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Field application of electrokinetic remediation for multi-metal contaminated paddy soil using two-dimensional electrode configuration

机译:二维电极配置在多金属污染稻田电动修复的现场应用

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In this study, we evaluated the feasibility of in situ electrokinetic remediation for arsenic (As)-, copper (Cu)-, and lead (Pb)-contaminated soil, in a pilot-scale field application with two-dimensional electrode configurations. Square and hexagonal configurations with different electrode spacing, 1 m and 2m, were investigated under a constant 100 V. A square configuration with electrode spacing of 2 m removed 61.5 % of As, 11.4 % of Cu, and 0.9 % of Pb, respectively, and a hexagonal configuration with the same spacing showed a higher removal efficiency in top (59 % of As, 0-0.5 m) and middle (53 % of As, 0.5-1.0 m) layers, but much lower removal efficiency in the bottom layer (1-1.5 m), which was thought to be due to groundwater flow through periodic rise and fall of tides. Fractionation analysis showed that As bound to Fe-Mn oxyhydroxide was the main form of As removed by the electrokinetic process. The two-dimensional configuration wasted less electrical energy by Joule heating, and required fewer electrode installations, compared to the one-dimensional electrode configuration.
机译:在这项研究中,我们评估了在带有二维电极配置的中试规模现场应用中,对砷(As),铜(Cu)和铅(Pb)污染的土壤进行原位电动修复的可行性。在恒定的100 V下研究了具有不同电极间距(分别为1 m和2m)的正方形和六边形配置。具有2 m电极间隔的正方形配置分别去除了61.5%的As,11.4%的Cu和0.9%的Pb。并且具有相同间距的六边形结构在顶层(As的59%,0-0.5 m)和中间层(As的53%,0.5-1.0 m)中显示出较高的去除效率,但在底层中的去除效率却低得多(1-1.5 m),这被认为是由于潮汐周期性上升和下降引起的地下水流。分馏分析表明,与Fe-Mn羟基氧化物结合的As是通过电动过程去除的主要形式。与一维电极配置相比,二维结构通过焦耳加热浪费的电能更少,并且所需的电极安装更少。

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