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选择去除溶解有机物会影响消毒副产物的生成和形态。

Selective removal of dissolved organic matter affects the production and speciation of disinfection byproducts.

机构信息

Rubenstein School of Environment and Natural Resources, The University of Vermont, Burlington, VT 05405, USA.

Buffalo Pound Water Treatment Plant, P.O. Box 1790, Regina, SK S4P 3C8, Canada.

出版信息

Sci Total Environ. 2019 Feb 20;652:75-84. doi: 10.1016/j.scitotenv.2018.10.184. Epub 2018 Oct 13.

DOI:10.1016/j.scitotenv.2018.10.184
PMID:30359804
Abstract

The heterogeneity of dissolved organic matter (DOM) in natural and human impacted waters and the variety of drinking water treatment processes employed has made a mechanistic understanding of disinfection byproduct (DBP) formation challenging. In this study, we examined the formation of the regulated DBPs (Trichloromethanes, THM, and Haloacetic acids, HAA) during full-scale water treatment operations both with prechlorination treatment (normal operations for the drinking water plant) and without (altered operations); followed by coagulation, flocculation, filtration, and chlorination. The source water DOM concentration ranged 6.4 to 7.3 mg-C/L. DOM composition was moderately humic and degraded with a mix of microbial- and terrestrial-like characteristics. Removal of raw water prechlorination caused an average reduction in total THM and HAA concentrations of 52.7% and 40.0%, respectively, with the greater reduction noted for chlorinated-DBPs rather than brominated-DBPs. Prechlorination treatment resulted in a higher relative production of ClCH and BrClCH associated with aromatic, humic, and terrestrial-like DOM. Without prechlorination, the DBP pool had higher proportions of brominated-DBPs (BrCH, BrClCH, BrCHCOOH, BrClCHCOOH, and BrCHCOOH) associated with microbial-like, processed humic-like, and protein-like DOM. These observed patterns could not be explained by chloride demand and DOM concentration, indicating that DOM composition played an important role in DBP formation.

摘要

天然水和受人类影响的水中溶解性有机物 (DOM) 的异质性以及采用的各种饮用水处理工艺使得对消毒副产物 (DBP) 形成的机制理解具有挑战性。在这项研究中,我们在全规模水处理操作中检查了调节性 DBP(三氯甲烷,THM 和卤乙酸,HAA)的形成,既有预氯化处理(饮用水厂的正常操作)也有无预氯化处理(改变操作);接着进行混凝、絮凝、过滤和氯化。原水 DOM 浓度范围为 6.4 至 7.3mg-C/L。DOM 组成具有中等腐殖质特性,并且具有微生物和陆地样特征的混合物。去除原水预氯化处理导致总 THM 和 HAA 浓度分别平均降低 52.7%和 40.0%,氯化-DBP 的降低幅度大于溴化-DBP。预氯化处理导致与芳香族、腐殖质和陆地样 DOM 相关的 ClCH 和 BrClCH 的相对产量增加。没有预氯化处理时,DBP 池具有更高比例的溴化-DBP(BrCH、BrClCH、BrCHCOOH、BrClCHCOOH 和 BrCHCOOH),与微生物样、加工腐殖质样和蛋白样 DOM 相关。这些观察到的模式不能用氯需求和 DOM 浓度来解释,这表明 DOM 组成在 DBP 形成中起着重要作用。

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