Search results for "Gas Chromatography"

showing 10 items of 750 documents

Composition of the essenthial oil of Petagnaea gussonei (Sprengel) Rauschert, a relict species from Sicily (Southern Italy).

2008

The essential oil from leaves, stems and roots of Petagnaea gussonei (Sprengel) Rauschert ( = Petagnia saniculifolia Guss.), endemic to the Nebrodi Mountains (Sicily, Italy), has been analysed by the gas chromatography–mass spectrometry (GC–MS) system on two fused-silica capillary columns of different polarities. A total of 94 components were identified. Quantitative and qualitative differences were found among the analysed parts. The principal compounds from the leaves oil were found to be (w/w%) germacrene D (19.9%), γ-muurolene (7.96%) and caryophyllene oxide (6.85%), while in the oil from stems hexadecanoic acid (23.40%), germacrene D (18.50%) and (Z,Z)-9,12-octadecadienoic acid (13.20%…

Petagnia saniculifoliabiologyChemistrySaniculoideaeGeneral Chemistrybiology.organism_classificationSesquiterpenePetagnaeaTerpenoidessential oillaw.inventionSteam distillationPalmitic acidchemistry.chemical_compoundlawSaturated fatty acidBotanygermacrene Dhexadecanoic acidPetagnaea gussoneiGas chromatography–mass spectrometryEssential oilFood Science
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Novel Source of Ubiquitous Phthalates as Analytical Contaminant

1981

Pharmaceutical PreparationsPlasticizersChemistryEnvironmental chemistryPhthalic AcidsPharmaceutical ScienceBlood Chemical AnalysisGas Chromatography-Mass SpectrometryJournal of Pharmaceutical Sciences
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Volatile Components of Centaurea Bracteata and C. Pannonica subsp. Pannonica growing wild in Croatia

2010

This paper reports on the volatile components of oils from the aerial parts (CBA) and roots (CBR) of Centaurea bracteata Scop. and aerial parts of C. pannonica (Heuffel) Simonkai subsp. pannonica (CPA), two Asteraceae growing wild in Croatia. The volatile components, obtained by hydrodistillation, were determined by GC-MS analysis. The yields (w/w) of the dried oils were 0.10% (CBA), 0.22% (CBR) and 0.09% (CPA), respectively. A total of 91 compounds were identified accounting for 91.1%, 93.3% and 87.9% of the total oil for CBA, CBR and CPA, respectively. All the samples were characterized mainly by hydrocarbons (7.1-34.1%), fatty acids (9.7-45.9%), and oxygenated sesquiterpenes (15.2-16.6%…

PharmacologyCentaurea bracteatabiologyNonacosanePlant compositionPlant ScienceGeneral MedicineAsteraceaebiology.organism_classificationHorticulturechemistry.chemical_compoundComplementary and alternative medicinechemistryCaryophyllene oxideEnvironmental chemistryDrug DiscoveryGas chromatography–mass spectrometryChemical compositionNatural Product Communications
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Determination of Aldicarb, Aldicarb Sulfoxide, and Aldicarb Sulfone in Oranges by Simple Gas–Liquid Chromatography with Nitrogen–Phosphorus Detection

1994

Abstract A reversed-phase liquid chromatographic method, using an acetonitrile–water gradient mobile phase, and a gas-liquid chromatographic method with nitrogen–phosphorus and flame photometric detection were compared for simultaneous and separate determinations of trace quantities of aldicarb and its metabolites aldicarb sulfone and aldicarb sulfoxide. One hundred gram samples of fortified oranges were extracted with water–acetone, water-acetonitrile, or water–methanol, and the extracts were partitioned with methylene chloride. Partitioning with other organic solvents such as chloroform, ethyl acetate, or methyl isobutyl ketone was also investigated. When performed under optimal condition…

PharmacologyChromatographyAldicarbChemistryAldicarb sulfoxideAldicarb sulfoneNitrogen phosphorusAnalytical ChemistryReaction productchemistry.chemical_compoundEnvironmental ChemistryGas chromatographyAgronomy and Crop ScienceFood ScienceJournal of AOAC INTERNATIONAL
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Gas chromatography/mass spectrometry of catechol estrogens

1992

Abstract Catecholestrogens (CCEs), namely 2- or 4-hydroxyestradiol and hydroxyestrone, are highly polar, reactive, and extremely labile estrogen metabolites in many experimental conditions. For these reasons, indirect assay methods mainly have been used. Some experimental evidence suggests that CCEs are synthesized and biologically active mostly in target cells. At this level, unfortunately, the indirect assays cannot be used. We present a method of gas Chromatographic/mass spectral (GC/MS) analysis for the identification of individual CCEs; the major fragmentation ions of authentic estrogen standards as trimethylsilylether derivatives, and the MS patterns of the major CCEs, namely, 2-hydro…

PharmacologyDetection limitCatecholChromatographyElutionOrganic ChemistryClinical BiochemistryPolyatomic ionBreast NeoplasmsBiological activityMass spectrometryBiochemistryEstrogens CatecholGas Chromatography-Mass Spectrometrychemistry.chemical_compoundEndocrinologychemistryHumansFemaleGas chromatographyGas chromatography–mass spectrometryFibrocystic Breast DiseaseMolecular BiologyChromatography High Pressure LiquidSteroids
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Compositions of the Volatile Oils of Citrus Macroptera and C. Maxima

2012

The essential oils obtained by hydrodistillation from the fresh peels of Citrus macroptera Montr. and C maxima(Burm.) Merr. were analyzed by GC and GC/MS. The yields of oil ranged from 0.53% in C macroptera to 0.13% in C maxima cultivar (white). Forty-seven compounds were identified in the oils with limonene (55.3-80.0%), dodecyl acrylate (2.2-8.0%), geranial (0.4-3.5%), trans-linalool oxide (1.0-2.8%), α-terpineol (0.7-2.3%), linalool (0.7-1.5%) and cis- linalool oxide (0.5-1.4%) identified as major compounds. The oil of C. macroptera contained limonene (55.3%), β-caryophyllene (4.7%) and geranial (3.5%) as main compounds. Similarly, oils from two C maxima(pink and white) cultivars were r…

PharmacologyLimonenebiologyChemistryfood and beveragesPlant ScienceGeneral Medicinebiology.organism_classificationlaw.inventionchemistry.chemical_compoundRutaceaeComplementary and alternative medicineLinaloollawDrug DiscoveryNootkatoneCultivarFood scienceGas chromatography–mass spectrometryMaximaEssential oilNatural Product Communications
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Analysis of Essential Oils from Scutellaria orientalis ssp. alpina and S. utriculata by GC and GC-MS

2011

The chemical composition of the essential oils obtained from aerial parts of Scutellaria orientalis L. ssp. alpina (Boiss.) O. Schwarz and S. utriculata Labill. growing wild in Lebanon, were analyzed by GC and GC-MS. In S. orientalis ssp. alpina, strongly characterized by sesquiterpenes (41.2%) and particularly sesquiterpene hydrocarbons (31.7%), hexahydrofarnesylacetone (11.7%) was recognized as the main constituent, together with hexadecanoic acid (7.6%), caryophyllene (7.4%), caryophyllene oxide (6.8%), 4-vinylguaiacol (5.4%) and germacrene D (5.4%). S. utriculata oil was instead constituted above all by monoterpenes (42.2%), particularly oxygen containing monoterpenes (39.9%), and in t…

PharmacologyScutellaria orientalisCaryophyllenePlant ScienceGeneral MedicineSesquiterpenechemistry.chemical_compoundComplementary and alternative medicineLinaloolchemistryDrug DiscoveryBotanyGuaiacolGas chromatography–mass spectrometryChemical compositionGeraniolNatural Product Communications
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GC and GC/MS analysis of the essential oil of Salvia hierosolymitana boiss. Growing wild in Lebanon

2007

The essential oil of the aerial parts of Salvia hierosolymitana Boiss. (Lamiaceae), growing wild in Lebanon, was obtained by hydrodistillation and analysed by GC and GC-MS. Ninety-two compounds, representing 92.7% of the oil, were identified. The major components were hexadecanoic acid (15.5%), phytol (5.4%), hexahydrofarnesyl acetone (4.6%), (Z,Z)-9,12-octadecadienoic acid (4.5%) and 4-vinylguaiacol (4.4%).

PharmacologyTraditional medicinebiology010405 organic chemistryPlant ScienceGeneral Medicinebiology.organism_classification01 natural sciencesSalvia hierosolymitana0104 chemical scienceslaw.invention010404 medicinal & biomolecular chemistryComplementary and alternative medicinelawDrug DiscoveryGas chromatography–mass spectrometryEssential oil
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Chemical composition of the essential oils of Centaurea formanekii and C. orphanidea ssp. thessala, growing wild in Greece.

2012

The volatile constituents of the aerial parts of Centaurea formanekii Halacsy and the aerial parts, capitula and roots of C. orphanidea Heldr. & Sart. ex Boiss. ssp. thessala (Hausskn.) Dostál from Greece were extracted by hydrodistillation and analyzed. The main components in C. formanekii were hexadecanoic acid (13.6%), δ-elemene (9.1%), and spathulenol (6.9%). The main components in C. orphanidea ssp. thessala were γ-elemene (26.1%) and caryophyllene oxide (13.2%) in the aerial parts, hexadecanoic acid (33.5%) and heptacosane (6.3%) in the capitula, and hexadecanoic acid methyl ester (22.0%) and α-chamigrene (14.0%) in the roots. The chemotaxonomic significance with respect to other…

PharmacologybiologyGreeceChemistryEcologyCentaureaPlant ScienceGeneral Medicinebiology.organism_classificationGas Chromatography-Mass SpectrometrySpathulenolComplementary and alternative medicineCaryophyllene oxideCentaureaDrug DiscoveryBotanyOils VolatilePlant OilsChemical compositionNatural product communications
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Chemical Composition of the Essential Oil of Zingiber Zerumbet Var. Darcyi

2012

The chemical composition of essential oil obtained by hydrodistillation method from the rhizomes of Z. zerumbet var. darcyi was determined by GC and GC-MS. Thirty-three compounds, accounting for 93.6% of the oil were identified including twenty compounds in minor (0.1-0.6%) and eight in trace (<0.05%) amounts. The main compounds were zerumbone (69.9%) α-humulene (12.9%), humulene epoxide II (2.5%), caryophyllene oxide (1.1%) and camphene (1.9%). In this analysis, it has been found that the variety could be used as an additional new source of natural zerumbone besides Zingiber zerumbet. This is a first report on the analysis of Z. zerumbet var. darcyi oil.

PharmacologybiologyHumuleneTraditional medicinePlant ScienceGeneral Medicinebiology.organism_classificationlaw.inventionRhizomechemistry.chemical_compoundComplementary and alternative medicinechemistryZingiber zerumbetlawDrug DiscoveryBotanyCampheneZingiberaceaeGas chromatography–mass spectrometryChemical compositionEssential oilNatural Product Communications
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