Search results for "Hydride"

showing 10 items of 322 documents

Hydride generation atomic fluorescence spectrometric determination of ultratraces of selenium and tellurium in cow milk

2003

Abstract A sensitive procedure has been developed for selenium and tellurium determination in milk by hydride generation atomic fluorescence spectrometry (HG-AFS) after microwave-assisted sample digestion. The method provides sensitivity values of 1591 and 997 fluorescence units ng−1 ml−1 with detection limits of 0.005 and 0.015 ng ml−1 for Se and Te, respectively. The application of the developed methodology to the analysis of cow milk samples of the Spanish market evidenced the presence of concentration ranges from 11.1 to 26.0 ng ml−1 for Se, and from 1.04 to 9.7 ng ml−1 for Te having found a good comparability with data obtained after dry-ashing of samples.

Detection limitChromatographyHydrideMicrowave ovenchemistry.chemical_elementBiochemistryAtomic fluorescence spectrometryFluorescenceAnalytical ChemistryCow milkchemistryEnvironmental ChemistryTelluriumSpectroscopySeleniumAnalytica Chimica Acta
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Simultaneous determination of hydride and non-hydride forming elements by inductively coupled plasma optical emission spectrometry

2011

e percentagens de recuperacao entre 97 e 103%. A aplicabilidade do sistema foi demonstrada na determinacao simultânea de Ca, Cd, Co, Cr, Cu, Fe, Mg, Mn, Mo, Ni, Zn, As, Bi, Sb, Se e Te em amostras certificadas para elementos tracos, NIST 1549 (leite em po desnatado), NIST 1570a (folhas de espinafre), DORM-2 (musculo de cacao) e TORT-2 (hepatopâncreas de lagosta). Os resultados obtidos foram concordantes com os teores certificados. The operating characteristics of a dual nebulization system were studied including instrumental and chemical conditions for the hydride generation and analytical figures of merit for both, hydride and non hydride forming elements. Analytical performance of the neb…

Detection limitHydrideChemistryInductively coupled plasma atomic emission spectroscopyRelative standard deviationAnalytical chemistryGeneral ChemistryInductively coupled plasmaOptical emission spectrometryJournal of the Brazilian Chemical Society
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Development of a non-chromatographic method for the speciation analysis of inorganic antimony in mushroom samples by hydride generation atomic fluore…

2009

Abstract A simple and sensitive method has been developed for the direct determination of toxic species of antimony in mushroom samples by hydride generation atomic fluorescence spectrometry (HG AFS). The determination of Sb(III) and Sb(V) was based on the efficiency of hydride generation employing NaBH 4 , with and without a previous KI reduction, using proportional equations corresponding to the two different measurement conditions. The extraction efficiency of total antimony and the stability of Sb(III) and Sb(V) in different extraction media (nitric, sulfuric, hydrochloric, acetic acid, methanol and ethanol) were evaluated. Results demonstrated that, based on the extraction yield and th…

Detection limitHydrideExtraction (chemistry)Analytical chemistrychemistry.chemical_elementMass spectrometryAtomic and Molecular Physics and OpticsAnalytical Chemistrychemistry.chemical_compoundCertified reference materialschemistryAntimonyYield (chemistry)MethanolInstrumentationSpectroscopySpectrochimica Acta Part B: Atomic Spectroscopy
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Multicommutation hydride generation atomic fluorescence determination of inorganic tellurium species in milk

2005

Abstract A multicommutated flow system has been developed for hydride generation, atomic fluorescence (HG-AFS) determination of tellurate (Te VI ) and tellurite (Te IV ) in milk samples. After a batch leaching of Te by sonication at room temperature for 10 min with aqua regia, sample slurries in acidic medium were merged with sodium borohydride and HCl to obtain data on Te IV . Another portion of the acidic slurry was mixed with KBr and passed through a reaction coil introduced inside a microwave oven to reduce quantitatively Te VI to Te IV which was analyzed by HG-AFS. The detection limit was 0.57 ng g −1 in the original samples. The linear range obtained was till 4 ng ml −1 and the averag…

Detection limitHydrideMicrowave ovenFluorescence spectrometryAnalytical chemistrychemistry.chemical_elementGeneral MedicineTellurateAnalytical Chemistrychemistry.chemical_compoundchemistryReagentAqua regiaTelluriumFood ScienceFood Chemistry
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Speciation of selenium and tellurium in milk by hydride generation atomic fluorescence spectrometry

2004

A simple, fast and highly sensitive method has been developed for the differentiation of Se and Te into their (IV) and (VI) oxidation states in milk samples by HG-AFS. This procedure involves a previous leaching of milk slurries by sonication with aqua regia for 10 min. Se(IV) and Te(IV) were determined by analysis of the samples without a pre-reduction step; being total Se and Te determined after reduction with KBr. The method provides limit of detection values (LOD) of 0.012 and 0.023 ng ml−1 for Se(IV) and Te(IV) respectively. Average relative standard deviation values of 10.5%, 3.9%, 12% and 12.5% were found for the determination of Se(IV), Se(VI), Te(IV) and Te(VI) in milk samples cont…

Detection limitHydrideSonicationAnalytical chemistrychemistry.chemical_elementAnalytical Chemistrychemistry.chemical_compoundchemistryOxidation stateAqua regiaLeaching (metallurgy)TelluriumSpectroscopySeleniumJournal of Analytical Atomic Spectrometry
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Non-chromatographic speciation analysis of arsenic and antimony in milk hydride generation atomic fluorescence spectrometry

2003

Abstract A rapid, high sensitivity method has been developed for the determination of As(III), As(V), Sb(III) and Sb(V) in milk samples by using hydride generation atomic fluorescence spectrometry. The method is based on the leaching of As and Sb from milk through the sonication of samples with aqua regia followed by direct determination of the corresponding hydrides both before and after reduction with KI. It was confirmed by recovery experiments on spiked commercially available samples that neither the reduced nor the oxidized forms of the elements under study or mixtures of the two oxidation states were modified by the room temperature sample treatment with aqua regia. The methodologies …

Detection limitHydrideSonicationAnalytical chemistrychemistry.chemical_elementBiochemistryFluorescenceAnalytical Chemistrychemistry.chemical_compoundAntimonychemistryEnvironmental ChemistryAqua regiaLeaching (metallurgy)SpectroscopyArsenicAnalytica Chimica Acta
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Non-chromatographic speciation of inorganic arsenic in mushrooms by hydride generation atomic fluorescence spectrometry

2009

Abstract A non-chromatographic speciation method has been developed for the determination of inorganic arsenic in cultivated and wild mushroom samples from different origins. The ultrasound-assisted extraction of the toxic arsenic species As (III) and As (V) was performed for 10 min with 1 mol l −1 H 3 PO 4 and 0.1% (m/v) Triton X-100. After phase separation the residue was washed with 0.1% (w/v) EDTA and centrifuged. As (III) and As (V) were determined by hydride generation atomic fluorescence spectrometry. Speciation was made using proportional equations corresponding to two different measurement conditions, (i) directly feeding sample extracts diluted with HCl and (ii) after reduction wi…

Detection limitResidue (complex analysis)ChromatographyHydrideExtraction (chemistry)Fluorescence spectrometrychemistry.chemical_elementGeneral MedicineAscorbic acidMass spectrometryAnalytical ChemistrychemistryArsenicFood ScienceFood Chemistry
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Multicommutation as an environmentally friendly analytical tool in the hydride generation atomic fluorescence determination of tellurium in milk.

2003

The aim of this study is to show the advantages of the emerging multicommutation methodology based on the use of solenoid valves for Te determination in milk by hydride generation atomic fluorescence spectrometry (HG-AFS). The delivery of a series of alternating sequential insertions of small volumes of samples and reagents gives rise to new hydrodynamic processes and exciting analytical potentials by controlling the time of flow through the on/off-switched solenoid valves. This drastically reduces the reagent consumption by a factor of 4 and the generation of effluents (590 mL h(-1) instead of 750 mL h(-1) generated by the continuous-mode measurement) and also provides an improvement in th…

Detection limitTime FactorsHydrideSpectrophotometry AtomicAnalytical chemistrychemistry.chemical_elementSolenoidBiochemistryAtomic fluorescence spectrometryEnvironmentally friendlyAnalytical ChemistrySonicationMilkchemistryReagentCalibrationCalibrationAnimalsRegression AnalysisTelluriumTelluriumMicrowavesHydrogenAnalytical and bioanalytical chemistry
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Determination of inorganic species of Sb and Te in cereals by hydride generation atomic fluorescence spectrometry

2011

A non-chromatographic fast, sensitive and easy method has been developed for the determination of Sb(III), Sb(V), Te(IV) and Te(VI) in cereal samples. The procedure is based on ultrasound assisted extraction and determination by hydride generation atomic fluorescence spectrometry (HG AFS). Preliminary studies were made in order to get the best extraction efficiency using 1 mol L-1 phosphoric acid, 1 mol L-1 nitric acid, aqua regia, 1 mol L-1 sulfuric acid and 6 mol L-1 hydrochloric acid. The extraction with aquaregia showed a clear interconversion of the species during the process, being H2SO4 the best extractant with efficiencies greater than 90% from the total content of Sb and Te quantif…

Detection limitcerealshydride generation atomic fluorescence spectrometryChemistryHydrideantimonyExtraction (chemistry)Hydrochloric acidSulfuric acidGeneral Chemistrychemistry.chemical_compoundspeciationNitric acidtelluriumAqua regiaPhosphoric acidNuclear chemistry
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Atomic fluorescence spectrometric determination of trace amounts of arsenic and antimony in drinking water by continuous hydride generation

1999

A highly sensitive and simple method has been developed for the determination of As(III), total As, Sb(III) and total Sb in drinking water samples by continuous hydride generation and atomic fluorescence spectrometry (HGAFS). For As determination, water samples aspirated in a carrier of 2 mol l(-1) HCl were merged with a reducing NaBH(4) 3%(m/v) solution, with sample and NaBH(4) flow rates of 12.5 and 1.5 ml min(-1) respectively. The hydride generated in a 170 cm reaction coil was transported to the detector with an Ar flow of 400 ml min(-1), and a limit of detection between 5 and 20 ng l(-1) was obtained. For Sb determination, 2.5 mol l(-1) HCl and 2%(m/v) NaBH(4) were employed, with respe…

Detection limitchemistryAntimonyTrace AmountsHydrideAnalytical chemistrychemistry.chemical_elementIodineAtomic fluorescence spectrometryArsenicAnalytical ChemistryVolumetric flow rateTalanta
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