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环境中活性氧的生成和转化机制及其对污染控制过程的影响:综述。

The generation and transformation mechanisms of reactive oxygen species in the environment and their implications for pollution control processes: A review.

机构信息

State Key Laboratory of Urban Water Resource and Environment, School of Environment, Harbin Institute of Technology, Harbin, Heilongjiang Province, 150090, China.

State Key Laboratory of Urban Water Resource and Environment, School of Environment, Harbin Institute of Technology, Harbin, Heilongjiang Province, 150090, China.

出版信息

Environ Res. 2024 Nov 1;260:119592. doi: 10.1016/j.envres.2024.119592. Epub 2024 Jul 14.

DOI:10.1016/j.envres.2024.119592
PMID:39002629
Abstract

Reactive oxygen species (ROS), substances with strong activity generated by oxygen during electron transfer, play a significant role in the decomposition of organic matter in various environmental settings, including soil, water and atmosphere. Although ROS has a short lifespan (ranging from a few nanoseconds to a few days), it continuously generated during the interaction between microorganisms and their environment, especially in environments characterized by strong ultraviolet radiation, fluctuating oxygen concentration or redox conditions, and the abundance of metal minerals. A comprehensive understanding of the fate of ROS in nature can provide new ideas for pollutant degradation and is of great significance for the development of green degradation technologies for organic pollutants. At present, the review of ROS generally revolves around various advanced oxidation processes, but lacks a description and summary of the fate of ROS in nature, this article starts with the definition of reactive oxidants species and reviews the production, migration, and transformation mechanisms of ROS in soil, water and atmospheric environments, focusing on recent developments. In addition, the stimulating effects of ROS on organisms were reviewed. Conclusively, the article summarizes the classic processes, possible improvements, and future directions for ROS-mediated degradation of pollutants. This review offers suggestions for future research directions in this field and provides the possible ROS technology application in pollutants treatment.

摘要

活性氧(ROS)是氧在电子转移过程中产生的具有强活性的物质,在包括土壤、水和大气在内的各种环境中,在有机物的分解过程中发挥着重要作用。尽管 ROS 的寿命很短(从几纳秒到几天不等),但在微生物与其环境相互作用过程中会不断产生,特别是在具有强紫外线辐射、氧气浓度波动或氧化还原条件以及丰富的金属矿物的环境中。全面了解 ROS 在自然界中的归宿,可以为污染物的降解提供新的思路,对有机污染物的绿色降解技术的发展具有重要意义。目前,ROS 的综述通常围绕各种高级氧化工艺展开,但缺乏对自然界中 ROS 归宿的描述和总结,本文从活性氧化剂的定义出发,综述了 ROS 在土壤、水和大气环境中的产生、迁移和转化机制,重点介绍了近年来的研究进展。此外,还综述了 ROS 对生物的刺激作用。最后,本文总结了 ROS 介导的污染物降解的经典过程、可能的改进和未来方向。本文为该领域的未来研究方向提供了建议,并为 ROS 技术在污染物处理中的可能应用提供了参考。

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