Peracetic acid-based advanced oxidation processes for decontamination and disinfection of water: A review

过氧乙酸 人体净化 化学 消毒剂 水处理 环境化学 废水 制浆造纸工业 过氧化氢 高级氧化法 环境科学 饮用水净化 废物管理 生化工程 污水处理 环境工程 有机化学 工程类
作者
Xiuwei Ao,Jussi Eloranta,Ching‐Hua Huang,Domenico Santoro,Wenjun Sun,Zedong Lu,Chen Li
出处
期刊:Water Research [Elsevier BV]
卷期号:188: 116479-116479 被引量:603
标识
DOI:10.1016/j.watres.2020.116479
摘要

Peracetic acid (PAA) has attracted growing attention as an alternative oxidant and disinfectant in wastewater treatment due to the increased demand to reduce chlorine usage and control disinfection byproducts (DBPs). These applications have stimulated new investigations on PAA-based advanced oxidation processes (AOPs), which can enhance water disinfection and remove micropollutants. The purpose of this review is to conduct a comprehensive analysis of scientific information and experimental data reported in recent years on the applications of PAA-based AOPs for the removal of chemical and microbiological micropollutants from water and wastewater. Various methods of PAA activation, including the supply of external energy and metal/metal-free catalysts, as well as their activation mechanisms are discussed. Then, a review on the usage of PAA-based AOPs for contaminant degradation is given. The degradation mechanisms of organic compounds and the influence of the controlling parameters of PAA-based treatment systems are summarized and discussed. Concurrently, the application of PAA-based AOPs for water disinfection and the related mechanisms of microorganism inactivation are also reviewed. Since combining UV light with PAA is the most commonly investigated PAA-based AOP for simultaneous pathogen inactivation and micropollutant oxidation, we have also focused on PAA microbial inactivation kinetics, together with the effects of key experimental parameters on the process. Moreover, we have discussed the advantages and disadvantages of UV/PAA as an AOP against the well-known and established UV/H2O2. Finally, the knowledge gaps, challenges, and new opportunities for research in this field are discussed. This critical review will facilitate an in-depth understanding of the PAA-based AOPs for water and wastewater treatment and provide useful perspectives for future research and development for PAA-based technologies.
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