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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Thermodynamic model for arsenic speciation in sulfidic waters: A novel use of ab initio computations
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Thermodynamic model for arsenic speciation in sulfidic waters: A novel use of ab initio computations

机译:硫化水中砷形态的热力学模型:从头算的一种新颖用途

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摘要

Recent discoveries demonstrate that the chemistry of arsenic in sulfidic waters is much more complex that previously believed. One implication is that all earlier thermodynamic data on stabilities of As thioanions require revision. Previously used experimental approaches for determining As thioanion stabilities may be inadequate to deal with the full range of complexity. Here we use computational as well as empirical information to construct a provisional model for equilibrium As thioanion distributions in sulfidic waters. Whereas previous authors have argued for either As(III) or As(V) thioanions, the new model predicts that both are important and can occur simultaneously under commonly encountered pH and Sigma S-II conditions. At the order of magnitude level, the model reasonably predicts the solubility of As2S3 in sulfidic solutions, provides tentative peak assignments for published Raman spectroscopic data and plausibly accounts for how sulfide modifies the bacterial toxicity of As. The model yields a thermodynamic justification for how sulfide, which is usually regarded as a reducing agent, can counter-intuitively drive oxidation of As(III) to As(V), as has been observed both in the laboratory and in the field. Despite its uncertain accuracy, the model serves as a useful source of new, testable hypotheses about As geochemistry and highlights crucial experimental data needs. (C) 2008 Published by Elsevier Ltd.
机译:最近的发现表明,硫化水中的砷化学比以前认为的要复杂得多。一个暗示是,所有较早的有关As硫代阴离子稳定性的热力学数据都需要修改。以前使用的测定As硫代阴离子稳定性的实验方法可能不足以处理所有复杂性。在这里,我们使用计算和经验信息来构建一个在硫化水中平衡As硫代阴离子分布的临时模型。先前的作者争辩过As(III)或As(V)硫代阴离子,新模型预测两者都很重要,并且可以在常见的pH和Sigma S-II条件下同时发生。在数量级上,该模型合理地预测了As2S3在硫化溶液中的溶解度,为已发布的拉曼光谱数据提供了暂定的峰分配,并合理地解释了硫化物如何修饰As的细菌毒性。该模型产生了一个热力学依据,正如通常在实验室和现场观察到的那样,通常被视为还原剂的硫化物如何反直觉地驱动As(III)氧化为As(V)。尽管其准确性不确定,该模型仍可作为有关As地球化学的新的,可检验的假设的有用来源,并突出了关键的实验数据需求。 (C)2008由Elsevier Ltd.发布

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