Lim Sungeun, Shi Jiaming Lily, von Gunten Urs, McCurry Daniel L
Eawag, Swiss Federal Institute of Aquatic Science and Technology, Dübendorf CH-8600, Switzerland.
Department of Civil and Environmental Engineering, University of Southern California, Los Angeles, CA, United States.
Water Res. 2022 Apr 15;213:118053. doi: 10.1016/j.watres.2022.118053. Epub 2022 Jan 10.
Ozonation has been applied in water treatment for more than a century, first for disinfection, later for oxidation of inorganic and organic pollutants. In recent years, ozone has been increasingly applied for enhanced municipal wastewater treatment for ecosystem protection and for potable water reuse. These applications triggered significant research efforts on the abatement efficiency of organic contaminants and the ensuing formation of transformation products. This endeavor was accompanied by developments in analytical and computational chemistry, which allowed to improve the mechanistic understanding of ozone reactions. This critical review assesses the challenges of ozonation of impaired water qualities such as wastewaters and provides an up-to-date compilation of the recent kinetic and mechanistic findings of ozone reactions with dissolved organic matter, various functional groups (olefins, aromatic compounds, heterocyclic compounds, aliphatic nitrogen-containing compounds, sulfur-containing compounds, hydrocarbons, carbanions, β-diketones) and antibiotic resistance genes.
臭氧处理已应用于水处理领域一个多世纪,最初用于消毒,后来用于氧化无机和有机污染物。近年来,臭氧越来越多地应用于强化城市污水处理以保护生态系统以及用于饮用水回用。这些应用引发了对有机污染物去除效率以及随之形成的转化产物的大量研究工作。这一努力伴随着分析化学和计算化学的发展,从而能够增进对臭氧反应机理的理解。本综述评估了对诸如废水等水质受损水体进行臭氧处理所面临的挑战,并提供了关于臭氧与溶解有机物、各种官能团(烯烃、芳香化合物、杂环化合物、含脂肪族氮化合物、含硫化合物、烃类、碳负离子、β - 二酮)以及抗生素抗性基因反应的最新动力学和机理研究结果汇编。