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活性污泥中紧密结合和松散结合的胞外聚合物在甲氧苄啶吸附过程中的矛盾作用。

The contradictory roles of tightly bound and loosely bound extracellular polymeric substances of activated sludge in trimethoprim adsorption process.

作者信息

Ma You, Li Tian-Yu, Meng Han, Wang Guo-Xiang, Zhang Li-Min, Jia Guo-Zheng, Ma Jie, Xiao Yan, Li Wei-Hua, Xie Wen-Ming

机构信息

Jiangsu Engineering Lab of Water and Soil Eco-remediation, School of Environment, Nanjing Normal University, Nanjing, 210023, China.

Jiangsu Engineering Lab of Water and Soil Eco-remediation, School of Environment, Nanjing Normal University, Nanjing, 210023, China; Green Economy Development Institute, Nanjing University of Finance and Economic, Nanjing, 210023, China.

出版信息

J Environ Manage. 2023 Jun 15;336:117661. doi: 10.1016/j.jenvman.2023.117661. Epub 2023 Mar 11.

Abstract

Extracellular polymeric substances (EPS) of activated sludge are a mixture of high molecular weight polymers secreted by microorganisms, which have the double structure of tightly-bound EPS (TB-EPS) in inner layer and loosely-bound EPS (LB-EPS) in outer layer. The characteristic of LB- and TB-EPS were different, which would affect their adsorption of antibiotics. However, the adsorption process of antibiotics on LB- and TB-EPS was still unclear yet. Therefore, in this work, the roles of LB-EPS and TB-EPS in adsorption of a typical antibiotic-trimethoprim (TMP) at environmentally relevant concentration (25.0 μg/L) were investigated. The results showed the content of TB-EPS was higher than that of LB-EPS, which was 17.08 and 10.36 mg/g VSS, respectively. The adsorption capacity of raw, LB-EPS extracted and both LB- and TB-EPS extracted activated sludges for TMP were 5.31, 4.65 and 9.51 μg/g VSS, respectively, which indicated LB-EPS had positive effect on TMP removal, while TB-EPS had negative effect. The adsorption process can be well described by a pseudo-second-order kinetic model (R > 0.980). The ratio of different functional groups was calculated and the CO and C-O bond might be responsible for the adsorption capacity difference between LB- and TB-EPS. The fluorescence quenching results indicated that tryptophan protein-like substances in LB-EPS provided more binding sites (n = 0.36) than that of tryptophan amino acid in TB-EPS (n = 0.1). Furthermore, the extend DLVO results also demonstrated that LB-EPS promoted the adsorption of TMP, while TB-EPS inhibited the process. We hope the results of this study were helpful for understanding the fate of antibiotics in wastewater treatment systems.

摘要

活性污泥的胞外聚合物(EPS)是微生物分泌的高分子量聚合物的混合物,具有内层紧密结合的EPS(TB-EPS)和外层松散结合的EPS(LB-EPS)的双重结构。LB-EPS和TB-EPS的特性不同,这会影响它们对抗生素的吸附。然而,抗生素在LB-EPS和TB-EPS上的吸附过程仍不清楚。因此,在本研究中,研究了LB-EPS和TB-EPS在环境相关浓度(25.0μg/L)下对典型抗生素甲氧苄啶(TMP)吸附中的作用。结果表明,TB-EPS的含量高于LB-EPS,分别为17.08和10.36mg/g VSS。原活性污泥、提取LB-EPS后的活性污泥以及同时提取LB-EPS和TB-EPS后的活性污泥对TMP的吸附容量分别为5.31、4.65和9.51μg/g VSS,这表明LB-EPS对TMP的去除有积极作用,而TB-EPS有消极作用。吸附过程可用准二级动力学模型很好地描述(R>0.980)。计算了不同官能团的比例,CO和C-O键可能是LB-EPS和TB-EPS吸附容量差异的原因。荧光猝灭结果表明,LB-EPS中类色氨酸蛋白物质提供的结合位点(n=0.36)比TB-EPS中色氨酸氨基酸提供的结合位点(n=0.1)更多。此外,扩展DLVO结果也表明LB-EPS促进了TMP的吸附,而TB-EPS抑制了该过程。我们希望本研究结果有助于理解抗生素在废水处理系统中的归宿。

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