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Dependence of particle concentration effect on pH and redox for arsenic removal by FeS-coated sand under anoxic conditions

机译:缺氧条件下颗粒浓度对pH和氧化还原作用对FeS包覆砂去除砷的影响

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FeS has been recognized as a good scavenger for arsenic under anoxic conditions. To create a suitable adsorbent for flow-through reactors such as permeable reactive barriers, it has been suggested that this material may be coated onto sand. However, previous work on FeS-coated sand has focused on batch reactors, while flow-through reactors usually have higher solid-solution ratios. To ascertain whether differences in the solid-solution ratio (SSR) are important in this system, batch sorption experiments were conducted as a function of pH using As(III) and FeS-coated sands at various solid-solution ratios. The results showed little variation in the distribution coefficient with SSR at pH 7 and 9. However, at pH 5, the results showed lower values of the distribution coefficient at lower SSRs, the reverse of typically reported SSR effects. Measured pe values showed a dependence on SSR, which, when coupled with chemical modeling of the Fe-As-S-H2O system, suggested a change in the removal mechanism with SSR, from adsorption to a reduced Fe(II) oxyhydroxide phase (represented by Fe-2(OH)(5)) to precipitation as As2S3 or AsS. On the other hand, at pH 7 and 9, arsenite adsorption is the most probable removal mechanism regardless of the pe. Thus, this study identified variations in pH and redox conditions, and the removal mechanisms that these parameters govern, as the reason for the apparent SSR effect. (C) 2014 Elsevier Ltd. All rights reserved.
机译:FeS被认为是缺氧条件下砷的良好清除剂。为了产生用于流通式反应器的合适的吸附剂,例如可渗透的反应性阻挡层,已经建议将该材料涂覆在沙子上。但是,先前关于FeS涂层砂的研究主要集中在间歇式反应器上,而流通式反应器通常具有更高的固溶比。为了确定固溶比(SSR)的差异在该系统中是否重要,使用As(III)和FeS涂层砂在不同固溶比下进行了批次吸附实验,作为pH的函数。结果表明,在7和9的pH下,SSR的分布系数几乎没有变化。但是,在pH 5的情况下,在较低的SSR上,分布系数的值较低,这与通常报道的SSR效应相反。测得的pe值显示出对SSR的依赖性,再结合Fe-As-S-H2O系统的化学模型,表明SSR的去除机理发生了变化,从吸附到还原的Fe(II)羟基氧化氢氧化物相(代表通过Fe-2(OH)(5))沉淀为As2S3或AsS。另一方面,在pH值为7和9的情况下,无论pe如何,砷的吸附都是最可能的去除机理。因此,本研究确定了pH和氧化还原条件的变化以及这些参数决定的去除机理,这是产生明显SSR效应的原因。 (C)2014 Elsevier Ltd.保留所有权利。

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