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在肽结合天冬氨酸的氯化过程中,氧化铜会意外地减弱消毒副产物的形成,增强卤酸盐的生成。

Unexpected weakened formation of disinfection byproducts and enhanced production of halates by cupric oxide during chlorination of peptide-bound aspartic acid.

机构信息

School of Environment and Chemical Engineering, Dalian Jiaotong University, Dalian 116028, China.

College of Chemical and Material Engineering, Quzhou University, Quzhou 324000, China.

出版信息

J Hazard Mater. 2024 Aug 5;474:134766. doi: 10.1016/j.jhazmat.2024.134766. Epub 2024 May 31.

Abstract

Under the condition that the residual chlorine is guaranteed, the biofilm still thrives in drinking water distribution systems through secreting a large number of extracellular polymeric substances (EPS), in which protein components are the primary precursor of disinfection byproducts (DBPs), mostly in the form of combined amino acids. The aim of this study is to investigate the action of CuO on the formation of halates (XO, ClO and BrO) and DBPs (trihalomethanes, THMs; haloacetonitriles, HANs) with aspartic acid tetrapeptide (TAsp) as protein surrogate. The presence of CuO promoted the self-decay rather than TAsp-induced decay of oxidants, resulting in an increase in XO yield and a decrease in DBPs yield. It was CuO-induced weaker production of cyanoacetic acid and 3-oxopropanoic acid that induced the decreased yields of HANs and THMs, respectively. The FTIR and Raman spectra indicate a weak complexation between CuO and TAsp. Given this, the CuO-HOX/OX complexes were inferred to be reactive to HOX/OX but less reactive to TAsp. The study helps to better understand the formation of XO and DBPs during the chlorination of EPS, and propose precise control strategies when biofilm boosts in water pipes.

摘要

在保证余氯的条件下,生物膜通过分泌大量细胞外聚合物(EPS)在饮用水分配系统中仍然大量繁殖,其中蛋白质成分是消毒副产物(DBPs)的主要前体,主要以结合氨基酸的形式存在。本研究旨在研究氧化铜(CuO)对天冬氨酸四肽(TAsp)作为蛋白质模拟物的卤酸盐(XO、ClO 和 BrO)和 DBPs(三卤甲烷,THMs;卤乙腈,HANs)形成的作用。CuO 的存在促进了氧化剂的自降解而不是 TAsp 诱导的降解,导致 XO 的产率增加,DBPs 的产率降低。正是 CuO 诱导的氰基乙酸和 3-氧代丙酸生成减少,分别导致 HANs 和 THMs 的产率降低。FTIR 和拉曼光谱表明 CuO 与 TAsp 之间存在弱络合。因此,推断 CuO-HOX/OX 复合物对 HOX/OX 具有反应性,但对 TAsp 的反应性较弱。该研究有助于更好地理解 EPS 氯化过程中 XO 和 DBPs 的形成,并在水管中生物膜增加时提出精确的控制策略。

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