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预加载长链季铵基团以合成用于去除饮用水中细菌污染物的高效阴离子交换树脂。

Preloading Long-Chain Quaternary Ammonium Groups to Synthesize a High-Efficient Anion-Exchange Resin for Eliminating Bacterial Contaminants in Drinking Water.

作者信息

Zhang Wenrui, Ling Chen, Dao Haosha, Zhou Qing, Shi Peng, Li Aimin, Xing Baoshan

机构信息

State Key Laboratory of Pollution Control and Resource Reuse, School of Environment, Nanjing University, Nanjing 210023, China.

College of Ecology and Environment, Nanjing Forestry University, Nanjing 210037, China.

出版信息

Environ Sci Technol. 2024 Sep 3. doi: 10.1021/acs.est.4c03630.

Abstract

Bacterial contamination in drinking water is a global health concern, necessitating the development of highly efficient treatment techniques. Anion-exchange resins (AERs) have long been employed for removing anionic contaminants from drinking water, but their performance for bacterial contamination is poor. Here, we develop a novel AER (AER) with exceptional bactericidal effects and ultrafast adsorption rates of extracellular DNA (eDNA) (2.2- and 11.5-fold compared to other AERs) achieved through preloading quaternary ammonium groups (QAGs) with hexyl chain (-C-N-) on the resin exterior and successively grafting QAGs with a methyl chain (-C-N-) inside a resin pore. The AER outperforms other commercial AERs and ultraviolet disinfection, exhibiting superior elimination of total bacteria, potential pathogens ( and ), eDNA, and antibiotic resistance genes (F, B, and A) in actual drinking water, while maintaining a comparable anion exchange capacity with other commercial AERs. Theoretical calculations of density functional theory and xDLVO combined with XPS elucidate the crucial roles of hydrogen bonding and hydrophobic force provided by the resin skeleton and -C-N- in cleaving the bacterial cell membrane and increasing the adsorption kinetics on eDNA. This study broadens the scope of AERs and highlights an effective way of simultaneously removing bacterial and anionic contaminants from drinking water.

摘要

饮用水中的细菌污染是一个全球健康问题,因此需要开发高效的处理技术。阴离子交换树脂(AERs)长期以来一直用于去除饮用水中的阴离子污染物,但其对细菌污染的处理效果不佳。在此,我们开发了一种新型AER(AER),它具有卓越的杀菌效果和超快的细胞外DNA(eDNA)吸附速率(与其他AER相比分别快2.2倍和11.5倍),这是通过在树脂外部预加载带有己基链(-C-N-)的季铵基团(QAGs)并随后在树脂孔内接枝带有甲基链(-C-N-)的QAGs实现的。该AER优于其他商用AER和紫外线消毒,在实际饮用水中对总细菌、潜在病原体(和)、eDNA以及抗生素抗性基因(F、B和A)表现出卓越的去除效果,同时与其他商用AER保持相当的阴离子交换容量。密度泛函理论和xDLVO的理论计算结合XPS阐明了树脂骨架和-C-N-提供的氢键和疏水力在裂解细菌细胞膜以及提高对eDNA的吸附动力学方面的关键作用。本研究拓宽了AERs的应用范围,并突出了一种同时从饮用水中去除细菌和阴离子污染物的有效方法。

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