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饮用水生物膜中胞外聚合物:产生动态及其与消毒副产物的关系。

Exopolymeric substances from drinking water biofilms: Dynamics of production and relation with disinfection by products.

机构信息

Environmental Engineering Research Center, Department of Civil and Environmental Engineering, Universidad de los Andes, Bogotá D.C., Colombia.

Environmental Engineering Research Center, Department of Civil and Environmental Engineering, Universidad de los Andes, Bogotá D.C., Colombia.

出版信息

Water Res. 2017 Jun 1;116:304-315. doi: 10.1016/j.watres.2017.03.036. Epub 2017 Mar 22.

Abstract

Exopolymeric substances (EPS) as an external matrix of biofilm could react with disinfectants in drinking water networks forming disinfection by-products (DBP). Based on an experimental setup using two chlorine conditions-biofilm 1 (2.6 ± 0.8 mgCl/L) and biofilm 2 (0.7 ± 0.2 mg Cl/L)-samples of biofilms were recovered during 9 campaigns and EPS were extracted. Analyses of SUVA, fluorescence and amino acid (AA) content were carried out on the EPS to observe variation over time and correlations with DBP formation potential (DBP) after chlorination. SUVA values were under 2 L/mgC*m showing that both EPS were hydrophilic. Slightly higher SUVA in biofilm 2 with low variation over time was observed. Fluorescence showed that aromatic proteins and fulvic like substances were the principal components and increased in biofilm 1 over time. AA decreased with time, and higher values of alanine, threonine, proline and isoleucine were observed in biofilm 2. Based on general associations, the SUVA of biofilm 2 correlated well with chloroform (CF) (r = 0.80). Generally, in both biofilms, tryptophan-like substances were negatively correlated with DBP while humic acid-like substances correlated positively, but with low indexes (r = 0.3-0.6). Correlations of data from individual sampling increased the indices (r over 0.8), suggesting a temporal influence of other factors on DBP such as inorganics, filtered water and the structural composition of EPS. In biofilm 1, Br-haloacetic acids (Br-HAA), dibromoacetonitrile and bromochloro acetonitrile were inversely associated with arginine and valine, as were di and trichloropropanone to arginine. On the contrary, in biofilm 2, the following amino acids correlated positively with DBP: alanine with Br-HAA, alanine with CF, alanine with N-DBP (chloropicrin, di and tri-chloro acetonitrile), and valine with CF. As this is the first report about the relation between temporal variation of EPS and DBP of biofilms in two different chlorinated conditions, it provides new evidence about the function of these complex substances in drinking water systems.

摘要

胞外聚合物(EPS)作为生物膜的外部基质,可以与饮用水管网中的消毒剂发生反应,形成消毒副产物(DBP)。本研究基于使用两种氯条件-生物膜 1(2.6±0.8mgCl/L)和生物膜 2(0.7±0.2mg Cl/L)的实验设置,在 9 次采样期间回收生物膜样本,并提取 EPS。对 EPS 进行 SUVA、荧光和氨基酸(AA)含量分析,以观察随时间的变化,并与氯化后的 DBP 形成潜力(DBP)进行相关性分析。SUVA 值低于 2L/mgC*m,表明两种 EPS 均具有亲水性。在随时间变化较小的情况下,观察到生物膜 2 的 SUVA 值略高。荧光显示芳香族蛋白质和腐殖质样物质是主要成分,并且随着时间的推移在生物膜 1 中增加。AA 随时间减少,并且在生物膜 2 中观察到丙氨酸、苏氨酸、脯氨酸和异亮氨酸的含量较高。根据一般关联,生物膜 2 的 SUVA 与三氯甲烷(CF)(r=0.80)相关性较好。通常,在两种生物膜中,色氨酸样物质与 DBP 呈负相关,而腐殖酸样物质呈正相关,但相关性较低(r=0.3-0.6)。个体采样数据的相关性增加了指数(r 大于 0.8),这表明其他因素(如无机物、过滤水和 EPS 的结构组成)对 DBP 的时间影响。在生物膜 1 中,溴代卤代乙酸(Br-HAA)、二溴乙腈和溴氯乙腈与精氨酸和缬氨酸呈负相关,二氯和三氯丙酮也与精氨酸呈负相关。相反,在生物膜 2 中,以下氨基酸与 DBP 呈正相关:与 Br-HAA 相关的丙氨酸、与 CF 相关的丙氨酸、与 N-DBP(氯仿、二氯和三氯乙腈)相关的丙氨酸、与 CF 相关的缬氨酸。由于这是关于两种不同氯化条件下生物膜中 EPS 随时间变化与 DBP 关系的首次报道,它为这些复杂物质在饮用水系统中的功能提供了新的证据。

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