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《中国工程科学》 >> 2014年 第16卷 第7期

耐污染反渗透/纳滤复合膜研究进展

1. 浙江大学化学工程与生物工程学系,杭州 310027;

2. 第二炮兵后勤科学技术研究所,北京 100011

资助项目 :国家自然科学基金重点资助项目(51238006);高等学校博士学科点专项科研基金项目(20130101110064) 录用日期: 2014-04-15 发布日期: 2014-08-12 14:32:54.000

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摘要

膜污染防控是反渗透(RO)、纳滤膜研究的重要方向,是影响其应用的关键环节。本文总结了常见的反渗透膜污染类型,并对影响反渗透膜污染的关键因素进行分析;并重点综述了目前提高反渗透膜耐污性的方法,包括设计新型关键单体、表面物理改性、表面化学改性及共混改性等方法;最后对耐污染反渗透膜的研究进行了展望。

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参考文献

[ 1 ] Lauren F Greenlee,Desmond F Lawler,Benny D Freeman,et al. Reverse osmosis desalination:Water sources,technology, and today’s challenges [J]. Water Research,2009,43:2317- 2348. 链接1

[ 2 ] Schiffler M. Perspectives and challenges for desalination in the 21st century [J]. Desalination,2004,165:1-9. 链接1

[ 3 ] 陈欢林,瞿新营,张 林,等. 新型反渗透膜的研究进展[J]. 2001,31(3):101-109. 链接1

[ 4 ] Kang Guodong,Cao Yiming. Development of antifouling reverse osmosis membranes for water treatment:A review [J]. Water Research,2012,46:584-600. 链接1

[ 5 ] Rana D,Matsuura T. Surface modifications for antifouling membranes [J]. Chemical Reviews,2010,110:2448-2471. 链接1

[ 6 ] Louie J S,Pinnau I,Ciobanu I,et al. Effects of polyether-polyamide block copolymer coating on performance and fouling of reverse osmosis membranes [J]. Journal of Membrane Science, 2006,280:762-770. 链接1

[ 7 ] Kwon B,Lee S,Cho J,et al. Biodegradability,DBP formation,and membrane fouling potential of natural organic matter: Characterization and controllability [J]. Environmental Science & Technology,2005,39:732-739. 链接1

[ 8 ] Eric M Vrijenhoek,Hong Seungkwan,Menachem Elimelech. Influence of membrane surface properties on initial rate of colloidal fouling of reverse osmosis and nanofiltration membranes [J]. Journal of Membrane Science,2001,188:115-128. 链接1

[ 9 ] 郑 鸿,叶永安,郑 鸾. 反渗透膜污染机理及危害[J]. 1990,10 (4):45-53.

[10] Hyun Il Kim,Sung Soo Kim. Plasma treatment of polypropylene and polysulfone supports for thin film composite reverse osmosis membrane [J]. Journal of Membrane Science,2006,286: 193-201. 链接1

[11] Li Dan,Wang Huanting. Recent developments in reverse osmosis desalination membranes [J]. Journal of Materials Chemistry, 2010,20:4551-4566. 链接1

[12] Li L,Zhang S B,Zhang X S,et al. Polyamide thin film composite membranes prepared from 3,4′,5-biphenyl triacyl chloride,3,3′,5,5′-biphenyl tetraacyl chloride and m-phenylenediamine [J]. Journal of Membrane Science,2007,289:258-267. 链接1

[13] Liu L F,Yu S C,Zhou Y,et al. Study on a novel polyamideurea reverse osmosis composite membrane (ICIC- MPD). I. Preparation and characterization of ICIC- MPD membrane [J]. Journal of Membrane Science,2006,281:88-94. 链接1

[14] Liu L F,Yu S C,Wu L G,et al. Study on a novel polyamideurea reverse osmosis composite membrane(ICIC- MPD). II. Analysis of membrane antifouling performance [J]. Journal of Membrane Science,2006,283:133-146. 链接1

[15] Liu L F,Yu S C,Zhou Y,et al. Study on a novel antifouling polyamide- urea reverse osmosis composite membrane(ICICMPD)III. Analysis of membrane electrical properties [J]. Journal of Membrane Science,2008,310:119-128. 链接1

[16] Yu Sanchuan,Lü Zhenhua,Chen Zhihai,et al. Surface modification of thin- film composite polyamide reverse osmosis membranes by coating N-isopropylacrylamide-co-acrylic acid copolymers for improved membrane properties [J]. Journal of Membrane Science,2011,371:293-306.

[17] Zhou Yong,Yu Sanchuan,Gao Congjie,et al. Surface modification of thin film composite polyamide membranes by electrostatic self deposition of polycations for improved fouling resistance [J]. Separation and Purification Technology,2009,66: 287-294. 链接1

[18] Kim I C,Lee K H. Dyeing process wastewater treatment using fouling resistant nanofiltration and reverse osmosis membranes [J]. Desalination,2006,192:246-251. 链接1

[19] Chuyang Y Tang,Young-Nam Kwon,James O Leckie. Effect of membrane chemistry and coating layer on physiochemical properties of thin film composite polyamide RO and NF membranes I. FTIR and XPS characterization of polyamide and coating layer chemistry [J]. Desalination,2009,242:149-167. 链接1

[20] Chuyang Y Tang,Young-Nam Kwon,James O Leckie. Effect of membrane chemistry and coating layer on physiochemical properties of thin film composite polyamide RO and NF membranes II. Membrane physiochemical properties and their dependence on polyamide and coating layer [J]. Desalination,2009, 242:168-182. 链接1

[21] Sagle A C,Van Wagner E M,Ju H,et al. PEG-coated reverse osmosis membranes:Desalination properties and fouling resistance [J]. Journal of Membrane Science,2009,340:92-108. 链接1

[22] Moshe Ben-Sasson,Katherine R Zodrow,Qi Genggeng,et al. Surface functionalization of thin- film composite membranes with copper nanoparticles for antimicrobial surface properties [J]. Environmental Science & Technology,2014,48:384-393. 链接1

[23] Debabrata Mukherjee,Ashish Kulkarni,William N Gill. Chemical treatment for improved performance of reverse osmosis membranes [J]. Desalination,1996,104:239-249.

[24] Steven Coker,Peter Sehn. Four years field experience with fouling resistant reverse osmosis membranes [J]. Desalination, 2000,132:211-215. 链接1

[25] Kang Guodong,Liu Ming,Lin Bin,et al. A novel method of surface modification on thin- film composite reverse osmosis membrane by grafting poly(ethylene glycol) [J]. Polymer, 2007,48:1165-1170. 链接1

[26] Zou H,Jin Y,Yang J,et al. Synthesis and characterization of thin film composite reverse osmosis membranes via novel interfacial polymerization approach [J]. Separation and Purification Technology,2010,72:256-262. 链接1

[27] Kang G D,Yu H J,Liu Z N,et al. Surface modification of a commercial thin film composite polyamide reverse osmosis membrane by carbodiimide- induced grafting with poly(ethylene glycol)derivatives [J]. Desalination,2011,275:252-259. 链接1

[28] Alberto Tiraferri,Chad D Vecitis,Menachem Elimelech. Covalent binding of bingle- walled carbon nanotubes to polyamide membranes for antimicrobial surface properties [J]. ACS Applied Materials & Interfaces,2011,3(8):2869-2877. 链接1

[29] Belfer S,Fainshtain R,Purinson Y,et al. Modification of NF membrane properties by in situ redox initiated graft polymerization with hydrophilic monomers [J]. Journal of Membrane Science,2004,239:55-64. 链接1

[30] Gilron J,Belfer S,Nyström M. Effects of surface modification on antifouling and performance properties of reverse osmosis membranes [J]. Desalination,2001,140:167-179. 链接1

[31] Freger V,Gilron J,Belfer S. TFC polyamide membranes modified by grafting of hydrophilic polymers:An FT-IR/AFM/TEM study [J]. Journal of Membrane Science,2002,209:283-292. 链接1

[32] Jeong B H,Hoek E M V,Yan Y S,et al. Interfacial polymerization of thin film nanocomposites:A new concept for reverse osmosis membranes [J]. Journal of Membrane Science,2007, 294:1-7. 链接1

[33] Rana D,Kim Y,Matsuura T,et al. Development of antifouling thin- film- composite membranes for seawater desalination [J]. Journal of Membrane Science,2011,367:110-118. 链接1

[34] Sung Ho Kim,Seung-Yeop Kwak,Byeong-Hyeok Sohn,et al. Design of TiO2 nanoparticle self-assembled aromatic polyamide thin- film-composite(TFC)membrane as an approach to solve biofouling problem [J]. Journal of Membrane Science,2003, 211:157-165. 链接1

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