Search results for "Vegetable oil"

showing 10 items of 61 documents

Composition, industrial processing and applications of rice bran γ-oryzanol

2009

Abstract Rice bran oil (RBO) (20–25 wt% in rice bran) is a unique rich source of commercially-important bioactive phytochemicals, most of them of interest in nutrition, pharmacy and cosmetics. The unsaponifiable constituents of RBO include mainly tocols (vitamin E, 0.10–0.14%) and γ-oryzanol (esters of trans- ferulic acid with sterols and triterpenic alcohols, 0.9–2.9%). The following topics concerning γ-oryzanol are reviewed: analytical methods for characterisation and determination; influence of genetic and environmental factors on the composition of rice bran; extraction approaches, including supercritical CO 2 and subcritical water; and biomedical and industrial applications, including …

Branbusiness.industryPhytosterolRice bran oilfood and beveragesFood composition dataFood technologyGeneral MedicineAnalytical ChemistryFerulic acidchemistry.chemical_compoundVegetable oilchemistryUnsaponifiableFood sciencebusinessFood ScienceFood Chemistry
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Acrylate ester-based monolithic columns for capillary electrochromatography separation of triacylglycerols in vegetable oils

2011

Abstract A simple and reliable method for the evaluation of triacylglycerols (TAGs) in vegetable oils by capillary electrochromatography (CEC) with UV–Vis detection, using octadecyl acrylate (ODA) ester-based monolithic columns, has been developed. The percentages of the porogenic solvents in the polymerization mixture, and the mobile phase composition, were optimized. The optimum monolith was obtained at the following ratios: 40:60% (wt/wt) monomers/porogens, 60:40% (wt/wt) ODA/1,3-butanediol diacrylate and 23:77% (wt/wt) 1,4-butanediol/1-propanol (14 wt% 1,4-butanediol in the polymerization mixture). A satisfactory resolution between TAGs was achieved in less than 12 min with a 65:35 (v/v…

Capillary electrochromatographyAcrylategeographyChromatographygeography.geographical_feature_categoryResolution (mass spectrometry)Organic ChemistryDiscriminant Analysis1-PropanolGeneral MedicineBiochemistryAnalytical Chemistrychemistry.chemical_compoundMonomerVegetable oilAcrylateschemistryPolymerizationCapillary ElectrochromatographyMicroscopy Electron ScanningPlant OilsMonolithButylene GlycolsAmmonium acetateTriglyceridesJournal of Chromatography A
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Classification of extra virgin olive oils according to their geographical origin using phenolic compound profiles obtained by capillary electrochroma…

2009

Abstract A simple and reliable method for the evaluation of the phenolic fraction of extra virgin olive oils (EVOO) by capillary electrochromatography (CEC) with UV–Vis detection, using lauryl acrylate (LA) ester-based monolithic columns, has been developed. The percentages of the porogenic solvents in the polymerization mixture, and the mobile phase composition, were optimized. The optimum monolith was obtained with a monomers/porogens ratio of 40:60% (wt/wt) using a LA/1,3-butanediol diacrylate ratio of 70:30% (wt/wt) and a 1,4-butanediol/1-propanol ratio of 25:75% (wt/wt). A satisfactory resolution between the phenolic compounds was achieved in less than 25 min with a 15:85 (v/v) ACN–wat…

Capillary electrochromatographygeographyAcrylategeography.geographical_feature_categoryChromatographyGEOGRAPHICAL ORIGINResolution (mass spectrometry)Formic acidFraction (chemistry)chemistry.chemical_compoundVegetable oilLAURYL ACRYLATE-BASED MONOLITHIC COLUMNSLINEAR DISCRIMINANT ANALYSISchemistryEXTRA VIRGIN OLIVE OILSPhenolsMonolithCECFood ScienceFood Research International
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PRELIMINARY CHEMICAL CHARACTERIZATION OF TUNISIN MONOVARIETAL VIRGIN OLIVE OILS AND COMPARISON WITH SICILIAN ONES.

2007

Work was carried out on the characterization of monovarietal virgin olive oils (VOO) from Tunisia and Sicily (Italy). The two main Tunisian VOO (cvv. Chétoui of the North and cv. Chemlali grown in the Center and some regions of the South) and three principal Sicilian VOO (cvv. Nocellara del Belice, Biancolilla and Cerasuola) were studied. Moreover, the Chétoui oils were tested in a rain-fed control and an irrigation regime. All olive samples were picked at three different stages of ripeness. Analyses of major components (fatty acids and triacylglycerols) and minor ones (squalene, tocopherols and phenolic compounds) were carried out. Chétoui oils had a higher level of phenolic compounds foll…

ChemistryCOMPOSITIONVIRGIN OLIVE OILGeneral ChemistryRipenessIndustrial and Manufacturing Engineeringlanguage.human_languageTRIACYLGLYCEROLSHorticultureVegetable oilANTIOXIDANTSBotanyEdible oillanguageSicilianPHENOLSFood ScienceBiotechnologyOlive oil
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Pyrolysis of vegetable oil soaps—Palm, olive, rapeseed and castor oils

2011

Abstract Saponified, palm, olive, rapeseed and castor oils were pyrolysed (at 750 °C for 20 s) by pyrolysis gas chromatography with mass selective and flame ionisation detection (Py-GC/MSD and FID) to clarify their thermochemical behaviours. The liquefiable compounds recovered from palm, olive and rapeseed oils mainly contained linear alkenes (up to C 19 ) and alkanes (up to C 17 ), both similar to those found in gasoline (C 4 –C 10 ) and diesel fuel (C 11 –C 22 ) boiling range fractions of petroleum, whereas in the case of castor oil a significant amount of undesired oxygen-containing products (e.g., ketones and phenols) were formed. The obtained data on reaction mechanisms can also be uti…

ChemistryTall oilPulp and paper industryAnalytical ChemistryDiesel fuelCastor waxFuel TechnologyVegetable oilBiofuelCastor oilmedicineOrganic chemistryEnergy sourcePyrolysismedicine.drugJournal of Analytical and Applied Pyrolysis
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Determination of pyrethroid insecticide residues in vegetable oils by using combined solid-phases extraction and tandem mass spectrometry detection

2005

Abstract A methodology has been developed for the determination of pyrethroid insecticide residues in vegetable oils, based in a solid-phase extraction (SPE) with combined solid supports phases. Several solid phases such as florisil, alumina, C18 and graphitized carbon black were tested in order to minimize fat residues, being a combination of treated alumina and C18 which provided the best results. Oil samples were partitioned with acetonitrile–hexane (1:1) and then eluted through a combined column packed with deactivated basic-alumina and C18, employing the acetonitrile extract as elution solvent. Gas chromatography tandem mass spectrometry was used for determination. Tetramethrin, Bifent…

ChromatographyGas Chromatography/Tandem Mass SpectrometryBifenthrinCyfluthrinBiochemistryAnalytical Chemistrychemistry.chemical_compoundVegetable oilchemistryFlucythrinateEnvironmental ChemistrySolid phase extractionPhenothrinTetramethrinSpectroscopyAnalytica Chimica Acta
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Classification of Extra Virgin Olive Oils Produced at La Comunitat Valenciana According to Their Genetic Variety Using Sterol Profiles Established by…

2009

A method to classify extra virgin olive oils (EVOOs) according to their genetic variety using sterol profiles obtained by high-performance liquid chromatography (HPLC) with mass spectrometry (MS) detection has been developed. Sterol extracts were chromatographed on a dC18 Atlantis column (100x3 mm, 3 microm) with a gradient of acetonitrile/water (0.01% acetic acid) at a flow rate of 1.0 mL min(-1) and positive-ion mode MS detection. Using linear discriminant analysis of the HPLC-MS data (extracted ion chromatograms), EVOO samples belonging to six genetic varieties cultivated at La Comunitat Valenciana, Spain (Arbequina, Borriolenca, Canetera, Farga, Picual, and Serrana), were correctly clas…

ChromatographyResolution (mass spectrometry)Discriminant AnalysisPhytosterolsGeneral ChemistryMass spectrometryHigh-performance liquid chromatographyMass SpectrometrySterolAcetic acidchemistry.chemical_compoundVegetable oilSpecies SpecificitychemistrySpainOleaPlant OilsGeneral Agricultural and Biological SciencesOlive OilChromatography High Pressure LiquidControl methodsOlive oilJournal of Agricultural and Food Chemistry
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Fast Separation and Determination of Sterols in Vegetable Oils by Ultraperformance Liquid Chromatography with Atmospheric Pressure Chemical Ionizatio…

2010

A method for the determination of sterols in vegetable oils by ultraperformance liquid chromatography (UPLC) with atmospheric pressure chemical ionization mass spectrometry detection has been developed. The separation of sterols was optimized in terms of mobile phase composition, column temperature and flow rate. The optimal conditions were achieved using an Acquity UPLC BEH C18 column (50 x 2.1 mm, 1.7 microm) with a mobile phase consistent of acetonitrile/water (0.01% acetic acid) using a linear gradient, at a flow rate of 0.8 mL min(-1) and column temperature of 10 degrees C, giving a total analysis time below 5 min. The determination was performed in selective ion recording mode. The li…

Detection limitChemical ionizationChromatographyAtmospheric pressureChemistryAnalytical chemistryAtmospheric-pressure chemical ionizationGeneral ChemistryMass spectrometryHigh-performance liquid chromatographyMass SpectrometrySterolschemistry.chemical_compoundAtmospheric PressureVegetable oilPlant OilsGeneral Agricultural and Biological SciencesAcetonitrileChromatography LiquidJournal of Agricultural and Food Chemistry
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Determination of aniline in vegetable oils by diazotization and coupling in a microemulsion medium

1990

Abstract A microemulsion containing sodium dodecyl sulphate and n -pentanol in a mass ratio of 1 : 4, water and a vegetable oil was investigated using pseudo-tenary phase diagrams. The medium can co-solve important amounts of vegetable oils and aqueous solutions over a wide range of ionic strengths. A procedure for the determination of 1.4–140 μg ml −1 of aniline in vegetable oils using ionic diazotization and coupling reactions was developed. The absorbance was measured in an optically clear microemulsion containing 4% or 20% of oil. The procedure is much simpler and rapid than the official chromatographic methods and gives almost the same limits of detection (ca. 05 μg ml −1 ) using no mo…

Detection limitChromatographyAqueous solutionmedicine.diagnostic_testChemistryBiochemistryAnalytical ChemistryAbsorbancechemistry.chemical_compoundVegetable oilAnilineSpectrophotometrymedicineEnvironmental ChemistryMicroemulsionTitrationSpectroscopyAnalytica Chimica Acta
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Identification of lipid binders in old oil paintings by separation of 4-bromomethyl-7-methoxycoumarin derivatives of fatty acids by liquid chromatogr…

2005

A HPLC-fluorescence method for identification of drying oils from binding media or protective film used in pictorial works of art prior to conservation or restoration is proposed. Fluorescence derivatization of fatty acids released by hydrolysis of structural drying oils is studied. The derivatization reagent was 4-(bromomethyl)-7-methoxycoumarin with 18-crown-6 as catalyst. Mobile phase was programmed from methanol-water (90:10 v/v) to methanol-water (100:0 v/v) in 25 min. The excitation and emission wavelengths were 325 and 395 nm, respectively. Under these chromatographic conditions, coumarin derivatives of myristic, palmitic, oleic and stearic acids were satisfactorily resolved. The met…

Detection limitChromatographyOrganic ChemistryDrying oilGeneral MedicineReference StandardsBiochemistryHigh-performance liquid chromatographyLipidsAnalytical ChemistryPalmitic acidchemistry.chemical_compoundHydrolysisVegetable oilSpectrometry FluorescencechemistryPaintingsStearic acidUmbelliferonesDerivatizationChromatography High Pressure LiquidJournal of chromatography. A
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