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Thioarsenite Detection and Implications for Arsenic Transport in Groundwater

机译:硫代亚砷酸盐的检测及其对地下水中砷运输的意义

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Arsenic toxicity and mobility in groundwater depend on its aqueous speciation. Uncertainty about the methods used for measuring arsenic speciation in sulfate-reducing environments hampers transport and fate analyses and the development of in situ remediation approaches for treating impacted aquifers. New anion-exchange chromatography methods linked to inductively coupled plasma mass spectrometry (ICP-MS) are presented that allow for sample/eluent pH matching. Sample/eluent pH matching is advantageous to prevent thioarsenic species transformation during chromatographic separation because species protonation states remain unaffected, hydroxyl-for-bisulfide ligand substitution is avoided, and oxidation of reduced arsenic species is minimized. We characterized model and natural solutions containing mixtures of arsenic oxyanions with dissolved sulfide and solutions derived from the dissolution of thioarsenite and thioarsenate solids. In sulfidic solutions containing arsenite, two thioarsenic species with S/As ratios of 2:1 and 3:1 were important over the pH range from 5.5 to 8.5. The 3:1 thioarsenic species dominated when disordered As2S3 dissolved into sulfide-containing solution at pH 5.4. Together with the preferential formation of arsenite following sample dilution, these data provide evidence for the formation and detection of thioarsenite species. This study helps resolve inconsistencies between spectroscopic and chromatographic evidence regarding the nature of arsenic in sulfidic waters.
机译:砷在地下水中的毒性和迁移性取决于其含水形态。在减少硫酸盐的环境中用于测量砷形态的方法的不确定性阻碍了运输和命运分析以及用于处理受影响含水层的原位修复方法的发展。提出了与电感耦合等离子体质谱法(ICP-MS)相关联的新阴离子交换色谱方法,该方法可实现样品/洗脱液的pH匹配。样品/洗脱液的pH匹配有利于防止色谱分离过程中硫代砷物质的转化,因为物质的质子化状态保持不受影响,避免了羟基被二硫键配体取代,并使还原的砷物质的氧化减至最小。我们对模型溶液和天然溶液进行了表征,其中包含砷酸氧阴离子与溶解的硫化物的混合物以及由硫代亚砷酸盐和硫代砷酸盐固体的溶解产生的溶液。在含有亚砷酸盐的硫化溶液中,S / As比为2:1和3:1的两种硫代砷物质在​​5.5至8.5的pH范围内很重要。当无序的As2S3溶解在pH 5.4的含硫化物溶液中时,3:1的硫砷物质占主导地位。这些数据与样品稀释后优先形成的亚砷酸盐一起,为硫代亚砷酸盐物种的形成和检测提供了证据。这项研究有助于解决关于硫化水中砷的性质的光谱和色谱证据之间的矛盾。

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