首页> 外文期刊>Talanta: The International Journal of Pure and Applied Analytical Chemistry >On the re-assessment of the optimum conditions for the determination of platinum, palladium and rhodium in environmental samples by electrothermal atomic absorption spectrometry and microwave digestion
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On the re-assessment of the optimum conditions for the determination of platinum, palladium and rhodium in environmental samples by electrothermal atomic absorption spectrometry and microwave digestion

机译:用电热原子吸收光谱法和微波消解法重新评估测定环境样品中铂,钯和铑的最佳条件

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The experimental conditions for the determination of platinum, palladium and rhodium by graphite furnace atomic absorption spectrometry (GFAAS) are re-assessed. A certified material (BCR-723) was used as a working sample and analyzed using various extraction and atomization procedures in order to find the optimal experimental conditions that enable the quantitative and reproducible detection of platinum, palladium and rhodium in environmental matrices. Evidently, literature observations regarding the atomization conditions were proven fairly adequate. However, the provision of the optimum extraction conditions revealed several parameters that lie behind the reported uncertainties. The appropriate combination between extraction conditions and atomization programs afforded a considerable improvement in the recoveries and analytical features of platinum, palladium and rhodium determination with GFAAS. Cross-examination of the analytical data with various CRMs (certified reference materials) was used to validate the robustness of the method in heterogeneous matrices bearing different element levels. Under the optimum experimental conditions the method permits the determination at concentrations as low as (LOD3S/N) 1.9 ng g(-1), 0.45 ng g(-1) and 0.6 ng g(-1) for Pt, Pd and Rh, respectively affording recoveries in the range of 93-101%. The method was successfully applied to the assessment of Pt, Pd and Rh accumulation in real road dust and soil samples in Greece. (C) 2008 Published by Elsevier B.V.
机译:重新评估了石墨炉原子吸收光谱法(GFAAS)测定铂,钯和铑的实验条件。使用经过认证的材料(BCR-723)作为工作样品,并使用各种萃取和雾化程序进行分析,以便找到能够对环境基质中的铂,钯和铑进行定量和可重现检测的最佳实验条件。显然,有关雾化条件的文献观察被证明是足够的。然而,最佳提取条件的提供揭示了所报道的不确定性背后的几个参数。萃取条件和雾化程序之间的适当组合大大提高了用GFAAS测定铂,钯和铑的回收率和分析特性。使用各种CRM(经认证的参考材料)对分析数据进行交叉检验,以验证该方法在具有不同元素水平的异构矩阵中的稳健性。在最佳实验条件下,该方法可以测定低浓度(LOD3S / N)的Pt,Pd和Rh分别为1.9 ng g(-1),0.45 ng g(-1)和0.6 ng g(-1)。回收率分别在93-101%之间。该方法已成功应用于希腊真实道路扬尘和土壤样品中Pt,Pd和Rh积累的评估。 (C)2008由Elsevier B.V.发布

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