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1Research progress of disinfection and disinfection by-products in China显示文摘Disinfection is an indispensable water treatment process for killing harmful pathogens and protecting human health. However, the disinfection has caused significant public concern due to the formation of toxic disinfection by-products(DBPs). Lots of studies on disinfection and DBPs have been performed in the world since 1974. Although related studies in China started in1980 s, a great progress has been achieved during the last three decades. Therefore, this review summarized the main achievements on disinfection and DPBs studies in China, which included:(1) the occurrence of DBPs in water of China,(2) the identification and detection methods of DBPs,(3) the formation mechanisms of DBPs during disinfection process,(4) the toxicological effects and epidemiological surveys of DBPs,(5) the control and management countermeasures of DBPs in water disinfection, and(6) the challenges and chances of DBPs studies in future. It is expected that this review would provide useful information and reference for optimizing disinfection process, reducing DBPs formation and protecting human health.Xuefeng Sun Miao Chen Dongbin Wei Yuguo Du 2019Journal of Environmental Sciences2019,31,7:18
2Selective Recognition of Phenazine by 2,6-Dibutoxylnaphthalene-Based Tetralactam Macrocycle显示文摘A 2,6-dibutoxylnaphthalene-based tetralactam macrocycle was designed and synthesized.This macrocycle shows highly selective recognition to phenazine-a well-known secondary metabolite in bacteria and an emerging disinfection byproduct in drinking water.In contrast,the macrocycle shows no binding to the structurally similar dibenzo-1,4-dioxin.It was revealed that hydrogen bonding,π-π and σ-π interactions are the major driving forces between phenazine and the new tetralactam macrocycle.A perfect complementarity in electrostatic potential surfaces may explain the high selectivity.In addition,the macrocycle shows fluorescent response to phenazine,demonstrating its potential in fluorescent detection of phenazine.Li-Li Wang Yi-Kuan Tu Arto Valkonen Kari Rissanen Wei Jiang 2019Chinese Journal of Chemistry2019,37,9:2
3饮用水中典型消毒副产物的化学特性、生成转化及毒性研究进展显示文摘消毒副产物是饮用水消毒过程中形成的产物,饮用水新国标(GB 5749—2022)更加关注消毒副产物指标,将三卤甲烷等6项消毒副产物指标从非常规指标调整到常规指标。本文总结分析了水质标准中重要的消毒副产物和新兴消毒副产物在化学及毒理方面的研究与进展,重点阐明了典型消毒副产物的化学特性、生成转化途径,梳理了化学结构与其毒性之间的关系。易欣源 曲鑫璐 龙昕 张立尖 徐斌 唐玉霖 2023生态毒理学报2023,18,2:1
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