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协同共存污染物在废水修复中高效光催化反应的研究综述。

A review on synergistic coexisting pollutants for efficient photocatalytic reaction in wastewater remediation.

机构信息

School of Chemical and Energy Engineering, Faculty of Engineering, Universiti Teknologi Malaysia, 81310, UTM, Johor Bahru, Johor, Malaysia.

School of Chemical and Energy Engineering, Faculty of Engineering, Universiti Teknologi Malaysia, 81310, UTM, Johor Bahru, Johor, Malaysia; Centre of Hydrogen Energy, Institute of Future Energy, 81310, UTM, Johor Bahru, Johor, Malaysia.

出版信息

Environ Res. 2022 Jun;209:112748. doi: 10.1016/j.envres.2022.112748. Epub 2022 Jan 29.

Abstract

With the tremendous development of the economy and industry, the pollution of water is becoming more serious due to the excessive chemical wastes that need to remove thru reduction or oxidation reactions. Simultaneous removal of dual pollutants via photocatalytic redox reaction has been tremendously explored in the last five years due to effective decontamination of pollutants compared to a single pollutants system. In a photocatalysis mechanism, the holes in the valence band can remarkably promote the oxidation of a pollutant. At the same time, photoexcited electrons are also consumed for the reduction reaction. The synergistic between the reduction and oxidation inhibits the recombination of electron-hole pairs extending their lifetime. In this review, the binary pollutants that selectively removed via photocatalysis reduction or oxidation are classified according to heavy metal-organic pollutant (HM/OP), heavy metal-heavy metal (HM/HM) and organic-organic pollutants (OP/OP). The intrinsic between the pollutants was explained in three different mechanisms including inhibition of electron-hole recombination, ligand to metal charge transfer and electrostatic attraction. Several strategies for the enhancement of this treatment method which are designation of catalysts, pH of mixed pollutants and addition of additive were discussed. This review offers a recent perspective on the development of photocatalysis system for industrial applications.

摘要

随着经济和工业的飞速发展,由于需要通过还原或氧化反应去除过多的化学废物,水污染变得更加严重。由于与单一污染物系统相比,光催化氧化还原反应可以更有效地去除污染物,因此在过去五年中,双污染物的同时去除已得到了极大的探索。在光催化机制中,价带中的空穴可以显著促进污染物的氧化。同时,光激发电子也被用于还原反应。还原和氧化之间的协同作用抑制了电子-空穴对的复合,延长了它们的寿命。在这篇综述中,根据重金属-有机污染物(HM/OP)、重金属-重金属(HM/HM)和有机-有机污染物(OP/OP),按照光催化还原或氧化选择性去除的二元污染物进行了分类。在三种不同的机制中解释了污染物之间的内在关系,包括抑制电子-空穴复合、配体到金属电荷转移和静电吸引。还讨论了几种增强这种处理方法的策略,包括催化剂的设计、混合污染物的 pH 值和添加剂的添加。本综述提供了光催化系统在工业应用方面的最新发展视角。

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