[1] 张雨山, 魏杨杨, 曹震, 等. 反渗透膜的研究进展与展望[J]. 化学工业与工程, 2015, 32(5):8-19. ZHANG Y S, WEI Y Y, CAO Z, et al. Progress and prospect in the development of reverse osmosis membrane technology[J]. Chemical Industry and Engineering, 2015, 32(5):8-19.
[2] KIM S J, KO S H, KANG K H, et al. Direct seawater desalination by ion concentration polarization[J]. Nature Nanotechnology, 2010, 5(4):297-301.
[3] 刘天柱, 赵东风, 薛建良, 等. 低温多效蒸发系统进料方式的研究进展[J]. 化学与生物工程, 2014, 31(7):5-8. LIU T Z, ZHAO D F, XUE J L, et al. Research progress of feed mode in low-temperature multiple effect distillation system[J]. Chemistry and Bioengineering, 2014, 31(7):5-8.
[4] DARWISH M A, EI-DESSOUKY H. The heat recovery thermal vapour-compression desalting system:a comparison with other thermal desalination processes[J]. Applied Thermal Engineering, 1996, 16(6), 523-537.
[5] LEE K P, ARNOT T C, MATTIA D. A review of reverse osmosis membrane materials for desalination-development to date and future potential[J]. Journal of Membrane Science, 2011, 370(1/2):1-22.
[6] LI D, WANG H T. Recent developments in reverse osmosis desalination membranes[J]. Journal of Materials Chemistry, 2010, 20(22):4551-4566.
[7] SCHIFFLER M. Perspectives and challenges for desalination in the 21st century[J]. Desalination, 2004, 165:1-9.
[8] 张晨. 高通量反渗透复合膜制备研究[D]. 天津:天津大学, 2009. ZHANG C. Study on the preparation of composite reverse osmosis membrane for high flux[D]. Tianjin:Tianjin University, 2009.
[9] WU J H, WANG Z, YAN W T, et al. Improving the hydrophilicity and fouling resistance of RO membranes by surface immobilization of PVP based on a metal-polyphenol precursor layer[J]. Journal of Membrane Science, 2015, 496:58-69.
[10] ZOU L, VIDALIS I, STEELE D, et al. Surface hydrophilic modification of RO membranes by plasma polymerization for low organic fouling[J]. Journal of Membrane Science, 2011, 369(1/2):420-428.
[11] WAGNER E M V, SAGLE A C, SHARMA M M, et al. Surface modification of commercial polyamide desalination membranes using poly(ethylene glycol) diglycidyl ether to enhance membrane fouling resistance[J]. Journal of Membrane Science, 2011, 367(1/2):273-287.
[12] LIU H Y, BANDYOPADHYAY P, KSHETRI T, et al. Layer-by-layer assembled polyelectrolyte-decorated graphene multilayer film for hydrogen gas barrier application[J]. Composite Part B:Engineering, 2017, 114:339-347.
[13] AVRAM A M, AHMADIANNAMINI P, VU A, et al. Polyelectrolyte multilayer modified nanofiltration membranes for the recovery of ionic liquid from dilute aqueous solutions[J]. Journal of Applied Polymer Science, 2017, 134(39):45349.
[14] CHEN D D, WU M D, LI B C, et al. Layer-by-layer-assembled healable antifouling films[J]. Advanced Materials, 2015, 27(39):5882-5888.
[15] JIN W Q, TOUTIANOUSH A, TIEKE B. Use of polyelectrolyte layer-by-layer assemblies as nanofiltration and reverse osmosis membranes[J]. Langmuir, 2003, 19(7):2550-2553.
[16] TOUTIANOUSH A, JIN W Q, DELIGÖZ H, et al. Polyelectrolyte multilayer membranes for desalination of aqueous salt solutions and seawater under reverse osmosis conditions[J]. Applied Surface Science, 2005, 246(4):437-443.
[17] ISHIGAMI T, AMANO K, FUJⅡ A, et al. Fouling reduction of reverse osmosis membrane by surface modification via layer-by-layer assembly[J]. Separation and Purification Technology, 2012, 99(41):1-7.
[18] KOUKETSU T, DUAN S, KAI T, et al. PAMAM dendrimer composite membrane for CO2 separation:formation of a chitosan gutter layer[J]. Journal of Membrane Science, 2007, 287(1):51-59.
[19] RAVAL H D, RANA P S, MAITI S. A novel high-flux, thin-film composite reverse osmosis membrane modified by chitosan for advanced water treatment[J]. RSC Advances, 2015, 5(9):6687-6694.
[20] ZHOU Y, YU S C, GAO C J, 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(2):287-294.
[21] ANTONY A, FUDIANTO R, COX S, et al. Assessing the oxidative degradation of polyamide reverse osmosis membrane-accelerated ageing with hypochlorite exposure[J]. Journal of Membrane Science, 2010, 347(1):159-164.
[22] JONS S D, STUTTS K J, FERRITTO M S, et al. Treatment of composite polyamide membrane to improve performance:US5876602[P]. 1999-03-02.
[23] XU J, FENG X S, GAO C J. Surface modification of thin-film-composite polyamide membranes for improved reverse osmosis performance[J]. Journal of Membrane Science, 2011, 370(1/2):116-123.
[24] KANG G D, GAO C J, CHEN W D, et al. Study on hypochlorite degradation of aromatic polyamide reverse osmosis membrane[J]. Journal of Membrane Science, 2007, 300(1):165-171.
[25] GLATER J, HONG S K, ELIMELECH M. The search for a chlorine-resistant reverse osmosis membrane[J]. Desalination, 1994, 95(3):325-345.
[26] KWON J N, LECKIE J O. Hypochlorite degradation of crosslinked polyamide membranes(Ⅰ):Changes in chemical/morphological properties[J]. Journal of Membrane Science, 2006, 283(1/2):21-26.
[27] 魏新渝. 高耐氯性复合反渗透膜的制备研究[D]. 天津:天津大学, 2010. WEI X Y. Preparation of composite RO membrane with high chlorine resistance[D]. Tianjin:Tianjin University, 2010.
[28] LIU M H, CHEN Q, WANG L Z, et al. Improving fouling resistance and chlorine stability of aromatic polyamide thin-film composite RO membrane by surface grafting of polyvinyl alcohol (PVA)[J]. Desalination, 2015, 367:11-20.
[29] WEI X Y, WANG Z, XU J, et al. Surface modification of commercial aromatic polyamide reverse osmosis membranes by crosslinking treatments[J]. Chinese Journal of Chemical Engineering, 2013, 21(5):473-484.
[30] ZHAI X F, MENG J Q, LI R, et al. Hypochlorite treatment on thin film composite RO membrane to improve boron removal performance[J]. Desalination, 2011, 274(1):136-143.
[31] RAVAL H D, TRIVEDI J J, JOSHI S V, et al. Flux enhancement of thin film composite RO membrane by controlled chlorine treatment[J]. Desalination, 2010, 250(3):945-949.
[32] 孙昌盛. 芳香聚酰胺反渗透复合膜表面接枝壳聚糖(CS)及其性能研究[D]. 杭州:浙江理工大学, 2015. SUN C S. Study on the surface grafting of the aromatic polyamide thin-film composite reverse osmosis membrane with chitosan and the properties of the modified membrane[D]. Hangzhou:Zhejiang Sci-Tech University, 2015.
[33] 连冠楠. 废弃聚酰胺反渗透纳滤功能化及其脱盐浓缩过程研究[D]. 杭州:浙江工业大学, 2016. LIAN G N. Study on nanofiltration using abandoned polyamide reverse osmosis membrane and desalination and concentration[D]. Hangzhou:Zhejiang University of Technology, 2016. |