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生物分子在细菌胞外聚合物中对消毒副产物形成的相对贡献。

Relative contribution of biomolecules in bacterial extracellular polymeric substances to disinfection byproduct formation.

机构信息

Department of Chemical and Environmental Engineering, University of Toledo , Mail Stop 307, 3048 Nitschke Hall, Toledo, Ohio 43606, United States.

出版信息

Environ Sci Technol. 2013 Sep 3;47(17):9764-73. doi: 10.1021/es402067g. Epub 2013 Aug 19.

Abstract

In this study, detailed chemical compositions of the biomolecules in extracellular polymeric substances (EPS) from both pure cultures of bacteria and mixed species biofilm isolated from a water utility were analyzed. Then, based on detailed EPS analysis results, the DBP yield experiments were conducted with both extracted EPS and surrogate chemicals to indirectly identify the influence of biomolecules and their structures on DBP formation and speciation. DBP yield results of both extracted EPS and EPS surrogates indicated that proteins in EPS have a greater influence on DBP formation, especially on the formation of nitrogenous DBPs (N-DBPs), where amino acids containing unsaturated organic carbon or conjugated bonds in R-group produced higher amount of DBPs. For regulated DBPs, HAA yields were higher than THM yields, while haloacetonitriles were the dominant DBP species formed among unregulated DBPs. However, DBP yields of polysaccharide monomers were lower than those of tested amino acids groups and the DBP yields of polysaccharide monomers were not significantly influenced by their structures. Considering the results obtained in this study, biofilm needs to be considered an important precursor to DBP formation and biofilm eradication methods for water distribution systems need to be carefully selected to minimize subsequent DBP formation.

摘要

在这项研究中,分析了从一家水公用事业公司分离出的纯培养细菌和混合物种生物膜的细胞外聚合物物质(EPS)中生物分子的详细化学成分。然后,根据详细的 EPS 分析结果,使用提取的 EPS 和替代化学品进行了 DBP 产率实验,以间接确定生物分子及其结构对 DBP 形成和形态的影响。提取的 EPS 和 EPS 替代物的 DBP 产率结果表明,EPS 中的蛋白质对 DBP 的形成有更大的影响,特别是对含氮 DBP(N-DBPs)的形成,其中 R 基团中含有不饱和有机碳或共轭键的氨基酸产生了更高量的 DBP。对于受管制的 DBP,HAA 的产率高于 THM 的产率,而卤乙腈是形成的不受管制的 DBP 中占主导地位的 DBP 种类。然而,多糖单体的 DBP 产率低于测试的氨基酸组,多糖单体的 DBP 产率不受其结构的显著影响。考虑到本研究的结果,生物膜需要被视为 DBP 形成的重要前体,并且需要仔细选择水分配系统的生物膜消除方法,以最大程度地减少后续 DBP 的形成。

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