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溶解态有机氮和氯胺对天然有机物形成含氮消毒副产物的贡献。

The contribution of dissolved organic nitrogen and chloramines to nitrogenous disinfection byproduct formation from natural organic matter.

机构信息

Graduate Institute of Environmental Engineering, National Taiwan University, 71 Chou-Shan Rd., Taipei City 10673, Taiwan.

出版信息

Water Res. 2013 Mar 1;47(3):1308-16. doi: 10.1016/j.watres.2012.11.046. Epub 2012 Dec 17.

Abstract

The direct incorporation of chloramines and dissolved organic nitrogen (DON) may provide the nitrogen for nitrogenous disinfection byproducts (N-DBPs). This study explores the contributions of natural DON and chloramine incorporation to the formation of N-DBPs during chloramination. This study also evaluates the relationship between N-DBPs and carbonaceous DBPs by investigating four sources of dissolved organic matter with different DON-to-dissolved organic carbon (DOC) ratios. During chloramination, dihaloacetonitrile (DXAN) formation is correlated with the summation of trihalomethanes (THMs) and dichloroacetic acids (DXAAs) yield in molar basis at pH > 6. This study tests the formation kinetics of THMs, DXAAs, and DXANs during chloramination, explores the changes in DBP formation potential before and after a sequence of ozonation and chloramination, and tracks the nitrogen source of dichloroacetonitrile. The results support the hypothesis that THMs, DXAAs, and DXANs mainly derive from similar precursors upon chloramination. In addition, the precursor of HANs was approximately 10% (on a molar basis) of that of THMs and HAAs combined. The N-nitrosodimethylamine (NDMA) formation potential is correlated with DON/DOC in hydrophilic and transphilic fractions. Isotope (15)N-labeled monochloramine coupled with LC-electrospray ionization-tandem mass spectrometry was used to explore the nitrogen source of NDMA formed in chloraminated organic fractions. The results indicate that the nitroso group of the formed NDMA originates mainly from chloramines.

摘要

氯胺和溶解有机氮(DON)的直接掺入可能为含氮消毒副产物(N-DBPs)的生成提供氮源。本研究探讨了自然 DON 和氯胺掺入在氯胺消毒过程中对 N-DBPs 形成的贡献。本研究还通过研究具有不同 DON 与溶解有机碳(DOC)比值的四种来源的溶解有机物,评估了 N-DBPs 与碳质 DBPs 之间的关系。在氯胺消毒过程中,二卤乙腈(DXAN)的形成与摩尔基础上 pH 值 >6 时三卤甲烷(THMs)和二氯乙酸(DXAAs)生成的总和呈正相关。本研究测试了 THMs、DXAAs 和 DXANs 在氯胺消毒过程中的形成动力学,探索了臭氧和氯胺消毒前后 DBP 生成潜力的变化,并追踪了二氯乙腈的氮源。结果支持了这样的假设,即 THMs、DXAAs 和 DXANs 主要来源于氯胺消毒过程中的相似前体。此外,HANs 的前体大约是 THMs 和 HAAs 之和的 10%(基于摩尔)。N-亚硝基二甲胺(NDMA)的生成潜力与亲水性和反亲脂性部分的 DON/DOC 呈正相关。同位素(15)N 标记的一氯胺与 LC-电喷雾电离串联质谱联用,用于探索氯胺化有机部分中形成的 NDMA 的氮源。结果表明,形成的 NDMA 的亚硝基基团主要来源于氯胺。

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