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South African sands as a low cost alternative solution for arsenic removal from industrial effluents in permeable reactive barriers: Column tests

机译:南非砂作为可渗透反应性屏障中工业废水中砷去除的低成本替代解决方案:柱测试

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摘要

This study has investigated mixes of South African sands and zero valent iron (ZVI) for the design of low cost permeable reactive barriers (PRB) for Arsenic removal. After preliminary batch tests conducted to select the substrates with the highest Arsenic removal capacities and to identify the best operative conditions, column tests were performed to simulate environmental conditions that occur when a PRB is interested by a contaminated effluent. Column experiments were carried out in two columns of different sizes (small and large columns) using two mixes of Gotthart Maier Metallpulver GmbH ZVI (GmbH ZVI) and Berea red sand (BRS) (75-25% and 50-50% of column volume) and only GmbH ZVI as filling material. In smail column tests, higher amounts of BRS reflected in 100% of Arsenic removal both at 8.4 mi min~(-1) and 16.8 ml min~(-1) flow rates. In large column tests, 100% of Arsenic removal was observed for all flow rates investigated. A first-order kinetic model was used to describe the Arsenic adsorption kinetics.
机译:这项研究调查了南非砂和零价铁(ZVI)的混合物,以设计用于除砷的低成本可渗透反应性阻挡层(PRB)。在进行初步的批量测试以选择具有最高砷去除能力的底物并确定最佳的操作条件后,进行了柱测试,以模拟当PRB被污染的废水引起关注时发生的环境条件。使用Gotthart Maier Metallpulver GmbH ZVI(GmbH ZVI)和Berea红砂(BRS)的两种混合物(分别占色谱柱体积的75-25%和50-50%)在不同尺寸的两根色谱柱(小柱和大柱)中进行柱实验),只有GmbH ZVI作为填充材料。在smail柱测试中,在8.4 mi min〜(-1)和16.8 ml min〜(-1)流速下,较高的BRS含量可100%去除砷。在大型色谱柱测试中,观察到的所有流速均观察到100%的砷去除率。一阶动力学模型用来描述砷的吸附动力学。

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