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电化学 EDTA 循环利用牺牲型 Al 阳极修复 Pb 污染土壤。

Electrochemical EDTA recycling with sacrificial Al anode for remediation of Pb contaminated soil.

机构信息

Agronomy Department, Biotechnical Faculty, University of Ljubljana, Jamnikarjeva 101, 1000 Ljubljana, Slovenia.

出版信息

Environ Pollut. 2010 Aug;158(8):2710-5. doi: 10.1016/j.envpol.2010.04.014. Epub 2010 May 20.

Abstract

Recycling chelant is a precondition for cost-effective EDTA-based soil remediation. Extraction with EDTA removed 67.5% of Pb from the contaminated soil and yielded washing solution with 1535 mg L(-1) Pb and 33.4 mM EDTA. Electrochemical treatment of the washing solution using Al anode, current density 96 mA cm(-2) and pH 10 removed 90% of Pb from the solution (by electrodeposition on the stainless steel cathode) while the concentration of EDTA in the treated solution remained the same. The obtained data indicate that the Pb in the EDTA complex was replaced by electro-corroded Al after electro-reduction of the EDTA and subsequently removed from the solution. Additional soil extraction with the treated washing solution resulted in total removal of 87% of Pb from the contaminated soil. The recycled EDTA retained the Pb extraction potential through several steps of soil extraction and washing solution treatment, although part of the EDTA was lost by soil absorption.

摘要

螯合剂的回收是 EDTA 为基础的土壤修复具有成本效益的前提条件。用 EDTA 进行萃取,从污染土壤中去除了 67.5%的 Pb,得到了 Pb 浓度为 1535mg/L 和 EDTA 浓度为 33.4mM 的洗脱液。采用 Al 阳极、电流密度为 96mA/cm(2)和 pH 值为 10 的电化学处理,从洗脱液中去除了 90%的 Pb(通过不锈钢阴极的电沉积),而处理后溶液中 EDTA 的浓度保持不变。所得数据表明,在 EDTA 还原后,电腐蚀的 Al 取代了 EDTA 络合物中的 Pb,随后从溶液中去除。用处理后的洗脱液对土壤进行额外的萃取,从污染土壤中总共去除了 87%的 Pb。尽管部分 EDTA 被土壤吸收而损失,但回收的 EDTA 通过多次土壤萃取和洗脱液处理仍保留了 Pb 萃取的潜力。

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