High-performance thin-film composite polyamide membranes developed with green ultrasound-assisted interfacial polymerization

被引:89
|
作者
Shen, Liang [1 ,2 ]
Hung, Wei-song [3 ]
Zuo, Jian [4 ]
Zhang, Xuan [1 ,2 ]
Lai, Juin-Yih [3 ]
Wang, Yan [1 ,2 ]
机构
[1] Huazhong Univ Sci & Technol, Minist Educ, Key Lab Mat Chem Energy Convers & Storage, Wuhan 430074, Hubei, Peoples R China
[2] Huazhong Univ Sci & Technol, Sch Chem & Chem Engn, Hubei Key Lab Mat Chem & Serv Failure, Wuhan 430074, Hubei, Peoples R China
[3] Chung Yuan Christian Univ, Ctr Membrane Technol, Chungli 32023, Taiwan
[4] Singapore Inst Technol, 10 Dover Dr, Singapore 138683, Singapore
基金
中国国家自然科学基金;
关键词
Ultrasound-assisted interfacial polymerization; Thin-film composite polyamide membrane; Forward osmosis; Nanofiltration; Microstructure and morphology; REVERSE-OSMOSIS MEMBRANES; NANOFILTRATION MEMBRANES; FABRICATION; TRIS(2-AMINOETHYL)AMINE; ENHANCEMENT;
D O I
10.1016/j.memsci.2018.10.014
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
Thin-film composite polyamide (TFC-PA) membranes prepared via interfacial polymerization (IP) are widely on reported in water treatment applications, but the inefficient mixing of reactive monomers in the traditional IP process may cause the diffusion-limited growth of PA layer and the incomplete IP reaction, resulting in limited control over the morphology and microstructure of PA layer, and thus the membrane performance. Various strategies to address above issues have been explored via different chemical modifications. In this work, a "green" ultrasound-assisted interfacial polymerization approach is employed for the first time to fabricate TFC membranes for forward osmosis and nanofiltration applications. Ultrasound in IP process enlarges the mixing area of reactive monomers, facilitates the mass transport of the amine monomer, therefore contributing to an efficient monomer mixing and the resultant higher IP reaction degree. Additionally, the disrupted PA chain packing, more penetrated amine monomers and generated nanovoids contribute to a relative loose PA layer. Effects of ultrasound power on the microstructure (crosslinking degree and free volume) and morphology (roughness and thickness) of the resultant TFC membranes are also investigated systematically. In comparison with the control membrane, TFC membranes formed via ultrasound-assisted IP exhibit much superior separation performance.
引用
收藏
页码:112 / 119
页数:8
相关论文
共 50 条
  • [1] Effect of ultrasonication parameters on forward osmosis performance of thin film composite polyamide membranes prepared with ultrasound-assisted interfacial polymerization
    Shen, Liang
    Hung, Wei-song
    Zuo, Jian
    Tian, Lian
    Yi, Ming
    Ding, Chun
    Wang, Yan
    [J]. JOURNAL OF MEMBRANE SCIENCE, 2020, 599
  • [2] Effect of ultrasonication parameters on forward osmosis performance of thin film composite polyamide membranes prepared with ultrasound-assisted interfacial polymerization
    Shen, Liang
    Hung, Wei-song
    Zuo, Jian
    Tian, Lian
    Yi, Ming
    Ding, Chun
    Wang, Yan
    [J]. Journal of Membrane Science, 2020, 599
  • [3] Regulating the interfacial polymerization process toward high-performance polyamide thin-film composite reverse osmosis and nanofiltration membranes: A review
    Li, Xu
    Wang, Zhi
    Han, Xianglei
    Liu, Yingying
    Wang, Chong
    Yan, Fangzheng
    Wang, Jixiao
    [J]. JOURNAL OF MEMBRANE SCIENCE, 2021, 640
  • [4] Polyamide thin-film composite membranes prepared by interfacial polymerization for pervaporation separation
    Huang, Shu-Hsien
    Li, Chi-Lan
    Hu, Chien-Chieh
    Tsai, H. A.
    Lee, Kueir-Rarn
    Lai, Juin-Yih
    [J]. DESALINATION, 2006, 200 (1-3) : 387 - 389
  • [5] Improved pervaporation efficiency of thin-film composite polyamide membranes fabricated through acetone-assisted interfacial polymerization
    De Guzman, Manuel Reyes
    Ang, Micah Belle Marie Yap
    Yeh, Yu-Lin
    Yang, Hong-Li
    Huang, Shu-Hsien
    Lee, Kueir-Rarn
    [J]. CHEMICAL ENGINEERING RESEARCH & DESIGN, 2021, 165 : 375 - 385
  • [6] Vapor-phase polymerization of high-performance thin-film composite membranes for nanofiltration
    Li, Wanbin
    Yang, Zhe
    Yang, Wulin
    Guo, Hao
    Tang, Chuyang Y.
    [J]. AICHE JOURNAL, 2022, 68 (02)
  • [7] Vacuum-Assisted Interfacial Polymerization Technique for Enhanced Pervaporation Separation Performance of Thin-Film Composite Membranes
    Gallardo, Marwin R.
    Ang, Micah Belle Marie Yap
    Millare, Jeremiah C.
    Huang, Shu-Hsien
    Tsai, Hui-An
    Lee, Kueir-Rarn
    [J]. MEMBRANES, 2022, 12 (05)
  • [8] Fabrication and characterization of high-performance acetone-assisted polyamide thin-film composite membranes for fluoridated saline water treatment
    Hailemariam, Ruth Habte
    Choi, June-Seok
    Getachew, Bezawit A.
    Damtie, Mekdimu Mezemir
    Rho, Hojung
    Park, Kwang-Duck
    Lee, Jonghun
    Woo, Yun Chul
    [J]. DESALINATION, 2022, 538
  • [9] Antibacterial Thin Film Composite Polyamide Membranes Prepared by Sequential Interfacial Polymerization
    Zhai, Xiaofei
    Ye, Jianlong
    He, Yaoting
    Ahmatjan, Zulpiyam
    Zhang, Yufeng
    Lin, Song
    Wang, Chunhao
    Hu, Xiaoyu
    Meng, Jianqiang
    [J]. MACROMOLECULAR MATERIALS AND ENGINEERING, 2020, 305 (07)
  • [10] Tetraethylorthosilicate-assisted interfacial polymerization for the fabrication of polyamide thin-film nanocomposite reverse osmosis membranes with enhanced desalination performance
    Wei, Yulin
    Zhang, Han
    Zhu, Guiru
    Liu, Zhaofeng
    Ji, Guojia
    Gao, Congjie
    [J]. DESALINATION AND WATER TREATMENT, 2019, 147 : 46 - 55