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材料导报  2023, Vol. 37 Issue (21): 22030193-13    https://doi.org/10.11896/cldb.22030193
  高分子与聚合物基复合材料 |
基于中间层策略构筑高性能聚酰胺复合膜的研究进展
陈忠岩1,2, 谢全灵2, 于桐2, 卢英华1, 邵文尧1,*
1 厦门大学化学化工学院,福建 厦门 361005
2 自然资源部第三海洋研究所,福建 厦门 361005
Advances in Constructing High Performance Polyamide Composite Membrane Based on Interlayer Strategy
CHEN Zhongyan1,2, XIE Quanling2, YU Tong2, LU Yinghua1, SHAO Wenyao1,*
1 College of Chemistry and Chemical Engineering, Xiamen University, Xiamen 361005, Fujian, China
2 Third Institute of Oceanography, Ministry of Natural Resources, Xiamen 361005, Fujian, China
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摘要 以聚酰胺层为选择性分离层的复合膜在海水淡化和水回用中得到了广泛研究。在多孔基膜和聚酰胺层之间构建中间层是克服传统复合膜在渗透性和选择性之间权衡效应(即“Trade-off”效应)的有效策略。有机材料和各维度的纳米材料都可形成稳定的中间层,通过改变反应表面的理化性质有效调控界面聚合过程。具有中间层结构的复合膜可以在保证高选择性的前提下显著减小聚酰胺层厚度,进而提升膜的渗透性。本文讨论了常见的中间层构建方法,通过归纳各类中间层材料的研究进展,系统分析了中间层影响界面聚合过程和聚酰胺层结构的机理,最后总结了中间层策略存在的关键问题并对其研究前景进行展望。
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陈忠岩
谢全灵
于桐
卢英华
邵文尧
关键词:  中间层  聚酰胺复合膜  纳滤  膜分离  纳米材料    
Abstract: Thin-film composite (TFC) membranes with polyamide layers as selective separation layers have been widely studied in desalination and water reuse. Constructing interlayer between porous substrate membrane and polyamide layer is an efficient strategy to overcome the trade-off effect between permeability and selectivity intypical TFC membrane. Both organic materials and nanomaterials can form stable interlayers, which can effectively regulate the interfacial polymerization process by changing the physicochemical properties of the reaction surface. Interlayer-based TFC membrane can significantly reduce the thickness of the polyamide layer to improve the permeability while ensuring high selectivity. In this paper, the common methods of interlayer construction are discussed, and the mechanisms of interlayer influencing interfacial polymerization process and polyamide layer structure are systematically analyzed by summarizing the research progress of various interlayer materials. Finally, this paper summarizes the challenges of the interlayer strategy and provides an outlook on the research prospects.
Key words:  interlayer    thin-film composite polyamide membrane    nanofiltration    membrane separation    nanomaterial
出版日期:  2023-11-10      发布日期:  2023-11-10
ZTFLH:  O631  
  TB324  
  TQ316.6  
基金资助: 厦门市科技计划项目(3502Z20183016);国家自然科学基金(21736009);福建省科技计划引导性项目(2019H0049);自然资源部第三海洋研究所基本科研业务费专项资金资助项目(2019012)
通讯作者:  *邵文尧,厦门大学化学化工学院高级实验师。2002年西北农林科技大学葡萄酒学院发酵工程专业本科毕业,2002年毕业后在厦门三达膜科技有限公司上班,2003年进入厦门大学化学化工学院就职,2010年取得厦门大学化学化工学院生物化工专业硕士学位。目前主要从事膜材料制备、泡沫分离技术、精酿啤酒酿造等方面的研究工作。发表论文近100篇,包括Journal of Membrane Science、 Desalination、Chemical Engineering Journal、Nanomaterials、Applied Surface Science、Industrial and Engineering Chemistry Research、Polymers等。wyshao@xmu.edu.cn   
作者简介:  陈忠岩,2020年6月毕业于厦门大学获得工学学士学位。现为厦门大学化学化工学院硕士研究生,在卢英华和邵文尧老师的指导下开展研究工作,企业导师为谢全灵。目前研究方向主要为新型膜材料开发及应用。
引用本文:    
陈忠岩, 谢全灵, 于桐, 卢英华, 邵文尧. 基于中间层策略构筑高性能聚酰胺复合膜的研究进展[J]. 材料导报, 2023, 37(21): 22030193-13.
CHEN Zhongyan, XIE Quanling, YU Tong, LU Yinghua, SHAO Wenyao. Advances in Constructing High Performance Polyamide Composite Membrane Based on Interlayer Strategy. Materials Reports, 2023, 37(21): 22030193-13.
链接本文:  
http://www.mater-rep.com/CN/10.11896/cldb.22030193  或          http://www.mater-rep.com/CN/Y2023/V37/I21/22030193
1 Ji C, Zhai Z, Jiang C, et al. Desalination, 2020, 500, 114869.
2 Lau W J, Gray S, Matsuura T, et al. Water Research, 2015, 80(15), 306.
3 Yang Z, Guo H, Tang C Y. Journal of Membrane Science, 2019, 590, 117297.
4 Zhao S, Mao C, Wang T, et al. Separation and Purification Technology, 2021, 256, 117817.
5 Cao S, Zhang G, Xiong C, et al. Journal of Membrane Science, 2018, 564, 473.
6 Ji Y L, Ang M B M Y, Huang S H, et al. Separation and Purification Technology, 2019, 211, 170.
7 Zhan Z M, Xu Z L, Zhu K K, et al. Journal of Membrane Science, 2020, 597, 117640.
8 Ma D, Peh S B, Han G, et al. ACS Applied Materials & Interfaces, 2017, 9(8), 7523.
9 Zhang H, Gong X Y, Li W X, et al. Journal of Membrane Science, 2020, 616, 118605.
10 Shao W, Liu C, Ma H, et al. Applied Surface Science, 2019, 487, 1209.
11 Zhou Z, Li X, Shinde D B, et al. Membranes, 2020, 10(8), 163.
12 Wang J, Xu R, Yang F, et al. Journal of Membrane Science, 2018, 556, 374.
13 Shi M, Wang Z, Zhao S, et al. Journal of Membrane Science, 2018, 555, 157.
14 He M, Li T, Hu M, et al. Separation and Purification Technology, 2020, 230, 115855.
15 Ang M B M Y, Lau V J, Ji Y L, et al. Polymers, 2017, 9(10), 505.
16 Ma H, Xie Q, Wu C, et al. Journal of Membrane Science, 2019, 590, 117268.
17 Wang L H. Removal of heavy metal ions in water by hyperbranched polyamide-amine grafted graphene oxide-nanofiltration combined technology. Master's Thesis, Harbin Engineering University, China, 2020 (in Chinese).
王丽红. 接枝超支化聚酰胺-胺氧化石墨烯-纳滤联用技术对水中重金属离子的去除. 硕士学位论文, 哈尔滨工程大学, 2020.
18 Gao Z F, Feng Y, Ma D, et al. Journal of Membrane Science, 2019, 574, 124.
19 Yang Z, Sun P F, Li X, et al. Environmental Science & Technology, 2020, 54(24), 15563.
20 Dai R, Li J, Wang Z. Advances in Colloid and Interface Science, 2020, 282, 102204.
21 Zhu J, Hou J, Yuan S, et al. Journal of Materials Chemistry A, 2019, 7(27), 16313.
22 Yang X. ACS Omega, 2019, 4(9), 13824.
23 Yun T, Kwak S Y. Journal of Membrane Science, 2020, 604, 117955.
24 Deng L, Li S, Qin Y, et al. Journal of Membrane Science, 2021, 619, 118564.
25 Liu Z, Qi L, An X, et al. ACS Applied Materials & Interfaces, 2017, 9(46), 40987.
26 Karan S, Jiang Z W, Livingston A G. Science, 2015, 348(6241), 1347.
27 Wang J J, Yang H C, Wu M B, et al. Journal of Materials Chemistry A, 2017, 5(31), 16289.
28 Lee T H, Oh J Y, Hong S P, et al. Journal of Membrane Science, 2019, 570-571, 23.
29 Yuan B, Zhao S, Hu P, et al. Nature Communications, 2020, 11(1), 6102.
30 Li Y, Su Y, Li J, et al. Journal of Membrane Science, 2015, 476, 10.
31 Ma F F, Zhang N, Wei X, et al. Journal of Materials Chemistry A, 2017, 5(27), 14430.
32 Goethem C V, Verbeke R, Hermans S, et al. Journal of Materials Che-mistry A, 2016, 4(42), 16368.
33 Goethem C V, Verbeke R, Pfanmöller M, et al. Journal of Membrane Science, 2018, 563, 938.
34 Gao S, Zhu Y, Gong Y, et al. ACS Nano, 2019, 13(5), 5278.
35 Yang S, Wang J, Fang L, et al. Journal of Membrane Science, 2020, 602, 117971.
36 Shen K, Cheng C, Zhang T, et al. Journal of Membrane Science, 2019, 588, 117192.
37 Yang Z, Guo H, Yao Z K, et al. Environmental Science & Technology, 2019, 53(9), 5301.
38 Wang L, Fang M, Liu J, et al. ACS Applied Materials & Interfaces, 2015, 7(43), 24082.
39 Sarango L, Paseta L, Navarro M, et al. Journal of Industrial and Engineering Chemistry, 2018, 59, 8.
40 Kang Y, Jang J, Lee Y, et al. Environmental Science:Nano, 2021, 8, 3282.
41 Yang Z, Wang F, Guo H, et al. Environmental Science & Technology, 2020, 54(18), 11611.
42 Yang X, Du Y, Zhang X, et al. Langmuir, 2017, 33(9), 2318.
43 Zhang D, Zhang K, Hu X, et al. Separation and Purification Technology, 2021, 272, 118957.
44 Yan W, Shi M, Dong C, et al. Advances in Colloid and Interface Science, 2020, 284, 102267.
45 Yu H, Zhong Q Z, Liu T G, et al. Langmuir, 2019, 35(10), 3643.
46 Guo H, Peng L E, Yao Z, et al. Environmental Science & Technology, 2019, 53(5), 2688.
47 Xiao Y, Guo D, Li T, et al. Applied Surface Science, 2020, 515, 146063.
48 Shen Y J, Fang L F, Yan Y, et al. Journal of Membrane Science, 2019, 587, 117146.
49 Yang Z, Zhou Z W, Guo H, et al. Environmental Science & Technology, 2018, 52(16), 9341.
50 Gao H H. Preparation and performance of reverse osmosis composite membranes with enhanced anti-biological contamination properties. Master's Thesis, Tiangong University, China, 2021 (in Chinese).
郜慧慧. 抗生物污染反渗透复合膜的制备及性能研究. 硕士学位论文, 天津工业大学, 2021.
51 Zhang X, Ren P F, Yang H C, et al. Applied Surface Science, 2016, 360, 291.
52 Zhang X, Lv Y, Yang H C, et al. ACS Applied Materials & Interfaces, 2016, 8(47), 32512.
53 Zhang X, Liu C, Yang J, et al. Journal of Membrane Science, 2020, 593, 117444.
54 Zhai Z, Jiang C, Zhao N, et al. Journal of Materials Chemistry A, 2018, 6(42), 21207.
55 Wang J Y. Structural regulation of polyamide forward osmosis membranes for enhanced desalination. Master's Thesis, Tianjin University, China, 2020 (in Chinese).
王景悦. 聚酰胺正渗透膜的结构调控及其脱盐性能研究. 硕士学位论文, 天津大学, 2020.
56 Zhu X, Yang Z, Gan Z, et al. Journal of Membrane Science, 2020, 614, 118526.
57 Zhu X, Cheng X, Luo X, et al. Environmental Science & Technology, 2020, 54(10), 6365.
58 Du Y, Zhang C, Zhong Q Z, et al. ChemSusChem, 2017, 10(13), 278.
59 Yu J, Wang Y, He Y, et al. Separation and Purification Technology, 2021, 276, 119348.
60 Zhang M, Jin W, Yang F, et al. Environmental Science & Technology, 2020, 54(12), 7715.
61 Yang Z, Wu Y, Guo H, et al. Journal of Membrane Science, 2017, 544, 351.
62 Yu T, Shao W Y, Hong Z, et al. Materials Reports, 2021, 35(21), 21143 (in Chinese).
于桐, 邵文尧, 洪专, 等. 材料导报, 2021, 35(21), 21143.
63 Zhou Z, Ying Y, Peng X. Applied Materials Today, 2017, 8, 54.
64 Chen L, Zhang C, Gao A, et al. Colloids and Surfaces A:Physicochemical and Engineering Aspects, 2021, 626, 127001.
65 Bai L, Ding J, Wang H, et al. Science of the Total Environment, 2020, 743, 140766.
66 Guo C, Li N, Qian X, et al. Separation and Purification Technology, 2020, 230, 115567.
67 Cheng C, Li P, Shen K, et al. Journal of Membrane Science, 2018, 553, 70.
68 Yuan J, Wu M, Wu H, et al. Journal of Materials Chemistry A, 2019, 7(44), 25641.
69 Zhang H Z, Sun J Y, Zhang Z L, et al. Separation and Purification Technology, 2021, 258, 118069.
70 Zhao Y Y, Liu Y L, Wang X M, et al. ACS Applied Materials & Interfaces, 2019, 11(14), 13724.
71 Chen K, Li P, Zhang H, et al. Separation and Purification Technology, 2020, 251, 117387.
72 Bao Y, Chen Y, Lim T T, et al. Advanced Materials Interfaces, 2019, 6(9), 1900132.
73 Wu X, Yang L, Meng F, et al. Journal of Membrane Science, 2021, 632, 119356.
74 Paseta L, Antorán D, Coronas J, et al. Industrial & Engineering Chemistry Research, 2019, 58(10), 4222.
75 Zhu C Y, Zhang X, Xu Z K. Journal of Applied Polymer Science, 2021, 138(9), 49940.
76 Gong Y, Gao S, Tian Y, et al. Journal of Membrane Science, 2020, 600, 117874.
77 Wang Z, Wang Z, Lin S, et al. Nature Communications, 2018, 9(1), 2004.
78 Francis A P, Devasena T. Toxicology and Industrial Health, 2018, 34(3), 200.
79 Li J, Li L, Xu Y, et al. Chemical Engineering Journal, 2021, 427(18), 132070.
80 Sun P F, Yang Z, Song X, et al. Environmental Science & Technology, 2021, 55(19), 13219.
81 Zhang C, Wu B H, Ma M Q, et al. Chemical Society Reviews, 2019, 48(14), 3811.
82 Hu M, Ju Y, Liang K, et al. Advanced Functional Materials, 2016, 26(32), 5827.
83 Canivet J, Aguado S, Bergeret G, et al. Chemical Communications, 2011, 47(42), 11650.
84 Wang Q, Wang G, Liang X, et al. Applied Surface Science, 2019, 467-468, 320.
85 Cabello C P, Picó M F F, Maya F, et al. Chemical Engineering Journal, 2018, 346, 85.
86 Zhang R, Ji S, Wang N, et al. Angewandte Chemie International Edition, 2014, 53(37), 9775.
87 Echaide-Górriz C, Sorribas S, Téllez C, et al. RSC Advances, 2016, 6(93), 90417.
88 Gong G, Wang P, Zhou Z, et al. ACS Applied Materials & Interfaces, 2019, 11(7), 7349.
89 Wu M, Yuan J, Wu H, et al. Journal of Membrane Science, 2019, 576, 131.
90 Li Y, Li C, Li S, et al. Journal of Materials Chemistry A, 2019, 7(21), 13315.
91 Liu H, Zhang M, Zhao H, et al. RSC Advances, 2020, 10(7), 4045.
92 Gu Z, Yu S, Zhu J, et al. Desalination, 2020, 493, 114661.
93 Yang F, Sadam H, Zhang Y, et al. Chemical Engineering Science, 2020, 225, 115845.
94 Zhang L, Zhang R, Ji M, et al. Journal of Membrane Science, 2021, 636, 119478.
95 Kang X, Liu X, Liu J, et al. Applied Surface Science, 2020, 508, 145198.
96 Liu Q. Metal-crosslinked-polyimide-based thin-fim composite (TFC) membrane for organic solvent nanofiltration. Master's Thesis, Huazhong University of Science and Technology, China, 2021 (in Chinese).
刘琴. 金属络合交联聚酰亚胺基的超薄复合膜的制备及有机溶剂纳滤应用. 硕士学位论文, 华中科技大学, 2021.
97 Peng L E, Yao Z, Yang Z, et al. Environmental Science & Technology, 2020, 54(11), 6978.
98 Song X, Gan B, Yang Z, et al. Journal of Membrane Science, 2019, 582, 342.
99 Ma X H, Yao Z K, Yang Z, et al. Environmental Science & Technology Letters, 2018, 5(2), 123.
100 Song X, Gan B, Qi S, et al. Environmental Science & Technology, 2020, 54(6), 3559.
101 Kattula M, Ponnuru K, Zhu L, et al. Scientific Reports, 2015, 5, 15016.
102 Ramon G Z, Wong M C Y, Hoek E M V. Journal of Membrane Science, 2012, 415-416, 298.
103 Solomon M F J, Bhole Y, Livingston A G. Journal of Membrane Science, 2012, 423-424, 371.
104 Zhou S, Feng X, Zhu J, et al. Journal of Membrane Science, 2021, 623, 119058.
105 Wang M, Zhang Z, Wang Y, et al. ACS Applied Materials & Interfaces, 2020, 12(22), 25512.
106 Han S, Mai Z, Wang Z, et al. ACS Applied Materials & Interfaces, 2022, 14(2), 3427.
107 He G, Zhang R, Jiang Z. Accounts of Materials Research, 2021, 2(8), 630.
108 Mollahosseini A, Abdelrasoul A. Journal of Molecular Graphics & Mo-delling, 2021, 107, 107947.
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