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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >EDDS-enhanced electrokinetic remediation of heavy metal-contaminated clay soils under neutral pH conditions
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EDDS-enhanced electrokinetic remediation of heavy metal-contaminated clay soils under neutral pH conditions

机译:中性pH条件下重金属污染粘土土壤的EDDS增强电动修复

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摘要

Electrokinetic remediation of heavy metal-contaminated clay soils under neutral pH conditions is a challenging task due to the low water solubility of heavy metals. The objective of this study was to apply a biodegradable [S,S]-ethylenediamine disuccinic acid ([S,S]-EDDS) chelating agent to clay soils under neutral pH conditions to enhance the electrokinetic remediation efficiencies of cadmium (Cd) and lead (Pb). Bench-scale laboratory experiments were designed to investigate the influence of the [S,S]-EDDS concentration, applied voltage, and electrode materials on the remediation efficiencies. The soil pH was maintained near 7.0 for all of the experiments by adding HNO_3 or NaOH in the electrode solutions. The experimental results showed that lead was not effectively removed from clay soils without the presence of [S,S]-EDDS due to its poor water solubility at neutral pH conditions. The remediation efficiencies were significantly enhanced by adding [S,S]-EDDS, indicating that the formation of the Pb-EDDS complexes increased the apparent water solubility of lead. The lead remediation efficiencies were enhanced by increasing either the applied voltage or the [S,S]-EDDS concentration. It was also determined that the electrode materials significantly influenced the remediation efficiency in the following order: platinum-coated titanium > iridium dioxide-coated titanium > graphite. Conversely, in case of cadmium, which has higher water solubility than lead, negatively charged Cd-EDDS complexes and positively charged cadmium ions moved in opposing directions, and as a result, cadmium accumulated at the center of the soil column. This study provided fundamental information on the design of an electrokinetic remediation system and will be useful to optimize the remediation conditions.
机译:由于重金属的低水溶性,中性pH条件下重金属污染粘土土壤的电动修复是一个具有挑战性的任务。本研究的目的是将可生物降解的[S,S] - 乙二胺酸([S]-S] -EDDS)螯合剂施用于中性pH条件下的粘土土壤,以增强镉(CD)和铅的电动修复效率(PB)。替代的实验室实验旨在探讨[S] -EDSED浓度,施加电压和电极材料对修复效率的影响。通过在电极溶液中加入HNO_3或NaOH,将土壤pH维持在7.0附近。实验结果表明,由于其在中性pH条件下的水溶解度差,没有有效地从粘土土壤中从粘土污垢中取出铅。通过添加[S] -EDDS,表明PB-EDDS复合物的形成增加了铅的表观水溶性,显着提高了修复效率。通过增加施加的电压或[S,S] -EDDS浓度来提高铅修复效率。还确定电极材料以下列顺序显着影响修复效率:铂涂覆的钛>二氧化铱丙烷钛>石墨。相反,在镉的情况下,其具有比铅的水溶解度更高,带负电的CD-EDDS复合物和带正电的镉离子在相对方向上移动,结果,镉积聚在土柱的中心。本研究提供了关于电动修复系统的设计的基本信息,并将有助于优化修复条件。

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