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Heavy metal removal from MSWI fly ash by electrokinetic remediation coupled with a permeable activated charcoal reactive barrier

机译:电动修复与可渗透活性炭反应性屏障结合去除MSWI粉煤灰中的重金属

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This paper presents the investigations into the feasibility of the application of a remediation system that couples electrokinetic remediation (EKR) with the permeable reactive barrier (PRB) concept for municipal solid waste incineration (MSWI) fly ash with activated charcoal as the PRB material. The experimental results of this study showed that the proposed combined method can effectively improve the remediation efficiency and that the addition of the oxalic acid to the PRB media before the coupled system can further enhance the remediation process. In the optimization tests, the maximum removals of Zn, Pb, Cu and Cd were achieved under different experimental conditions. The voltage gradient and processing time were shown to have significant effects on the removal of Cu and Cd, whereas the addition of the oxalic acid had a more significant influence on the removal of Pb. Generally, the processing time is the most significant factor in changing the removal rates of HMs in the enhanced coupled system. In terms of the leaching toxicity, the specimen remediated by ENEKR?+?PRB showed the lowest leaching value for each HM in the S2 and S3 regions.
机译:本文介绍了将电动修复(EKR)与渗透反应性屏障(PRB)概念相结合的修复系统应用于以活性炭为PRB材料的城市固体废物焚烧(MSWI)粉煤灰的可行性的研究。这项研究的实验结果表明,所提出的组合方法可以有效地提高修复效率,并且在偶联系统之前向草酸二铵中添加草酸可以进一步改善修复过程。在优化测试中,在不同的实验条件下,锌,铅,铜和镉的去除量最大。结果表明,电压梯度和处理时间对铜和镉的去除有显着影响,而草酸的添加对铅的去除有更显着的影响。通常,在增强耦合系统中,处理时间是更改HM去除率的最重要因素。就浸出毒性而言,用ENEKRα+ΔPRB修复的样品在S2和S3区域中对每个HM显示最低的浸出值。

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