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首页> 外文期刊>Revista Brasileira de Ciência do Solo >MERCURY QUANTIFICATION IN SOILS USING THERMAL DESORPTION AND ATOMIC ABSORPTION SPECTROMETRY: PROPOSAL FOR AN ALTERNATIVE METHOD OF ANALYSIS
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MERCURY QUANTIFICATION IN SOILS USING THERMAL DESORPTION AND ATOMIC ABSORPTION SPECTROMETRY: PROPOSAL FOR AN ALTERNATIVE METHOD OF ANALYSIS

机译:热脱附和原子吸收光谱法对土壤中的汞进行定量分析:一种替代分析方法的建议

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Despite the considerable environmental importance of mercury (Hg), given its high toxicity and ability to contaminate large areas via atmospheric deposition, little is known about its activity in soils, especially tropical soils, in comparison with other heavy metals. This lack of information about Hg arises because analytical methods for determination of Hg are more laborious and expensive compared to methods for other heavy metals. The situation is even more precarious regarding speciation of Hg in soils since sequential extraction methods are also inefficient for this metal. The aim of this paper is to present a technique of thermal desorption associated with atomic absorption spectrometry, TDAAS, as an efficient tool for quantitative determination of Hg in soils. The method consists of the release of Hg by heating, followed by its quantification by atomic absorption spectrometry. It was developed by constructing calibration curves in different soil samples based on increasing volumes of standard Hg2+ solutions. Performance, accuracy, precision, and quantification and detection limit parameters were evaluated. No matrix interference was detected. Certified reference samples and comparison with a Direct Mercury Analyzer, DMA (another highly recognized technique), were used in validation of the method, which proved to be accurate and precise.
机译:尽管汞(Hg)在环境方面具有相当大的重要性,但鉴于其高毒性和通过大气沉积污染大面积的能力,与其他重金属相比,汞在土壤(尤其是热带土壤)中的活性知之甚少。之所以缺乏有关汞的信息,是因为与其他重金属相比,测定汞的分析方法更加费力且昂贵。在土壤中汞的形态形成方面,情况更加不稳定,因为顺序提取方法对这种金属的效率也很低。本文的目的是提出一种与原子吸收光谱法关联的热脱附技术,TDAAS,作为定量测定土壤中汞的有效工具。该方法包括通过加热释放汞,然后通过原子吸收光谱法定量。它是根据不断增加的标准Hg2 +溶液体积在不同土壤样品中构建校准曲线而开发的。对性能,准确性,精密度以及定量和检测极限参数进行了评估。未检测到基质干扰。经认证的参考样品以及与直接水银分析仪DMA(另一种广受认可的技术)的比较被用于验证该方法的准确性和准确性。

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