Enhanced Mechanism of Nano Zero-Valent Iron Activated Persulfate for Persistent Organic Pollutants in the Environment

M. Iribagiza, Ting Li, Wenjing Liang, Yuanyuan Wu, Fang Zhu
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引用次数: 3

Abstract

The advanced oxidation process based on persulfate has a broad application prospect in the remediation of organic pollutants. As an effective, low-cost and environmentally friendly material, nano-zero-valent iron (nZVI) can effectively activate persulfate (nZVI/PS) to generate strongly oxidizing sulfate radical for removing organic pollutants in the environment. In this review, we first clarify the activation pathway of nZVI activated persulfate including direct activation and indirect activation. Direct activation means that the electrons released by nZVI directly participate in the activation of PS; indirect activation means that Fe0 corrodes to generate Fe2+, and Fe2+ further activate the persulfate. Then, the mechanism of nZVI/PS system to degrade organic pollutants including electron transfer, hydrogen extraction and addition reactions are also discussed. Finally, combined with the activation pathway and the mechanism of degrading organic pollutants, we propose several prospects for the future research direction of nZVI activated persulfate. As a result, this review provides a theoretical basis for the nZVI/PS advanced oxidation system to remediate actual sites contaminated with organic pollutants.
纳米零价铁活化过硫酸盐对环境中持久性有机污染物的增强机理研究
过硫酸盐高级氧化工艺在有机污染物的修复中具有广阔的应用前景。纳米零价铁(nZVI)是一种高效、低成本、环保的材料,能有效活化过硫酸盐(nZVI/PS)产生强氧化性硫酸盐自由基,去除环境中的有机污染物。本文首先阐述了nZVI活化过硫酸盐的活化途径,包括直接活化和间接活化。直接活化是指nZVI释放的电子直接参与PS的活化;间接活化是指Fe0腐蚀生成Fe2+, Fe2+进一步活化过硫酸盐。然后讨论了nZVI/PS体系降解有机污染物的机理,包括电子转移、氢萃取和加成反应。最后,结合活化途径和降解有机污染物的机理,对nZVI活化过硫酸盐未来的研究方向提出了几点展望。研究结果为nZVI/PS高级氧化系统修复有机污染物污染场地提供了理论依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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