Department of Environmental Engineering, Technical University of Crete, Politechnioupolis, Chania 73100, Greece.
Department of Mineral Resources Engineering, Technical University of Crete, Politechnioupolis, Chania 73100, Greece.
J Hazard Mater. 2010 Dec 15;184(1-3):547-554. doi: 10.1016/j.jhazmat.2010.08.070. Epub 2010 Aug 26.
An enhanced electrokinetic process for the removal of cadmium (Cd), nickel (Ni) and zinc (Zn) from contaminated soils was performed. The efficiency of the chelate agents nitrilotriacetic acid (NTA), diethylenetriaminepentaacetic acid (DTPA) and diaminocycloexanetetraacetic acid (DCyTA) was examined under constant potential gradient (1.23 V/cm). The results showed that chelates were effective in desorbing metals at a high pH, with metal-chelate anion complexes migrating towards the anode. At low pH, metals existing as dissolved cations migrated towards the cathode. In such conflicting directions, the metals accumulated in the middle of the cell. Speciation of the metals during the electrokinetic experiments was performed to provide an understanding of the distribution of the Cd, Ni and Zn. The results of sequential extraction analysis revealed that the forms of the metals could be altered from one fraction to another due to the variation of physico-chemical conditions throughout the cell, such as pH, redox potential and the chemistry of the electrolyte solution during the electrokinetic treatment. It was found that binding forms of metals were changed from the difficult type to easier extraction type.
采用强化电动过程去除污染土壤中的镉(Cd)、镍(Ni)和锌(Zn)。研究了螯合剂氮三乙酸(NTA)、二亚乙基三胺五乙酸(DTPA)和二氨基环已烷四乙酸(DCyTA)在恒电位梯度(1.23 V/cm)下的效率。结果表明,在高 pH 值下,螯合剂能有效解吸金属,金属-螯合阴离子配合物向阳极迁移。在低 pH 值下,金属以溶解阳离子的形式向阴极迁移。在这种相互冲突的方向上,金属在电池的中间积累。在电动实验中对金属的形态进行了分析,以了解 Cd、Ni 和 Zn 的分布情况。顺序提取分析的结果表明,由于整个电池中物理化学条件的变化,如 pH 值、氧化还原电位和电动处理过程中电解质溶液的化学性质,金属的形态可以从一种形态转变为另一种形态。发现金属的结合形态从难提取形态转变为易提取形态。