全面了解多相过硫酸盐活化对环境污染物降解的影响:方法和机制

Ruonan Guo , Beidou Xi , Changsheng Guo , Wen Liu , Ningqing Lv , Jian Xu
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引用次数: 6

摘要

基于过硫酸盐的高级氧化工艺(过硫酸盐AOPs)的非均相活化由于其优异的化学反应性而被定义为潜在的废水处理方法。然而,由于来自固相、液相甚至气相的许多物质同时参与,这些过程的反应机制极其复杂。由于机理分歧和研究技术不足,新型活性催化剂的开发受到阻碍。本文综述了多相催化剂的种类、催化特性和反应机理的最新进展。从本质上讲,对过硫酸盐的检测、活性氧物种的鉴定以及有机氧化途径的演变和分析进行了综述,强调了创新整合实验/理论方案,以在未来的研究中揭示反应机理。最后,讨论了过硫酸盐AOPs的局限性和可能的突破方向,包括进一步研究过硫酸盐AOPs的内部反应机理、合理评价处理效果的要求以及全面应用的可行性。
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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Comprehensive insight into heterogeneous persulfate activation for environmental pollutants degradation: Approaches and mechanism

The heterogeneous activation of persulfate-based advanced oxidation processes (persulfate AOPs) has been defined as potential wastewater treatment methods due to their excellent chemical reactivity. However, the reaction mechanisms of these processes are extremely intricate because of the simultaneous participation of many substances from the solid, liquid, and even gas phases. The development of novel active catalysts is hindered due to divergent mechanisms and deficient research techniques. In this review, the up-to-date development of heterogeneous catalyst category, catalytic characteristics, and reaction mechanism are comprehensively discussed. Essentially, the detection of persulfate, the identification of reactive oxygen species, and the evolution and analysis of organic oxidation pathways are reviewed, highlighting the innovation integration experimental/theoretical protocol to reveal the reaction mechanism in a future study. Finally, the limitations and possible breakthrough directions of persulfate AOPs were discussed, including the further study of the internal reaction mechanism in persulfate AOPs, the requirement of reasonable evaluation of the treatment effect, and the feasibility of full-scale application.

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