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In situ field application of electrokinetic remediation for an As-, Cu-, and Pb- contaminated rice paddy site using parallel electrode configuration

机译:使用平行电极配置对As,Cu和Pb污染的稻田进行电动修复的原位现场应用

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摘要

The applicability of an in situ electrokinetic process with a parallel electrode configuration was evaluated to treat an As-, Cu-, and Pb-contaminated paddy rice field in full scale (width, 17 m; length, 12.2 m; depth, 1.6 m). A constant voltage of 100 V was supplied and electrodes were spaced 2 m apart. Most As, Cu, and Pb were bound to Fe oxide and the major clay minerals in the test site were kaolinite and muscovite. The electrokinetic system removed 48.7, 48.9, and 54.5 % of As, Cu, and Pb, respectively, from the soil during 24 weeks. The removal of metals in the first layer (0-0.4 m) was higher than that in the other three layers because it was not influenced by groundwater fluctuation. Fractionation analysis showed that As and Pb bound to amorphous Fe and Al oxides decreased mainly, and energy consumption was 1.2 kWh/m(3). The standard deviation of metal concentration in the soil was much higher compared to the hexagonal electrode configuration because of a smaller electrical active area; however, the electrode configuration removed similar amounts of metals compared to the hexagonal system. From these results, it was concluded that the electrokinetic process could be effective at remediating As-, Cu-, and Pb-contaminated paddy rice field in situ.
机译:评估了具有平行电极配置的原位电动过程在全天候(宽17 m;长12.2 m;深度1.6 m)处理被As,Cu和Pb污染的水稻田的适用性。 。提供100V的恒定电压,并且电极间隔2m。大多数As,Cu和Pb都与氧化铁结合,测试部位的主要粘土矿物是高岭石和白云母。电动系统在24周内分别从土壤中去除了48.7%,48.9%和54.5%的As,Cu和Pb。第一层中的金属去除量(0-0.4 m)高于其他三层中的去除量,因为它不受地下水波动的影响。分馏分析表明,与非晶态Fe和Al氧化物结合的As和Pb主要降低,能耗为1.2 kWh / m(3)。与六边形电极配置相比,土壤中金属浓度的标准偏差要高得多,因为其电活性面积较小;然而,与六角形系统相比,电极结构去除了相似数量的金属。从这些结果可以得出结论,电动过程可以有效地修复被As,Cu和Pb污染的稻田。

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