首页> 外文期刊>Journal of Environmental Engineering >Electrokinetic Enhancement: Effect of Sample Stacking on Strengthening Heavy Metal Removal in Electrokinetic Remediation of Municipal Solid Waste Incineration Fly Ash
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Electrokinetic Enhancement: Effect of Sample Stacking on Strengthening Heavy Metal Removal in Electrokinetic Remediation of Municipal Solid Waste Incineration Fly Ash

机译:电动增强:样品堆叠对电磁修复在城市固体废物焚烧粉煤灰中的重质金属去除的影响

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Municipal solid waste incineration (MSWI) fly ash is internationally categorized into a hazardous waste due to its high content of heavy metals (HMs) and dioxins. A traditional electrochemical platform was intrinsically modified by changing stackings of samples in the electrolyzer to solve a near-anode concentration focusing (NA-CF) phenomenon during the electrokinetic remediation (EKR) and to improve electrokinetic performance to the HM removals from MSWI fly ashes. The effect of sample stacking in the electrolyzer on the removal performance of the electrokinetics was comprehensively investigated. Summarily, the stacking styles profoundly affected the electrochemical environment. The excavation of specimen near the anode chamber facilitated the diffusion of H+ ions in the electrolyte and effectively avoided the generation of NA-CF phenomenon. The best removal efficiencies for all four HM elements were achieved through simultaneously moving the ash samples out near the two electrodes. The influence of voltage gradient (V/cm) on the HM removals was proved to be more significant than the remediation time. The voltage gradient of 1.5-2.0 V/cm and the remediation time of 18-21 days were determined as the optimal ranges for the remediation of MSWI fly ashes. The environmental toxicities of HMs were noticeably decreased using the adjusted EKR system. The average leaching toxicities of Zn, Pb, Cu, and Cd were reduced by approximately 60%, 83%, 58%, and 77%, respectively. The SD-EKR process significantly reduced the environmental activity of MSWI fly ashes. The excavation of samples from subregions of S2 and S5 at the third day of EKR process increased HM dissolution, decreased ion-migration resistances, and facilitated HM removals from fly ashes.
机译:由于其高含量的重金属(HMS)和二恶英,城市固体废物焚烧(MSWI)粉煤灰在国际上分为危险废物。通过改变电解槽中的样品堆叠来解决传统的电化学平台,以解决电动内修复(EKR)期间的近阳极浓度聚焦(NA-CF)现象,并从MSWI飞行灰烬中改善电动性能。全面研究样品堆叠在电动仪上去除电动性能的影响。概述,堆叠风格深受电化学环境影响。阳极室附近的样品的挖掘促进了H +离子在电解质中的扩散,有效地避免了Na-CF现象的产生。通过同时将灰度样品在两个电极附近移动,实现所有四个HM元件的最佳去除效率。证明了电压梯度(v / cm)对HM去除的影响比修复时间更显着。 1.5-2.0V / cm的电压梯度和18-21天的修复时间被确定为MSWI苍蝇灰修复的最佳范围。使用调整后的EKR系统显着降低HMS的环境毒性。 Zn,Pb,Cu和Cd的平均浸出毒性分别降低了约60%,83%,58%和77%。 SD-EKR过程显着降低了MSWI飞灰的环境活动。从EKR过程的第三天的S2和S5的来自S2和S5的子区域的挖掘增加了HM溶解,降低了离子迁移抗性,并且促进了从飞灰中移除的HM。

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