无氯转换期间配水系统水质评价

Matthew T. Alexander, Peyton Woodruff, Jatin H. Mistry, Helen Y. Buse, Christy Muhlen, Darren A. Lytle, Jonathan G. Pressman, David G. Wahman
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引用次数: 0

摘要

氯化饮用水系统通常使用游离氯转换(FCC)来防止或控制硝化,但可能会发生意想不到的水质变化,包括消毒副产物和金属浓度的增加。本研究评估了氯化饮用水系统和居民点在每年计划的自由氯转换之前、期间和之后的水质。在切换消毒剂时,水质在相对稳定期和变化期之间交替变化。在催化还原过程中,受管制的四氯三卤甲烷和五卤乙酸浓度分别增加了四倍和七倍,并超过了相应的最高污染物含量。评估了在催化还原过程中对消毒副产物取样的影响,并提出了解释催化还原过程中消毒副产物浓度增加的方法。在金属方面,催化还原反应对配水系统的浓度影响较小,似乎不会影响居民区的浓度。总体而言,观察到的水质变化似乎主要与切换消毒剂有关,并取决于配水系统的水力情况。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of distribution system water quality during a free chlorine conversion

Chloraminated drinking water systems commonly use free chlorine conversions (FCCs) to prevent or control nitrification, but unintended water quality changes may occur, including increased disinfection by-product and metal concentrations. This study evaluated water quality in a chloraminated drinking water system and residential locations before, during, and after their annual, planned FCC. Water quality alternated between relatively consistent and variable periods when switching disinfectants. During the FCC, regulated four trihalomethane and five haloacetic acid concentrations increased by four and seven times, respectively, and exceeded corresponding maximum contaminant levels. Implications of disinfection by-product sampling during an FCC were assessed, and an approach to account for increased FCC disinfection by-product concentrations was proposed. For metals, the FCC had minor impacts on distribution system concentrations and did not appear to impact residential concentrations. Overall, observed variable water quality appeared primarily associated with switching disinfectants and depended on distribution system hydraulics.

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CiteScore
4.40
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