Li Jianju, Liu Jing, Yu Hang, Zhao Weixin, Xia Xinhui, You Shijie, Zhang Jun, Tong Hailong, Wei Liangliang
State Key Laboratory of Urban Water Resources and Environment (SKLUWRE), School of Environment, Harbin Institute of Technology, Harbin 150090, China.
School of Geosciences, China University of Petroleum, Qingdao 266580, China.
Desalination. 2022 Jul 15;534:115798. doi: 10.1016/j.desal.2022.115798. Epub 2022 Apr 23.
The ongoing coronavirus pandemic (COVID-19) throughout the world has severely threatened the global economy and public health. Due to receiving severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) from a wide variety of sources (e.g., households, hospitals, slaughterhouses), urban sewage treatment systems are regarded as an important path for the transmission of waterborne viruses. This review presents a quantitative profile of the concentration distribution of typical viruses within wastewater collection systems and evaluates the influence of different characteristics of sewer systems on virus species and concentration. Then, the efficiencies and mechanisms of virus removal in the units of wastewater treatment plants (WWTPs) are summarized and compared, among which the inactivation efficiencies of typical viruses by typical disinfection approaches under varied operational conditions are elucidated. Subsequently, the occurrence and removal of viruses in treated effluent reuse and desalination, as well as that in sewage sludge treatment, are discussed. Potential dissemination of viruses is emphasized by occurrence via aerosolization from toilets, the collection system and WWTP aeration, which might have a vital role in the transmission and spread of viruses. Finally, the frequency and concentration of viruses in reclaimed water, the probability of infection are also reviewed for discussing the potential health risks.
全球范围内持续的冠状病毒大流行(COVID-19)严重威胁着全球经济和公共卫生。由于城市污水处理系统从各种各样的来源(如家庭、医院、屠宰场)接收严重急性呼吸综合征冠状病毒2(SARS-CoV-2),其被视为水传播病毒传播的一条重要途径。本综述呈现了废水收集系统中典型病毒浓度分布的定量概况,并评估了下水道系统不同特征对病毒种类和浓度的影响。然后,总结并比较了污水处理厂各单元中病毒去除的效率和机制,其中阐明了不同运行条件下典型消毒方法对典型病毒的灭活效率。随后,讨论了处理后出水回用与淡化过程中以及污泥处理过程中病毒的出现与去除情况。通过马桶、收集系统和污水处理厂曝气产生气溶胶的方式强调了病毒的潜在传播,这可能在病毒的传播扩散中起关键作用。最后,还综述了再生水中病毒的频率和浓度、感染概率,以讨论潜在的健康风险。