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Drinking water strategies for small-scale systems: Avoiding unintended consequences of water regulations

Drinking water strategies for small-scale systems: Avoiding unintended consequences of water regulations
小型系统的饮用水策略:避免水法规带来的意外后果
批准号:
336576-2006
负责人:
Gagnon, Graham
金额:
$11.58万
依托单位:
依托单位国家:
加拿大
项目类别:
Strategic Projects - Group
财政年份:
2007
资助国家:
加拿大
项目状态:
已结题
起止时间:
2007-01-01 至 2008-12-31

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中文摘要
翻译
加拿大较小的社区在向消费者提供安全饮用水方面面临重大挑战。这些挑战源于这样一个事实,即向消费者提供高质量饮用水所需的技术和财政资源往往无法为小型水供应商所用。因此,小社区的饮用水质量往往不能始终如一地满足现有的加拿大饮用水质量(CDWQ)指南,而且很可能无法满足越来越严格的指南,这些指南涵盖了新出现的污染物,这些新出现的污染物要么由原始源水中存在的化合物组成,要么由当前处理制度下形成的副产品组成。卤代乙酸(HAAs)是这样一类新污染物,CDWQ的指南目前正处于开发阶段,由加拿大卫生部和联邦-省-地区饮用水委员会制定。他们的初步研究表明,加拿大许多小社区的现有饮用水系统将无法满足CDWQ针对某些新污染物(如HAAS)日益严格的指南。可能需要开发关键策略来改进工厂中NOM的去除或将二级消毒剂从游离氯转换为氯胺。本项目将研究这两种处理方法,因为这两种处理方法都可能对减少HAA的形成产生积极的结果,但会导致意想不到的水质变化(即形成其他消毒剂副产品或增加氨氧化细菌的出现)。本研究计划将专注于确定可用于确保向小社区的消费者提供高质量饮用水的成本效益和实际可行的策略。
英文摘要
Smaller communities in Canada are faced with significant challenges in providing safe drinking water to consumers.  These challenges stem from the fact that the technical and financial resources needed to provide high quality drinking water to consumers are often not available to small water providers.  As a result, the drinking water quality in small communities often does not consistently meet existing Canadian Drinking Water Quality (CDWQ) guidelines, and likely cannot meet increasingly stringent guidelines that encompass emerging contaminants that either consist of compounds that are present in the raw source water or consist of by-products that are formed within current treatment regimes.  Haloacetic acids (HAAs) are one such group of emerging contaminants for which CDWQ guidelines are currently in the developmental stages by Health Canada and the Federal-Provincial-Territorial Committee on Drinking Water.  Preliminary studies have indicated that existing drinking water systems in many small communities across Canada will not be able to meet the increasingly stringent CDWQ guidelines for certain emerging contaminants like HAAs.  Therefore, key strategies may need to be developed to improve NOM removal in the plant or switch secondary disinfectants from free chlorine to chloramines.  This project will investigate both of these treatment approaches, as either could result in a positive result for mitigating HAA formation but result in an unintended water quality change (i.e., formation of other disinfectant by-products or increased occurrence of ammonia oxidizing bacteria).  This research program will focus on identifying cost-effective and practically feasible strategies that can be used to ensure high quality drinking water is delivered to consumers in small communities.
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