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Application of enhanced electrokinetic approach to remediate Cr-contaminated soil: Effect of chelating agents and permeable reactive barrier

机译:增强电动方法在修复Cr污染土壤中的应用:螯合剂和渗透性反应屏障的影响

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Enhanced electrokinetic (EK) technique was employed to remediate Cr-contaminated soil using a permeable reactive barrier (PRB) and chelating agents. Synthesized nanomagnetic Fe3O4 was used as a reactive material in PRB. Moreover, EDTA and citric acid (CA) were used as chelating agents. Sequential extraction method (SEM) was employed to determine Cr-elimination mechanism during the EK process. The results revealed that EDTA (78% Cr removal) was more effective than CA (54% Cr removal) in eliminating Cr from the contaminated soil during the EK process. The application of PRB in combination with EDTA was able to reduce the Cr removal rate to 70 and 66% by locating PRB in the middle section and near the anode/cathode reservoir, respectively. The use of PRB coupled with EDTA near the anode and cathode led to a more uniform Cr removal from the soil during the EK process. The highest energy consumption was 0.12 KWh during the EK remediation using PRB. Traditional EK remediation could only remove exchangeable and carbonate fractions of Cr. The use of chelating agents led to a significant (more than 90%) increase in Cr removal from the following fractions: exchangeable phase, carbonate phase, and bond to Fe-Mn oxides. In addition to electromigration (EM) mechanism, electroosmotic flow (EOF) played an important role in Cr removal during the EK process, especially when coupled with PRB. (C) 2020 Elsevier Ltd. All rights reserved.
机译:使用可渗透的活性屏(PRB)和螯合剂来使用增强的电动(EK)技术来修复CR污染的土壤和螯合剂。合成的纳米磁性Fe3O4用作PRB中的反应性材料。此外,EDTA和柠檬酸(CA)用作螯合剂。使用顺序提取方法(SEM)来确定EK过程中的CR消除机制。结果表明,EDTA(78%Cr除去)比CA(54%CR除去)更有效地在EK过程中消除受污染土壤的Cr。 PRB与EDTA组合的施用能够通过在中间部分和阳极/阴极储存器附近分别将CR去除速率降低至70和66%。使用PRB与阳极和阴极附近的EDTA耦合,导致在EK过程中从土壤中除去更均匀的Cr。在EK修复期间使用PRB的最高能耗为0.12千瓦时。传统的EK修复只能去除Cr的可更换且碳酸盐馏分。使用螯合剂导致来自以下级分的Cr的显着(超过90%)增加:可交换相,碳酸酯相和键入Fe-Mn氧化物。除了电迁移(EM)机制之外,电渗流(EOF)在EK过程中的CR去除中发挥了重要作用,特别是当与PRB相结合时。 (c)2020 elestvier有限公司保留所有权利。

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