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COPRECIPITATION OF ARSENIC WITH Fe(III), Al(III) AND MIXTURES OF BOTH IN A CHLORIDE SYSTEM

机译:砷与Fe(III),Al(III)和氯化物体系中的混合物的共沉淀

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The main treatment method for the removal of arsenic from process and effluent streams, and also from drinking water, has employed chemical coprecipitation with Fe(III) and Al(III) for many decades. It is considered that As(V) is the oxidation state that is most efficiently removed by chemical coprecipitation, and so for removal of As(III) a pre-oxidation process has been recommended and generally adopted. The literature reports many studies in which an aqueous solution of either Fe(III) or Al(III) was the reagent that had been investigated for coprecipitation of As(V), and the mechanism of binding between the arsenic solute and the precipitated compound has also had considerable attention. There is argument as to whether Fe(III) or Al(III), used separately, is the most effective reagent for coprecipitation, and also concerning the optimal M(III):As(V) ratio for best removal. Many misconceptions have evolved from published work and this paper will address some of those and provide experimental comparisons in evidence. More importantly we report better results from using a mixed Fe(III)-Al(III) reagent for coprecipitation of As(V), rather than the individual Fe(III) or Al(III) solutions separately. The experiments reported here were confined to chloride systems.
机译:从工艺和流出物流中除去砷的主要处理方法以及饮用水,已经使用了Fe(III)和Al(III)的化学共沉淀数十年。认为(v)是通过化学共沉淀最有效地除去的氧化状态,因此去除(iii)推荐预氧化过程并通常采用。该文献报告了许多研究,其中Fe(III)或Al(III)的水溶液是已经研究过的(v)的共沉淀的试剂,并且砷溶质与沉淀化合物之间的结合机理也有很大的关注。另外有Fe(III)或Al(III)是否分别用于CopRecipItitation最有效的试剂,也有关于最佳的M(III):AS(v)比率以获得最佳去除。许多误解已经从发布的工作中发展出来,本文将解决其中一些并提供证据的实验比较。更重要的是,我们通过单独使用与(v)的共沉淀的混合Fe(III)-Al(III)试剂报告更好的结果,而不是单独使用单独的Fe(III)或Al(III)溶液。这里报道的实验仅限于氯化物体系。

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