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杨凤林
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教授   博士生导师   硕士生导师

性别: 男

毕业院校: 大连工学院

学位: 硕士

所在单位: 环境学院

电子邮箱: yangfl@dlut.edu.cn

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Enhancing membrane performance by blending ATRP grafted PMMA-TiO2 or PMMA-PSBMA-TiO2 in PVDF

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论文类型: 期刊论文

发表时间: 2014-09-08

发表刊物: SEPARATION AND PURIFICATION TECHNOLOGY

收录刊物: SCIE、EI、Scopus

卷号: 133

页面范围: 22-31

ISSN号: 1383-5866

关键字: Composite membrane; ATRP; TiO2; Antifouling; PVDF

摘要: To improve PVDF (polyvinylidine fluoride) membrane property, TiO2 nano-particles can be blended in casting solutions to form composite membranes. In this study, TiO2 nano-particles were modified by coupling with gamma-aminopropyl triethoxy silane (KH550), then grafted with PMMA (Polymethyl methacrylate) or co-grafted with PMMA and more hydrophilic PSBMA (polysulfobetaine methacrylate) via ATRP (atom transfer radical polymerization). ATRP grafting time and weight ratio of KH550 to TiO2 were two main identified factors affecting TiO2 modification and membrane hydrophilicity, flux and antifouling properties. These were shown by Scanning electron microscopy (SEM) characterization, contact angles measurements and filtration tests with yeast suspensions. The grafted TiO2-PMMA nano particles formed after coupling at 3:1 weight ratio of KH550 to TiO2 and 5 h grafting, once composited with PVDF, formed a membrane with higher flux (up to 50%), higher flux recovery rate (FRR, 93.5%) and lower irreversible fouling (5.37%) than PVDF membrane composited with unmodified TiO2. Blending TiO2 co-grafted with PMMA and zwitterionic polymer PSBMA resulted in even better antifouling membranes (even lower R-ir < 2% and even higher FRR 99%). When the molar ratio of MMA to SBMA was 2 to 1, the highest steady flux and the highest FRR were obtained. (C) 2014 Elsevier B.V. All rights reserved.

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