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Kinetic model of arsenic sorption onto zero-valent iron (ZVI)

机译:零价铁(ZVI)上砷吸附的动力学模型

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This study investigated the mechanisms involved in removing arsenic from water using zero-valent iron (ZVI) as sorbent. Relatively limited information is available on the kinetics aspects of sorption of arsenic compounds onto ZVI. In order to gain an understanding of the sorption kinetics, a detailed study was conducted in a controlled batch test and developed sorption kinetic model. The effects of different arsenic concentrations on the kinetics sorption rates of arsenic(V) and arsenic(III) were investigated. Arsenic(V) was removed by two mechanisms-surface adsorption and co-precipitation with Fe(III) on ZVI, while arsenic(III) was removed by adsorption on ZVI and oxidized to arsenic(V). Reaction rate constants were calculated for arsenic(V) and arsenic(III) at different concentrations by a second-order kinetic model. The results indicate that ZVI could be employed as sorbent materials to enhance the adsorption and co-precipitation processes to improve the removal rate of arsenic from water. The results also showed that the arsenic(III) oxidized to arsenic(V), while the analyses indicated that there was no measurable reduction of arsenic(V) to arsenic(III).
机译:这项研究调查了使用零价铁(ZVI)作为吸附剂从水中去除砷的机理。关于砷化合物吸附到ZVI的动力学方面的信息相对有限。为了获得对吸附动力学的理解,在受控的间歇测试中进行了详细的研究,并开发了吸附动力学模型。研究了不同浓度的砷对砷(V)和砷(III)动力学吸附速率的影响。通过ZVI上的表面吸附和与Fe(III)共沉淀两种方法除去砷(V),通过在ZVI上吸附去除砷(III)并氧化成砷(V)。通过二级动力学模型计算了不同浓度下的砷(V)和砷(III)的反应速率常数。结果表明,ZVI可以用作吸附剂材料,以增强吸附和共沉淀过程,从而提高水中砷的去除率。结果还表明,砷(III)氧化为砷(V),而分析表明砷(V)还原为砷(III)的量没有可测量的。

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