380568A1
178017-EP2277868A1
178017-EP2277869A1
178017-EP2277870A1
C8F3CAB9-DAF5-4085-84EB-07C0AB04D3A1
InChI=1/C9H20/c1-3-5-7-9-8-6-4-2/h3-9H2,1-2H
Microorganism:

Yes

IUPAC namenonane
SMILESCCCCCCCCC
InchiInChI=1S/C9H20/c1-3-5-7-9-8-6-4-2/h3-9H2,1-2H3
FormulaC9H20
PubChem ID8141
Molweight128.259
LogP4.46
Atoms29
Bonds28
H-bond Acceptor0
H-bond Donor0
Chemical ClassificationAlkanes

mVOC Specific Details

Volatilization
The Henry's Law constant for n-nonane is estimated as 3.4 atm-cu m/mole(SRC) derived from its vapor pressure, 4.45 mm Hg(1), and water solubility, 22 mg/L)(2). This Henry's Law constant indicates that n-nonane is expected to volatilize rapidly from water surfaces(3). Based on this Henry's Law constant, the volatilization half-life from a model river (1 m deep, flowing 1 m/sec, wind velocity of 3 m/sec)(3) is estimated as 3.3 hours(SRC). The volatilization half-life from a model lake (1 m deep, flowing 0.05 m/sec, wind velocity of 0.5 m/sec)(3) is estimated as 4.5 days(SRC). However, volatilization from water surfaces is expected to be attenuated by adsorption to suspended solids and sediment in the water column. The estimated volatilization half-life from a model pond is 155 days if adsorption is considered(4). n-Nonane's estimated Henry's Law constant indicates that volatilization from moist soil surfaces may occur(SRC). The potential for volatilization of n-nonane from dry soil surfaces may exist(SRC) based upon the vapor pressure(1).
Literature: (1) Daubert TE, Danner RP; Physical and Thermodynamic Properties of Pure Chemicals Data Compilation. Washington, DC: Taylor and Francis (1989) (2) Riddick JA et al; Techniques of Chemistry. 4th ed. Volume II. Organic Solvents. New York, NY: John Wiley and Sons (1985) (3) Lyman WJ et al; Handbook of Chemical Property Estimation Methods. Washington, DC: Amer Chem Soc pp. 15-1 to 15-29 (1990) (4) US EPA; EXAMS II Computer Simulation (1987)
Soil Adsorption
The Koc of n-nonane is estimated as 8.0X10+4(SRC), using a log Kow of 5.65(1) and a regression-derived equation(2). According to a classification scheme(3), this estimated Koc value suggests that n-nonane is expected to be immobile in soil. Freundlich absorption coefficients of log 4.50 and log 4.01 were measured in Oberlausitz lignite (11.1% moisture content; 53.5 wt% carbon content; 0.6 wt % nitrogen content) and Pahokee peat soil (10.2% moisture content; 46.1 wt% carbon content; 3.3 wt % nitrogen content), respectively(4).
Literature: (1) Sangster J; LOGKOW Database. A databank of evaluated octanol-water partition coefficients (Log P). Available from, as of Oct 30, 2013: http://logkow.cisti.nrc.ca/logkow/search.html (2) US EPA; Estimation Program Interface (EPI) Suite. Ver. 4.1. Nov, 2012. Available from, as of Oct 30, 2013: http://www.epa.gov/oppt/exposure/pubs/episuitedl.htm (3) Swann RL et al; Res Rev 85: 17-28 (1983) (4) Endo S et al; Environ Sci Technol 42): 5897-5903 (2008)
Vapor Pressure
PressureReference
4.45 mm Hg at 25 deg C /Extrapolated/Daubert, T.E., R.P. Danner. Physical and Thermodynamic Properties of Pure Chemicals Data Compilation. Washington, D.C.: Taylor and Francis, 1989.
MS-Links

Microorganisms emitting the compound
KingdomSpeciesBiological FunctionOrigin/HabitatReference
BacteriaXanthomonas Campestris Pv. Vesicatoria 85-10n/aWeise et al., 2012
FungiGanoderma Lucidumnasaprophytic on deciduous treesZiegenbein et al., 2006
BacteriaBacillus SimplexReduction of movement or death of Panagrelleus redivivus and Bursaphelenchus xylophilus.Gu et al., 2007
BacteriaBacillus SubtilisReduction of movement or death of Panagrelleus redivivus and Bursaphelenchus xylophilus.Gu et al., 2007
BacteriaBacillus WeihenstephanensisReduction of movement or death of Panagrelleus redivivus and Bursaphelenchus xylophilus.Gu et al., 2007
BacteriaBurkholderia Tropica MTo431n/aTenorio-Salgado et al., 2013
BacteriaMicrobacterium OxydansReduction of movement or death of Panagrelleus redivivus and Bursaphelenchus xylophilus.Gu et al., 2007
BacteriaPseudomonas Aurantiacan/aFernando et al., 2005
BacteriaPseudomonas Chlororaphisn/aFernando et al., 2005
BacteriaPseudomonas Corrugaten/aFernando et al., 2005
BacteriaPseudomonas Fluorescensn/aFernando et al., 2005
BacteriaSerratia MarcescensReduction of movement or death of Panagrelleus redivivus and Bursaphelenchus xylophilus.Gu et al., 2007
BacteriaShewanella Algae YM16inhibits mycelial growth of Aspergillus flavus and germination of Aspergillus flavus' conidiasea sediment in east China coastGong et al., 2015
BacteriaStenotrophomonas MaltophiliaReduction of movement or death of Panagrelleus redivivus and Bursaphelenchus xylophilus.Gu et al., 2007
BacteriaStreptomyces LateritiusReduction of movement or death of Panagrelleus redivivus and Bursaphelenchus xylophilus.Gu et al., 2007
Method
KingdomSpeciesGrowth MediumApplied MethodVerification
BacteriaXanthomonas Campestris Pv. Vesicatoria 85-10NBIIClosed airflow-system/GC-MS and PTR-MS
FungiGanoderma LucidumnaGC/MSNo
BacteriaBacillus Simplexn/an/a
BacteriaBacillus Subtilisn/an/a
BacteriaBacillus Weihenstephanensisn/an/a
BacteriaBurkholderia Tropica MTo431Potato dextrose agarHeadspace trapping/ GC-MS
BacteriaMicrobacterium Oxydansn/an/a
BacteriaPseudomonas Aurantiacan/an/a
BacteriaPseudomonas Chlororaphisn/an/a
BacteriaPseudomonas Corrugaten/an/a
BacteriaPseudomonas Fluorescensn/an/a
BacteriaSerratia Marcescensn/an/a
BacteriaShewanella Algae YM16NA mediumSPME-GC/MSYes
BacteriaStenotrophomonas Maltophilian/an/a
BacteriaStreptomyces Lateritiusn/an/a


Undecan-2-one

Mass-Spectra

Compound Details

Synonymous names
Methylnonylketone
UNDECANONE
KYWIYKKSMDLRDC-UHFFFAOYSA-N
Rue ketone
Nonyl methyl ketone
Methyl nonyl ketone
2-Hendecanone
2-Oxoundecane
2-Undecanone
AC1L1QEM
2-undecanon
Methyl Nonyl Ketone FCC
YV5DSO8CY9
METHYL N-NONYL KETONE
Ketone, methyl nonyl
AC1Q5H8X
UNII-YV5DSO8CY9
Undecan-2-one
KSC176M2T
L352
MGK Dog and Cat Repellent
ACMC-1C77Q
Mgk dog & cat repellent
NSC4028
U0006
CTK0H6629
DB08688
SCHEMBL117635
SCHEMBL249443
Undecanone-(2)
C01875
HSDB 7431
WLN: 9V1
2-Undecanone (natural)
SBB060389
AN-1415
NSC-4028
NSC 4028
STL146552
LS-3143
LP003930
Jsp000923
BBL011441
CHEMBL1236582
DTXSID2021943
ZINC1529305
CHEBI:17700
DSSTox_CID_1943
A802493
DSSTox_GSID_21943
ANW-16393
Caswell No. 573O
2-Undecanone, 99%
LMFA12000002
BB_SC-6944
MFCD00009583
DSSTox_RID_76418
AI3-03081
TR-002375
ST51046579
RTR-002375
Q-201393
EPA Pesticide Chemical Code 044102
Methyl nonyl ketone (MNK)
Nonyl methyl ketone
Methyldecananone
2-Hendecanone
Undecanone
IBI-246
BB_SC-06944
AKOS005720838
FEMA No. 3093
FT-0613466
BRN 1749573
I14-10598
2-Undecanone, natural, FCC, FG
Tox21_301385
112-12-9
MCULE-6858373499
NCGC00255160-01
NCGC00164003-01
CAS-112-12-9
EINECS 203-937-5
53452-70-3
2-Undecanone, >=98%, FCC, FG
MolPort-003-933-723
Microorganism:

Yes

IUPAC nameundecan-2-one
SMILESCCCCCCCCCC(=O)C
InchiInChI=1S/C11H22O/c1-3-4-5-6-7-8-9-10-11(2)12/h3-10H2,1-2H3
FormulaC11H22O
PubChem ID8163
Molweight170.296
LogP3.92
Atoms34
Bonds33
H-bond Acceptor1
H-bond Donor0
Chemical ClassificationKetones Ketone

mVOC Specific Details

Boiling Point
DegreeReference
231.5 deg CLide, D.R., G.W.A. Milne (eds.). Handbook of Data on Organic Compounds. Volume I. 3rd ed. CRC Press, Inc. Boca Raton ,FL. 1994., p. V5: 5176
Volatilization
The Henry's Law constant for 2-undecanone is 6.36X10-5 atm-cu m/mole(1). This Henry's Law constant indicates that 2-undecanone is expected to volatilize from water surfaces(2). Based on this Henry's Law constant, the volatilization half-life from a model river (1 m deep, flowing 1 m/sec, wind velocity of 3 m/sec)(2) is estimated as 13 hours(SRC). The volatilization half-life from a model lake (1 m deep, flowing 0.05 m/sec, wind velocity of 0.5 m/sec)(2) is estimated as 11 days(SRC). 2-Undecanone's Henry's Law constant indicates that volatilization from moist soil surfaces may occur(SRC). 2-Undecanone is not expected to volatilize from dry soil surfaces(SRC) based upon a vapor pressure of 4.1X10-2 mm Hg(3).
Literature: (1) Buttery RG et al: J Agric Food Chem 17:385-9 (1960) (2) Lyman WJ et al; Handbook of Chemical Property Estimation Methods. Washington, DC: Amer Chem Soc pp. 15-1 to 15-29 (1990) (3) Perry RH, Green D; Perry's Chemical Handbook. Physical and Chemical data. NY,NY: McGraw-Hill 6th ed (1984)
Solubility
Insoluble in water. Soluble in ethanol, ether, acetone, benzene, carbon tetrachloride, chloroform.
Literature: Lide, D.R., G.W.A. Milne (eds.). Handbook of Data on Organic Compounds. Volume I. 3rd ed. CRC Press, Inc. Boca Raton ,FL. 1994., p. V5: 5176
Literature: #In water, 20 mg/L at 25 deg C (est)
Literature: US EPA; Estimation Program Interface (EPI) Suite. Ver.3.12. Nov 30, 2004. Available from, as of Mar 3, 2006: http://www.epa.gov/oppt/exposure/pubs/episuitedl.htm
Soil Adsorption
Using a structure estimation method based on molecular connectivity indices(1), the Koc of 2-undecanone can be estimated to be 278(SRC). According to a classification scheme(2), this estimated Koc value suggests that 2-undecanone is expected to have moderate mobility in soil.
Literature: (1) Meylan WM et al; Environ Sci Technol 26: 1560-67 (1992) (2) Swann RL et al; Res Rev 85: 17-28 (1983)
Vapor Pressure
PressureReference
4.1X10-2 mm HgPerry RH, Green D; Perry's Chemical Handbook. Physical and Chemical data. NY, NY: McGraw-Hill 6th ed (1984)
MS-Links

Microorganisms emitting the compound
KingdomSpeciesBiological FunctionOrigin/HabitatReference
BacteriaBacillus Amyloliquefaciens IN937atriggers induced systemic resistance (ISR) in ArabidopsisnaRyu et al., 2004
BacteriaBacillus Cereus ATCC 14570American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaBacillus Polymyxa ATCC 842American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaBacillus SimplexReduction of movement or death of Panagrelleus redivivus and Bursaphelenchus xylophilus.Gu et al., 2007
BacteriaBacillus SubtilisReduction of movement or death of Panagrelleus redivivus and Bursaphelenchus xylophilus.Gu et al., 2007
BacteriaBacillus Subtilis GB03triggers induced systemic resistance (ISR) in ArabidopsisnaRyu et al., 2004
BacteriaBacillus WeihenstephanensisReduction of movement or death of Panagrelleus redivivus and Bursaphelenchus xylophilus.Gu et al., 2007
BacteriaBurkholderia Ambifaria LMG 17828n/aBurkholderia ambifaria LMG 17828 from root, LMG 19182 from rhizosphereGroenhagen et al., 2013
BacteriaBurkholderia Ambifaria LMG 19182n/aBurkholderia ambifaria LMG 17828 from root, LMG 19182 from rhizosphereGroenhagen et al., 2013
BacteriaBurkholderia Andropogonis LMG 2129n/aBlom et al., 2011
BacteriaBurkholderia Caribensis LMG 18531n/aBlom et al., 2011
BacteriaBurkholderia Caryophylli LMG 2155n/aBlom et al., 2011
BacteriaBurkholderia Cepacia LMG 1222n/aBlom et al., 2011
BacteriaBurkholderia Cepacia LMG 1222 358RhizosphereBlom et al., 2011
BacteriaBurkholderia Fungorum LMG 16225n/aBlom et al., 2011
BacteriaBurkholderia Gladioli LMG 2216n/aBlom et al., 2011
BacteriaBurkholderia Glathei LMG 14190n/aBlom et al., 2011
BacteriaBurkholderia Glumae LMG 2196n/aBlom et al., 2011
BacteriaBurkholderia Graminis LMG 18924n/aBlom et al., 2011
BacteriaBurkholderia Hospita LMG 20598n/aBlom et al., 2011
BacteriaBurkholderia Lata LMG 22485n/aBlom et al., 2011
BacteriaBurkholderia Lata LMG 6993n/aBlom et al., 2011
BacteriaBurkholderia Phenazinium LMG 2247n/aBlom et al., 2011
BacteriaBurkholderia Phenoliruptrix LMG 22037n/aBlom et al., 2011
BacteriaBurkholderia Phytofirmans LMG 22487n/aBlom et al., 2011
BacteriaBurkholderia Pyrrocinia LMG 21822n/aBlom et al., 2011
BacteriaBurkholderia Terricola LMG 20594n/aBlom et al., 2011
BacteriaBurkholderia Tropica LMG 22274n/aBlom et al., 2011
BacteriaBurkholderia Xenovorans LMG 21463n/aBlom et al., 2011
BacteriaChromobacterium Violaceum CV0n/aBlom et al., 2011
BacteriaCitrobacter Freundii ATCC 33128American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaCorynebacterium Accolens V12028clinical isolateLemfack et al. 2016
BacteriaCorynebacterium Jeikeum V12131clinical isolateLemfack et al. 2016
BacteriaCorynebacterium Jeikeum V12209clinical isolateLemfack et al. 2016
BacteriaCorynebacterium Minutissimum ATCC 23348clinical isolate,trunk of adult femaleLemfack et al. 2016
BacteriaCorynebacterium Striatum RV2clinical isolateLemfack et al. 2016
BacteriaCorynebacterium Striatum V6894clinical isolateLemfack et al. 2016
BacteriaEnterobacter Aerogenes ATCC 13048American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaEnterobacter Aerogenes KY2American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaEnterobacter Cloacae ATCC 13047American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaEnterococcus Durans ATCC 19432American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaEnterococcus Faecium ATCC 19434American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaEscherichia Colin/aElgaali et al., 2002
BacteriaEscherichia Coli ATCC 25922American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaEscherichia Coli O157:H7China Center of Industrial culture Collection, China General Microbiological Culture Collection CenterChen et Al. 2016
BacteriaEscherichia Coli OP50n/aBlom et al., 2011
BacteriaKlebsiella Pneumoniaen/aElgaali et al., 2002
BacteriaLactobacillus Lactis ATCC 11454American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaLactobacillus Lactis ATCC 11955American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaLactobacillus Rhamnosus LSL 222nanaPogačić et al., 2016
BacteriaLeuconostoc Mesenteroides ATCC 8086American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaListeria Monocytogenes ATCC 19115American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaMicrobacterium OxydansReduction of movement or death of Panagrelleus redivivus and Bursaphelenchus xylophilus.Gu et al., 2007
BacteriaPandoraea Norimbergensis LMG 18379n/aBlom et al., 2011
BacteriaPseudomonas Aeruginosa PA01nanaBriard et al., 2016
BacteriaPseudomonas Aurantiacan/aFernando et al., 2005
BacteriaPseudomonas Brassicacearum USB2101reduces mycelium growth and sclerotia germination of Sclerotinia sclerotiorum USB-F593; lyses red blood cellsrhizosphere of bean plants, southern ItalyGiorgio et al., 2015
BacteriaPseudomonas Brassicacearum USB2102reduces mycelium growth and sclerotia germination of Sclerotinia sclerotiorum USB-F593; lyses red blood cellsrhizosphere of bean plants, southern ItalyGiorgio et al., 2015
BacteriaPseudomonas Brassicacearum USB2104reduces mycelium growth and sclerotia germination of Sclerotinia sclerotiorum USB-F593; lyses red blood cellsrhizosphere of bean plants, southern ItalyGiorgio et al., 2015
BacteriaPseudomonas Chlororaphisn/aFernando et al., 2005
BacteriaPseudomonas Chlororaphis 450inhibits growth of Synechococcus sp. PCC 7942 and Rhizoctonia solani, kills Caenorhabditis elegansRhizosphere of maize, Kiev region, UkrainePopova et al., 2014
BacteriaPseudomonas Corrugaten/aFernando et al., 2005
BacteriaPseudomonas Fluorescensn/aFernando et al., 2005
BacteriaPseudomonas Fluorescens ATCC 13525American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaPseudomonas Fluorescens WCS 417rn/aBlom et al., 2011
BacteriaPseudomonas Jessenii S34naphyllosphere of field-grown potato plantsHunziker et al., 2015
BacteriaPseudomonas Putida ISOfn/aBlom et al., 2011
BacteriaPseudomonas Putida USB2105reduces mycelium growth and sclerotia germination of Sclerotinia sclerotiorum USB-F593; lyses red blood cellsrhizosphere of bean plants, southern ItalyGiorgio et al., 2015
BacteriaPseudomonas Tolaasii NCPPB 2192nanaCantore et al., 2015
BacteriaPseudomonas Tolaasii USB66nanaCantore et al., 2015
BacteriaSalmonella Enterica Serovar EnteritidisChina Center of Industrial culture Collection, China General Microbiological Culture Collection CenterChen et Al. 2016
BacteriaSalmonella Paratyphi KYAmerican Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaSchewanella Putrefaciens ATCC 8071American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaSerratia Entomophilia A1MO2n/aBlom et al., 2011
BacteriaSerratia MarcescensReduction of movement or death of Panagrelleus redivivus and Bursaphelenchus xylophilus.Gu et al., 2007
BacteriaSerratia Marcescens Db11n/aWeise et al., 2014
BacteriaSerratia Marcescens MG1n/aBlom et al., 2011
BacteriaSerratia Odorifera DSM 4582n/aWeise et al., 2014
BacteriaSerratia Plymuthica 4Rx13n/aWeise et al., 2014
BacteriaSerratia Plymuthica AS9n/aWeise et al., 2014
BacteriaSerratia Plymuthica HRO-C48n/aBlom et al., 2011
BacteriaSerratia Plymuthica IC14n/aBlom et al., 2011
BacteriaSerratia Proteamaculans 568n/aWeise et al., 2014
BacteriaSerratia Proteamaculans B5an/aBlom et al., 2011
BacteriaSerratia Spp. B2675n/aBruce et al., 2004
BacteriaSerratia Spp. B675n/aBruce et al., 2004
BacteriaShigella Flexneri CGCMCC 1.1868China Center of Industrial culture Collection, China General Microbiological Culture Collection CenterChen et Al. 2016
BacteriaShigella SonneiAmerican Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaShigella Sonnei ATCCV 25931American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaStaphylococcus Epidermidis ATCC 12228Lemfack et al. 2016
BacteriaStaphylococcus Epidermidis ATCC 14990clinical isolate,noseLemfack et al. 2016
BacteriaStaphylococcus Epidermidis DSM 3269clinical isolate,catheterLemfack et al. 2016
BacteriaStaphylococcus Epidermidis RP62Aclinical isolate,catheterLemfack et al. 2016
BacteriaStaphylococcus Haemolyticus CCM 2729clinical isolate,human skinLemfack et al. 2016
BacteriaStaphylococcus Saccharolyticus B5709clinical isolateLemfack et al. 2016
BacteriaStaphylococcus Schleiferi DSMZ 4807clinical isolateLemfack et al. 2016
BacteriaStaphylococcus Schleiferi H34clinical isolateLemfack et al. 2016
BacteriaStaphylococcus Schleiferi V431clinical isolateLemfack et al. 2016
BacteriaStaphylococcus Warneri CCM 2730clinical isolate,human skinLemfack et al. 2016
BacteriaStenotrophomonas MaltophiliaReduction of movement or death of Panagrelleus redivivus and Bursaphelenchus xylophilus.Gu et al., 2007
BacteriaStenotrophomonas Rhizophilla Ep10-p69n/aBlom et al., 2011
BacteriaStreptococcus Agalactiae ATCC 27541American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaStreptococcus Thermophilus ATCC 14485American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaStreptomyces LateritiusReduction of movement or death of Panagrelleus redivivus and Bursaphelenchus xylophilus.Gu et al., 2007
Fungi Aspergillus Sp.Takeuchi et al. 2015
Fungi Fusarium SolaniTakeuchi et al. 2013
FungiGanoderma Lucidumnasaprophytic on deciduous treesZiegenbein et al., 2006
Fungi Penicillium SppTakeuchi et al. 2016
FungiPleurotus CystidiosusnanaUsami et al., 2014
FungiPleurotus Eryngii Var. TuoliensisnanaUsami et al., 2014
FungiSpongiporus Leucomallellusnasaprophytic mostly on wet, old pinesZiegenbein et al., 2006
FungiTrichoderma Atroviridenawater damaged buildings, BelgiumPolizzi et al., 2012
FungiTrichoderma Atroviride ATCC 74058n/aStoppacher et al., 2010
FungiTrichoderma ReeseiCrutcher et al., 2013
FungiTrichoderma VirensCrutcher et al., 2013
FungiTuber Aestivumn/aAgricultural Centre of Castilla and León Community (Monasterio de la Santa Espina, Valladolid, Spain) and Navaleno (Soria, Spain).Diaz et al., 2003
FungiTuber BorchiiNoneT. melanosporum, T. borchii were collected from northern Italy (Piedmont) and T. indicum from Yunnan and Sichuan Provinces (China). Splivallo et al., 2007b
FungiTuber Melanosporumn/aAgricultural Centre of Castilla and León Community (Monasterio de la Santa Espina, Valladolid, Spain) and Navaleno (Soria, Spain).Diaz et al., 2003
BacteriaSerratia Sp.Might be involved in inhibition of fungal growth.Schulz and Dickschat, 2007
BacteriaStigmatella Aurantiaca DW4/3-1n/aDickschat et al., 2005_5
BacteriaStigmatella Aurantiaca Sg A15n/aDickschat et al., 2005_5
BacteriaWautersiella Falsenii AM238687Nematicidal activitycow dungXU et al., 2015
BacteriaXanthomonas Campestris Pv. Vesicatoria 85-10n/aWeise et al., 2012
Method
KingdomSpeciesGrowth MediumApplied MethodVerification
BacteriaBacillus Amyloliquefaciens IN937aMurashige and Skoog mediumcapillary GC;GC/MSYes
BacteriaBacillus Cereus ATCC 14570TS brothGC-MS SPMEyes
BacteriaBacillus Polymyxa ATCC 842TS brothGC-MS SPMEyes
BacteriaBacillus Simplexn/an/a
BacteriaBacillus Subtilisn/an/a
BacteriaBacillus Subtilis GB03Murashige and Skoog mediumcapillary GC;GC/MSYes
BacteriaBacillus Weihenstephanensisn/an/a
BacteriaBurkholderia Ambifaria LMG 17828Luria-Bertani medium, Malt Extractn/a
BacteriaBurkholderia Ambifaria LMG 19182Luria-Bertani medium, Malt Extractn/a
BacteriaBurkholderia Andropogonis LMG 2129LB and AngleHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Caribensis LMG 18531LB and AngleHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Caryophylli LMG 2155MR-VPHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Cepacia LMG 1222MR-VPHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Cepacia LMG 1222 358MR-VPHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)Yes
BacteriaBurkholderia Fungorum LMG 16225LB and MR-VPHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Gladioli LMG 2216LB, MR-VP and MSHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Glathei LMG 14190LB Headspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Glumae LMG 2196MR-VPHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Graminis LMG 18924LB and MR-VPHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Hospita LMG 20598LB and MR-VPHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Lata LMG 22485AngleHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Lata LMG 6993MR-VPHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Phenazinium LMG 2247LB and MR-VPHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Phenoliruptrix LMG 22037LBHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Phytofirmans LMG 22487LB and MR-VPHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Pyrrocinia LMG 21822LB and MR-VPHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Terricola LMG 20594LB and MR-VPHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Tropica LMG 22274LBHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Xenovorans LMG 21463LBHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaChromobacterium Violaceum CV0LB and MR-VPHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaCitrobacter Freundii ATCC 33128TS brothGC-MS SPMEyes
BacteriaCorynebacterium Accolens V12028brain heart infusion mediumPorapak / GC/MSno
BacteriaCorynebacterium Jeikeum V12131brain heart infusion mediumPorapak / GC/MSno
BacteriaCorynebacterium Jeikeum V12209brain heart infusion mediumPorapak / GC/MSno
BacteriaCorynebacterium Minutissimum ATCC 23348brain heart infusion mediumPorapak / GC/MSno
BacteriaCorynebacterium Striatum RV2brain heart infusion mediumPorapak / GC/MSno
BacteriaCorynebacterium Striatum V6894brain heart infusion mediumPorapak / GC/MSno
BacteriaEnterobacter Aerogenes ATCC 13048TS brothGC-MS SPMEyes
BacteriaEnterobacter Aerogenes KY2TS brothGC-MS SPMEyes
BacteriaEnterobacter Cloacae ATCC 13047TS brothGC-MS SPMEyes
BacteriaEnterococcus Durans ATCC 19432TS brothGC-MS SPMEyes
BacteriaEnterococcus Faecium ATCC 19434TS brothGC-MS SPMEyes
BacteriaEscherichia ColiTS brothHS-SPME/GC-MS
BacteriaEscherichia Coli ATCC 25922TS brothGC-MS SPMEyes
BacteriaEscherichia Coli O157:H7Trypticase Soy Broth (TSB)HS-SPME/'GC-MSno
BacteriaEscherichia Coli OP50MR-VPHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaKlebsiella PneumoniaeTS brothHS-SPME/GC-MS
BacteriaLactobacillus Lactis ATCC 11454TS brothGC-MS SPMEyes
BacteriaLactobacillus Lactis ATCC 11955TS brothGC-MS SPMEyes
BacteriaLactobacillus Rhamnosus LSL 222curd-based broth mediumGC/MSYes
BacteriaLeuconostoc Mesenteroides ATCC 8086TS brothGC-MS SPMEyes
BacteriaListeria Monocytogenes ATCC 19115TS brothGC-MS SPMEyes
BacteriaMicrobacterium Oxydansn/an/a
BacteriaPandoraea Norimbergensis LMG 18379LB and MR-VPHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaPseudomonas Aeruginosa PA01minimal medium/ Brian mediumSPME-GC/MSNo
BacteriaPseudomonas Aurantiacan/an/a
BacteriaPseudomonas Brassicacearum USB2101King's B AgarSPME-GC/MSNo
BacteriaPseudomonas Brassicacearum USB2102King's B AgarSPME-GC/MSNo
BacteriaPseudomonas Brassicacearum USB2104King's B AgarSPME-GC/MSNo
BacteriaPseudomonas Chlororaphisn/an/a
BacteriaPseudomonas Chlororaphis 450LB mediumSPME-GC/MSNo
BacteriaPseudomonas Corrugaten/an/a
BacteriaPseudomonas Fluorescensn/an/a
BacteriaPseudomonas Fluorescens ATCC 13525TS brothGC-MS SPMEyes
BacteriaPseudomonas Fluorescens WCS 417rLB and MR-VPHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaPseudomonas Jessenii S34LB mediumGC/MSYes
BacteriaPseudomonas Putida ISOfLB and MR-VPHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaPseudomonas Putida USB2105King's B AgarSPME-GC/MSNo
BacteriaPseudomonas Tolaasii NCPPB 2192KBSPME-GC
BacteriaPseudomonas Tolaasii USB66KBSPME-GC
BacteriaSalmonella Enterica Serovar EnteritidisTrypticase Soy Broth (TSB)HS-SPME/'GC-MSno
BacteriaSalmonella Paratyphi KYTS brothGC-MS SPMEyes
BacteriaSchewanella Putrefaciens ATCC 8071TS brothGC-MS SPMEyes
BacteriaSerratia Entomophilia A1MO2LB and MSHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaSerratia Marcescensn/an/a
BacteriaSerratia Marcescens Db11NBIIHeadspace trapping/ GC-MS
BacteriaSerratia Marcescens MG1LB, MS, Angle and MR-VPHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaSerratia Odorifera DSM 4582NBIIHeadspace trapping/ GC-MS
BacteriaSerratia Plymuthica 4Rx13NBIIHeadspace trapping/ GC-MS
BacteriaSerratia Plymuthica AS9NBIIHeadspace trapping/ GC-MS
BacteriaSerratia Plymuthica HRO-C48LB, MS and MR-VPHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaSerratia Plymuthica IC14LB, MS, Angle and MR-VPHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaSerratia Proteamaculans 568NBIIHeadspace trapping/ GC-MS
BacteriaSerratia Proteamaculans B5aLB, MS and MR-VPHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaSerratia Spp. B2675n/an/a
BacteriaSerratia Spp. B675n/an/a
BacteriaShigella Flexneri CGCMCC 1.1868Trypticase Soy Broth (TSB)HS-SPME/'GC-MSno
BacteriaShigella SonneiTS brothGC-MS Super Qyes
BacteriaShigella Sonnei ATCCV 25931TS brothGC-MS SPMEyes
BacteriaStaphylococcus Epidermidis ATCC 12228brain heart infusion mediumPorapak / GC/MSno
BacteriaStaphylococcus Epidermidis ATCC 14990brain heart infusion mediumPorapak / GC/MSno
BacteriaStaphylococcus Epidermidis DSM 3269brain heart infusion mediumPorapak / GC/MSno
BacteriaStaphylococcus Epidermidis RP62Abrain heart infusion mediumPorapak / GC/MSno
BacteriaStaphylococcus Haemolyticus CCM 2729brain heart infusion mediumPorapak / GC/MSno
BacteriaStaphylococcus Saccharolyticus B5709brain heart infusion mediumPorapak / GC/MSno
BacteriaStaphylococcus Schleiferi DSMZ 4807brain heart infusion mediumPorapak / GC/MSno
BacteriaStaphylococcus Schleiferi H34brain heart infusion mediumPorapak / GC/MSno
BacteriaStaphylococcus Schleiferi V431brain heart infusion mediumPorapak / GC/MSno
BacteriaStaphylococcus Warneri CCM 2730brain heart infusion mediumPorapak / GC/MSno
BacteriaStenotrophomonas Maltophilian/an/a
BacteriaStenotrophomonas Rhizophilla Ep10-p69LBHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaStreptococcus Agalactiae ATCC 27541TS brothGC-MS SPMEyes
BacteriaStreptococcus Thermophilus ATCC 14485TS brothGC-MS SPMEyes
BacteriaStreptomyces Lateritiusn/an/a
Fungi Aspergillus Sp.no
Fungi Fusarium Solanino
FungiGanoderma LucidumnaGC/MSNo
Fungi Penicillium Sppno
FungiPleurotus CystidiosusnaGC/MS, GC-O, AEDANo
FungiPleurotus Eryngii Var. TuoliensisnaGC/MS, GC-O, AEDANo
FungiSpongiporus LeucomallellusnaGC/MSNo
FungiTrichoderma Atroviridemalt extract agar; potato dextrose agar; water agar; yeast extract agar; Czapek agarSPME-GC/MSNo
FungiTrichoderma Atroviride ATCC 74058Potato dextrose agarHS-SPME/GC-MS
FungiTrichoderma ReeseiPotato dextrose agarHS-SPME/GC-MS no
FungiTrichoderma VirensPotato dextrose agarHS-SPME/GC-MS no
FungiTuber Aestivumn/an/a
FungiTuber BorchiiNoneNoneYes
FungiTuber Melanosporumn/an/a
BacteriaSerratia Sp.n/an/a
BacteriaStigmatella Aurantiaca DW4/3-1n/an/a
BacteriaStigmatella Aurantiaca Sg A15n/an/a
BacteriaWautersiella Falsenii AM238687LB liquidSPME-GC/MS
BacteriaXanthomonas Campestris Pv. Vesicatoria 85-10NBIIClosed airflow-system/GC-MS and PTR-MS


Decan-1-ol

Mass-Spectra

Compound Details

Synonymous names
Nonylcacarbinol
DECYLALCOHOL
Nonylcarbinol
MWKFXSUHUHTGQN-UHFFFAOYSA-N
Panorama
Royaltac
Caprinic alcohol
Contak
Decanol
Decylic alcohol
Delete
n-Nonylcarbinol
Nonyl acarbinol
Antak
Capric alcohol
Decyl alcohol
n-decylalcohol
2-octylethylether
Primary decyl alcohol
1-Hydroxydecane
n-Decanol
Sprout-Off
AC1L1QFJ
AC1Q7CPP
DE1
n-Decatyl alcohol
n-Decyl alcohol
1-DECANOL
Alcohol C10
C10 alcohol
Kalcohl 10H
Royaltac-85
Conol 10N
Lorol C10
Sipol L10
1-Decanol, analytical standard
AC1Q2W84
Alcohols, C10-terpenoidal
Alfol 10
Decyl n- alcohol
Epal 10
KSC175K8J
Lorol 22
M251
Royaltac M-2
ACMC-1C43K
C10H22O
CHEMBL25363
Decan-1-ol
Decanol (mixed isomers)
Decanol (VAN)
SCHEMBL21645
Agent 504
Alcohol C-10
Alfol 810
BDBM36280
C 10 alcohol
CCRIS 654
CTK0H5584
D0031
DECYL ALCOHOL (mixed isomers)
Epal 810
HMDB11624
BIDD:ER0304
Dytol S-91
Emtrol 1601
Emtrol 1630B
Kalcohl 1098
RP22205
89V4LX791F
C01633
C8-10 Alcohols
DECYL, N- ALCOHOL
Fatty alcohol(C10)
HSDB 1072
n-Decan-1-ol
T 148
T-148
Tobacco sucker control agent 148
Tobacco sucker control agent 504
WLN: Q10
1-Decanol (natural)
AK163971
Decanol-(1)
DTXSID7021946
FEMA Number 2365
LP086706
LS-2655
NSC406313
OR001680
SBB059908
STL280520
UNII-6X61I5U3A4 component MWKFXSUHUHTGQN-UHFFFAOYSA-N
A802549
Capric alcohol, United States Pharmacopeia (USP) Reference Standard
CHEBI:28903
DSSTox_CID_1946
UNII-89V4LX791F
ZINC1529247
1-Decanol, >=99%
AN-43122
ANW-16446
Caswell No. 275A
DSSTox_GSID_21946
LS-59425
SC-19069
TRA0002445
1-Decanol, 99%
Alcohols, C8-10
Alcohols, C9-11
C-58513
DSSTox_RID_76419
LMFA05000062
MFCD00004747
Nacol 10-99
ACM36729585
AI3-02173
NSC 406313
NSC-406313
RTR-002412
ST24046421
ST51046175
TR-002412
AKOS000120014
EPA Pesticide Chemical Code 079038
J-002747
BRN 1735221
FEMA No. 2365
FT-0607691
I14-17880
Tox21_202186
Tox21_300078
112-30-1
F0001-0257
T-148 (VAN)
MCULE-7579570663
NCGC00163764-01
NCGC00163764-02
NCGC00163764-03
NCGC00163764-04
NCGC00254141-01
NCGC00259735-01
CAS-112-30-1
EINECS 203-956-9
EINECS 253-173-1
EINECS 287-621-2
36729-58-5
66455-17-2
70084-71-8
118374-94-0
1-decanol (ACD/Name 4.0)
1-Decanol, >=98%, FCC, FG
MolPort-001-792-070
1-Decanol, Selectophore(TM), >=98.0%
26303-54-8 (aluminum salt)
37909-25-4 (magnesium salt)
4-01-00-01815 (Beilstein Handbook Reference)
476960DD-B0CE-4D91-B27C-A9490A89B065
decan-1-ol, capric alcohol, decan-1-ol, decyl alcohol, alcohol C10, 1-decanol
InChI=1/C10H22O/c1-2-3-4-5-6-7-8-9-10-11/h11H,2-10H2,1H
Microorganism:

Yes

IUPAC namedecan-1-ol
SMILESCCCCCCCCCCO
InchiInChI=1S/C10H22O/c1-2-3-4-5-6-7-8-9-10-11/h11H,2-10H2,1H3
FormulaC10H22O
PubChem ID8174
Molweight158.285
LogP3.47
Atoms33
Bonds32
H-bond Acceptor1
H-bond Donor1
Chemical ClassificationAlcohols Alcohol

mVOC Specific Details

Volatilization
The Henry's Law constant for 1-decanol is reported as 4.78X10-5 atm-cu m/mole(1). This Henry's Law constant indicates that 1-decanol is expected to volatilize from water surfaces(2). Based on this Henry's Law constant, the volatilization half-life from a model river (1 m deep, flowing 1 m/sec, wind velocity of 3 m/sec)(2) is estimated as 27 hours(SRC). The volatilization half-life from a model lake (1 m deep, flowing 0.05 m/sec, wind velocity of 0.5 m/sec)(2) is estimated as 12 days(SRC). 1-Decanol's Henry's Law constant indicates that volatilization from moist soil surfaces may occur(SRC). 1-Decanol is not expected to volatilize from dry soil surfaces(SRC) based upon a vapor pressure of 8.51X10-3 mm Hg(3).
Literature: (1) Yaws CL et al; Waste Manag 17: 541-7 (1997) (2) Lyman WJ et al; Handbook of Chemical Property Estimation Methods. Washington, DC: Amer Chem Soc pp. 15-1 to 15-29 (1990) (3) Daubert TE, Danner RP; Physical & Thermodynamic Properties of Pure Chemicals: Data Compilation. New York, NY: Hemisphere Pub Corp (1989)
Soil Adsorption
The log Koc of 1-decanol has been reported as 2.59(1). According to a classification scheme(2), this log Koc value suggests that 1-decanol is expected to have moderate mobility in soil.
Literature: (1) Schuurmann G et al; Environ Sci Technol 40:7005-11 (2006) (2) Swann RL et al; Res Rev 85: 17-28 (1983)
Vapor Pressure
PressureReference
0.00851 mm Hg at 25 deg CDaubert, T.E., R.P. Danner. Physical and Thermodynamic Properties of Pure Chemicals Data Compilation. Washington, D.C.: Taylor and Francis, 1989., p. 4630
MS-Links
1D-NMR-Links

Microorganisms emitting the compound
KingdomSpeciesBiological FunctionOrigin/HabitatReference
BacteriaCitrobacter Freundii ATCC 33128American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaClostridium Difficileoutbreak 2006 UKRees et al 2016
BacteriaEnterobacter Aerogenes ATCC 13048American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaEnterobacter Aerogenes KY2American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaEnterobacter Cloacae ATCC 13047American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaEscherichia Colin/aTait et al., 2014
BacteriaEscherichia Coli ATCC 25922American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaKlebsiella Pneumoniaen/aTait et al., 2014
BacteriaLeuconostoc Mesenteroides ATCC 8086American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaSalmonella Paratyphi KYAmerican Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaSalmonella Typhimurium ATCC 14082American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaSerratia Marcescens Db11n/aWeise et al., 2014
BacteriaSerratia Odorifera DSM 4582n/aWeise et al., 2014
BacteriaSerratia Plymuthica AS9n/aWeise et al., 2014
BacteriaSerratia Proteamaculans 568n/aWeise et al., 2014
BacteriaShigella Sonnei ATCCV 25931American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaStaphylococcus Aureusn/aTait et al., 2014
FungiAspergillus VersicolorSchleibinger et al.,2005
Fungi Lasiodioplodia PseudotheobromaeOliveira et al. 2018
BacteriaEnterobacter Cloacaen/aArnold and Senter, 1998
BacteriaL Isteria Monocytogenesn/aArnold and Senter, 1998
BacteriaPseudomonas AurantiacaInhibition of mycelium growth and spore germinationFernando et al., 2005
BacteriaPseudomonas ChlororaphisInhibition of mycelium growth and spore germinationFernando et al., 2005
BacteriaPseudomonas CorrugateInhibition of mycelium growth and spore germinationFernando et al., 2005
BacteriaPseudomonas FluorescensInhibition of mycelium growth and spore germinationFernando et al., 2005
BacteriaSalmonella Enteritidisn/aArnold and Senter, 1998
BacteriaBacillus Strain D13antibacterialsoil Malaysia and Tibet, China General Microbial culture center CGMCCXie et al. 2016
Method
KingdomSpeciesGrowth MediumApplied MethodVerification
BacteriaCitrobacter Freundii ATCC 33128TS brothGC-MS SPMEyes
BacteriaClostridium Difficilebrain heart infusionGCxGC-TOF-MSyes
BacteriaEnterobacter Aerogenes ATCC 13048TS brothGC-MS SPMEyes
BacteriaEnterobacter Aerogenes KY2TS brothGC-MS SPMEyes
BacteriaEnterobacter Cloacae ATCC 13047TS brothGC-MS SPMEyes
BacteriaEscherichia ColiBHI Broth/ TS Broth/Glucose EF base brothGC-MS /Polar and non-polar GC Column
BacteriaEscherichia Coli ATCC 25922TS brothGC-MS SPMEyes
BacteriaKlebsiella PneumoniaeBHI Broth/ TS Broth/Glucose EF base brothGC-MS /Polar and non-polar GC Column
BacteriaLeuconostoc Mesenteroides ATCC 8086TS brothGC-MS SPMEyes
BacteriaSalmonella Paratyphi KYTS brothGC-MS SPMEyes
BacteriaSalmonella Typhimurium ATCC 14082TS brothGC-MS SPMEyes
BacteriaSerratia Marcescens Db11NBIIHeadspace trapping/ GC-MS
BacteriaSerratia Odorifera DSM 4582NBIIHeadspace trapping/ GC-MS
BacteriaSerratia Plymuthica AS9NBIIHeadspace trapping/ GC-MS
BacteriaSerratia Proteamaculans 568NBIIHeadspace trapping/ GC-MS
BacteriaShigella Sonnei ATCCV 25931TS brothGC-MS SPMEyes
BacteriaStaphylococcus AureusBHI Broth/ TS Broth/Glucose EF base brothGC-MS /Polar and non-polar GC Column
FungiAspergillus Versicoloringrain wallpaperGC/MS-SIMYes
Fungi Lasiodioplodia Pseudotheobromaeno
BacteriaEnterobacter CloacaeHS-SPME/GC-MS
BacteriaL Isteria MonocytogenesHS-SPME/GC-MS
BacteriaPseudomonas Aurantiacan/an/a
BacteriaPseudomonas Chlororaphisn/an/a
BacteriaPseudomonas Corrugaten/an/a
BacteriaPseudomonas Fluorescensn/an/a
BacteriaSalmonella EnteritidisHS-SPME/GC-MS
BacteriaBacillus Strain D13LBSPME-GC-MSyes


Dodecane

Mass-Spectra

Compound Details

Synonymous names
Duodecane
DODECANE
SNRUBQQJIBEYMU-UHFFFAOYSA-N
Dihexyl
lauryl
dodecan
Bihexyl
Dodekan
Dodecane, analytical standard
N-Dodecan
n-Dodecane
Normal Paraffin M
D12
AC1L1QG7
Adakane 12
Undecane, methyl-
Norpar 13
U215
KSC175C3D
NSC8714
CHEMBL30959
Dodecane, 99%
CCRIS 661
S0284
CTK0H5131
D0968
n-Dodecan [German]
HSDB 5133
Dodecane, certified reference material, TraceCERT(R)
Dodecane, anhydrous, >=99%
11A386X1QH
C08374
WLN: 12H
LP003955
LP086061
NSC 8714
NSC-8714
STL280320
Jsp000956
DTXSID0026913
UNII-11A386X1QH
ZINC1531085
C12-14-alkanes
DSSTox_CID_6913
C12-n-alkane;
CHEBI:28817
DSSTox_GSID_26913
ANW-16463
AN-22698
LS-63438
DA-16704
SC-78851
EBD2203394
TRA0025406
DSSTox_RID_78250
UNII-FW7807707B component SNRUBQQJIBEYMU-UHFFFAOYSA-N
MFCD00008969
LMFA11000004
ACN-034829
RTR-002427
TR-002427
CH3(CH2)10CH3
AKOS015904160
Alkanes, C10-14
J-002767
FT-0625568
Dodecane, ReagentPlus(R), >=99%
BRN 1697175
I14-17881
Tox21_303615
112-40-3
I14-107531
Dodecane, technical, >=90% (GC)
NCGC00257481-01
MCULE-3947157412
NCGC00166012-01
CH3-[CH2]10-CH3
EINECS 203-967-9
EINECS 297-629-8
EINECS 300-199-7
CAS-112-40-3
Ba 51-090453
n-Dodecane, 99% 100ml
93924-07-3
93685-81-5
EC 300-199-7
MolPort-001-783-725
Density Standard 749 kg/m3, H&D Fitzgerald Ltd. Quality
Hydrocarbons, C4, 1,3-butadiene-free, polymd., triisobutylene fraction, hydrogenated
1310FACD-F2BF-4FD7-BC20-B21DF06EDE79
4-01-00-00498 (Beilstein Handbook Reference)
InChI=1/C12H26/c1-3-5-7-9-11-12-10-8-6-4-2/h3-12H2,1-2H
Microorganism:

Yes

IUPAC namedodecane
SMILESCCCCCCCCCCCC
InchiInChI=1S/C12H26/c1-3-5-7-9-11-12-10-8-6-4-2/h3-12H2,1-2H3
FormulaC12H26
PubChem ID8182
Molweight170.34
LogP5.8
Atoms38
Bonds37
H-bond Acceptor0
H-bond Donor0
Chemical ClassificationAlkanes

mVOC Specific Details

Volatilization
The Henry's Law constant for dodecane is estimated as 8.2 atm-cu m/mole(SRC) derived from its vapor pressure, 0.135 mm Hg(1), and water solubility, 3.7X10-3 mg/L(2). This Henry's Law constant indicates that dodecane is expected to volatilize rapidly from water surfaces(3). Based on this Henry's Law constant, the volatilization half-life from a model river (1 m deep, flowing 1 m/sec, wind velocity of 3 m/sec)(3) is estimated as 4 hours(SRC). The volatilization half-life from a model lake (1 m deep, flowing 0.05 m/sec, wind velocity of 0.5 m/sec)(3) is estimated as 5 days(SRC). However, volatilization from water surfaces is expected to be attenuated by adsorption to suspended solids and sediment in the water column. The estimated volatilization half-life from a model pond is 32 days if adsorption is considered(4). Dodecane's estimated Henry's Law constant indicates that volatilization from moist soil surfaces may occur(SRC). Dodecane is not expected to volatilize from dry soil surfaces(SRC) based upon its vapor pressure(1).
Literature: (1) Kertes AS; Hydrocarbons with Water and Seawater Part II. Hydrocarbons C8 to C31. Solubility Data Series Vol 38. Shaw PC, ed., London, UK: Pergamon Press, 553 pp (1989) (2) Daubert TE, Danner RP; Physical and Thermodynamic Properties of Pure Chemicals: Data Compilation. Design Inst Phys Prop Data, Amer Inst Chem Eng. New York, NY: Hemisphere Pub Corp 5 Vol (1994) (3) Lyman WJ et al; Handbook of Chemical Property Estimation Methods. Washington, DC: Amer Chem Soc pp. 15-1 to 15-29 (1990) (4) US EPA; EXAMS II Computer Simulation (1987)
Soil Adsorption
Using a structure estimation method based on molecular connectivity indices(1), the Koc of dodecane can be estimated to be 4800(SRC). According to a classification scheme(2), this estimated Koc value suggests that dodecane is expected to have slight mobility in soil. In a study conducted to mimic a spill of 1.27 L/sq m, dodecane (present in JP-4 jet fuel) was transported to a depth of 10 cm; at the end of the study (134 days), it was no longer detected(3). In another study, it was determined that dodecane is slowly intercalated into well dried montmorillonite clay(4).
Literature: (1) US EPA; Estimation Program Interface (EPI) Suite. Ver. 4.1. Nov, 2012. Available from, as of Aug 25, 2016: http://www2.epa.gov/tsca-screening-tools (2) Swann RL et al; Res Rev 85: 17-28 (1983) (3) Ross WD et al; Environmental Fate and Biological Consequences of Chemicals Related to Air Force Activities. NTIS AD-A121 288/5. Dayton, OH: Monsanto Res Corp. pp. 173 (1982) (4) Eltantawy IM, Arnold PW; Nature (London) Phys Sci 237: 123-25 (1972)
Vapor Pressure
PressureReference
0.135 mm Hg at 25 deg CDaubert, T.E., R.P. Danner. Physical and Thermodynamic Properties of Pure Chemicals Data Compilation. Washington, D.C.: Taylor and Francis, 1989.
MS-Links

Microorganisms emitting the compound
KingdomSpeciesBiological FunctionOrigin/HabitatReference
BacteriaStenotrophomonas MaltophiliaclinicPreti., 2009
BacteriaAlcaligenes Faecalisn/aZou et al., 2007
BacteriaArthrobacter Nitroguajacoliusn/aZou et al., 2007
BacteriaAzospirillum Brasilense Cdpromotion of performance of Chlorella sorokiniana Shihculture collection DSMZ 1843Amavizca et al. 2017
BacteriaBacillus Amyloliquefaciens FZB42Agriculture University of Nanjing, ChinaTahir et al. 2021
BacteriaBacillus Amyloliquefaciens IN937an/aLee et al., 2012
BacteriaBacillus Artrophaeus LSSC22Agriculture University of Nanjing, ChinaTahir et al. 2034
BacteriaBacillus Pumilus ES4promotion of performance of Chlorella sorokiniana ShihAmavizca et al. 2017
BacteriaBacillus Simplexn/aGu et al., 2007
BacteriaBacillus Spp.n/aZou et al., 2007
BacteriaBacillus Subtilisn/aGu et al., 2007
BacteriaBacillus Subtilis GB03n/aLee et al., 2012
BacteriaBacillus Weihenstephanensisn/aGu et al., 2007
BacteriaEscherichia Coli DH5apromotion of performance of Chlorella sorokiniana ShihAmavizca et al. 2017
BacteriaLysobacter Gummosusn/aZou et al., 2007
BacteriaMicrobacterium Oxydansn/aGu et al., 2007
BacteriaPaenibacillus Polymyxa E681n/aLee et al., 2012
BacteriaPseudomonas Aurantiacan/aFernando et al., 2005
BacteriaPseudomonas Chlororaphisn/aFernando et al., 2005
BacteriaPseudomonas Corrugaten/aFernando et al., 2005
BacteriaPseudomonas Fluorescensn/aFernando et al., 2005
BacteriaPseudomonas Simiae AUnarhizosphere of a soybean field in the province of Rajasthan, IndiaVaishnav et al., 2016
BacteriaSerratia Marcescensn/aGu et al., 2007
BacteriaSporosarcina Ginsengisolin/aZou et al., 2007
BacteriaStenotrophomonas Maltophilian/aZou et al., 2007
BacteriaStreptomyces Lateritiusn/aGu et al., 2007
FungiFusarium Graminearum 15AcDONn/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON 1001tan/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON ZFR 29n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_4n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_5n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_6n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_7n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_8n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_9n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON 1002tn/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON 11791n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON 1509n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON 8046n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON NRRL38369n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON NRRL6394n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON ZFR 15n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON ZFR 37n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON ZFR 51n/aBusko et al., 2014
FungiFusarium Graminearum NIVn/aBusko et al., 2014
FungiFusarium Graminearum NIV ZFR 119n/aBusko et al., 2014
FungiFusarium Graminearum NIV ZFR 23n/aBusko et al., 2014
FungiFusarium Graminearum NIV ZFR 48n/aBusko et al., 2014
FungiFusarium Graminearum NIV_5n/aBusko et al., 2014
FungiFusarium Graminearum NIV_6n/aBusko et al., 2014
FungiFusarium Graminearum NIV_7n/aBusko et al., 2014
FungiFusarium Graminearum NIV_8n/aBusko et al., 2014
FungiFusarium Graminearum NIV_9n/aBusko et al., 2014
FungiPenicillium Crustosumcompost Fischer et al. 2058
Method
KingdomSpeciesGrowth MediumApplied MethodVerification
BacteriaStenotrophomonas MaltophiliaBlood agar/chocolate blood agaHS-SPME/GC-MS no
BacteriaAlcaligenes Faecalisn/an/a
BacteriaArthrobacter Nitroguajacoliusn/an/a
BacteriaAzospirillum Brasilense CdTSASPME-GCno
BacteriaBacillus Amyloliquefaciens FZB42LBSPME-GC-MSno
BacteriaBacillus Amyloliquefaciens IN937aTryptic soy agarSPME coupled with GC-MS
BacteriaBacillus Artrophaeus LSSC22LBSPME-GC-MSno
BacteriaBacillus Pumilus ES4TSASPME-GCno
BacteriaBacillus Simplexn/an/a
BacteriaBacillus Spp.n/an/a
BacteriaBacillus Subtilisn/an/a
BacteriaBacillus Subtilis GB03Tryptic soy agarSPME coupled with GC-MS
BacteriaBacillus Weihenstephanensisn/an/a
BacteriaEscherichia Coli DH5aTSASPME-GCno
BacteriaLysobacter Gummosusn/an/a
BacteriaMicrobacterium Oxydansn/an/a
BacteriaPaenibacillus Polymyxa E681Tryptic soy agarSPME coupled with GC-MS
BacteriaPseudomonas Aurantiacan/an/a
BacteriaPseudomonas Chlororaphisn/an/a
BacteriaPseudomonas Corrugaten/an/a
BacteriaPseudomonas Fluorescensn/an/a
BacteriaPseudomonas Simiae AUNutrient broth; King's B agarGC/MSNo
BacteriaSerratia Marcescensn/an/a
BacteriaSporosarcina Ginsengisolin/an/a
BacteriaStenotrophomonas Maltophilian/an/a
BacteriaStreptomyces Lateritiusn/an/a
FungiFusarium Graminearum 15AcDONyeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON 1001tayeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON ZFR 29yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_4yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_5yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_6yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_7yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_8yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_9yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON 1002tyeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON 11791yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON 1509yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON 8046yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON NRRL38369yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON NRRL6394yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON ZFR 15yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON ZFR 37yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON ZFR 51yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIVyeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV ZFR 119yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV ZFR 23yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV ZFR 48yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV_5yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV_6yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV_7yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV_8yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV_9yeast extract sucrose agarSPME/GC-MS
FungiPenicillium Crustosumyest extract sucroseTenax/GC-MSno


Pyrazine

Mass-Spectra

Compound Details

Synonymous names
Paradiazine
KYQCOXFCLRTKLS-UHFFFAOYSA-N
PYRAZINE
pyrazine compounds
pyrazinyl
Piazine
pyrazin
pyrazine mixture
Pyrazine, analytical standard
p-Diazine
AC1L1SOJ
mu-pyrazine;
AC1Q2AS8
1,4-Diazabenzene
9248AD
CHEMBL15797
PubChem16607
Pyrazine, >=99%
P0544
1,4-Diazin
1,4-Diazine
ACMC-20aj34
EBD21641
LS20037
RP08214
STR04325
VP40092
CCRIS 1331
BBL027560
DTXSID8049410
HE317353
HE332248
Jsp005543
NSC400221
OR010841
STL373491
UN 1325
A819731
CHEBI:30953
S-8056
ZINC1692439
2JKE371789
AJ-30139
AK-49657
AN-23350
ANW-75662
BP-10420
CJ-06509
CJ-28223
DSSTox_GSID_49410
KB-60055
SC-25978
BB_SC-7020
DSSTox_CID_29370
DSSTox_RID_83485
MFCD00006122
Pyrazine, >=99%, FG
ZINC01692439
DB-003769
LS-127556
NSC 400221
NSC-400221
ST24049051
TC-030267
TC-164407
UNII-2JKE371789
AKOS006223200
Q-100368
FT-0602797
EN300-72616
Tox21_202911
290-37-9
F0001-0907
MCULE-7343822850
NCGC00260457-01
CAS-290-37-9
EINECS 206-027-6
5729-EP0930075A1
5729-EP2269975A2
5729-EP2269978A2
5729-EP2269985A2
5729-EP2269990A1
5729-EP2269991A2
5729-EP2269997A2
5729-EP2270006A1
5729-EP2270010A1
5729-EP2270113A1
5729-EP2270505A1
5729-EP2272509A1
5729-EP2272517A1
5729-EP2272813A2
5729-EP2272827A1
5729-EP2272828A1
5729-EP2272832A1
5729-EP2272841A1
5729-EP2272849A1
5729-EP2272935A1
5729-EP2272972A1
5729-EP2272973A1
5729-EP2275395A2
5729-EP2275401A1
5729-EP2275404A1
5729-EP2275409A1
5729-EP2275411A2
5729-EP2275412A1
5729-EP2275415A2
5729-EP2277858A1
5729-EP2277872A1
5729-EP2280000A1
5729-EP2280008A2
5729-EP2280009A1
5729-EP2280011A1
5729-EP2281563A1
5729-EP2281815A1
5729-EP2281818A1
5729-EP2281819A1
5729-EP2281861A2
5729-EP2284149A1
5729-EP2284150A2
5729-EP2284151A2
5729-EP2284152A2
5729-EP2284153A2
5729-EP2284155A2
5729-EP2284156A2
5729-EP2284157A1
5729-EP2284164A2
5729-EP2284920A1
5729-EP2287140A2
5729-EP2287148A2
5729-EP2287150A2
5729-EP2287167A1
5729-EP2289871A1
5729-EP2292586A2
5729-EP2292590A2
5729-EP2292592A1
5729-EP2292593A2
5729-EP2292597A1
5729-EP2292604A2
5729-EP2292611A1
5729-EP2292619A1
5729-EP2292630A1
5729-EP2295419A2
5729-EP2295421A1
5729-EP2295426A1
5729-EP2295427A1
5729-EP2295429A1
5729-EP2295432A1
5729-EP2295433A2
5729-EP2295503A1
5729-EP2298731A1
5729-EP2298732A1
5729-EP2298750A1
5729-EP2298755A1
5729-EP2298767A1
5729-EP2298770A1
5729-EP2298774A1
5729-EP2298828A1
5729-EP2301534A1
5729-EP2301536A1
5729-EP2301538A1
5729-EP2301912A2
5729-EP2301913A1
5729-EP2301914A1
5729-EP2301916A2
5729-EP2301918A1
5729-EP2301921A1
5729-EP2301923A1
5729-EP2301926A1
5729-EP2301936A1
5729-EP2301937A1
5729-EP2301983A1
5729-EP2305219A1
5729-EP2305250A1
5729-EP2305637A2
5729-EP2305643A1
5729-EP2305648A1
5729-EP2305651A1
5729-EP2305652A2
5729-EP2305657A2
5729-EP2305658A1
5729-EP2305659A1
5729-EP2305688A1
5729-EP2305695A2
5729-EP2305696A2
5729-EP2305697A2
5729-EP2305698A2
5729-EP2308510A1
5729-EP2308562A2
5729-EP2308812A2
5729-EP2308832A1
5729-EP2308839A1
5729-EP2308848A1
5729-EP2308849A1
5729-EP2308850A1
5729-EP2308854A1
5729-EP2308863A1
5729-EP2308880A1
5729-EP2310391A1
5729-EP2311451A1
5729-EP2311455A1
5729-EP2311796A1
5729-EP2311797A1
5729-EP2311798A1
5729-EP2311799A1
5729-EP2311818A1
5729-EP2311825A1
5729-EP2311842A2
5729-EP2314295A1
5729-EP2314575A1
5729-EP2314582A1
5729-EP2314583A1
5729-EP2314587A1
5729-EP2314590A1
5729-EP2315303A1
5729-EP2315502A1
5729-EP2316450A1
5729-EP2316452A1
5729-EP2316459A1
5729-EP2316470A2
5729-EP2316832A1
5729-EP2316833A1
5729-EP2316905A1
5729-EP2316906A2
5729-EP2371810A1
5729-EP2371811A2
5729-EP2371812A1
5729-EP2371831A1
5729-EP2372804A1
5729-EP2378585A1
MolPort-000-158-413
Pyrazine, purum, >=98.0% (GC)
142241-EP2270010A1
142241-EP2292593A2
InChI=1/C4H4N2/c1-2-6-4-3-5-1/h1-4
Microorganism:

Yes

IUPAC namepyrazine
SMILESC1=CN=CC=N1
InchiInChI=1S/C4H4N2/c1-2-6-4-3-5-1/h1-4H
FormulaC4H4N2
PubChem ID9261
Molweight80.09
LogP-0.46
Atoms10
Bonds10
H-bond Acceptor2
H-bond Donor0
Chemical ClassificationPyrazines nitrogen compounds heterocyclic compounds

Microorganisms emitting the compound
KingdomSpeciesBiological FunctionOrigin/HabitatReference
BacteriaCitrobacter FreundiiAmerican Type Culture Collection Robacker and Bartelt 1997
BacteriaKlebsiella PneumoniaeAmerican Type Culture Collection Robacker and Bartelt 1997
BacteriaPseudomonas Aurantiacan/aFernando et al., 2005
BacteriaPseudomonas Chlororaphisn/aFernando et al., 2005
BacteriaPseudomonas Corrugaten/aFernando et al., 2005
BacteriaPseudomonas Fluorescensn/aFernando et al., 2005
FungiAspergillus VersicolorSchleibinger et al.,2005
FungiChaetomium GlobosumSchleibinger et al.,2005
FungiEurotium AmstelodamiSchleibinger et al.,2005
FungiPenicillium BrevicompactumSchleibinger et al.,2005
FungiSaccharomyces Cerevisiae Y1001n/aBruce et al., 2004
Method
KingdomSpeciesGrowth MediumApplied MethodVerification
BacteriaCitrobacter Freundiitryptic soy broth SPME, GC-MSyes
BacteriaKlebsiella Pneumoniaetryptic soy broth SPME, GC-MSyes
BacteriaPseudomonas Aurantiacan/an/a
BacteriaPseudomonas Chlororaphisn/an/a
BacteriaPseudomonas Corrugaten/an/a
BacteriaPseudomonas Fluorescensn/an/a
FungiAspergillus Versicoloringrain wallpaperGC/MS-SIMYes
FungiChaetomium Globosumingrain wallpaperGC/MS-SIMYes
FungiEurotium Amstelodamiingrain wallpaperGC/MS-SIMYes
FungiPenicillium Brevicompactumingrain wallpaperGC/MS-SIMYes
FungiSaccharomyces Cerevisiae Y1001n/an/a


Tridecan-2-one

Mass-Spectra

Compound Details

Synonymous names
TRIDECANONE
CYIFVRUOHKNECG-UHFFFAOYSA-N
Hendecyl methyl ketone
Mathyl undecyl kepoje
Methyl undecyl ketone
2-TRIDECANONE
2-Tridecankje
Tridecanone-2
2TD
Methyl n-undecyl ketone
ACMC-1AQBG
AC1L1XR9
Tridecan-2-one
H645
KSC270G4R
5Q35VHX26K
CTK1H0348
CHEMBL480097
NSC14763
SCHEMBL119126
2-Tridecanone (natural)
UNII-5Q35VHX26K
LP001439
LS-1417
DTXSID4022070
ZINC1653218
DSSTox_CID_2070
2-Tridecanone, 99%
CHEBI:77928
A832256
DSSTox_GSID_22070
EBD2211689
TRA0066951
AB1006140
CC-12003
NSC-14763
NSC 14763
KB-26232
AK-95269
AN-21550
AX8237196
ANW-33220
MFCD00008968
LMFA12000058
C-28181
DSSTox_RID_76479
DB-003333
TR-020580
ST51055389
AI3-04238
RTR-020580
ST24026018
AKOS009158653
W-105331
I14-6312
FT-0613458
FEMA No. 3388
2-Tridecanone, >=96%, FG
Tox21_301838
593-08-8
NCGC00255260-01
CAS-593-08-8
EINECS 209-784-0
MolPort-003-927-112
2-Tridecanone, purum, >=97.0% (GC)
Microorganism:

Yes

IUPAC nametridecan-2-one
SMILESCCCCCCCCCCCC(=O)C
InchiInChI=1S/C13H26O/c1-3-4-5-6-7-8-9-10-11-12-13(2)14/h3-12H2,1-2H3
FormulaC13H26O
PubChem ID11622
Molweight198.35
LogP4.81
Atoms40
Bonds39
H-bond Acceptor1
H-bond Donor0
Chemical ClassificationKetones Ketone

Microorganisms emitting the compound
KingdomSpeciesBiological FunctionOrigin/HabitatReference
BacteriaBacillus Amyloliquefaciens IN937atriggers induced systemic resistance (ISR) in ArabidopsisnaRyu et al., 2004
BacteriaBacillus Cereus B-569n/aBlom et al., 2011
BacteriaBacillus Subtilis GB03triggers induced systemic resistance (ISR) in ArabidopsisnaRyu et al., 2004
BacteriaBurkholderia Ambifaria LMG 17828n/aBurkholderia ambifaria LMG 17828 from root, LMG 19182 from rhizosphereGroenhagen et al., 2013
BacteriaBurkholderia Ambifaria LMG 19182n/aBurkholderia ambifaria LMG 17828 from root, LMG 19182 from rhizosphereGroenhagen et al., 2013
BacteriaBurkholderia Andropogonis LMG 2129n/aBlom et al., 2011
BacteriaBurkholderia Anthina LMG 20980n/aBlom et al., 2011
BacteriaBurkholderia Caledonica LMG 19076n/aBlom et al., 2011
BacteriaBurkholderia Fungorum LMG 16225n/aBlom et al., 2011
BacteriaBurkholderia Glathei LMG 14190n/aBlom et al., 2011
BacteriaBurkholderia Graminis LMG 18924n/aBlom et al., 2011
BacteriaBurkholderia Lata LMG 22485n/aBlom et al., 2011
BacteriaBurkholderia Phenoliruptrix LMG 22037n/aBlom et al., 2011
BacteriaCalothrix Parietina PCC 6303n/aHoeckelmann et al., 2004
BacteriaCitrobacter Freundii ATCC 33128American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaCorynebacterium Minutissimum ATCC 23348clinical isolate,trunk of adult femaleLemfack et al. 2016
BacteriaEnterobacter Aerogenes ATCC 13048American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaEnterobacter Aerogenes KY2American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaEnterobacter Cloacae ATCC 13047American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaEnterococcus Durans ATCC 19432American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaEnterococcus Faecium ATCC 19434American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaEscherichia ColiNational collection of type cultures (NCTC) UKTait et al., 2014
BacteriaEscherichia Coli ATCC 25922American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaEscherichia Coli OP50n/aBlom et al., 2011
BacteriaKlebsiella Pneumoniaen/aElgaali et al., 2002
BacteriaLactobacillus Lactis ATCC 11955American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaLeuconostoc Mesenteroides ATCC 8086American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaPhormidium Sp.n/aHoeckelmann et al., 2004
BacteriaPlectonema Notatumn/aHoeckelmann et al., 2004
BacteriaPseudomonas Aurantiacan/aFernando et al., 2005
BacteriaPseudomonas Brassicacearum USB2104narhizosphere of bean plants, southern ItalyGiorgio et al., 2015
BacteriaPseudomonas Chlororaphisn/aFernando et al., 2005
BacteriaPseudomonas Corrugaten/aFernando et al., 2005
BacteriaPseudomonas Fluorescensn/aFernando et al., 2005
BacteriaPseudomonas Putida USB2105narhizosphere of bean plants, southern ItalyGiorgio et al., 2015
BacteriaRivularia Sp.n/aHoeckelmann et al., 2004
BacteriaSalmonella Paratyphi KYAmerican Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaSerratia Marcescens Db11n/aWeise et al., 2014
BacteriaSerratia Marcescens MG1n/aBlom et al., 2011
BacteriaSerratia Odorifera DSM 4582n/aWeise et al., 2014
BacteriaSerratia Plymuthica 4Rx13n/aWeise et al., 2014
BacteriaSerratia Plymuthica HRO-C48n/aBlom et al., 2011
BacteriaSerratia Plymuthica IC14n/aBlom et al., 2011
BacteriaSerratia Proteamaculans 568n/aWeise et al., 2014
BacteriaShigella Sonnei ATCCV 25931American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaStreptococcus Thermophilus ATCC 14485American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
FungiPleurotus CystidiosusnanaUsami et al., 2014
BacteriaCytophaga-Flavobacterium-Bacteroides (CFB)n/aSchulz and Dickschat, 2007
BacteriaCytophaga-Flavobacterium-Bacteroides Group Strain ARK 10223n/aDickschat et al., 2005_3
BacteriaCytophaga-Flavobacterium-Bacteroides Group Strain ARK 10044n/aDickschat et al., 2005_3
BacteriaCytophaga-Flavobacterium-Bacteroides Group Strain ARK 10146n/aDickschat et al., 2005_3
BacteriaCytophaga-Flavobacterium-Bacteroides Group Strain ARK 10267n/aDickschat et al., 2005_3
BacteriaPseudochrobactrum Saccharolyticum AM180484Nematicidal activitycow dungXU et al., 2015
BacteriaWautersiella Falsenii AM238687Nematicidal activitycow dungXU et al., 2015
BacteriaXanthomonas Campestris Pv. Vesicatoria 85-10n/aWeise et al., 2012
Method
KingdomSpeciesGrowth MediumApplied MethodVerification
BacteriaBacillus Amyloliquefaciens IN937aMurashige and Skoog mediumcapillary GC;GC/MSYes
BacteriaBacillus Cereus B-569AngleHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBacillus Subtilis GB03Murashige and Skoog mediumcapillary GC;GC/MSYes
BacteriaBurkholderia Ambifaria LMG 17828Luria-Bertani medium, Malt Extractn/a
BacteriaBurkholderia Ambifaria LMG 19182Luria-Bertani medium, Malt Extractn/a
BacteriaBurkholderia Andropogonis LMG 2129AngleHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Anthina LMG 20980AngleHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Caledonica LMG 19076AngleHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Fungorum LMG 16225AngleHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Glathei LMG 14190LBHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Graminis LMG 18924LB and MR-VPHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Lata LMG 22485AngleHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Phenoliruptrix LMG 22037AngleHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaCalothrix Parietina PCC 6303n/an/a
BacteriaCitrobacter Freundii ATCC 33128TS brothGC-MS SPMEyes
BacteriaCorynebacterium Minutissimum ATCC 23348brain heart infusion mediumPorapak / GC/MSno
BacteriaEnterobacter Aerogenes ATCC 13048TS brothGC-MS SPMEyes
BacteriaEnterobacter Aerogenes KY2TS brothGC-MS SPMEyes
BacteriaEnterobacter Cloacae ATCC 13047TS brothGC-MS SPMEyes
BacteriaEnterococcus Durans ATCC 19432TS brothGC-MS SPMEyes
BacteriaEnterococcus Faecium ATCC 19434TS brothGC-MS SPMEyes
BacteriaEscherichia ColiTS brothGC-FIDno
BacteriaEscherichia Coli ATCC 25922TS brothGC-MS SPMEyes
BacteriaEscherichia Coli OP50MR-VP and AngleHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaKlebsiella PneumoniaeTS brothHS-SPME/GC-MS
BacteriaLactobacillus Lactis ATCC 11955TS brothGC-MS SPMEyes
BacteriaLeuconostoc Mesenteroides ATCC 8086TS brothGC-MS SPMEyes
BacteriaPhormidium Sp.n/an/a
BacteriaPlectonema Notatumn/an/a
BacteriaPseudomonas Aurantiacan/an/a
BacteriaPseudomonas Brassicacearum USB2104King's B AgarSPME-GC/MSNo
BacteriaPseudomonas Chlororaphisn/an/a
BacteriaPseudomonas Corrugaten/an/a
BacteriaPseudomonas Fluorescensn/an/a
BacteriaPseudomonas Putida USB2105King's B AgarSPME-GC/MSNo
BacteriaRivularia Sp.n/an/a
BacteriaSalmonella Paratyphi KYTS brothGC-MS SPMEyes
BacteriaSerratia Marcescens Db11NBIIHeadspace trapping/ GC-MS
BacteriaSerratia Marcescens MG1LBHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaSerratia Odorifera DSM 4582NBIIHeadspace trapping/ GC-MS
BacteriaSerratia Plymuthica 4Rx13NBIIHeadspace trapping/ GC-MS
BacteriaSerratia Plymuthica HRO-C48AngleHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaSerratia Plymuthica IC14LB and MSHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaSerratia Proteamaculans 568NBIIHeadspace trapping/ GC-MS
BacteriaShigella Sonnei ATCCV 25931TS brothGC-MS SPMEyes
BacteriaStreptococcus Thermophilus ATCC 14485TS brothGC-MS SPMEyes
FungiPleurotus CystidiosusnaGC/MS, GC-O, AEDANo
BacteriaCytophaga-Flavobacterium-Bacteroides (CFB)n/an/a
BacteriaCytophaga-Flavobacterium-Bacteroides Group Strain ARK 10223n/an/a
BacteriaCytophaga-Flavobacterium-Bacteroides Group Strain ARK 10044n/an/a
BacteriaCytophaga-Flavobacterium-Bacteroides Group Strain ARK 10146n/an/a
BacteriaCytophaga-Flavobacterium-Bacteroides Group Strain ARK 10267n/an/a
BacteriaPseudochrobactrum Saccharolyticum AM180484LB liquidSPME-GC/MS
BacteriaWautersiella Falsenii AM238687LB liquidSPME-GC/MS
BacteriaXanthomonas Campestris Pv. Vesicatoria 85-10NBIIClosed airflow-system/GC-MS and PTR-MS


Tetradecane

Mass-Spectra

Compound Details

Synonymous names
Tetradecane_GurudeebanSatyavani
Tetradekan
Tetradecane
Tetradecane olefine
myristyl
BGHCVCJVXZWKCC-UHFFFAOYSA-N
N-TETRADECANE
Tetradecane, analytical standard
n-Teradecane
AC1L1ZHO
Tridecane, methyl-
Tetradecane, >=99%
Tetradecane, 99%
KSC352S3D
U012
ACMC-1B07Q
C14H30
S0286
CCRIS 715
CTK2F2931
CHEMBL135488
NSC72440
Tetradecane, certified reference material, TraceCERT(R)
LTBB002873
HSDB 5728
n-TETRADECANE, 99%
DTXSID1027267
STL280540
LP005503
LP100448
AK113059
UNII-114P5I43UJ component BGHCVCJVXZWKCC-UHFFFAOYSA-N
ZINC1698519
CHEBI:41253
DSSTox_CID_7267
DSSTox_GSID_27267
CC-33172
NSC 72440
NSC-72440
AN-22062
TL8004330
ANW-34473
TRA0013192
SC-74492
03LY784Y58
DSSTox_RID_78378
LMFA11000586
MFCD00008986
C-28195
UNII-FW7807707B component BGHCVCJVXZWKCC-UHFFFAOYSA-N
ST24031875
RTR-021669
DB-054348
AI3-04240
LS-148888
TR-021669
KB-260941
UNII-03LY784Y58
Alkanes, C14-16
Alkanes, C14-30
AKOS004910010
Paraffinic hydrocarbons (C14-C30)
BRN 1733859
FT-0632717
FT-0632666
I14-99197
Tox21_303277
I14-101364
629-59-4
n-Tetradecane, 99% 25g
NCGC00257151-01
MCULE-7442374993
CAS-629-59-4
EINECS 292-448-0
EINECS 211-096-0
CH3-[CH2]12-CH3
90622-46-1
74664-93-0
MolPort-003-665-072
Tetradecane, olefine free, >=99.0% (GC)
4-01-00-00520 (Beilstein Handbook Reference)
C72FCDE9-545A-4C7D-9907-1DFACCF43A82
Microorganism:

Yes

IUPAC nametetradecane
SMILESCCCCCCCCCCCCCC
InchiInChI=1S/C14H30/c1-3-5-7-9-11-13-14-12-10-8-6-4-2/h3-14H2,1-2H3
FormulaC14H30
PubChem ID12389
Molweight198.394
LogP6.69
Atoms44
Bonds43
H-bond Acceptor0
H-bond Donor0
Chemical ClassificationAlkanes

mVOC Specific Details

Volatilization
The Henry's Law constant for n-tetradecane is estimated as 11.9 atm-cu m/mole(SRC) derived from its vapor pressure, 0.015 mm Hg(1), and water solubility, 0.00033 mg/L(2). This Henry's Law constant indicates that n-tetradecane is expected to volatilize rapidly from water surfaces(3). Based on this Henry's Law constant, the volatilization half-life from a model river (1 m deep, flowing 1 m/sec, wind velocity of 3 m/sec)(3) is estimated as 4 hours(SRC). The volatilization half-life from a model lake (1 m deep, flowing 0.05 m/sec, wind velocity of 0.5 m/sec)(3) is estimated as 5.6 days(SRC). However, volatilization from water surfaces is expected to be attenuated by adsorption to suspended solids and sediment in the water column. The estimated volatilization half-life from a model pond is 28 months if adsorption is considered(4). n-Tetradecane's estimated Henry's Law constant indicates that volatilization from moist soil surfaces may occur(SRC). n-Tetradecane is not expected to volatilize from dry soil surfaces based upon its vapor pressure(SRC).
Literature: (1) Haynes WM, ed; CRC Handbook of Chemistry and Physics. 95th ed. Boca Raton, FL: CRC Press LLC, p. 15-21 (2014) (2) Coates M et al; Environ Sci Technol 19: 628-32 (1985) (3) Lyman WJ et al; Handbook of Chemical Property Estimation Methods. Washington, DC: Amer Chem Soc pp. 15-1 to 15-29 (1990) (4) US EPA; EXAMS II Computer Simulation (1987)
Solubility
In water, 3.3X10-4 mg/L at 25 deg C
Literature: Coates M et al; Environ Sci Technol 19: 628-32 (1985)
Literature: #Very soluble in ether; soluble in carbon tetrachloride
Literature: Haynes, W.M. (ed.). CRC Handbook of Chemistry and Physics. 95th Edition. CRC Press LLC, Boca Raton: FL 2014-2015, p. 3-498
Literature: #Soluble in alcohol
Literature: Lewis, R.J. Sr.; Hawley's Condensed Chemical Dictionary 15th Edition. John Wiley & Sons, Inc. New York, NY 2007., p. 1218
Soil Adsorption
Using a structure estimation method based on molecular connectivity indices(1), the Koc of n-tetradecane can be estimated to be 16,000(SRC). According to a classification scheme(2), this estimated Koc value suggests that n-tetradecane is expected to be immobile in soil. Laboratory soil column elution experiments showed that the percent of n-tetradecane adsorbed to three different native soil types ranged from 2.2-5.98%(3).
Literature: (1) US EPA; Estimation Program Interface (EPI) Suite. Ver. 4.11. Nov, 2012. Available from, as of Nov 11, 2015: http://www2.epa.gov/tsca-screening-tools (2) Swann RL et al; Res Rev 85: 23 (1983) (3) Kanatharana P, Grob RL; J Environ Sci Health A18: 59-77 (1983)
Vapor Pressure
PressureReference
0.015 mm Hg at 25 deg CHaynes, W.M. (ed.). CRC Handbook of Chemistry and Physics. 95th Edition. CRC Press LLC, Boca Raton: FL 2014-2015, p. 15-21
MS-Links
1D-NMR-Links

Microorganisms emitting the compound
KingdomSpeciesBiological FunctionOrigin/HabitatReference
BacteriaBacillus Simplexn/aGu et al., 2007
BacteriaBacillus Subtilisn/aGu et al., 2007
BacteriaBacillus Weihenstephanensisn/aGu et al., 2007
BacteriaMicrobacterium Oxydansn/aGu et al., 2007
BacteriaPseudomonas Aurantiacan/aFernando et al., 2005
BacteriaPseudomonas Chlororaphisn/aFernando et al., 2005
BacteriaPseudomonas Corrugaten/aFernando et al., 2005
BacteriaPseudomonas Fluorescensn/aFernando et al., 2005
BacteriaPseudomonas Putida BP25nablack pepper rootSheoran et al., 2015
BacteriaPseudomonas Simiae AUnarhizosphere of a soybean field in the province of Rajasthan, IndiaVaishnav et al., 2016
BacteriaSerratia Marcescensn/aGu et al., 2007
BacteriaStenotrophomonas Maltophilian/aGu et al., 2007
BacteriaStreptomyces Lateritiusn/aGu et al., 2007
FungiFusarium Graminearum 15AcDONn/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON 1001tan/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON ZFR 29n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_4n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_5n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_6n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_7n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_8n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_9n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON 1002tn/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON 11791n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON 1509n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON 8046n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON NRRL38369n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON NRRL6394n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON ZFR 15n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON ZFR 37n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON ZFR 51n/aBusko et al., 2014
FungiFusarium Graminearum NIVn/aBusko et al., 2014
FungiFusarium Graminearum NIV 357n/aBusko et al., 2014
FungiFusarium Graminearum NIV ZFR 119n/aBusko et al., 2014
FungiFusarium Graminearum NIV ZFR 23n/aBusko et al., 2014
FungiFusarium Graminearum NIV ZFR 48n/aBusko et al., 2014
FungiFusarium Graminearum NIV_5n/aBusko et al., 2014
FungiFusarium Graminearum NIV_6n/aBusko et al., 2014
FungiFusarium Graminearum NIV_7n/aBusko et al., 2014
FungiFusarium Graminearum NIV_8n/aBusko et al., 2014
FungiTuber Borchiin/aFortywoodland of the Basilicata regionMauriello et al., 2004
FungiTuber MelanosporumNoneT. melanosporum, T. borchii were collected from northern Italy (Piedmont) and T. indicum from Yunnan and Sichuan Provinces (China). Splivallo et al., 2007b
Method
KingdomSpeciesGrowth MediumApplied MethodVerification
BacteriaBacillus Simplexn/an/a
BacteriaBacillus Subtilisn/an/a
BacteriaBacillus Weihenstephanensisn/an/a
BacteriaMicrobacterium Oxydansn/an/a
BacteriaPseudomonas Aurantiacan/an/a
BacteriaPseudomonas Chlororaphisn/an/a
BacteriaPseudomonas Corrugaten/an/a
BacteriaPseudomonas Fluorescensn/an/a
BacteriaPseudomonas Putida BP25Luria Bertani AgarSolvent extraction with hexane, GC/MSNo
BacteriaPseudomonas Simiae AUNutrient broth; King's B agarGC/MSNo
BacteriaSerratia Marcescensn/an/a
BacteriaStenotrophomonas Maltophilian/an/a
BacteriaStreptomyces Lateritiusn/an/a
FungiFusarium Graminearum 15AcDONyeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON 1001tayeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON ZFR 29yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_4yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_5yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_6yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_7yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_8yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_9yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON 1002tyeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON 11791yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON 1509yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON 8046yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON NRRL38369yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON NRRL6394yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON ZFR 15yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON ZFR 37yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON ZFR 51yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIVyeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV 357yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV ZFR 119yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV ZFR 23yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV ZFR 48yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV_5yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV_6yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV_7yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV_8yeast extract sucrose agarSPME/GC-MS
FungiTuber Borchiin/amicroextraction-gas chromatography-mass spectrometry analysis (SPME-GC-MS)
FungiTuber MelanosporumNoneNoneYes


Pentadecane

Mass-Spectra

Compound Details

Synonymous names
Pentadecane_Ramanathan &Gurudeeban
Pentadekan
Pentadecane
pentadecan
YCOZIPAWZNQLMR-UHFFFAOYSA-N
pentadecyl group
Medicinal Plant
N-PENTADECANE
Pentadecane, analytical standard
MYS
AC1L1ZHU
ACMC-1AVXR
AC1Q2W1H
Pentadecane, >=99%
Pentadecane, n-
C15H32
V0208
S0287
CTK2F3650
P0606
UNII-J3N6X3YK96 component YCOZIPAWZNQLMR-UHFFFAOYSA-N
UNII-CI87N1IM01 component YCOZIPAWZNQLMR-UHFFFAOYSA-N
16H6K2S8M2
HSDB 5729
LTBB002322
C08388
LP082233
LP001445
DTXSID6027268
NSC172781
STL280516
CHEMBL1234557
UNII-114P5I43UJ component YCOZIPAWZNQLMR-UHFFFAOYSA-N
DSSTox_CID_7268
CHEBI:28897
UNII-16H6K2S8M2
ZINC1531089
SC-73247
TL8004333
TRA0009260
DSSTox_GSID_27268
ANW-34476
AN-22063
MFCD00008990
UNII-FW7807707B component YCOZIPAWZNQLMR-UHFFFAOYSA-N
DSSTox_RID_78379
ghl.PD_Mitscher_leg0.43
LMFA11000006
NSC 172781
CH3(CH2)13CH3
TR-021671
RTR-021671
LS-101397
NSC-172781
AKOS015902386
BRN 1698194
FT-0637675
I14-19380
Tox21_300535
629-62-9
I14-100418
NCGC00164185-01
NCGC00164185-02
NCGC00254392-01
Pentadecane, >=98.0% (GC)
MCULE-1292711626
EINECS 211-098-1
CH3-[CH2]13-CH3
CAS-629-62-9
MolPort-003-933-014
4-01-00-00529 (Beilstein Handbook Reference)
896D4B7E-BF33-4D54-82CE-7360D88E8DC8
Microorganism:

Yes

IUPAC namepentadecane
SMILESCCCCCCCCCCCCCCC
InchiInChI=1S/C15H32/c1-3-5-7-9-11-13-15-14-12-10-8-6-4-2/h3-15H2,1-2H3
FormulaC15H32
PubChem ID12391
Molweight212.421
LogP7.13
Atoms47
Bonds46
H-bond Acceptor0
H-bond Donor0
Chemical ClassificationAlkanes

mVOC Specific Details

Volatilization
The Henry's Law constant for n-pentadecane is estimated as 34.4 atm-cu m/mole(SRC) derived from its vapor pressure, 0.00492 mm Hg(1), and water solubility, 4X10-5 mg/L(2). This Henry's Law constant indicates that n-pentadecane is expected to volatilize rapidly from water surfaces(3). Based on this Henry's Law constant, the volatilization half-life from a model river (1 m deep, flowing 1 m/sec, wind velocity of 3 m/sec)(3) is estimated as 4 hours(SRC). The volatilization half-life from a model lake (1 m deep, flowing 0.05 m/sec, wind velocity of 0.5 m/sec)(3) is estimated as 5.8 days(SRC). However, volatilization from water surfaces is expected to be attenuated by adsorption to suspended solids and sediment in the water column. The estimated volatilization half-life from a model pond is 30 months if adsorption is considered(4). n-Pentadecane's estimated Henry's Law constant indicates that volatilization from moist soil surfaces may occur(SRC). n-Pentadecane is not expected to volatilize from dry soil surfaces based upon its vapor pressure(SRC).
Literature: (1) Daubert TE, Danner RP; Physical and Thermodynamic Properties of Pure Dhemicals: Data Compilation. Design Institute for Physical Property Data, American Institute of Chemical Engineers. Washington, DC: Taylor & Francis, (1994) (2) Yalkowsky SH et al; Handbook of Aqueous Solubility Data. 2nd ed., Boca Raton, FL: CRC Press, p. 1081 (2010) (3) Lyman WJ et al; Handbook of Chemical Property Estimation Methods. Washington, DC: Amer Chem Soc pp. 15-1 to 15-29 (1990) (4) US EPA; EXAMS II Computer Simulation (1987)
Solubility
In water, 4.0X10-5 mg/L at 25 deg C
Literature: Yalkowsky, S.H., He, Yan, Jain, P. Handbook of Aqueous Solubility Data Second Edition. CRC Press, Boca Raton, FL 2010, p. 806
Literature: #Very soluble in ethyl ether, ethanol
Literature: Haynes, W.M. (ed.). CRC Handbook of Chemistry and Physics. 95th Edition. CRC Press LLC, Boca Raton: FL 2014-2015, p. 3-436
Soil Adsorption
Using a structure estimation method based on molecular connectivity indices(1), the Koc of n-pentadecane can be estimated to be 29,200(SRC). According to a classification scheme(2), this estimated Koc value suggests that n-pentadecane is expected to be immobile in soil. In a study conducted to mimic a spill of 1.27 L/sq-m, n-pentadecane (present in JP-4 jet fuel) was transported to a depth of 50 cm; at the end of the study (134 days), it was still detected(3).
Literature: (1) US EPA; Estimation Program Interface (EPI) Suite. Ver. 4.11. Nov, 2012. Available from, as of Nov 11, 2015: http://www2.epa.gov/tsca-screening-tools (2) Swann RL et al; Res Rev 85: 23 (1983) (3) Ross WD et al; Environmental Fate and Biological Consequences of Chemicals Related to Air Force Activities. NTIS AD-A121 288/5. Dayton,OH: Monsanto Research Corp. pp. 173 (1982)
Vapor Pressure
PressureReference
4.92X10-3 mm Hg at 25 deg CDaubert TE, Danner RP; Physical and Thermodynamic Properties of Pure Dhemicals: Data Compilation. Design Institute for Physical Property Data, American Institute of Chemical Engineers. Washington, DC: Taylor & Francis (1994)
MS-Links
1D-NMR-Links

Microorganisms emitting the compound
KingdomSpeciesBiological FunctionOrigin/HabitatReference
BacteriaAzospirillum Brasilense Cdpromotion of performance of Chlorella sorokiniana Shihculture collection DSMZ 1843Amavizca et al. 2017
BacteriaBacillus Pumilus ES4promotion of performance of Chlorella sorokiniana ShihAmavizca et al. 2017
BacteriaBurkholderia Sacchari LMG 19450n/aBlom et al., 2011
BacteriaEscherichia Coli DH5apromotion of performance of Chlorella sorokiniana ShihAmavizca et al. 2017
BacteriaPseudomonas Aurantiacan/aFernando et al., 2005
BacteriaPseudomonas Brassicacearum USB2104narhizosphere of bean plants, southern ItalyGiorgio et al., 2015
BacteriaPseudomonas Chlororaphisn/aFernando et al., 2005
BacteriaPseudomonas Corrugaten/aFernando et al., 2005
BacteriaPseudomonas Fluorescensn/aFernando et al., 2005
BacteriaPseudomonas Putida USB2105narhizosphere of bean plants, southern ItalyGiorgio et al., 2015
BacteriaPseudomonas Simiae AUnarhizosphere of a soybean field in the province of Rajasthan, IndiaVaishnav et al., 2016
BacteriaSerratia Entomophilia A1MO2n/aBlom et al., 2011
FungiFusarium Graminearum 15AcDONn/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON 1001tan/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON ZFR 29n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_4n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_5n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_6n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_7n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_8n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_9n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON 1002tn/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON 11791n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON 1509n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON 8046n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON NRRL38369n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON NRRL6394n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON ZFR 15n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON ZFR 37n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON ZFR 51n/aBusko et al., 2014
FungiFusarium Graminearum NIVn/aBusko et al., 2014
FungiFusarium Graminearum NIV 357n/aBusko et al., 2014
FungiFusarium Graminearum NIV ZFR 119n/aBusko et al., 2014
FungiFusarium Graminearum NIV ZFR 23n/aBusko et al., 2014
FungiFusarium Graminearum NIV ZFR 48n/aBusko et al., 2014
FungiFusarium Graminearum NIV_5n/aBusko et al., 2014
FungiFusarium Graminearum NIV_6n/aBusko et al., 2014
FungiFusarium Graminearum NIV_7n/aBusko et al., 2014
FungiFusarium Graminearum NIV_8n/aBusko et al., 2014
FungiTrichoderma Harzianum T-E5 CCTCC AF2012011n/aZhang et al., 2014
Method
KingdomSpeciesGrowth MediumApplied MethodVerification
BacteriaAzospirillum Brasilense CdTSASPME-GCno
BacteriaBacillus Pumilus ES4TSASPME-GCno
BacteriaBurkholderia Sacchari LMG 19450LB, MSHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaEscherichia Coli DH5aTSASPME-GCno
BacteriaPseudomonas Aurantiacan/an/a
BacteriaPseudomonas Brassicacearum USB2104King's B AgarSPME-GC/MSNo
BacteriaPseudomonas Chlororaphisn/an/a
BacteriaPseudomonas Corrugaten/an/a
BacteriaPseudomonas Fluorescensn/an/a
BacteriaPseudomonas Putida USB2105King's B AgarSPME-GC/MSNo
BacteriaPseudomonas Simiae AUNutrient broth; King's B agarGC/MSNo
BacteriaSerratia Entomophilia A1MO2n/aHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
FungiFusarium Graminearum 15AcDONyeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON 1001tayeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON ZFR 29yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_4yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_5yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_6yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_7yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_8yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_9yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON 1002tyeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON 11791yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON 1509yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON 8046yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON NRRL38369yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON NRRL6394yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON ZFR 15yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON ZFR 37yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON ZFR 51yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIVyeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV 357yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV ZFR 119yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV ZFR 23yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV ZFR 48yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV_5yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV_6yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV_7yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV_8yeast extract sucrose agarSPME/GC-MS
FungiTrichoderma Harzianum T-E5 CCTCC AF2012011Minimal mediaSPME/GC-MS


Nonadecane

Mass-Spectra

Compound Details

Synonymous names
UNKNOWN PHOSPHOLIPID FRAGMENT
NONADECANE
nonadecan
LQERIDTXQFOHKA-UHFFFAOYSA-N
Nonadekan
Nonadecane, analytical standard
UNKNOWN BRANCHED FRAGMENT OF PHOSPHOLIPID
UPL
n-Nonadecane
AC1L1ZIO
NMY21D3Y5T
Nonadecane, 99%
UNII-NMY21D3Y5T
QSPL 079
S0291
V0207
CTK2F6296
N0282
NSC77136
UNII-J3N6X3YK96 component LQERIDTXQFOHKA-UHFFFAOYSA-N
UNII-CI87N1IM01 component LQERIDTXQFOHKA-UHFFFAOYSA-N
ARONIS020629
bmse000764
HSDB 8349
N-NONADECANE, 99%
LP008228
STK032371
SBB058691
AK126519
DTXSID9047170
ZINC8398603
CHEBI:32927
TL8004347
TRA0009059
ANW-42120
NSC-77136
AN-22069
NSC 77136
LMFA11000578
ZINC08398603
MFCD00009012
RTR-021683
AI3-36122
ST24031484
ST45034357
TR-021683
KB-110288
AKOS000487358
UNII-33822S0M40 component LQERIDTXQFOHKA-UHFFFAOYSA-N
FT-0638791
FT-0673031
I14-19385
I14-55315
629-92-5
n-Nonadecane, 99% 25g
MCULE-7331201096
EINECS 211-116-8
CH3-[CH2]17-CH3
MolPort-002-351-165
AN-329/40543671
5DFF1F48-853A-4CE2-852C-81C871EF1DA6
Microorganism:

Yes

IUPAC namenonadecane
SMILESCCCCCCCCCCCCCCCCCCC
InchiInChI=1S/C19H40/c1-3-5-7-9-11-13-15-17-19-18-16-14-12-10-8-6-4-2/h3-19H2,1-2H3
FormulaC19H40
PubChem ID12401
Molweight268.529
LogP8.91
Atoms59
Bonds58
H-bond Acceptor0
H-bond Donor0
Chemical ClassificationAlkanes

mVOC Specific Details

Volatilization
The Henry's Law constant for nonadecane is estimated as 68 atm-cu m/mole(SRC) using a fragment constant estimation method(1). This Henry's Law constant indicates that nonadecane is expected to volatilize rapidly from water surfaces(2). Based on this Henry's Law constant, the volatilization half-life from a model river (1 m deep, flowing 1 m/sec, wind velocity of 3 m/sec)(3) is estimated as 1.6 hours(SRC). The volatilization half-life from a model lake (1 m deep, flowing 0.05 m/sec, wind velocity of 0.5 m/sec)(3) is estimated as 6.5 days(SRC). However, adsorption to suspended solids and sediment is expected to attenuate volatilization(SRC). The estimated volatilization half-life from a model pond is greater than 2 years if adsorption is considered(4). Nonadecane is not expected to volatilize from dry soil surfaces(SRC) based upon a vapor pressure of 4.9X10-5 mm Hg(5).
Literature: (1) Meylan WM, Howard PH; Environ Toxicol Chem 10: 1283-93 (1991) (2) Lyman WJ et al; Handbook of Chemical Property Estimation Methods. Washington, DC: Amer Chem Soc pp. 15-1 to 15-29 (1990) (3) US EPA; Estimation Program Interface (EPI) Suite. Ver. 4.1. Nov, 2012. Available from, as of Nov 14, 2016: http://www2.epa.gov/tsca-screening-tools (4) US EPA; EXAMS II Computer Simulation (1987) (5) Yaws Cl; Handbook of Vapor Pressure. Volume 3 - C8 to C28 Compounds. Houston, TX: Gulf Publishing Co. (1994)
Solubility
In water, 3.7X10-5 mg/L at 25 deg C (est)
Literature: US EPA; Estimation Program Interface (EPI) Suite. Ver. 4.1. Nov, 2012. Available from, as of Nov 17, 2016: http://www2.epa.gov/tsca-screening-tools
Literature: #Insoluble in water
Literature: Larranaga, M.D., Lewis, R.J. Sr., Lewis, R.A.; Hawley's Condensed Chemical Dictionary 16th Edition. John Wiley & Sons, Inc. Hoboken, NJ 2016., p. 986
Literature: #Slightly soluble in ethanol; soluble in ethyl ether, acetone, carbon tetrachloride
Literature: Haynes, W.M. (ed.). CRC Handbook of Chemistry and Physics. 95th Edition. CRC Press LLC, Boca Raton: FL 2014-2015, p. 3-424
Literature: #Soluble in alcohol and ether
Literature: Larranaga, M.D., Lewis, R.J. Sr., Lewis, R.A.; Hawley's Condensed Chemical Dictionary 16th Edition. John Wiley & Sons, Inc. Hoboken, NJ 2016., p. 986
Soil Adsorption
The Koc of nonadecane is estimated as 3.2X10+5(SRC), using an estimated log Kow of 9.67(1) and a regression-derived equation(2). According to a classification scheme(3), this estimated Koc value suggests that nonadecane is expected to be immobile in soil.
Literature: (1) US EPA; Estimation Program Interface (EPI) Suite. Ver. 4.1. Nov, 2012. Available from, as of Nov 14, 2016: http://www2.epa.gov/tsca-screening-tools (2) Swann RL et al; Res Rev 85: 17-28 (1983)
Vapor Pressure
PressureReference
4.9X10-5 mm Hg at 25 deg C (extrapolated)Yaws Cl; Handbook of Vapor Pressure. Volume 3 - C8 to C28 Compounds. Houston, TX: Gulf Publishing Co. (1994)
MS-Links
1D-NMR-Links

Microorganisms emitting the compound
KingdomSpeciesBiological FunctionOrigin/HabitatReference
BacteriaAlcaligenes Faecalisn/aZou et al., 2007
BacteriaArthrobacter Nitroguajacoliusn/aZou et al., 2007
BacteriaBacillus Spp.n/aZou et al., 2007
BacteriaLysobacter Gummosusn/aZou et al., 2007
BacteriaPseudomonas Aurantiacan/aFernando et al., 2005
BacteriaPseudomonas Chlororaphisn/aFernando et al., 2005
BacteriaPseudomonas Corrugaten/aFernando et al., 2005
BacteriaPseudomonas Fluorescensn/aFernando et al., 2005
BacteriaPseudomonas Putida BP25nablack pepper rootSheoran et al., 2015
BacteriaPseudomonas Simiae AUnarhizosphere of a soybean field in the province of Rajasthan, IndiaVaishnav et al., 2016
BacteriaSporosarcina Ginsengisolin/aZou et al., 2007
BacteriaStenotrophomonas Maltophilian/aZou et al., 2007
Method
KingdomSpeciesGrowth MediumApplied MethodVerification
BacteriaAlcaligenes Faecalisn/an/a
BacteriaArthrobacter Nitroguajacoliusn/an/a
BacteriaBacillus Spp.n/an/a
BacteriaLysobacter Gummosusn/an/a
BacteriaPseudomonas Aurantiacan/an/a
BacteriaPseudomonas Chlororaphisn/an/a
BacteriaPseudomonas Corrugaten/an/a
BacteriaPseudomonas Fluorescensn/an/a
BacteriaPseudomonas Putida BP25Luria Bertani AgarSolvent extraction with hexane, GC/MSNo
BacteriaPseudomonas Simiae AUNutrient broth; King's B agarGC/MSNo
BacteriaSporosarcina Ginsengisolin/an/a
BacteriaStenotrophomonas Maltophilian/an/a


Undec-1-ene

Mass-Spectra

Compound Details

Synonymous names
alpha-Nonylethylene
Undecene
Hendecene
DCTOHCCUXLBQMS-UHFFFAOYSA-N
alpha-Undecylene
alpha-Undecene
AC1Q2VYM
1-Hendecene
Undecene-1
1-UNDECENE
Undecene (petroleum)
n-1-Undecene
Undec-1-ene
.alpha.-Undecene
5902AF
C11H22
ACMC-1CB71
U0025
U0052
CTK1A4960
S0341
UNII-FH2735S2NU component DCTOHCCUXLBQMS-UHFFFAOYSA-N
OR01835
NSC73983
AC1L2186
HSDB 1090
CCRIS 5720
DTXSID5061168
SBB009051
LP064094
STL453737
FR-2625
CHEBI:77444
ZINC1699445
KB-13370
CC-05049
ANW-37513
NSC-73983
NSC 73983
LMFA11000332
ZX-AT017311
MFCD00008956
1-Undecene, 97%
C-28171
LS-188198
ST51046389
TR-025719
1446756A8F
DB-056580
AKOS009156849
FT-0608327
UNII-1446756A8F
I14-19830
821-95-4
10004-001h
MCULE-8437878932
EINECS 212-483-7
EINECS 271-214-1
28761-27-5
MolPort-001-756-623
Microorganism:

Yes

IUPAC nameundec-1-ene
SMILESCCCCCCCCCC=C
InchiInChI=1S/C11H22/c1-3-5-7-9-11-10-8-6-4-2/h3H,1,4-11H2,2H3
FormulaC11H22
PubChem ID13190
Molweight154.297
LogP5.05
Atoms33
Bonds32
H-bond Acceptor0
H-bond Donor0
Chemical ClassificationAlkenes

mVOC Specific Details

Volatilization
The Henry's Law constant for 1-undecene is estimated as 1.48 atm-cu m/mole(SRC) using a fragment constant estimation method(1). This Henry's Law constant indicates that 1-undecene is expected to volatilize rapidly from water surfaces(2). Based on this Henry's Law constant, the volatilization half-life from a model river (1 m deep, flowing 1 m/sec, wind velocity of 3 m/sec)(2) is estimated as 1 hr(SRC). The volatilization half-life from a model lake (1 m deep, flowing 0.05 m/sec, wind velocity of 0.5 m/sec)(2) is estimated as 5 days(SRC). However, the volatilization half-life does not take into account the effects of adsorption. This is apparent from the results of two EXAMS model runs, one in which the effect of adsorption was considered, yielding an estimated half-life of 21 days in a model pond 2 m deep, and one in which the effect of adsorption was ignored, yielding an estimated half-life of 42 hrs in a model pond 2 m deep(3). 1-Undecene's Henry's Law constant(1) indicates that volatilization from moist soil surfaces may occur(SRC). 1-Undecene is not expected to volatilize from dry soil surfaces(SRC) based upon a vapor pressure of 0.493 mm Hg(4).
Literature: (1) Meylan WM, Howard PH; Environ Toxicol Chem 10: 1283-93 (1991) (2) Lyman WJ et al; Handbook of Chemical Property Estimation Methods. Washington, DC: Amer Chem Soc pp. 15-1 to 15-29 (1990) (3) USEPA; EXAMS II Computer Simulation (1987) (4) Daubert TE, Danner RP; Physical and Thermodynamic Properties of Pure Chemicals: Data Compilation. Design Inst Phys Prop Data, Amer Inst Chem Eng NY, NY: Hemisphere Pub Corp 5 Vol (1989)
Solubility
Sol in ether, chloroform, ligroin; insol in water
Literature: Lide, D.R. (ed.). CRC Handbook of Chemistry and Physics. 79th ed. Boca Raton, FL: CRC Press Inc., 1998-1999., p. 3-327
Soil Adsorption
Using a structure estimation method based on molecular connectivity indices(1), the Koc for 1-undecene can be estimated to be about 3180(SRC). According to a classification scheme(2), this estimated Koc value suggests that 1-undecene is expected to have slight mobility in soil.
Literature: (1) Meylan WM et al; Environ Sci Technol 26: 1560-67 (1992) (2) Swann RL et al; Res Rev 85: 17-28 (1983)
Vapor Pressure
PressureReference
0.493 mm Hg @ 25 deg CDaubert, T.E., R.P. Danner. Physical and Thermodynamic Properties of Pure Chemicals Data Compilation. Washington, D.C.: Taylor and Francis, 1989.
MS-Links

Microorganisms emitting the compound
KingdomSpeciesBiological FunctionOrigin/HabitatReference
BacteriaAcinetobacter Johnsonii ATCC 9036American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaBacillus Amyloliquefaciens IN937an/aLee et al., 2012
BacteriaBurkholderia Andropogonis LMG 2129n/aBlom et al., 2011
BacteriaBurkholderia Anthina LMG 20980n/aBlom et al., 2011
BacteriaBurkholderia Caledonica LMG 19076n/aBlom et al., 2011
BacteriaBurkholderia Caribensis LMG 18531n/aBlom et al., 2011
BacteriaBurkholderia Caryophylli LMG 2155n/aBlom et al., 2011
BacteriaBurkholderia Cepacia LMG 1222n/aBlom et al., 2011
BacteriaBurkholderia Cepacia LMG 1222 358RhizosphereBlom et al., 2011
BacteriaBurkholderia Fungorum LMG 16225n/aBlom et al., 2011
BacteriaBurkholderia Gladioli LMG 2216n/aBlom et al., 2011
BacteriaBurkholderia Glathei LMG 14190n/aBlom et al., 2011
BacteriaBurkholderia Glumae LMG 2196n/aBlom et al., 2011
BacteriaBurkholderia Graminis LMG 18924n/aBlom et al., 2011
BacteriaBurkholderia Lata LMG 22485n/aBlom et al., 2011
BacteriaBurkholderia Lata LMG 6993n/aBlom et al., 2011
BacteriaBurkholderia Phenazinium LMG 2247n/aBlom et al., 2011
BacteriaBurkholderia Phenoliruptrix LMG 22037n/aBlom et al., 2011
BacteriaBurkholderia Phytofirmans LMG 22487n/aBlom et al., 2011
BacteriaBurkholderia Pyrrocinia LMG 21822n/aBlom et al., 2011
BacteriaBurkholderia Sacchari LMG 19450n/aBlom et al., 2011
BacteriaBurkholderia Terricola LMG 20594n/aBlom et al., 2011
BacteriaBurkholderia Thailandensis LMG 20219n/aBlom et al., 2011
BacteriaCellulomonas Udan/aBlom et al., 2011
BacteriaChromobacterium Violaceum CV0n/aBlom et al., 2011
BacteriaCitrobacter Freundii ATCC 33128American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaEnterobacter Aerogenes ATCC 13048American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaEnterobacter Aerogenes KY2American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaEnterobacter Cloacae ATCC 13047American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaEscherichia Coli ATCC 25922American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaEscherichia Coli OP50n/aBlom et al., 2011
BacteriaKlebsiella Pneumoniaen/aElgaali et al., 2002
BacteriaLactobacillus Lactis ATCC 11955American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaLimnobacter Thiooxidans LMG 19593n/aBlom et al., 2011
BacteriaPseudomonas Aeruginosacan be used as biomarker for detection of this bacteriaYusuf et al., 2015
BacteriaPseudomonas Aeruginosa ATCC 10145nasoil, water, skin floraSchoeller et al., 1997
BacteriaPseudomonas Aeruginosa PA01nanaBriard et al., 2016
BacteriaPseudomonas Aeruginosa PUPa3n/aBlom et al., 2011
BacteriaPseudomonas Aurantiacan/aFernando et al., 2005
BacteriaPseudomonas Brassicacearum USB2101lyses red blood cellsrhizosphere of bean plants, southern ItalyGiorgio et al., 2015
BacteriaPseudomonas Brassicacearum USB2102lyses red blood cellsrhizosphere of bean plants, southern ItalyGiorgio et al., 2015
BacteriaPseudomonas Brassicacearum USB2104lyses red blood cellsrhizosphere of bean plants, southern ItalyGiorgio et al., 2015
BacteriaPseudomonas Chlororaphisn/aFernando et al., 2005
BacteriaPseudomonas Chlororaphis 450inhibits nematode developmentRhizosphere of maize, Kiev region, UkrainePopova et al., 2014
BacteriaPseudomonas Chlororaphis R47inhibits the mycelial growth of P. infestans and changes its sporulation behaviorrhizosphere of field-grown potato plantsHunziker et al., 2015
BacteriaPseudomonas Corrugaten/aFernando et al., 2005
BacteriaPseudomonas Fluorescensn/aFernando et al., 2005
BacteriaPseudomonas Fluorescens ATCC 13525American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaPseudomonas Fluorescens R2Fnasoil, water, plantsSchoeller et al., 1997
BacteriaPseudomonas Fluorescens R76inhibits the mycelial growth of P. infestans and changes its sporulation behaviorrhizosphere of field-grown potato plantsHunziker et al., 2015
BacteriaPseudomonas Fluorescens WCS 417rn/aBlom et al., 2011
BacteriaPseudomonas Flureorescens SBW25Cheng et al. 2016
BacteriaPseudomonas Frederiksbergensis S04inhibits the mycelial growth of P. infestans and changes its sporulation behaviorphyllosphere of field-grown potato plantsHunziker et al., 2015
BacteriaPseudomonas Frederiksbergensis S24inhibits the mycelial growth of P. infestans and changes its sporulation behaviorphyllosphere of field-grown potato plantsHunziker et al., 2015
BacteriaPseudomonas Putida BP25nablack pepper rootSheoran et al., 2015
BacteriaPseudomonas Putida BP25Rpositive influence of the plant root growth and protection against soil-borne pathogensSheoran et al., 2015
BacteriaPseudomonas Putida ISOfn/aBlom et al., 2011
BacteriaPseudomonas Putida KT 2442nanaSchoeller et al., 1997
BacteriaPseudomonas Putida USB2105lyses red blood cellsrhizosphere of bean plants, southern ItalyGiorgio et al., 2015
BacteriaPseudomonas Sp.n/aSchulz and Dickschat, 2007
BacteriaPseudomonas Tolaasii NCPPB 2192nanaCantore et al., 2015
BacteriaPseudomonas Tolaasii USB1nanaCantore et al., 2015
BacteriaPseudomonas Tolaasii USB66nanaCantore et al., 2015
BacteriaPseudomonas Veronii R02inhibits the mycelial growth of P. infestans and changes its sporulation behaviorrhizosphere of field-grown potato plantsHunziker et al., 2015
BacteriaPseudomonas Vranovensis R01inhibits the mycelial growth of P. infestans and changes its sporulation behaviorrhizosphere of field-grown potato plantsHunziker et al., 2015
BacteriaSchewanella PutrefaciensAmerican Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaSchewanella Putrefaciens ATCC 8071American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaSerratia Plymuthica HRO-C48n/aBlom et al., 2011
BacteriaSerratia Plymuthica IC14n/aBlom et al., 2011
BacteriaShewanella Spp.n/aSchulz and Dickschat, 2007
BacteriaShigella Sonnei ATCCV 25931American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
BacteriaStreptococcus Thermophilus ATCC 14485American Type Culture Collection (ATCC), Rockville, MD or wild strains identified at the University of Kentucky Dept. of Animal Sciences Food Microbiology LaboratoryElgaali et al. 2002
FungiTuber Mesentericumn/aFortywoodland of the Basilicata regionMauriello et al., 2004
BacteriaPseudomonas AeruginosaclinicPreti., 2009
BacteriaPseudomonas Fluorescens L13-6-12n/aKai et al., 2007
BacteriaPseudomonas Fragi 25Pn/aErcolini et al., 2009
BacteriaPseudomonas Trivialis 3Re2-7n/aKai et al., 2007
Method
KingdomSpeciesGrowth MediumApplied MethodVerification
BacteriaAcinetobacter Johnsonii ATCC 9036TS brothGC-MS SPMEyes
BacteriaBacillus Amyloliquefaciens IN937aTryptic soy agarSPME coupled with GC-MS
BacteriaBurkholderia Andropogonis LMG 2129LB and MR-VPHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Anthina LMG 20980LB and AngleHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Caledonica LMG 19076AngleHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Caribensis LMG 18531Angle and MR-VPHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Caryophylli LMG 2155LB Headspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Cepacia LMG 1222AngleHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Cepacia LMG 1222 358AngleHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)Yes
BacteriaBurkholderia Fungorum LMG 16225LB and AngleHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Gladioli LMG 2216LB Headspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Glathei LMG 14190LB and AngleHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Glumae LMG 2196LB Headspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Graminis LMG 18924MR-VPHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Lata LMG 22485MR-VPHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Lata LMG 6993LB and AngleHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Phenazinium LMG 2247LB and AngleHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Phenoliruptrix LMG 22037LB Headspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Phytofirmans LMG 22487LB Headspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Pyrrocinia LMG 21822LB Headspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Sacchari LMG 19450LB and MR-VPHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Terricola LMG 20594LB Headspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaBurkholderia Thailandensis LMG 20219LB and MR-VPHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaCellulomonas UdaLB and MR-VPHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaChromobacterium Violaceum CV0MR-VPHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaCitrobacter Freundii ATCC 33128TS brothGC-MS SPMEyes
BacteriaEnterobacter Aerogenes ATCC 13048TS brothGC-MS SPMEyes
BacteriaEnterobacter Aerogenes KY2TS brothGC-MS SPMEyes
BacteriaEnterobacter Cloacae ATCC 13047TS brothGC-MS SPMEyes
BacteriaEscherichia Coli ATCC 25922TS brothGC-MS SPMEyes
BacteriaEscherichia Coli OP50LB and AngleHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaKlebsiella PneumoniaeTS brothHS-SPME/GC-MS
BacteriaLactobacillus Lactis ATCC 11955TS brothGC-MS SPMEyes
BacteriaLimnobacter Thiooxidans LMG 19593LB and MR-VPHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaPseudomonas Aeruginosablood agar base (TSBA)SPME/GC-MS
BacteriaPseudomonas Aeruginosa ATCC 10145AB medium + 1% citrateGC-FID,GC/MS
BacteriaPseudomonas Aeruginosa PA01minimal medium/ Brian mediumSPME-GC/MSNo
BacteriaPseudomonas Aeruginosa PUPa3 LB, MR-VP, MS and AngleHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaPseudomonas Aurantiacan/an/a
BacteriaPseudomonas Brassicacearum USB2101King's B AgarSPME-GC/MSNo
BacteriaPseudomonas Brassicacearum USB2102King's B AgarSPME-GC/MSNo
BacteriaPseudomonas Brassicacearum USB2104King's B AgarSPME-GC/MSNo
BacteriaPseudomonas Chlororaphisn/an/a
BacteriaPseudomonas Chlororaphis 450LB mediumSPME-GC/MSNo
BacteriaPseudomonas Chlororaphis R47LB mediumGC/MSYes
BacteriaPseudomonas Corrugaten/an/a
BacteriaPseudomonas Fluorescensn/an/a
BacteriaPseudomonas Fluorescens ATCC 13525TS brothGC-MS SPMEyes
BacteriaPseudomonas Fluorescens R2FAB medium + 1% citrateGC-FID,GC/MS
BacteriaPseudomonas Fluorescens R76LB mediumGC/MSYes
BacteriaPseudomonas Fluorescens WCS 417rLB Headspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaPseudomonas Flureorescens SBW25Kings B + rif,+kann; PDA GC-Q-TOF-MSno
BacteriaPseudomonas Frederiksbergensis S04LB mediumGC/MSYes
BacteriaPseudomonas Frederiksbergensis S24LB mediumGC/MSYes
BacteriaPseudomonas Putida BP25Luria Bertani AgarHeadspace GC/MSNo
BacteriaPseudomonas Putida BP25RTSBPropak Q adsorbent trap/GC-MS
BacteriaPseudomonas Putida ISOfLB, MS and MR-VPHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaPseudomonas Putida KT 2442AB medium + 1% citrate or 0,02% citrate or 1% glucose +1% casaminoacid GC-FID,GC/MS
BacteriaPseudomonas Putida USB2105King's B AgarSPME-GC/MSNo
BacteriaPseudomonas Sp.n/an/a
BacteriaPseudomonas Tolaasii NCPPB 2192KBSPME-GC
BacteriaPseudomonas Tolaasii USB1KBSPME-GC
BacteriaPseudomonas Tolaasii USB66KBSPME-GC
BacteriaPseudomonas Veronii R02LB mediumGC/MSYes
BacteriaPseudomonas Vranovensis R01LB mediumGC/MSYes
BacteriaSchewanella PutrefaciensTS brothGC-MS Super Qno
BacteriaSchewanella Putrefaciens ATCC 8071TS brothGC-MS SPMEyes
BacteriaSerratia Plymuthica HRO-C48LB Headspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaSerratia Plymuthica IC14LB Headspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaShewanella Spp.n/an/a
BacteriaShigella Sonnei ATCCV 25931TS brothGC-MS SPMEyes
BacteriaStreptococcus Thermophilus ATCC 14485TS brothGC-MS SPMEyes
FungiTuber Mesentericumn/amicroextraction-gas chromatography-mass spectrometry analysis (SPME-GC-MS)
BacteriaPseudomonas AeruginosaBlood agar/chocolate blood agaHS-SPME/GC-MS no
BacteriaPseudomonas Fluorescens L13-6-12n/an/a
BacteriaPseudomonas Fragi 25Pn/an/a
BacteriaPseudomonas Trivialis 3Re2-7n/an/a


Undecane

Mass-Spectra

Compound Details

Synonymous names
RSJKGSCJYJTIGS-UHFFFAOYSA-N
Hendecane
Hendekan
Undecane
undecan
Undekan
undecyl group
Undecane, analytical standard
n-Hendecane
UND
N-UNDECANE
JV0QT00NUE
UNII-JV0QT00NUE
UNDECAN-2-YL
U203
AC1L23G2
Decane, methyl-
KSC176C3J
UN2330
Undecane, >=99%
U0002
QSPL 058
S0283
CTK0H6134
Undecane, 99%
NSC66159
CHEMBL132474
ACMC-209t6p
HSDB 5791
CCRIS 3796
LTBB002321
LP077622
LP067812
LP092643
Jsp000912
n-C11H24
UN 2330
DTXSID9021689
ZINC1693211
CHEBI:46342
DSSTox_CID_1689
NSC 66159
TRA0090240
SC-79237
DSSTox_GSID_21689
CC-33184
NSC-66159
ANW-42095
AN-20593
C-28174
DSSTox_RID_76285
MFCD00008959
LMFA11000591
RTR-002350
AI3-21126
TR-002350
DB-041031
LS-158394
AKOS005145675
J-002689
FT-0633353
BRN 1697099
I14-60624
Tox21_300076
CH3-[CH2]9-CH3
NCGC00254001-01
NCGC00247896-01
MCULE-7319807036
1120-21-4
EINECS 214-300-6
n-Undecane, 99% 50g
Undecane [UN2330] [Flammable liquid]
61193-21-3
CAS-1120-21-4
MolPort-001-783-218
Undecane [UN2330] [Flammable liquid]
4-01-00-00487 (Beilstein Handbook Reference)
17398EC4-D16F-42F6-8A27-60F8EC075469
InChI=1/C11H24/c1-3-5-7-9-11-10-8-6-4-2/h3-11H2,1-2H
Microorganism:

Yes

IUPAC nameundecane
SMILESCCCCCCCCCCC
InchiInChI=1S/C11H24/c1-3-5-7-9-11-10-8-6-4-2/h3-11H2,1-2H3
FormulaC11H24
PubChem ID14257
Molweight156.313
LogP5.35
Atoms35
Bonds34
H-bond Acceptor0
H-bond Donor0
Chemical ClassificationAlkanes

mVOC Specific Details

Volatilization
The Henry's Law constant for n-undecane is estimated as 6.1 atm-cu m/mole(SRC) derived from its vapor pressure, 0.412 mm Hg(1), and water solubility, 0.014 mg/L(2). This Henry's Law constant indicates that n-undecane is expected to volatilize rapidly from water surfaces(3). Based on this Henry's Law constant, the volatilization half-life from a model river (1 m deep, flowing 1 m/sec, wind velocity of 3 m/sec)(3) is estimated as 3.6 hours(SRC). The volatilization half-life from a model lake (1 m deep, flowing 0.05 m/sec, wind velocity of 0.5 m/sec)(3) is estimated as 5 days(SRC). However, volatilization from water surfaces is expected to be attenuated by adsorption to suspended solids and sediment in the water column. The estimated volatilization half-life from a model pond is about 1 month if adsorption is considered(4). n-Undecane's estimated Henry's Law constant indicates that volatilization from moist soil surfaces may occur(SRC). n-Undecane is not expected to volatilize from dry soil surfaces based upon its vapor pressure(SRC).
Literature: (1) Daubert TE, Danner RP; Physical and Thermodynamic Properties of Pure Chemicals Data Compilation. Washington, DC: Taylor and Francis (1999) (2) Shaw DG; Hydrocarbons with Water and Seawater. Part II: Hydrocarbons C8 to C36. International Union of Pure and Applied Chemistry. Solubility Data Series. Vol 38 p. 326 (1989) (3) Lyman WJ et al; Handbook of Chemical Property Estimation Methods. Washington,DC: Amer Chem Soc pp. 15-1 to 15-29 (1990) (4) USEPA; EXAMS II Computer Simulation (1987)
Solubility
In water, 0.014 mg/L at 25 deg (critical evaluation of all available data)
Literature: Shaw DG; Hydrocarbons with Water and Seawater. Part II: Hydrocarbons C8 to C36. International Union of Pure and Applied Chemistry. Solubility Data Series. Vol 38 p. 326 (1989)
Literature: #In water, 0.0044 mg/L at 25 deg C
Literature: Yalkowsky, S.H., He, Yan, Jain, P. Handbook of Aqueous Solubility Data Second Edition. CRC Press, Boca Raton, FL 2010, p. 806
Literature: #Miscible with ethyl alcohol, ether
Literature: Haynes, W.M. (ed.). CRC Handbook of Chemistry and Physics. 95th Edition. CRC Press LLC, Boca Raton: FL 2014-2015, p. 3-544
Soil Adsorption
Using a structure estimation method based on molecular connectivity indices(1), the Koc of n-undecane can be estimated to be 2,600(SRC). According to a classification scheme(2), this estimated Koc value suggests that n-undecane is expected to have slight mobility in soil.
Literature: (1) US EPA; Estimation Program Interface (EPI) Suite. Ver. 4.11. Nov, 2012. Available from, as of Nov 16, 2015: http://www2.epa.gov/tsca-screening-tools (2) Swann RL et al; Res Rev 85: 23 (1983)
Vapor Pressure
PressureReference
0.412 mm Hg at 25 deg CDaubert TE, Danner RP; Physical and Thermodynamic Properties of Pure Chemicals Data Compilation. Washington, DC: Taylor and Francis (1999)
MS-Links
1D-NMR-Links

Microorganisms emitting the compound
KingdomSpeciesBiological FunctionOrigin/HabitatReference
FungiTrichoderma VirideHung et al., 2013
BacteriaBacillus Amyloliquefaciens IN937an/aLee et al., 2012
BacteriaBacillus Pumilus ES4promotion of performance of Chlorella sorokiniana ShihAmavizca et al. 2017
BacteriaBacillus Subtilis 168triggers induced systemic resistance (ISR) in ArabidopsisnaRyu et al., 2004
BacteriaBacillus Subtilis GB03n/aLee et al., 2012
BacteriaPaenibacillus Polymyxa E681n/aLee et al., 2012
BacteriaPseudomonas Aurantiacan/aFernando et al., 2005
BacteriaPseudomonas Chlororaphisn/aFernando et al., 2005
BacteriaPseudomonas Corrugaten/aFernando et al., 2005
BacteriaPseudomonas Fluorescensn/aFernando et al., 2005
BacteriaPseudomonas Putida ISOfn/aBlom et al., 2011
BacteriaSerratia Spp. B2675n/aBruce et al., 2004
BacteriaSerratia Spp. B675n/aBruce et al., 2004
FungiFusarium Graminearum 15AcDONn/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON 1001tan/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON ZFR 29n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_4n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_5n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_6n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_7n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_8n/aBusko et al., 2014
FungiFusarium Graminearum 15AcDON_9n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON 1002tn/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON 11791n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON 1509n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON 8046n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON NRRL38369n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON NRRL6394n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON ZFR 15n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON ZFR 37n/aBusko et al., 2014
FungiFusarium Graminearum 3AcDON ZFR 51n/aBusko et al., 2014
FungiFusarium Graminearum NIVn/aBusko et al., 2014
FungiFusarium Graminearum NIV 357n/aBusko et al., 2014
FungiFusarium Graminearum NIV ZFR 119n/aBusko et al., 2014
FungiFusarium Graminearum NIV ZFR 23n/aBusko et al., 2014
FungiFusarium Graminearum NIV ZFR 48n/aBusko et al., 2014
FungiFusarium Graminearum NIV_5n/aBusko et al., 2014
FungiFusarium Graminearum NIV_6n/aBusko et al., 2014
FungiFusarium Graminearum NIV_7n/aBusko et al., 2014
FungiFusarium Graminearum NIV_8n/aBusko et al., 2014
FungiSaccharomyces Cerevisiae Y1001n/aBruce et al., 2004
Method
KingdomSpeciesGrowth MediumApplied MethodVerification
FungiTrichoderma VirideMalt extract agar Headspace volatiles collected with colomn/TD-GC-MSYes
BacteriaBacillus Amyloliquefaciens IN937aTryptic soy agarSPME coupled with GC-MS
BacteriaBacillus Pumilus ES4TSASPME-GCno
BacteriaBacillus Subtilis 168Murashige and Skoog mediumcapillary GC;GC/MSYes
BacteriaBacillus Subtilis GB03Tryptic soy agarSPME coupled with GC-MS
BacteriaPaenibacillus Polymyxa E681Tryptic soy agarSPME coupled with GC-MS
BacteriaPseudomonas Aurantiacan/an/a
BacteriaPseudomonas Chlororaphisn/an/a
BacteriaPseudomonas Corrugaten/an/a
BacteriaPseudomonas Fluorescensn/an/a
BacteriaPseudomonas Putida ISOfMSHeadspace air was trapped in glass Gerstel TDS tubes and analysed by gas chromatography with mass selective detection (GC-MSD)
BacteriaSerratia Spp. B2675n/an/a
BacteriaSerratia Spp. B675n/an/a
FungiFusarium Graminearum 15AcDONyeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON 1001tayeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON ZFR 29yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_4yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_5yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_6yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_7yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_8yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 15AcDON_9yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON 1002tyeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON 11791yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON 1509yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON 8046yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON NRRL38369yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON NRRL6394yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON ZFR 15yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON ZFR 37yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum 3AcDON ZFR 51yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIVyeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV 357yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV ZFR 119yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV ZFR 23yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV ZFR 48yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV_5yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV_6yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV_7yeast extract sucrose agarSPME/GC-MS
FungiFusarium Graminearum NIV_8yeast extract sucrose agarSPME/GC-MS
FungiSaccharomyces Cerevisiae Y1001n/an/a


Heptadecan-1-ol

Mass-Spectra

Compound Details

Synonymous names
Heptadecanol
GOQYKNQRPGWPLP-UHFFFAOYSA-N
HEPTADECYL ALCOHOL
1-Hydroxyheptadecane
n-Heptadecanol
1-Heptadecanol
Prim-n-heptadecyl alcohol
ACMC-1APGQ
N3IL85TMCX
Heptadecan-1-ol
n-Heptadecanol-1
UNII-N3IL85TMCX
HEPTADECANOL (mixed primary isomers)
AC1L253Q
7190AA
C17H36O
SCHEMBL29893
NSC3921
CTK0H8310
CHEMBL278989
LP079876
UNII-B1K89384RJ component GOQYKNQRPGWPLP-UHFFFAOYSA-N
NSC 3921
NSC-3921
DTXSID3051460
1-Heptadecanol, 98%
DSSTox_CID_8323
CHEBI:77470
ST2419405
AK-81495
DSSTox_GSID_28323
AN-22341
ANW-20948
KB-65150
LS-74185
LS-74184
ZINC43649353
MFCD00002822
CS-W004296
AI3-01234
TR-005735
RTR-005735
J-008119
Alcohols, C16-18
AKOS015899030
TRA-0205147
4CH-014542
FT-0607873
I14-12069
Tox21_303960
1454-85-9
NCGC00356985-01
EINECS 215-932-5
E(R)AEss (1/4)
MolPort-002-485-402
CAS-67762-27-0
1-Heptadecanol, purum, >=97.0% (GC)
60EE1D22-0C43-4AEE-B6F6-FBD44178F59F
Microorganism:

Yes

IUPAC nameheptadecan-1-ol
SMILESCCCCCCCCCCCCCCCCCO
InchiInChI=1S/C17H36O/c1-2-3-4-5-6-7-8-9-10-11-12-13-14-15-16-17-18/h18H,2-17H2,1H3
FormulaC17H36O
PubChem ID15076
Molweight256.474
LogP6.58
Atoms54
Bonds53
H-bond Acceptor1
H-bond Donor1
Chemical ClassificationAlcohols

mVOC Specific Details


Microorganisms emitting the compound
KingdomSpeciesBiological FunctionOrigin/HabitatReference
BacteriaPseudomonas Aurantiacan/aFernando et al., 2005
BacteriaPseudomonas Chlororaphisn/aFernando et al., 2005
BacteriaPseudomonas Corrugaten/aFernando et al., 2005
BacteriaPseudomonas Fluorescensn/aFernando et al., 2005
Method
KingdomSpeciesGrowth MediumApplied MethodVerification
BacteriaPseudomonas Aurantiacan/an/a
BacteriaPseudomonas Chlororaphisn/an/a
BacteriaPseudomonas Corrugaten/an/a
BacteriaPseudomonas Fluorescensn/an/a


Compound Details

Synonymous names
DIOQZVSQGTUSAI-UHFFFAOYSA-N
DECANE
decan
Decyl hydride
Dekan
normal-decane
decyl group
Decane, analytical standard
AC1Q2VXY
n-Decane
n-Dekan
ACMC-1BUCN
D10
AC1L268C
HSDB 63
I932
KSC179Q2P
N-DECANE, CERTIFIED GRADE
Nonane, methyl-
C10H22
decan-2-yl
decan-3-yl
decan-5-yl
NSC8781
UN2247
CCRIS 653
CTK0H9827
D0011
Decane, >=95%
NK85062OIY
QSPL 111
S0282
S0554
CHEMBL134537
Decane, 99%
Decane, n-
LS-693
RP20784
LTBB002320
UNII-NK85062OIY
WLN: 10H
Decane, anhydrous, >=99%
DTXSID6024913
Jsp001609
LP003952
LP004138
LP067944
LP068261
LP092567
n-C10H22
NSC 8781
NSC-8781
STL280316
UN 2247
CHEBI:41808
DSSTox_CID_4913
Reference Material for Flash Point Certified by The Japan Petroleum Institute, Decane
ZINC1648227
AN-22946
ANW-42089
DSSTox_GSID_24913
KB-49638
SC-79309
TRA0023373
DSSTox_RID_77577
LMFA11000568
MFCD00008954
AI3-24107
RTR-003754
TR-003754
AKOS005145676
Alkanes, C10-18
J-005051
J-520211
BRN 1696981
FT-0697465
Decane, ReagentPlus(R), >=99%
I14-17989
Tox21_201881
Tox21_300336
(C10-C18) Alkanes
124-18-5
F1908-0171
CH3-[CH2]8-CH3
Decane, SAJ special grade, >=99.0%
MCULE-6071426098
NCGC00247996-01
NCGC00247996-02
NCGC00254283-01
NCGC00259430-01
CAS-124-18-5
EINECS 204-686-4
28598-83-6
63335-87-5
73138-29-1
n-Decane, 99% 100ml
MolPort-001-783-724
n-Decane [UN2247] [Flammable liquid]
Decane, purum, >=95.0% (GC)
Decane, purum, >=98.0% (GC)
n-Decane [UN2247] [Flammable liquid]
4-01-00-00464 (Beilstein Handbook Reference)
DBF497D1-4529-4457-841E-9D33CDF22B1C
InChI=1/C10H22/c1-3-5-7-9-10-8-6-4-2/h3-10H2,1-2H
Microorganism:

Yes

IUPAC namedecane
SMILESCCCCCCCCCC
InchiInChI=1S/C10H22/c1-3-5-7-9-10-8-6-4-2/h3-10H2,1-2H3
FormulaC10H22
PubChem ID15600
Molweight142.286
LogP4.91
Atoms32
Bonds31
H-bond Acceptor0
H-bond Donor0
Chemical ClassificationAlkanes

mVOC Specific Details

Volatilization
The Henry's Law constant for n-decane is estimated as 5.15 atm-cu m/mole(SRC) derived from its vapor pressure, 1.43 mm Hg(1), and water solubility, 0.052 mg/L(2). This Henry's Law constant indicates that n-decane is expected to volatilize rapidly from water surfaces(3). Based on this Henry's Law constant, the volatilization half-life from a model river (1 m deep, flowing 1 m/sec, wind velocity of 3 m/sec)(3) is estimated as 3.5 hours(SRC). The volatilization half-life from a model lake (1 m deep, flowing 0.05 m/sec, wind velocity of 0.5 m/sec)(3) is estimated as 4.7 days(SRC). n-Decane's estimated Henry's Law constant indicates that volatilization from moist soil surfaces may occur(SRC). n-Decane is expected to volatilize from dry soil surfaces based upon its vapor pressure(SRC). Biodegradation studies in soil have observed volatilization to be a more important removal process than biodegradation for n-decane(4,5).
Literature: (1) Daubert TE, Danner RP; Physical and Thermodynamic Properties of Pure Chemicals. Design Inst Phys Prop Data, Amer Inst Chem Eng. New York, NY: Hemisphere Pub. Corp. (1989) (2) Yalkowsky SH et al; Handbook of Aqueous Solubility Data. 2nd ed., Boca Raton, FL: CRC Press, p. 745 (2010) (3) Lyman WJ et al; Handbook of Chemical Property Estimation Methods. Washington, DC: Amer Chem Soc pp. 15-1 to 15-29 (1990) (4) Stronguilo ML et al; Chemosphere 29: 272-81 (1994) (5) Dean-Ross D; Bull Environ Contam Toxicol 51: 596-9 (1993)
Literature: #First-order evaporation constants of n-decane in 3-mm layer No 2 fuel oil, darkened room, wind speed 21 km/hr: at 5 deg C, 1.19X10-3/min; at 10 deg C, 1.87X10-3/min; at 20 deg C, 3.44X10-3/min; at 30 deg C, 6.98X10-3/min
Literature: Verschueren, K. Handbook of Environmental Data on Organic Chemicals. Volumes 1-2. 4th ed. John Wiley & Sons. New York, NY. 2001, p. 655
Soil Adsorption
Using a structure estimation method based on molecular connectivity indices(1), the Koc of n-decane can be estimated to be 1500(SRC). According to a classification scheme(2), this estimated Koc value suggests that n-decane is expected to have low mobility in soil.
Literature: (1) US EPA; Estimation Program Interface (EPI) Suite. Ver. 4.11. Nov, 2012. Available from, as of Nov 9, 2015: http://www2.epa.gov/tsca-screening-tools (2) Swann RL et al; Res Rev 85: 17-28 (1983)
Vapor Pressure
PressureReference
1.43 mm Hg at 25 deg CDaubert, T.E., R.P. Danner. Physical and Thermodynamic Properties of Pure Chemicals Data Compilation. Washington, D.C.: Taylor and Francis, 1989.
MS-Links
1D-NMR-Links

Microorganisms emitting the compound
KingdomSpeciesBiological FunctionOrigin/HabitatReference
BacteriaBacillus Amyloliquefaciens IN937atriggers induced systemic resistance (ISR) in ArabidopsisnaRyu et al., 2004
BacteriaBacillus Subtilis 168triggers induced systemic resistance (ISR) in ArabidopsisnaRyu et al., 2004
BacteriaBacillus Subtilis GB03triggers induced systemic resistance (ISR) in ArabidopsisnaRyu et al., 2004
BacteriaCarnobacterium Divergens 9Pn/aErcolini et al., 2009
BacteriaPseudomonas Aurantiacan/aFernando et al., 2005
BacteriaPseudomonas Chlororaphisn/aFernando et al., 2005
BacteriaPseudomonas Corrugaten/aFernando et al., 2005
BacteriaPseudomonas Fluorescensn/aFernando et al., 2005
Fungin/aFortywoodland of the Basilicata regionMauriello et al., 2004
FungiNoneFortywoodland of the Basilicata regionMauriello et al., 2004
FungiCladosporium CladosporiodesHedlund et al 1995
FungiCladosporium HerbarumHedlund et al 1995
FungiPenicillium SpinulosumHedlund et al 1995
FungiTuber Borchiin/aFortywoodland of the Basilicata regionMauriello et al., 2004
FungiTuber Brumalen/aFortywoodland of the Basilicata regionMauriello et al., 2004
Method
KingdomSpeciesGrowth MediumApplied MethodVerification
BacteriaBacillus Amyloliquefaciens IN937aMurashige and Skoog mediumcapillary GC;GC/MSYes
BacteriaBacillus Subtilis 168Murashige and Skoog mediumcapillary GC;GC/MSYes
BacteriaBacillus Subtilis GB03Murashige and Skoog mediumcapillary GC;GC/MSYes
BacteriaCarnobacterium Divergens 9Pn/an/a
BacteriaPseudomonas Aurantiacan/an/a
BacteriaPseudomonas Chlororaphisn/an/a
BacteriaPseudomonas Corrugaten/an/a
BacteriaPseudomonas Fluorescensn/an/a
Fungin/amicroextraction-gas chromatography-mass spectrometry analysis (SPME-GC-MS)
FungiNonemicroextraction–gas chromatography–mass spectrometry analysis (SPME–GC–MS)No
FungiCladosporium CladosporiodesGC-MSno
FungiCladosporium HerbarumGC-MSno
FungiPenicillium SpinulosumGC-MSno
FungiTuber Borchiin/amicroextraction-gas chromatography-mass spectrometry analysis (SPME-GC-MS)
FungiTuber Brumalen/amicroextraction-gas chromatography-mass spectrometry analysis (SPME-GC-MS)


4-octylbenzoic Acid

Compound Details

Synonymous names
ZQLDNJKHLQOJGE-UHFFFAOYSA-N
Para-octylbenzoic acid
p-Octylbenzoic acid
AC1L2DJI
4-Octylbenzoic acid
p-n-octylbenzoic acid
C4H3FN2O2S
4-n-Octylbenzoic acid
4476AB
1538AE
p-n-Octyl benzoic acid
4478AB
4477AB
4475AB
4474AB
1540AE
1539AE
CTK1C4682
W2455
Z5855
O0137
HMS547C04
SCHEMBL503611
ACMC-209ij0
NSC173066
AS-9143
LP002037
CHEMBL3273770
DTXSID4063088
SBB008601
FR-2313
BENZOIC ACID, p-OCTYL-
ZINC1697881
AX8099633
AK-79085
LS-38053
AN-25202
ACM3575313
ANW-28282
CCG-41619
Boc-N-Me-Val-OH DCHA
4-Octylbenzoic acid, 99%
ZX-AT023454
MFCD00042649
Benzoic acid, 4-octyl-
C-48052
Maybridge1_001984
NSC 173066
TR-014758
ST50827336
ST24043958
RTR-014758
NSC-173066
I01-7641
AKOS004908305
FT-0619330
BRN 1954607
C12H23N.C11H21NO4
MCULE-8941391261
3575-31-3
EINECS 222-692-5
MolPort-001-761-966
SR-01000631680-1
4-09-00-01962 (Beilstein Handbook Reference)
4-Octylbenzoic acid, puriss., liquid crystal, >=99.0% (T)
Microorganism:

Yes

IUPAC name4-octylbenzoic acid
SMILESCCCCCCCCC1=CC=C(C=C1)C(=O)O
InchiInChI=1S/C15H22O2/c1-2-3-4-5-6-7-8-13-9-11-14(12-10-13)15(16)17/h9-12H,2-8H2,1H3,(H,16,17)
FormulaC15H22O2
PubChem ID19147
Molweight234.339
LogP5.26
Atoms39
Bonds39
H-bond Acceptor2
H-bond Donor1
Chemical ClassificationBenzenoids Acids carboxylic acids

mVOC Specific Details


Microorganisms emitting the compound
KingdomSpeciesBiological FunctionOrigin/HabitatReference
BacteriaPseudomonas Aurantiacan/aFernando et al., 2005
BacteriaPseudomonas Chlororaphisn/aFernando et al., 2005
BacteriaPseudomonas Corrugaten/aFernando et al., 2005
BacteriaPseudomonas Fluorescensn/aFernando et al., 2005
Method
KingdomSpeciesGrowth MediumApplied MethodVerification
BacteriaPseudomonas Aurantiacan/an/a
BacteriaPseudomonas Chlororaphisn/an/a
BacteriaPseudomonas Corrugaten/an/a
BacteriaPseudomonas Fluorescensn/an/a