Sawade Emma, Fabris Rolando, Humpage Andrew, Drikas Mary
Australian Water Quality Centre, South Australian Water Corporation, 250 Victoria Square, Adelaide, SA 5000, Australia E-mail:
J Water Health. 2016 Apr;14(2):183-91. doi: 10.2166/wh.2015.127.
Research is increasingly indicating the potential chronic health effects of brominated disinfection by-products (DBPs). This is likely to increase with elevated bromide concentrations resulting from the impacts of climate change, projected to include extended periods of drought and the sudden onset of water quality changes. This will demand more rigorous monitoring throughout distribution systems and improved water quality management at water treatment plants (WTPs). In this work the impact of increased bromide concentration on formation of DBPs following conventional treatment and chlorination was assessed for two water sources. Bioanalytical tests were utilised to determine cytotoxicity of the water post disinfection. Coagulation was shown to significantly reduce the cytotoxicity of the water, indicating that removal of natural organic matter DBP precursors continues to be an important factor in drinking water treatment. Most toxic species appear to form within the first half hour following disinfectant addition. Increasing bromide concentration across the two waters was shown to increase the formation of trihalomethanes and shifted the haloacetic acid species distribution from chlorinated to those with greater bromine substitution. This correlated with increasing cytotoxicity. This work demonstrates the challenges faced by WTPs and the possible effects increasing levels of bromide in source waters could have on public health.
研究越来越多地表明溴化消毒副产物(DBPs)对健康可能产生的慢性影响。随着气候变化的影响导致溴化物浓度升高,这种情况可能会加剧,预计气候变化将包括长期干旱以及水质的突然变化。这将需要在整个配水系统中进行更严格的监测,并改善水处理厂(WTPs)的水质管理。在这项工作中,针对两种水源评估了溴化物浓度增加对常规处理和氯化后DBPs形成的影响。利用生物分析测试来确定消毒后水的细胞毒性。结果表明,混凝显著降低了水的细胞毒性,这表明去除天然有机物DBP前体仍然是饮用水处理中的一个重要因素。大多数有毒物质似乎在添加消毒剂后的半小时内形成。研究表明,两种水源中溴化物浓度的增加会增加三卤甲烷的形成,并使卤乙酸种类分布从氯化型转变为溴取代程度更高的类型。这与细胞毒性的增加相关。这项工作证明了水处理厂面临的挑战,以及源水中溴化物水平升高可能对公众健康产生的影响。