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Experimental on the Electrokinetic Remediation of Pb(II) Contaminated Loess

机译:PB(II)污染黄土电因内修复实验

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Pb(II) accumulates in the human body through the food chain or drinking water and thus causes damage to the nervous, hematological, gastrointestinal, cardiovascular, and renal systems. To effectively suppress the spread of Pb(II) contamination, electrokinetic remediation (ER) tests were conducted on Pb(II)-contaminated loess, and the distribution laws of current (I), potential (U), pH, Pb(II) concentration (C), removal efficiency (R), and energy consumption (E) during ER process were analyzed. The results revealed that the irregular laws of I and U over time and a significantly larger range of I change in the flow-plastic than in the hard-plastic state. When electrolyte was added to the cathode, the pH value in the soil gradually decreased from the cathode area to the anode area and was distributed between 3 and 6. In the meantime, the Pb(II) R reached a maximum of 93.84% and a minimum of 4.29%. The application of ER method resulted in a larger Pb(II) R and lower average E, suggesting that adding a electrolyte to the cathode, preacidizing treatment, and stirring soil at a fixed interval can significantly improved the remediation efficiency of Pb(II) contaminated loess.
机译:PB(ii)通过食物链或饮用水累积在人体中,从而导致神经,血液学,胃肠道,心血管和肾脏系统损害。为了有效地抑制Pb(ii)污染的扩散,电动修复(ER)试验在Pb(II) - 酰胺黄土和电流(I),潜在(U),pH,Pb(II)上进行试验分析了ER过程中的浓度(c),去除效率(R)和能量消耗(e)。结果表明,I和U的不规则规律随着时间的推移和较大的我在流动塑料中变化的明显更大范围。当将电解质加入到阴极中时,土壤中的pH值从阴极区域逐渐降低到阳极区域,并且在3至6之间分布。同时,Pb(II)r最多达到93.84%和a至少4.29%。 ER方法的应用导致较大的Pb(II)R和较低的平均e,表明将电解质添加到阴极,在固定间隔以固定间隔中捕获处理和搅拌土壤可以显着提高Pb(II)污染的修复效率黄土。

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