A review on the 40th anniversary of the first regulation of drinking water disinfection by‐products

卤乙酸 环境卫生 公共卫生 毒理 人口 三卤甲烷 安全饮用水法案 水处理 水消毒 国际机构 环境化学 致癌物 化学 环境科学 医学 水质 生物 环境工程 生态学 护理部 有机化学
作者
David M. DeMarini
出处
期刊:Environmental and Molecular Mutagenesis [Wiley]
卷期号:61 (6): 588-601 被引量:70
标识
DOI:10.1002/em.22378
摘要

Abstract Water disinfection, primarily by chlorination, is one of the greatest achievements of public health. However, more than half a century after its introduction, studies in the 1970s reported that (a) chlorine interacted with organic matter in the water to form disinfection by‐products (DBPs); (b) two DBPs, chloroform and bromoform, both trihalomethanes (THMs), were rodent carcinogens; (c) three brominated THMs were mutagenic; in six studies chlorinated drinking waters in the United States and Canada were mutagenic; and (d) in one epidemiological study there was an association between bladder cancer mortality and THM exposure. This led the U.S. Environmental Protection Agency to issue its first DBP regulation in 1979. Forty years later, >600 DBPs have been characterized, 20/22 have been shown to be rodent carcinogens, >100 have been shown to be genotoxic, and 1000s of water samples have been found to be mutagenic. Data support a hypothesis that long‐term dermal/inhalation exposure to certain levels of the three brominated THMs, as well as oral exposure to the haloacetic acids, combined with a specific genotype may increase the risk for bladder cancer for a small but significant population group. Improved water‐treatment methods and stricter regulations have likely reduced such risks over the years, and further reductions in potential risk are anticipated with the application of advanced water‐treatment methods and wider application of drinking water regulations. This 40‐year research effort is a remarkable example of sustained cooperation between academic and government scientists, along with public/private water companies, to find answers to a pressing public health question.
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