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反滲透膜的制備技術-資料下載頁

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【正文】 mbr. Sci. 2008, 315: 2027[25] 李娜, 劉忠洲, 續(xù)曙光, 耐污染膜聚乙烯醇膜的研究進展, 膜科學與技術,1999, 19: 1123[26] . Tang, . Kwon, . Leckie, Probing the nano and microscales of reverse osmosis membranes—A prehensive characterization of physiochemical properties of uncoated and coated membranes by XPS, TEM,ATRFTIR, and streaming potential measurements, J. Membr. Sci. 2007, 287:146156[27]. Kwon, Change of surface properties and performance due to chlorination of crosslinked polyamide membranes, . Dissertation, Stanford University,2005[28] . Miller, . Peppas, Diffusional effects during albumin adsorption on highly swollen poly (vinyl alcohol) hydrogels, Eur. Polym. J. 1988, 24: 611615[29] M. Hirose, S. Kuritagun, H. Ito, et al. Highly permeable posite reverse osmosis membrane, 19970108, US Patent 5,989,426[30]N. Yukio, O. Katsufumi, K. Masaru, A membrane treatment method for semipermeable membranes, 19840912, US patent 4,634,531[31] M. Elimelech, X. Zhu, . Childress, et al. Role of membrane surface morphology in colloidal fouling of cellulose acetate and posite aromatic polyamide reverse osmosis membranes, J. Membr. Sci. 1997, 127: 101109[32] 中國脫鹽協(xié)會, 歐洲脫鹽協(xié)會, 天津大學化工學院, 海水淡化工程技術研討班教材, 天津, [33] 宣理靜, 錢錦文, 陳幼芳, 張鵬, 層層自組裝聚電解質(zhì)多層膜的制備及在膜分離中的應用, 化學進展, 2006, 18: 950956[34] . Bruening, . Sullivan, Enhancing the IonTransport Selectivity of Multilayer Polyelectrolyte Membranes, Chem. Eur. J. 2002, 8:38323837[35] W. Jin, A. Toutianoush, B. Tieke, Use of Polyelectrolyte LayerbyLayer Assemblies as Nanofiltration and Reverse Osmosis Membranes, Langmuir,2003, 19: 25502553[36] Y. Zhou, S. Yu, C. Gao, et al. Surface modification of thin film posite polyamide membranes by electrostatic self deposition of polycations for improved fouling resistance, Sep. Purif. Technol. 2009, 66: 287294[37] . Jeong, . Hoek, Y. Yan, et al. Interfacial polymerization of thin film nanoposites: A new concept for reverse osmosis membranes, J. Membr. , 294: 17[38] . Jadav, . Singh, Synthesis of novel silicapolyamide nanoposite membrane with enhanced properties, J. Membr. Sci. 2009, 328: 257267[39] . Kwak, . Kim, . Kim, Hybrid organic/inorganic reverse osmosis(RO) membrane for bactericidal antifouling. 1. Preparation and characterization of TiO2 nanoparticles selfassembled aromatic polyamide thinfilm posite (TFC) membrane, Environ. Sci. Technol. 2001, 35:23882394[40]. Kim, . Kwak, B. Sohn, et al. Design of TiO2 nanoparticles selfassembled aromatic polyamide thinfilmposite (TFC) membrane as an approach to solve biofouling problem, J. Membr. Sci. 2003, 211: 157165[41] A. Kulkarni, D. Mukherjee, . Gill, Flux enhancement by hydrophilization of thin film posite reverse osmosis membranes, J. Membr. Sci. 1996, 114:3950[42] D. Mukherjee, A. Kulkarni, . Gill, Flux enhancement of reverse osmosis membranes by chemical surface modification, J. Membr. Sci. 1994, 97:231249[43] . Cadotte, H. Racchhini, Treatment of posite polyamide membranes with patible oxidants, 19901002, US Patent, 4,960,518[44] S. Belfer, Y. Purinson, R. Fainshtein, et al. Surface modification of mercial posite polyamide reverse osmosis membranes, J. Membr. Sci. 1998, 139:175181[45] S. Belfer, Y. Purinson, O. Kedem, Surface modification of mercial polyamide reverse osmosis membranes by radical grafting: An ATRFTIR study,Acta Polym. 1998, 49: 574582[46] V. Freger, J. Gilron, S. Belfer, TFC polyamide membranes modified by grafting of hydrophilic polymers: an FTIR/AFM/TEM study, J. Membr. Sci. 2002, 209:283292[47] . Kim, . Park, . Lee, et al. Surface modification of nanofiltration membranes to improve the removal of organic micropollutants (EDCs and PhACs) in drinking water treatment: Graft polymerization and crosslinking followed by functional group substitution, J. Membr. Sci. 2008, 321: 190198[48] G. Kang, M. Liu, B. Lin, et al. A novel method of surface modification on thinfilm posite reverse osmosis membrane by grafting poly(ethyleneglycol), Polymer, 2007, 48: 11651170
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