238 resultados para Espectrometria de emissão atômica em chama

em Scielo Saúde Pública - SP


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O método empregado para a determinação de sódio por espectrometria de emissão atômica em chama, foi o das adições de analito sendo as intensidades de emissão representadas em função das concentrações de analito adicionadas às várias porções da amostra, numa faixa linear de 0 - 0,300 mg Na L-1, empregando-se 2,1 g K L-1 como supressor de ionização. Foram analisadas 20 amostras comerciais de álcool etílico hidratado combustível (AEHC), coletadas em diferentes postos de abastecimento, na cidade de Araraquara e os resultados obtidos encontram-se no intervalo, desde menor que o limite de detecção (0,0072 mg Na L-1) até 1,55 mg Na L-1. Os limites de detecção referentes à determinação de sódio em cada amostra situam-se entre 0,0026 e 0,0239 mg Na L-1. A porcentagem de recuperação variou no intervalo de 95 a 104 %. Os desvios padrão relativos (n=12) foram £ 4,1 % para as três adições de analito, nas 20 amostras de AEHC.

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A column packed with 5-(4-dimethylaminobenzylidene)rhodanine adsorbed on silica gel was used for the preconcentration of Cd, Ni and Zn at different spiked solutions prior to their determination by inductively coupled plasma atomic emission spectrometry. This column allowed recoveries over than 98% for the above elements and accurate analyses of coastal sea-water certified reference material were also achieved.

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This paper presents a system for electrochemical hydride generation using flow-injection and atomic absorption spectrometry to determine selenium in biological materials. The electrolytic cell was constructed by assembling two reservoirs, one for the sample and the other for the electrolytic solution separated by a Nafion membrane. Each compartment had a Pt electrode. The sample and electrolyte flow-rates, acidic media, and applied current were adjusted to attain the best analytical performance and ensure the membrane lifetime. The atomisation system used a T quartz tube in an air-LPG flame. The composition of the flame, the observation height, and the argon flow rate used to carry the hydrides were critically investigated. The system allowed to perform thirty determinations per hour with a detection limit of 10 mug L-1 of Se. Relative standard deviations were in general lower than 1.5% for a solution containing 20.0 and 34.0 mug L-1 of Se in a typical sample digest. Accuracy was assessed analysing the certified materials: rice flour (NIST-1568) from National Institute of Standard and Technology and dried fish (MA-A-2), whole animal blood (A-2/1974) from the International Atomic Energy Agency.

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In order to demonstrate the feasibility of slurry sampling for environmental studies, different methodologies were developed for Cu and Zn in antarctic limpets and Ni in river sediment with FAAS detection. Studies focusing particle size, acid concentration, slurry stability, selectivity, among others were carried out in order to define the better conditions for slurry analysis. A study related to the depth profile for Ni in the Atibaia River sediment was made after optimization conditions for this element. For accuracy check, certified reference material was used as well as decomposition with microwave oven.

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A method for determination of lead and cadmium in aqueous samples using solvent microextraction and dithizone as complexing agent with FAAS was developed. Solvent microextraction parameters were optimized. The effect of foreign ions on the extraction yields was studied. The extraction was carried out until the aqueous to organic phase ratio achieved a 250 fold preconcentration of metals. For preconcentration times of 4 min the 3sigma detection limits, relative standard deviations (n=7) and linear calibration ranges were 1.6 mug L-1, 5.8% and 10.0 -- 80.0 mug L-1 for lead and 11.1 ng L-1, 5.9% and 0.3 -- 3.0 mug L-1 for cadmium, respectively. The solvent microextraction procedure presented here was applied to the determination of lead and cadmium in natural waters.

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This work proposes an analytical procedure for direct determination of calcium, magnesium, manganese and zinc in buffalo milk by flame atomic absorption spectrometry (FAAS). Samples were diluted with a solution containing 10% (v/v) of water-soluble tertiary amines (CFA-C) at pH 8. For comparison, buffalo milk samples were digested with HNO3 and H2O2. According to a paired t-test, the results obtained in the determination of Ca, Mg, Mn and Zn in digested samples and in 10% (v/v) CFA-C medium were in agreement at a 95% confidence level. The developed procedure is simple, rapid, decrease the possibility of contamination and can be applied for the routine determination of Ca, Mg, Mn and Zn in buffalo milk samples without any difficulty caused by matrix constituents, such as fat content, and particle size distribution in the milk emulsion.

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Levels of Ca, Mg, Fe, Zn, Cu and Mn were determinated by FAAS in the tea and dry matter from senescent leaf from Montrichardia linifera, plant used in folk medicine Amazon. The content of these metals that are transferred of the leaf to the infusions have presented significant reductions, however, the Mn values in the infusion may exceed the tolerable daily intake (11 mg) if consumption of this tea is greater than 1.0 L per day. So the tea of senescent leaves of M. linifera may be considered as a toxic beverage and thus its use is not advised.

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In this study, a method for determination of hexavalent chromium in aqueous samples using liquid-liquid microextraction (LLME) and detection by Flame Atomic Absorption Spectrometry (F AAS) was developed. The LLME procedure was based on the extraction of Cr (VI) by acetone at a sample pH of 1.2. The use of saturated ammonium sulphate solution allowed effective separation of the aqueous and organic phases and acetone extracted chromium. The sample pH, acetone volume and stirring time were optimized by a full factorial design.

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Simple and sensitive procedures for the extraction/preconcentration of molybdenum based on vortex-assisted solidified floating organic drop microextraction (VA-SFODME) and cloud point combined with flame absorption atomic spectrometry (FAAS) and discrete nebulization were developed. The influence of the discrete nebulization on the sensitivity of the molybdenum preconcentration processes was studied. An injection volume of 200 µL resulted in a lower relative standard deviation with both preconcentration procedures. Enrichment factors of 31 and 67 and limits of detection of 25 and 5 µg L-1 were obtained for cloud point and VA-SFODME, respectively. The developed procedures were applied to the determination of Mo in mineral water and multivitamin samples.

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O presente trabalho reporta um método para a determinação de cromo (VI) por espectrometria de absorção atômica com chama (FAAS) após a extração e pré-concentração no ponto nuvem. O cromo (VI) é complexado com 1,5-difenilcarbazida (DFC) em meio ácido (pH 2,0) e é extraído para um volume de fase rica de 25 µL, com o uso do surfactante Triton X-114. As variáveis que afetam a formação do ponto nuvem, tais como a concentração de surfactante (0,1-1,0% m/v) e de complexante (0,01-0,80% m/v), o tempo de complexação (0-60 min) e o efeito da adição do eletrólito NaCl (0-20% m/v), são avaliadas. Sob condições otimizadas, são utilizados o Triton X-114 a 0,3% m/v, a DFC a 0,05% m/v e o NaCl a 10% m/v para a extração do cromo (VI). Esse método fornece limites de detecção e quantificação de 0,4 µg L-1 e 1,5 µg L-1, respectivamente, e uma faixa linear de calibração de 5 a 500 µg L-1. O fator de pré-concentração obtido é igual a 27 e a eficiência de extração varia de 87 a 99,3%.

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Concentrações de Ca, Cr, Cu, Fe, K, Mg, Mn, Na, P e Zn foram determinadas em amostras de quatro tipos de queijo (mussarela, minas, prato e parmesão) por espectrometria de emissão atômica com plasma de argônio acoplado indutivamente após dissolução parcial (hidrólise com HCl) e total da matéria orgânica (digestão por via seca). As concentrações da maioria dos elementos essenciais maiores e traço, usando o método de dissolução parcial, foram consideradas estatisticamente iguais às obtidas com o método de dissolução total da matéria orgânica, demonstrando a potencialidade da digestão parcial em análises de rotina.

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A espectroscopia de raios-X por reflexão total (TXRF) é uma técnica promissora para análise de elementos-traço (ETs), principalmente por não ser necessária a digestão das amostras, reduzindo assim a geração de resíduos e emissão de vapores tóxicos. Este trabalho comparou os teores dos ETs: Cr, Mn, Ni, Zn, Cu, As, Se, Hg e Pb, coletados em solos de área de agricultura intensiva e vegetação nativa, determinados por TXRF e por espectrometria de absorção atômica de chama ou forno de grafite (FAAS/GFAAS). Adicionalmente, compararam-se os teores dos ET com valores de referência para solos não contaminados. As amostras de solo foram coletadas na profundidade 0,0-0,2 m em municípios representativos de cada região agrícola do Estado de Mato Grosso (Rondonópolis, Alto Garça, Primavera do Leste, Campo Novo, Nova Mutum, Lucas do Rio Verde, Sorriso, Sinop, Campo Novo dos Parecis, Campos de Julho e Vila Bela da Santíssima Trindade). Em cada município, foram selecionadas seis áreas, totalizando 72 amostras, todas georreferenciadas. Para a leitura dos teores de ET no aparelho de TXRF S2 Picofox™, foram preparadas suspensões de solo usando Triton X-100 a 5 % v/v utilizando gálio como padrão interno, enquanto no FAAS/GFAAS as amostras foram submetidas à digestão ácida pelo método 3051A. Considerando área cultivada e área nativa, respectivamente, os teores médios dos ET por TXRF, em mg kg-1, foram: Cr, 69 e 62; Zn, 16 e 8; Pb, 28 e 21; Mn, 56 e 42; As, 2 e 2; Cu, 9 e 8; e Ni, 2 e 2. O Cd, Se e Hg não foram detectados por TXRF nas amostras analisadas. Para As, Cr, Mn, Zn, Ni, Cu e Pb, houve correlação linear (p<0,001) positiva entre as técnicas e, no geral, os teores obtidos para esses ET em TXRF foram superiores aos do FAAS/GFAAS. Os teores de todos os elementos detectados pelo TXRF, exceto o Cr, estão dentro das faixas dos relatados para solos não contaminados e muito inferiores aos limites de alerta estipulados na literatura.

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A method for the determination of phosphorus in steel samples by graphite furnace atomic absorption spectrometry, using the Zeeman effect background correction and the STPF conditions is proposed. The effect of iron (III) on the phosphorus signal was studied. It was verified, through the pyrolysis temperature curves, that iron (III) is an efficient chemical modifier, thermically stabilizing phosphorus up to 1400ºC. The phosphorus signal increases with the iron (III) concentration, but in the range, which corresponds to the usual concentrations of iron in the sample solutions, the increase is small. Phosphorus was determined in three standard reference materials, after its dissolution in a mixture of hydrochloric and perchloric acids in a PTFE bomb. The agreement with the certified concentration values was excellent. Iron (III) was added to the reference analytical solutions prepared in the blank of the dissolution, while the sample solutions were measured directly, since they already contained the modifier. The detection limit (k = 2) was 0.0042% of phosphorus in the steel sample.

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An automatic system for the direct determination of lead and tin by atomic absorption spectrometry is described. The on-line treatment of the metallic samples was obtained by anodic electrodissolution in a flow injection system. Lead was determined by flame atomic absorption spectrometry (FAAS) and tin by graphite furnace atomic absorption spectrometry (GFAAS). A computer program managed the current source and the solenoid valves that direct the fluids. Good linear correlations between absorbance and current intensity for lead and tin were observed. Results were in agreement with the certified values. Precision was always better than 5%. The recommended procedure allows the direct determination of 60 or 30 elements/h using FAAS or GFAAS, respectively.

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A fast and direct method for the determination of Cr in milk and cane sugar suspensions using graphite furnace atomic absorption spectrometry with Zeeman-effect background correction is described. No sample pre-treatment was necessary, minimizing the risk of contamination. The concentration of chromium in cane sugar was evaluated using Cr reference solutions prepared in 1% v/v HNO3 solution. The milk samples were introduced into the furnace with a mixture of amines for avoiding the autosampler blockage and foaming of milk. Chromium determination in milk was based on the standard additions method (SAM). The limit of detection and characteristic mass for cane sugar sample (30 muL) were 0,13 ng/ml and 4,3 pg, and for milk sample (10 muL) were 0,23 ng/ml and 7,8 pg, respectively. The graphite tube lifetime was 300 firings for sugar-cane sample and 100 firings for milk sample. The heating program was implemented in 68 s.