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首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Conversion, sorption, and transport of arsenic species in geological media
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Conversion, sorption, and transport of arsenic species in geological media

机译:地质介质中砷物质的转化,吸附和运输

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摘要

This work addresses the inter-conversion and sorption of inorganic As species in representative geological media. Through the sensitive quantification of As(III)and As(V)with liquid chromatography-inductively coupled plasma-mass spectrometry, and through integrated batch and column approaches, it is shown that natural media can either reduce or oxidize As species. Oxidation of As(III)to As(V)is shown in the Hanford sediment, while reduction of As(V)to As(III)is shown for the surface soil of Savannah River Site. Overall, the sorption distribution coefficient of As(V)onto geological media is much larger than that of As(III), and a reduction of the more sorptive As(V)to As(III)will lead to groundwater enrichment with As. Coupled with the different sorption behavior of As(III)and As(V), the inter-conversion of these species will strongly affect the geochemical cycling of redox-sensitive As in the subsurface.
机译:这项工作解决了代表性地质介质中无机砷物种的相互转化和吸附问题。通过液相色谱-电感耦合等离子体质谱法对As(III)和As(V)进行灵敏定量,并通过批和柱一体化方法,表明天然介质可以还原或氧化As物种。在汉福德沉积物中,As(III)被氧化为As(V),而在萨凡纳河站点的表层土壤中,As(V)还原为As(III)。总体而言,As(V)在地质介质上的吸附分布系数比As(III)大得多,并且吸附性更强的As(V)对As(III)的还原将导致地下水中As的富集。再加上As(III)和As(V)的不同吸附行为,这些物质的相互转化将强烈影响地下对氧化还原敏感性As的地球化学循环。

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