State Key Laboratory of Separation Membranes and Membrane Processes, National Center for International Research on Membrane Science and Technology, School of Materials Science and Engineering , Tianjin Polytechnic University , Tianjin 300387 , P. R. China.
Tianjin Key Laboratory of Membrane Science and Desalination Technology, State Key Laboratory of Chemical Engineering, Collaborative Innovation Center of Chemical Science and Engineering (Tianjin) , Tianjin University , Tianjin 300072 , P. R. China.
ACS Appl Mater Interfaces. 2019 Mar 27;11(12):12043-12052. doi: 10.1021/acsami.8b21572. Epub 2019 Mar 12.
High-performance chlorine-resistant thin-film composite (TFC) membranes with zwitterions were fabricated by in situ surface modification of polyamide with 2,6-diaminopyridine and the subsequential quaternization with 3-bromopropionic. The successful modification of the TFC polyamide surface with zwitterions was confirmed by various characterizations including surface chemistry, surface hydrophilicity, and surface charge. The transport performance of the membrane was measured in both of the cross-flow reverse osmosis (RO) and forward osmosis processes, and the results showed that the modified TFC membrane improved both of its water permeability and perm-selectivity with the increased A and A/ B ratios upon modification with zwitterions. The chlorination challenging experiments were performed to demonstrate that the modified membrane enhanced its chlorine resistance without affecting its salt rejection upon 16 000 ppm·h chlorination exposure. A chlorination mechanism study illustrated that the modified membrane with zwitterions could prevent the Orton rearrangement of the benzene ring of the polyamide layer. Importantly and excitingly, the optimal chlorinated TFC membrane with zwitterions achieved a very high water flux of 72.15 ± 2.55 LMH with 99.67 ± 0.09% of salt rejection in the cross-flow RO process under 15 bar.
通过 2,6-二氨基吡啶的原位表面改性和随后与 3-溴丙酸的季铵化反应,制备了具有两性离子的高性能耐氯薄复合(TFC)膜。通过各种特性分析,包括表面化学、表面亲水性和表面电荷,证实了两性离子成功修饰了 TFC 聚酰胺表面。通过错流反渗透(RO)和正向渗透过程测量了膜的传输性能,结果表明,修饰后的 TFC 膜提高了水透过率和渗透选择性,随着两性离子修饰的 A 和 A/B 比值的增加而提高。进行了氯化挑战性实验,以证明修饰后的膜在 16,000 ppm·h 氯化暴露下提高了其耐氯性而不影响其盐截留率。氯化机理研究表明,带有两性离子的修饰膜可以防止聚酰胺层的苯环的 Orton 重排。重要的是,令人兴奋的是,带有两性离子的最佳氯化 TFC 膜在 15 巴下的错流 RO 过程中实现了非常高的水通量 72.15 ± 2.55 LMH,盐截留率为 99.67 ± 0.09%。