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多功能多孔β-环糊精聚合物用于水净化。

Multifunctional porous β-cyclodextrin polymer for water purification.

机构信息

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

Key Laboratory of Poyang Lake Environment and Resource Utilization, Ministry of Education, School of Resources and Environment, Nanchang University, Nanchang 330031, China.

出版信息

Water Res. 2022 Aug 15;222:118917. doi: 10.1016/j.watres.2022.118917. Epub 2022 Jul 28.

Abstract

Keeping water clean is of vital significance for human health and environmental protection. In order to remove organic micro-pollutants and natural organic substances in water bodies and kill pathogenic microorganisms simultaneously, this study synthesized a multifunctional porous β-cyclodextrin polymer with a high specific surface area by introducing quaternary ammonium groups and rigid benzene rings, respectively, which was then polymerized with crosslinking agent-4,4'-bis (chloromethyl)-1,1'-biphenyl (BCMBP) in an ionic liquid system. The grafting of quaternary ammonium groups was beneficial for the removal of negative-charged humic acid (HA) and sterilization. The introduction of numerous rigid structures during benzylation and Friedel-Crafts alkylation reaction could significantly improve the porosity and specific surface area of the polymer, conducive to the exposure of cyclodextrin binding sites and contaminant adsorption. By changing the proportions of quaternization and benzylation, the structure and surface properties of the polymer could be adjusted, thus further regulating the adsorption performance. Compared with activated carbon, the polymer named BQCD-BP with a huge surface area of 1133 m g prepared under optimized conditions showed outstanding adsorption performance and sterilization ability. The pseudo-second-order kinetic constant of BQCD-BP reached 1.2058 g·mg·min, which was approximately 50 times greater than that of activated carbon (0.0256 g·mg·min) under the same experimental condition. The adsorption capacity of BQCD-BP to HA was twice as high as that to AC, and the antibacterial ability of BQCD-BP was significant, achieving 90% at the dosage of 1g L. Moreover, the adsorption process was hardly affected by the hydrochemical conditions, and the polymer was easy to regenerate. In addition, the excellent adsorption and antibacterial performance of the polymer were also identified by natural water treatment. COD was almost completely removed, and the removal efficiency of TP reached 92% after contact with BQCD-BP. The sterilization rate of BQCD-BP to viable bacteria in complex water bodies reached 82%. Undoubtedly, BQCD-BP is a potential multifunctional water treatment material with reasonable design in the actual water purification.

摘要

保持水的清洁对于人类健康和环境保护至关重要。为了同时去除水体中的有机微污染物和天然有机物,并杀死致病微生物,本研究通过分别引入季铵基团和刚性苯环,合成了一种具有高比表面积的多功能多孔β-环糊精聚合物,然后在离子液体体系中与交联剂 4,4'-双(氯甲基)-1,1'-联苯(BCMBP)聚合。季铵基团的接枝有利于去除带负电荷的腐殖酸(HA)和杀菌。在苄基化和傅-克烷基化反应中引入大量刚性结构,可以显著提高聚合物的孔隙率和比表面积,有利于环糊精结合位点和污染物的暴露和吸附。通过改变季铵化和苄基化的比例,可以调节聚合物的结构和表面性质,从而进一步调节吸附性能。与活性炭相比,在优化条件下制备的比表面积高达 1133 m g 的聚合物 BQCD-BP 表现出优异的吸附性能和杀菌能力。BQCD-BP 的拟二级动力学常数达到 1.2058 g·mg·min,在相同实验条件下,约为活性炭(0.0256 g·mg·min)的 50 倍。BQCD-BP 对 HA 的吸附容量是对 AC 的两倍,并且 BQCD-BP 的抗菌能力显著,在 1g L 的剂量下达到 90%。此外,吸附过程几乎不受水化学条件的影响,聚合物易于再生。此外,通过天然水的处理也证实了聚合物具有优异的吸附和抗菌性能。接触 BQCD-BP 后,COD 几乎完全去除,TP 的去除率达到 92%。BQCD-BP 对复杂水体中活菌的杀菌率达到 82%。毫无疑问,BQCD-BP 是一种具有合理设计的潜在多功能水处理材料,在实际的水净化中具有广阔的应用前景。

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