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Controlling DBPs with monocholoramine

机译:用一氯酚胺控制DBP

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Balancing disinfection with control of disinfection by-products (DBPs) requires an understanding of how common water quality variables such as chlorine dosage and contact time, temperature, pH, and total organic carbon (TOC) affect both processes. This article examines how these variables affect the concentrations of trihalomethanes (THMs) and haloacetic acids (HAAs) at the shorter contact times associated with the use of chloramines, rather than chlorine, for residual disinfection. Five case studies evaluated DBPs in five water sources of differing quality. The most important variables were TOC and chlorine contact tune, but chlorine dosage, pH, and temperature also had an effect. Response to some variables was linear; response to others was nonlinear. In most water sources, THM concentrations were greater than HAA concentrations, but in some the reverse was true. DBP concentrations must be investigated under a range of conditions to determine the best way to use chlorine disinfection while minimizing concentrations of DBPs.
机译:要在控制消毒副产物(DBP)的同时实现平衡消毒,就需要了解常见的水质变量(如氯的用量和接触时间,温度,pH值和总有机碳(TOC))如何影响这两个过程。本文研究了这些变量如何在与氯胺(而不是氯)进行残留消毒有关的较短接触时间内影响三卤代甲烷(THMs)和卤代乙酸(HAAs)的浓度。五个案例研究评估了五个不同质量水源中的DBP。最重要的变量是TOC和氯的接触调谐,但氯的用量,pH和温度也有影响。对某些变量的响应是线性的;对他人的反应是非线性的。在大多数水源中,THM浓度高于HAA浓度,但在某些情况下则相反。必须在一系列条件下研究DBP浓度,以确定在最小化DBP浓度的同时使用氯消毒的最佳方法。

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