Persulfate activation by single-atom catalysts for the removal of organic pollutants: A review

Yuqi Liu, Huanxin Zhao
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引用次数: 8

Abstract

Single-atom catalysts (SACs) have received enormous attention in the field of catalysis due to their inherent merits, such as nearly 100% atomic efficiency, environmental friendliness, and unique physicochemical properties. The emerging SACs have facilitated the development and advancement of catalysis. The rapidly increasing applications of SACs in various fields, including oxygen evolution reaction, organic synthesis, hydrogen evolution reaction, and CO2 reduction, reflect their enormous potential. Recently, SACs have been extensively used in persulfate (PS) activation for refractory organic pollutants degradation in the aqueous environment. SACs exhibit distinct advantages of both homogeneous and heterogeneous catalysis, demonstrating a prospective application in PS activation. This review first introduces the synthesis and characterization schemes of SACs in PS activation. Second, the factors influencing PS activation by SACs, including coordination numbers, type of coordination atoms, the spin state of metal sites, type of carriers, and the loading amount of metal atoms, are described. Third, the applications and activation mechanisms of SACs are summarized. Finally, the opportunities and challenges confronted by SACs and their future development prospects in advanced oxidation processes (AOPs) are put forward.

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过硫酸盐单原子活化去除有机污染物研究进展
单原子催化剂(SACs)由于其固有的优点,如接近100%的原子效率、环境友好性和独特的物理化学性质,在催化领域受到了极大的关注。新兴的SAC促进了催化的发展和进步。SAC在各个领域的应用迅速增加,包括析氧反应、有机合成、析氢反应和CO2还原,反映了其巨大的潜力。近年来,SAC已被广泛用于过硫酸盐(PS)活化,用于降解水环境中的难降解有机污染物。SAC在均相催化和多相催化方面都表现出明显的优势,在PS活化方面具有广阔的应用前景。本文首先介绍了在PS活化中SAC的合成和表征方案。其次,描述了影响SAC活化PS的因素,包括配位数、配位原子类型、金属位点的自旋态、载流子类型和金属原子的负载量。第三,综述了SAC的应用和激活机制。最后,提出了SAC在高级氧化工艺中面临的机遇和挑战以及未来的发展前景。
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Outside Front Cover Table of Contents Outside Back Cover On controllability of fluidized bed reduction of iron ore by CH4 for selective formation of magnetite Organics-based Aqueous Batteries: Concept for Stationary Energy Storage with Resource Feasibility
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