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通过 CFW(碳化食物废物)增强对铜污染土壤的电动(E/K)修复。

Enhanced electrokinetic (E/K) remediation on copper contaminated soil by CFW (carbonized foods waste).

机构信息

Department of Civil & Environmental Engineering, Chung-Ang University, 221, Heukseok-dong, Dongjak-gu, Seoul 156-756, Republic of Korea.

出版信息

J Hazard Mater. 2010 May 15;177(1-3):530-8. doi: 10.1016/j.jhazmat.2009.12.065. Epub 2009 Dec 22.

Abstract

The E/K remediation method is presented to purify low permeable contaminated soils due to Cu(2+), and carbonized foods waste (CFW) was used as a permeable reactive barrier (PRB) material. For adsorption and precipitation of the Cu(2+) in the PRB during its motion, PRB was installed in a zone of rapidly changing pH values. The adsorption efficiency of CFW used as PRB material was found to be 4-8 times more efficient than that of Zeolite. Throughout the experiment, a voltage slope of 1V/cm was implemented and acetic acid was injected on the anode to increase the remediation efficiency. The electrode exchange was executed to more completely remove precipitated heavy metals in the vicinity of the cathode. The majority of Cu(2+) was adsorbed or sedimented by CFW prior to the exchange of the electrode, and the remaining quantity of precipitated Cu(2+) on the cathode had decreased with an increase in the operating time. Experiments of seven cases with different E/K operating times were performed, and the average removal ratios were 53.4-84.6%. The removal efficiencies for the majority of cases increased proportionally with an increase in the operating time. After the experiments were completed, the adsorbed Cu(2+) on CFW was 75-150 mg. This means that the role of CFW as the material in PRB for remediating heavy metals was confirmed. The cost of energies needed to remove Cu(2+), CFW, and acetic acid are estimated at US$ 13.3-40/m(3).

摘要

E/K 修复法可用于净化受 Cu(2+)污染的低渗透性土壤,碳化食品废物 (CFW) 可用作可渗透反应屏障 (PRB) 材料。为了在 PRB 运动过程中吸附和沉淀 Cu(2+),在 pH 值快速变化的区域安装 PRB。研究发现,用作 PRB 材料的 CFW 的吸附效率比沸石高 4-8 倍。在整个实验过程中,施加了 1V/cm 的电压梯度,并在阳极注入乙酸以提高修复效率。执行电极交换以更完全地去除阴极附近沉淀的重金属。在电极交换之前,大部分 Cu(2+)被 CFW 吸附或沉淀,随着运行时间的增加,阴极上沉淀的 Cu(2+)的剩余量减少。进行了七种不同 E/K 运行时间的实验,平均去除率为 53.4-84.6%。大多数情况下的去除效率随着运行时间的增加呈比例增加。实验完成后,CFW 上吸附的 Cu(2+)为 75-150mg。这意味着 CFW 作为 PRB 中重金属修复材料的作用得到了证实。去除 Cu(2+)、CFW 和乙酸所需的能量成本估计为 13.3-40 美元/m(3)。

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