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Using adsorption and sulphide precipitation as the principal removal mechanisms of arsenic from a constructed wetland - a critical review

机译:使用吸附和硫化物沉淀作为由构造的湿地的砷的主要去除机制 - 一个关键评论

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摘要

This review has been undertaken to understand the role of various parameters such as redox potential, microbes, and organic matters on the fate and transport of arsenic in the constructed wetland. A conceptual diagram of arsenic fate and transport in the constructed wetland was developed. Role of various minerals which are produced due to microbial activities are described. The role of these minerals on arsenic adsorption is discussed. It was envisaged that iron sulphide would be the main adsorbent for arsenic in microbe-mediated adsorption process. Beside microbe-mediated arsenic adsorption, roles of various microbes, such as sulphate reducers and methane producers, on arsenic transformation are discussed. Role of various organic carbon sources and electron acceptors on the proliferation of the above mentioned microbes with respect to arsenic transformation was envisaged. Role of dissolved organic matters on arsenic transformation and transport was also discussed in details. To strengthen the review, laboratory studies and modelling of arsenic adsorption and transformation using the Visual Minteq were appended.
机译:已经进行了本综述以了解各种参数的作用,如氧化还原潜力,微生物和有机物质,在建造的湿地中的砷的命运和运输。开发了建造湿地的砷命运和运输的概念图。描述了由于微生物活性产生的各种矿物的作用。讨论了这些矿物对砷吸附的作用。设想硫化铁将是微生物介导的吸附过程中砷的主要吸附剂。除了微生物介导的砷吸附之外,还讨论了各种微生物的作用,例如硫酸盐还原剂和甲烷生产者,对砷转化进行。设想各种有机碳源和电子受体对上述微生物的增殖相对于砷转化的作用。还讨论了溶解有机物对砷转化和运输的作用。加强审查,使用视觉Minteq的审查,实验室研究和砷吸附和转化的建模。

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