School of Water Conservancy and Civil Engineering, Northeast Agricultural University, Harbin 150030, China; Joint Laboratory of Northeast Agricultural University and Max Planck Institute of Colloids and Interfaces (NEAU-MPICI), Harbin 150030, China.
Joint Laboratory of Northeast Agricultural University and Max Planck Institute of Colloids and Interfaces (NEAU-MPICI), Harbin 150030, China; College of Engineering, Northeast Agricultural University, Harbin 150030, China.
J Hazard Mater. 2022 Aug 5;435:129070. doi: 10.1016/j.jhazmat.2022.129070. Epub 2022 May 4.
Humic substances (HS) as representative natural organic matters and the most common organic compounds existing in the environment, has been applied to the treatment and remediation of environmental pollution. This review systematically introduces and summarizes the redox activity of HS for the remediation of environmental pollutants. For inorganic pollutants (such as silver, chromium, mercury, and arsenic), the redox reaction of HS can reduce their toxicity and mobilization, thereby reducing the harm of these pollutants to the environment. The concentration and chemical composition of HS, environmental pH, ionic strength, and competing components affect the degree and rate of redox reactions between inorganic pollutants and HS significantly. With regards to organic pollutants, HS has photocatalytic activity and produces a large number of reactive oxygen species (ROS) under the light which reacts with organic pollutants to accelerate the degradation of organic pollutants. Under the affection of HS, the redox of Fe(III) and Fe(II) can enhance the efficiency of Fenton-like reaction to degrade organic pollutants. Finally, the research direction of HS redox remediation of environmental pollution is prospected.
腐殖质(HS)作为代表性的天然有机物和环境中最常见的有机化合物,已被应用于环境污染的处理和修复。本综述系统地介绍和总结了 HS 对环境污染物修复的氧化还原活性。对于无机污染物(如银、铬、汞和砷),HS 的氧化还原反应可以降低它们的毒性和迁移性,从而降低这些污染物对环境的危害。HS 的浓度和化学成分、环境 pH 值、离子强度和竞争成分显著影响无机污染物与 HS 之间氧化还原反应的程度和速率。对于有机污染物,HS 具有光催化活性,并在光照下产生大量活性氧(ROS),与有机污染物反应,加速有机污染物的降解。在 HS 的影响下,Fe(III)和 Fe(II)的氧化还原可以提高类 Fenton 反应降解有机污染物的效率。最后,展望了 HS 氧化还原修复环境污染的研究方向。