Search results for "Butane"

showing 10 items of 184 documents

CCDC 153863: Experimental Crystal Structure Determination

2001

Related Article: G.Asensio, P.Gavina, A.Cuenca, M.C.R.de Arellano, L.R.Domingo, M.Medio-Simon|2000|Tetrahedron:Asymm.|11|3481|doi:10.1016/S0957-4166(00)00330-X

(SRs)-3-Methyl-1-(4-methylphenylsulfinyl)-2-butanethiolSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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Volatile Profiles of Emissions from Different Activities Analyzed Using Canister Samplers and Gas Chromatography-Mass Spectrometry (GC/MS) Analysis: …

2017

The objective of present study was to identify volatile organic compounds (VOCs) emitted from several sources (fuels, traffic, landfills, coffee roasting, a street-food laboratory, building work, indoor use of incense and candles, a dental laboratory, etc.) located in Palermo (Italy) by using canister autosamplers and gas chromatography-mass spectrometry (GC-MS) technique. In this study, 181 VOCs were monitored. In the atmosphere of Palermo city, propane, butane, isopentane, methyl pentane, hexane, benzene, toluene, meta- and para-xylene, 1,2,4 trimethyl benzene, 1,3,5 trimethyl benzene, ethylbenzene, 4 ethyl toluene and heptane were identified and quantified in all sampling sites.

010504 meteorology & atmospheric sciencescanisterHealth Toxicology and Mutagenesislcsh:Medicine010501 environmental sciences01 natural sciencesEthylbenzenePalermoArticleGas Chromatography-Mass Spectrometrychemistry.chemical_compoundPropaneCitiesBenzeneindoor0105 earth and related environmental sciencesvolatile organic compounds (VOCs)Air PollutantsVolatile Organic Compoundscanister; indoor; volatile organic compounds (VOCs); PalermoAtmospherelcsh:RPublic Health Environmental and Occupational HealthButaneToluenePentaneIsopentanechemistryItalyEnvironmental chemistryEnvironmental scienceGas chromatography–mass spectrometryEnvironmental MonitoringInternational Journal of Environmental Research and Public Health
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Novel biocatalysts for glycerol conversion into 2,3-butanediol

2016

Abstract Bioconversion of biodiesel-derived waste glycerol into high-value products is proposed as a solution to improve economic viability of biorefineries. Several microorganisms are able to metabolize glycerol into 2,3-butanediol (2,3-BD), a promising bulk chemical with wide applications: solvent, fuel additive, and feedstock for synthetic rubber production, among them. In the present work, a wide screening of microorganisms present both into the waste water treatment system in a biodiesel industry and in culture collections was carried out in order to evaluate their potential as new 2,3-BD producer biocatalysts. Two microorganisms for 2,3-BD production from glycerol as sole carbon sourc…

0106 biological sciences0301 basic medicineBiodieselbiologyBioconversionBioengineeringRaoultella terrigenaPulp and paper industrybiology.organism_classification01 natural sciencesApplied Microbiology and BiotechnologyBiochemistryRaoultella planticola03 medical and health scienceschemistry.chemical_compound030104 developmental biologyRaoultellachemistryBiochemistry010608 biotechnology23-ButanediolGlycerolYeast extractProcess Biochemistry
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Male sex pheromone of cockroach Eurycotis floridana (Walker) (Blattidae, Polyzosteriinae): role and composition of tergites 2 and 8 secretions

1994

0098-0331; In Eurycotis floridana, the male calling behavior is associated with the exposition of epidermal glands located under tergites 2, 7, and 8. 4-Hydroxy-5-methyl-3(2H)-furanone and 4-hydroxy-2,5-dimethyl-3(2H)-furanone were recently identified as the specific components of tergite 7 secretion. Methylene chloride extracts of tergite 7 and its major compound 4-hydroxy-5-methyl-3(2H)-furanone attract the conspecific females at a distance. Methylene chloride extracts of tergite 8 are also attractive at a distance to the females, whereas extracts of tergite 2 had no effect on males and females. Our GC investigations showed the absence of specific compounds in tergite 2 secretions. The GC…

0106 biological sciencesEURYCOTIS FLORIDANAZoologyDODECANOL(2R* 3R*)-BUTANEDIOL010603 evolutionary biology01 natural sciencesBiochemistrySEXUAL BEHAVIORbiology.animalEcology Evolution Behavior and SystematicsCockroachDICTYOPTERAbiologyBlattidaeDictyopteraBENZYL-2-HYDROXYBENZOATEGeneral MedicineAnatomybiology.organism_classification010602 entomologyPolyzosteriinaeBLATTIDAECOCKROACHSexual behaviorSex pheromoneSEX PHEROMONEComposition (visual arts)[SDE.BE]Environmental Sciences/Biodiversity and Ecology
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Re-definition and supporting evidence toward Fanconi Anemia as a mitochondrial disease: Prospects for new design in clinical management

2021

Fanconi anemia (FA) has been investigated since early studies based on two definitions, namely defective DNA repair and proinflammatory condition. The former definition has built up the grounds for FA diagnosis as excess sensitivity of patients' cells to xenobiotics as diepoxybutane and mitomycin C, resulting in typical chromosomal abnormalities. Another line of studies has related FA phenotype to a prooxidant state, as detected by both in vitro and ex vivo studies. The discovery that the FA group G (FANCG) protein is found in mitochondria (Mukhopadhyay et al., 2006) has been followed by an extensive line of studies providing evidence for multiple links between other FA gene products and mi…

0301 basic medicineMitochondrial DNAMitochondrial DiseasesMitomycinMitochondrial diseaseClinical BiochemistryDiepoxybutaneReview ArticleMitochondrionBiologyBiochemistry03 medical and health scienceschemistry.chemical_compound0302 clinical medicineFanconi anemiaFANCGmedicineHumansClastogenCarnitinelcsh:QH301-705.5Coenzyme Q10lcsh:R5-920ProteinOrganic ChemistryMitochondrial nutrientProteinsmedicine.diseaseMitochondrial diseaseFanconi AnemiaPhenotypeClastogens030104 developmental biologylcsh:Biology (General)chemistryProoxidant stateCancer researchMitochondrial nutrientsMitochondrial dysfunctionlcsh:Medicine (General)030217 neurology & neurosurgeryHumanmedicine.drugRedox Biology
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CCDC 244398: Experimental Crystal Structure Determination

2005

Related Article: C.M.Grunert, P.Weinberger, J.Schweifer, C.Hampel, A.F.Stassen, K.Mereiter, W.Linert|2005|J.Mol.Struct.|733|41|doi:10.1016/j.molstruc.2004.07.036

14-bis(1H-Tetrazolyl)butaneSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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Synthesis of disparlure and monachalure enantiomers from 2,3-butanediacetals

2020

2,3-Butanediacetal derivatives were used for the stereoselective synthesis of unsymmetrically substituted cis-epoxides. The procedure was applied for the preparation of both enantiomers of disparlure and monachalure, the components of the sex pheromones of the gypsy moth (Lymantria dispar) and the nun moth (Lymantria monacha) using methyl (2S,3R,5R,6R)-3-ethylsulfanylcarbonyl-5,6-dimethoxy-5,6-dimethyl-1,4-dioxane-2-carboxylate as the starting material.

23-butanediacetalStereochemistry2010402 general chemistry01 natural sciencesFull Research Papercis-epoxidelcsh:QD241-441lcsh:Organic chemistryLymantria dispar3-butanediacetallcsh:Science(+)-monachalurebiology010405 organic chemistryChemistryOrganic Chemistry(−)-monachalureLymantria monachaGypsy mothbiology.organism_classification0104 chemical sciences(−)-disparlureChemistrySex pheromonelcsh:QEnantiomer(+)-disparlureBeilstein Journal of Organic Chemistry
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CCDC 1488067: Experimental Crystal Structure Determination

2016

Related Article: Fangfang Pan, Ngong Kodiah Beyeh, Robin H. A. Ras, Kari Rissanen|2016|Cryst.Growth Des.|16|6729|doi:10.1021/acs.cgd.6b01454

281420-tetrapropyl-5111723-tetrakis((benzylazaniumyl)methyl)-46101216182224-octahydroxycalix(4)arene tetrachloride 11223344-octafluoro-14-diiodobutane 14-dioxane solvateSpace GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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CCDC 2051973: Experimental Crystal Structure Determination

2021

Related Article: Jan Sietmann, Mike Ong, Christian Mück-Lichtenfeld, Constantin G. Daniliuc, Johannes M. Wiest|2021|Angew.Chem.,Int.Ed.|60|9719|doi:10.1002/anie.202100642

3-phenyl-3'3'a8'8'a-tetrahydrospiro[cyclobutane-12'-indeno[12-d][13]oxazole]Space GroupCrystallographyCrystal SystemCrystal StructureCell ParametersExperimental 3D Coordinates
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Reaction products and pathways in the selective oxidation of C-2-C-4 alkanes on MoVTeNb mixed oxide catalysts

2010

[EN] The catalytic properties of MoVTeNbO catalysts during the selective oxidation of short chain alkanes and olefins (C-2-C-4) have been comparatively studied The main reaction products have been ethylene from ethane acrylic acid from propane maim anhydride from n-butane and methacrolein from isobutane FTIR studies of the adsorption of the main reaction products i e olefins and aldehydes over MoVTeNbO catalyst has been carried out Accordingly the reaction pathway is explained on the basis of the characteristics of the alkane fed the stability and reactivity of both the intermediates and the reaction products and the nature of the catalytic sites involved in each reaction (C) 2010 Elsevier …

Alkanechemistry.chemical_classificationMaleic anhydrideButaneMethacroleinGeneral ChemistryAldehydeCatalysisCatalysisMoVTeNb mixed oxideschemistry.chemical_compoundchemistryIsobutaneOrganic chemistryReactivity (chemistry)Selective oxidation of alkanesIn situ FTIR spectra
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