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The removal efficiency and long-term hydraulic behaviour of zero valent iron/lapillus mixtures for the simultaneous removal of Cu~(2+), Ni~(2+) and Zn~(2+)

机译:零价铁/ lapillus混合物同时去除Cu〜(2 +),Ni〜(2+)和Zn〜(2+)的去除效率和长期水力行为

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Granular mixtures composed of zero valent iron (ZVI) and lapillus at two different weight ratios (i.e. 30:70 and 50:50) were tested through column experiments for the simultaneous removal of Cu2+, Ni2+ and Zn2+ present in aqueous solutions at high concentrations. The results were used to evaluate the feasibility of the above-mentioned granular mixtures as reactive media in permeable reactive barriers (PRB) for the remediation of groundwater polluted by metals. Test results showed that the two granular reactive media efficiently removed the three heavy metals under study according to the following removal sequence Cu Zn Ni. The granular mixture with the higher iron content showed a proportionally higher removal rate but also a higher reduction of hydraulic conductivity over time. Different removal mechanisms occurred for the three contaminants in question. Considering that for Ni and Zn the main removal mechanism was probably adsorption, we used different mathematical models, in order to predict the breakthrough curves for the adsorption mechanisms. The Adams-Bohart model showed the best fit with the experimental data and it was thus used to predict the zinc removal front within the barrier thickness. Finally, we showed that the mathematical approach may be used for the design of PRBs for the reactive media and contaminants used in this research. (C) 2019 Elsevier B.V. All rights reserved.
机译:通过柱实验测试了以两种不同的重量比(即30:70和50:50)组成的零价铁(ZVI)和拉普拉斯颗粒混合物,以同时去除水溶液中高浓度的Cu2 +,Ni2 +和Zn2 +。结果被用于评估上述颗粒状混合物作为可渗透反应性屏障(PRB)中的反应介质用于修复被金属污染的地下水的可行性。测试结果表明,两种粒状反应性介质按照以下去除顺序Cu> Zn> Ni有效去除了研究中的三种重金属。铁含量较高的粒状混合物显示出较高的去除率,但随着时间的流逝,水力传导率也有较大降低。三种污染物的去除机理不同。考虑到镍和锌的主要去除机理可能是吸附,我们使用不同的数学模型来预测吸附机理的突破曲线。 Adams-Bohart模型显示出与实验数据的最佳拟合,因此可用于预测阻挡层厚度内的锌去除前沿。最后,我们证明了该数学方法可用于本研究中使用的反应性介质和污染物的PRB设计。 (C)2019 Elsevier B.V.保留所有权利。

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