Chen Xingyu, Wang Jingquan, Wu Han, Zhu Zhuoyu, Zhou Jianfei, Guo Hongguang
MOE Key Laboratory of Deep Earth Science and Engineering, College of Architecture and Environment, Sichuan University, Chengdu 610065, China.
National Engineering Research Center of Clean Technology in Leather Industry, Sichuan University, Chengdu 610065, China.
J Hazard Mater. 2023 May 15;450:130996. doi: 10.1016/j.jhazmat.2023.130996. Epub 2023 Feb 12.
The degradation of micropollutants by various treatments is commonly affected by the ubiquitous dissolved organic matter (DOM) in the water environment. To optimize the operating conditions and decomposition efficiency, it is necessary to consider the impacts of DOM. DOM exhibits varied behaviors in diverse treatments, including permanganate oxidation, solar/ultraviolet photolysis, advanced oxidation processes, advanced reduction process, and enzyme biological treatments. Besides, the different sources (i.e., terrestrial and aquatic, etc) of DOM, and operational circumstances (i.e., concentration and pH) fluctuate different transformation efficiency of micropollutants in water. However, so far, systematic explanations and summaries of relevant research and mechanism are rare. This paper reviewed the "trade-off" performances and the corresponding mechanisms of DOM in the elimination of micropollutants, and summarized the similarities and differences for the dual roles of DOM in each of the aforementioned treatments. Inhibition mechanisms typically include radical scavenging, UV attenuation, competition effect, enzyme inactivation, reaction between DOM and micropollutants, and intermediates reduction. Facilitation mechanisms include the generation of reactive species, complexation/stabilization, cross-coupling with pollutants, and electron shuttle. Moreover, electron-drawing groups (i.e., quinones, ketones functional groups) and electron-supplying groups (i.e., phenols) in the DOM are the main contributors to its trade-off effect.
水环境中普遍存在的溶解有机物(DOM)通常会影响各种处理方法对微污染物的降解效果。为了优化操作条件和分解效率,有必要考虑DOM的影响。DOM在多种处理过程中表现出不同的行为,包括高锰酸钾氧化、太阳能/紫外光解、高级氧化过程、高级还原过程和酶生物处理。此外,DOM的不同来源(即陆地和水生等)以及操作条件(即浓度和pH值)会使水中微污染物的转化效率有所不同。然而,到目前为止,对相关研究和机理的系统解释和总结很少。本文综述了DOM在去除微污染物方面的“权衡”表现及相应机理,并总结了DOM在上述每种处理中双重作用的异同。抑制机理通常包括自由基清除、紫外线衰减、竞争效应、酶失活、DOM与微污染物之间的反应以及中间体还原。促进机理包括活性物种的产生、络合/稳定作用、与污染物的交叉偶联以及电子穿梭。此外,DOM中的吸电子基团(即醌、酮官能团)和供电子基团(即酚)是其权衡效应的主要贡献者。