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IRON FOUNDRY SLAGS AS PERMEABLE REACTIVE BARRIER MATERIALS FOR REMOVING ARSENIC FROM GROUNDWATER

机译:铁制炉渣作为可渗透的反应性屏障材料,用于去除地下水中的砷

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This paper describes findings from leach testing, total element analyses, and kinetic batch tests conducted to evaluate the feasibility of using iron foundry slag (an industrial byproduct of iron casting) as a reactive material in permeable reactive barriers used to remove arsenic (As) from groundwater. Tests were conducted on four slags from foundries in Wisconsin using solutions containing arsenite (As-III) and arsenate (As-V) having initial total As concentrations ranging from 100-2500 μg/L. Comparative tests were also conducted on zero valent iron (ZVI) and sand as a non-reactive control. Water leach testing and total elemental analyses suggested that leaching from slags is not appreciably different from ZVI, at least in the context of environmental regulations in Wisconsin. For the same liquid-to-solid ratio, As removal was slower with slag than ZVI. Arsenic removal rates also varied considerably from slag to slag, and did not depend on the quantity of iron in the slag. The removal rate typically decreased with increasing concentration, and was slower for As-III than As-V. Computations made using the rate coefficients measured in this study suggest that a common 1-m-thick PRB containing iron foundry slag could effectively treat groundwater contaminated with As-III or As-V at a concentration of 1000 μg/L, although other factors such as slag heterogeneity and competition with other species might influence effectiveness in a field setting.
机译:本文介绍了浸出试验,总元素分析和动力学间歇试验的结果,这些试验旨在评估将铁铸造炉渣(铸铁的工业副产品)用作可渗透反应性屏障中的反应性材料的可行性,该屏障可用于去除砷(As)。地下水。对威斯康星州铸造厂的四种炉渣进行了测试,使用的溶液中含有砷(As-III)和砷酸盐(As-V)的初始总砷浓度范围为100-2500μg/ L。还对零价铁(ZVI)和沙子作为非反应性对照进行了对比测试。水浸测试和总元素分析表明,至少在威斯康星州的环境法规中,从炉渣中浸出与ZVI并无显着差异。对于相同的液固比,用渣去除As的速度比ZVI慢。炉渣之间的除砷率也有很大不同,并且不取决于炉渣中铁的含量。去除速率通常随浓度的增加而降低,并且对于As-III而言,其去除速度要比As-V慢。使用本研究中测得的速率系数进行的计算表明,常见的1-m厚的PRB含铁铸造炉渣可以有效地处理浓度为1000μg/ L的被As-III或As-V污染的地下水。因为矿渣的异质性和与其他物种的竞争可能会影响田间环境的有效性。

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