4.7 Article

Improved antifouling performance of ultrafiltration membrane via preparing novel zwitterionic polyimide

期刊

APPLIED SURFACE SCIENCE
卷 427, 期 -, 页码 38-47

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.apsusc.2017.08.004

关键词

Zwitterionic; Polyimide; Ultrafiltration membrane; Antifouling

资金

  1. Fundamental Research Funds for the Central Universities [2572016BB03]
  2. Youths Science Foundation of Heilongjiang Province, China [QC2014C044]
  3. National Innovation Training Program for Undergraduates of Northeast Forestry University [201710225051]

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On the basis of the outstanding fouling resistance of zwitterionic polymers, an antifouling ultrafiltration membrane was fabricated through phase inversion induced by immersion precipitation method, directly using the novel zwitterionic polyimide (Z-PI), which was synthesized via a two-step procedure including polycondensation and quaternary amination reaction, as membrane material. The chemical structure and composition of the obtained polymer were confirmed by using FTIR, H-1 NMR and XPS analysis, and its thermal stability was thoroughly characterized by TGA measurement, respectively. The introduction of zwitterionic groups into polyimide could effectively increase membrane pore size, porosity and wettability, and convert the membrane surface from hydrophobic to highly hydrophilic. As a result, ZPI membrane displayed significantly improved water permeability compared with that of the reference polyimide (R-PI) membrane without having an obvious compromise in protein rejection. According to the static adsorption and dynamic cycle ultrafiltration experiments of bovine serum albumin (BSA) solution, Z-PI membrane exhibited better fouling resistant ability, especially irreversible fouling resistant ability, suggesting superior antifouling property and long-term performance stability. Moreover, Z-PI membrane had a water flux recovery ratio of 93.7% after three cycle of BSA solution filtration, whereas only about 68.5% was obtained for the control R-PI membrane. These findings demonstrated the advantages of Z-PI membrane material and aimed to provide a facile and scalable method for the large-scale preparation of low fouling ultrafiltration membranes for potential applications. (C) 2017 Elsevier B.V. All rights reserved.

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