Zhou Qingwei, Bian Zhengfu, Yang Dejun, Fu Li
School of Environment Science and Spatial Informatics, China University of Mining and Technology, Xuzhou 221116, China.
College of Materials and Environmental Engineering, Hangzhou Dianzi University, Hangzhou 310018, China.
Toxics. 2023 Jul 12;11(7):606. doi: 10.3390/toxics11070606.
The stability of drinking water distribution systems and the management of disinfection by-products are critical to ensuring public health safety. In this paper, the interrelationships between corrosion products in the network, microbes, and drinking water quality are elucidated. This review also discusses the mechanisms through which corrosive by-products from the piping network influence the decay of disinfectants and the formation of harmful disinfection by-products. Factors such as copper corrosion by-products, CuO, CuO, and Cu play a significant role in accelerating disinfectant decay and catalyzing the production of by-products. Biofilms on pipe walls react with residual chlorine, leading to the formation of disinfection by-products (DBPs) that also amplify health risks. Finally, this paper finally highlights the potential of peroxymonosulfate (PMS), an industrial oxidant, as a disinfectant that can reduce DBP formation, while acknowledging the risks associated with its corrosive nature. Overall, the impact of the corrosive by-products of pipe scale and microbial communities on water quality in pipe networks is discussed, and recommendations for removing DBPs are presented.
饮用水分配系统的稳定性以及消毒副产物的管理对于确保公众健康安全至关重要。本文阐述了管网中的腐蚀产物、微生物与饮用水水质之间的相互关系。本综述还讨论了来自管网的腐蚀性副产物影响消毒剂衰减和有害消毒副产物形成的机制。诸如铜腐蚀副产物、氧化铜、氧化铜和铜等因素在加速消毒剂衰减和催化副产物生成方面发挥着重要作用。管壁上的生物膜与残余氯发生反应,导致形成消毒副产物(DBPs),这也会增加健康风险。最后,本文强调了工业氧化剂过一硫酸(PMS)作为一种可减少消毒副产物形成的消毒剂的潜力,同时也认识到其腐蚀性所带来的风险。总体而言,讨论了管垢和微生物群落的腐蚀性副产物对管网水质的影响,并提出了去除消毒副产物的建议。