Research progress in transfer models and membrane materials for organic solvent nanofiltration

被引:0
|
作者
Jin Y. [1 ,2 ]
Feng X. [1 ,2 ]
Zhu J. [1 ,2 ]
Zhang Y. [1 ,2 ]
机构
[1] School of Chemical Engineering, Zhengzhou University, Zhengzhou
[2] Zhengzhou Key Laboratory of Advanced Separation Technology, Zhengzhou
关键词
Membrane materials; Organic solvent nanofiltration; Porous organic materials; Transfer models;
D O I
10.16085/j.issn.1000-6613.2020-2274
中图分类号
学科分类号
摘要
Organic solvent nanofiltration (OSN), a new type of membrane-based separation that has attracted much attention in the field of membrane technology, evinces a broad application prospects in chemical, pharmaceutical, energy and environmental related fields due to the advantages of high efficiency, low energy consumption and ease of operation. This review first briefly introduced the application background of OSN. Then, recent advances in an OSN field in terms of transfer models and functional membrane materials were outlined and discussed. Among them, OSN membrane materials such as porous ceramics, polymers, porous organic materials, organic-inorganic frameworks, as well as graphene-like two-dimensional materials were summarized. Combined with the transfer models, the transport behavior of organic solvent molecules across the membrane and the membrane separation performance were analyzed. Finally, the industrial application status of OSN membranes was briefly described. The advantages and challenges of these key materials in OSN field were pointed out, and some development suggestions for optimizing membrane performance based on the characteristics of these key materials were put forward, aiming at promoting the research and application of OSN membrane. © 2021, Chemical Industry Press Co., Ltd. All right reserved.
引用
收藏
页码:6181 / 6194
页数:13
相关论文
共 102 条
  • [31] LI J Q, ZHANG M X, FENG W L, Et al., PIM-1 pore-filled thin film composite membranes for tunable organic solvent nanofiltration, Journal of Membrane Science, 601, (2020)
  • [32] DEY K, PAL M, ROUT K C, Et al., Selective molecular separation by interfacially crystallized covalent organic framework thin films, Journal of the American Chemical Society, 139, 37, pp. 13083-13091, (2017)
  • [33] KANDAMBETH S, BISWAL B P, CHAUDHARI H D, Et al., Selective molecular sieving in self-standing porous covalent-organic-framework membranes, Advanced Materials, (2017)
  • [34] QIAN H D, ZHENG J F, ZHANG S B., Preparation of microporous polyamide networks for carbon dioxide capture and nanofiltration, Polymer, 54, 2, pp. 557-564, (2013)
  • [35] MA D C, HAN G, GAO Z F, Et al., Continuous UiO-66-type metal-organic framework thin film on polymeric support for organic solvent nanofiltration, ACS Applied Materials & Interfaces, 11, 48, pp. 45290-45300, (2019)
  • [36] HUANG L, CHEN J, GAO T, Et al., Reduced graphene oxide membranes for ultrafast organic solvent nanofiltration, Advanced Materials, 28, 39, pp. 8669-8674, (2016)
  • [37] WANG J T, CHEN P P, SHI B B, Et al., A regularly channeled lamellar membrane for unparalleled water and organics permeation, Angewandte Chemie International Edition, 57, 23, pp. 6814-6818, (2018)
  • [38] GESTEL T VAN GESTEL T VAN, B VAN DER BRUGGEN, BUEKENHOUDT A, Et al., Surface modification of γ‍-Al<sub>2</sub>O<sub>3</sub>/TiO<sub>2</sub> multilayer membranes for applications in non-polar organic solvents, Journal of Membrane Science, 224, 1, pp. 3-10, (2003)
  • [39] MERLET R B, PIZZOCCARO-ZILAMY M A, NIJMEIJER A, Et al., Hybrid ceramic membranes for organic solvent nanofiltration: state-of-the-art and challenges, Journal of Membrane Science, 599, (2020)
  • [40] XIA L L, REN J, WEYD M, Et al., Ceramic-supported thin film composite membrane for organic solvent nanofiltration, Journal of Membrane Science, 563, pp. 857-863, (2018)