碳基单原子催化剂在水修复高级氧化反应中的应用:从材料到反应途径

Junjie Zhang , Xu Tang , Yongjia Hong , Guanyu Chen , Yong Chen , Li Zhang , Wenran Gao , Yang Zhou , Bin Sun
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引用次数: 6

摘要

单原子催化剂(SAC)因其优异的性能、100%的金属原子利用率、几乎没有二次污染和坚固的结构而被广泛认为是环境修复中最先进的催化剂。最近,在高级氧化工艺(AOPs)中用碳基SAC活化过硫酸盐,由于其高效和通用的活性氧化剂(ROS)生成,引起了人们对废水中新出现污染物降解的极大兴趣。然而,揭示碳基SAC结构与相应产生的ROS之间潜在关系的全面而批判性的综述仍然很少。在此,我们系统地总结了AOPs过程中单金属原子活性位点与产生ROS之间的基本理解和内在机制。首先阐述了新出现的污染物的类型,介绍了需要降解的先前污染物。然后,综述了碳基SAC的制备和表征方法。深入讨论了过硫酸盐基AOPs中潜在的物质结构-ROS类型关系,以阐明其催化机理。最后,我们简要总结了碳基SAC在AOPs中的发展现状,并对未来研究中合理设计和合成具有按需催化性能的碳基SACs提出了展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Carbon-based single-atom catalysts in advanced oxidation reactions for water remediation: From materials to reaction pathways

Carbon-based single-atom catalysts in advanced oxidation reactions for water remediation: From materials to reaction pathways

Single-atom catalysts (SACs) have been widely recognized as state-of-the-art catalysts in environment remediation because of their exceptional performance, 100% metal atomic utilization, almost no secondary pollution, and robust structures. Most recently, the activation of persulfate with carbon-based SACs in advanced oxidation processes (AOPs) raises tremendous interest in the degradation of emerging contaminants in wastewater, owning to its efficient and versatile reactive oxidant species (ROS) generation. However, the comprehensive and critical review unraveling the underlying relationship between structures of carbon-based SACs and the corresponding generated ROS is still rare. Herein, we systematically summarize the fundamental understandings and intrinsic mechanisms between single metal atom active sites and produced ROS during AOPs. The types of emerging contaminants are firstly elaborated, presenting the prior pollutants that need to be degraded. Then, the preparation and characterization methods of carbon-based SACs are overviewed. The underlying material structure–ROS type relationship in persulfate-based AOPs is discussed in depth to expound the catalytic mechanisms. Finally, we briefly conclude the current development of carbon-based SACs in AOPs and propose the prospects for rational design and synthesis of carbon-based SACs with on-demand catalytic performances in AOPs in future research.

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来源期刊
Eco-Environment & Health
Eco-Environment & Health 环境科学与生态学-生态、环境与健康
CiteScore
11.00
自引率
0.00%
发文量
18
审稿时长
22 days
期刊介绍: Eco-Environment & Health (EEH) is an international and multidisciplinary peer-reviewed journal designed for publications on the frontiers of the ecology, environment and health as well as their related disciplines. EEH focuses on the concept of “One Health” to promote green and sustainable development, dealing with the interactions among ecology, environment and health, and the underlying mechanisms and interventions. Our mission is to be one of the most important flagship journals in the field of environmental health. Scopes EEH covers a variety of research areas, including but not limited to ecology and biodiversity conservation, environmental behaviors and bioprocesses of emerging contaminants, human exposure and health effects, and evaluation, management and regulation of environmental risks. The key topics of EEH include: 1) Ecology and Biodiversity Conservation Biodiversity Ecological restoration Ecological safety Protected area 2) Environmental and Biological Fate of Emerging Contaminants Environmental behaviors Environmental processes Environmental microbiology 3) Human Exposure and Health Effects Environmental toxicology Environmental epidemiology Environmental health risk Food safety 4) Evaluation, Management and Regulation of Environmental Risks Chemical safety Environmental policy Health policy Health economics Environmental remediation
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