FeOCl in Advanced Oxidization Processes for Water Purification: A Critical Review

IF 6.4 2区 环境科学与生态学 Q1 ENVIRONMENTAL SCIENCES
Xiaoyu Zhao, Zhenghua Zhang
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引用次数: 4

Abstract

Purpose of Review

Advanced oxidation processes (AOPs) are proven effective in degrading recalcitrant pollutants in wastewater. Numerous researchers have been targeting advanced catalytic materials to further promote AOP efficiency. Recent studies indicated the great catalytic activity of FeOCl in AOP systems, inducing the prevailing research on the modification and application of the FeOCl-based layer-structure materials. This review summarizes the progress in existing works of FeOCl as AOP catalysts and provides challenging perspectives for future work.

Recent Findings

FeOCl shows outstanding catalytic performance in conventional Fenton and other AOP systems, such as Fenton-like, photo-activated and electro-activated processes. Nevertheless, FeOCl catalytic efficiency in AOPs still demands improvement owing to the relatively low effective surface area of bulk-phase FeOCl, slow regeneration of active Fe (II) from Fe (III), prone leaching of iron ions, and difficulty in recycling or long-term functioning. Consequently, various modification approaches, including intercalation, exfoliation, combination, and membrane-fabrication, have been adopted to effectively promote pollutant removal efficiency in different FeOCl-catalyzed AOP systems.

Summary

This review presents the promising application of FeOCl as catalysts in AOPs and multiple modification methods successfully applied to FeOCl for catalytic performance improvement. Moreover, some remaining gaps in FeOCl preparation, purity determination, stability control, complex water matrix effects, and mechanism illustration are summarized, hopefully providing viable viewpoints for future research on AOP water treatment practices.

Graphical Abstract

Schematic illustration of FeOCl and its modified products in AOPs for water treatment.

Abstract Image

FeOCl在高级氧化过程中用于水净化:综述
高级氧化工艺(AOPs)是一种有效降解废水中难降解性污染物的技术。许多研究人员已经瞄准先进的催化材料来进一步提高AOP的效率。近年来的研究表明,FeOCl在AOP体系中具有良好的催化活性,引起了对FeOCl基层状结构材料的改性和应用研究的兴起。本文综述了FeOCl作为AOP催化剂的研究进展,并对未来的研究提出了展望。feocl在传统Fenton和其他AOP体系(如类Fenton、光激活和电激活)中表现出出色的催化性能。然而,由于体积相FeOCl的有效表面积相对较低,活性Fe (II)从Fe (III)中再生缓慢,铁离子容易浸出,难以回收或长期发挥作用,FeOCl在AOPs中的催化效率仍有待提高。因此,在不同feocl催化的AOP体系中,为了有效提高污染物的去除效率,采用了插层、剥离、组合和膜制作等多种改性方法。综述了FeOCl作为AOPs催化剂的应用前景,以及多种成功应用于FeOCl催化性能的改性方法。总结了FeOCl在制备、纯度测定、稳定性控制、复杂水基质效应、机理阐述等方面存在的不足,希望为今后AOP水处理实践的研究提供可行的观点。图解:水处理AOPs中FeOCl及其改性产物示意图。
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来源期刊
Current Pollution Reports
Current Pollution Reports Environmental Science-Water Science and Technology
CiteScore
12.10
自引率
1.40%
发文量
31
期刊介绍: Current Pollution Reports provides in-depth review articles contributed by international experts on the most significant developments in the field of environmental pollution.By presenting clear, insightful, balanced reviews that emphasize recently published papers of major importance, the journal elucidates current and emerging approaches to identification, characterization, treatment, management of pollutants and much more.
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