[1] NOBE R D,STERN S A. Membrane separation technology-principles and applications:principle of electrodialysis and related processes [M].1st ed. British:Elesevier Science BV,1995:214-278. [2] XU T W. Ion exchange membranes:state of their development and perspective [J]. J. Membr. Sci.,2005,263(1/2):1-29. [3] OSTWALD W. Elektrische eigenschaften halbdurchlässiger scheidewände [J]. Z. Physik. Chemie.,1890,6:71-82. [4] DONNAN F G. The theory of membrane equilibrium in oresence of a non-dialyzable electrolyte [J]. Z. Electrochem.,1911,17:572-581. [5] MICHAELIS L,FUJITA A. The electric phenomen and ion permeability of membranes. Ⅱ. Permeability of apple peel [J]. Biochem. Z.,1925,158:28-37. [6] WASSENEGGER H,JAEGER K. Effecting cation-exchange in removing calcium from hard waters:US2204539[P]. 1940. [7] MEYER K H,STRAUSS H. La perméabilité des membranes Ⅵ,Sur le passage du courant électrique a traversdes membranes sélective [J]. Helv. Chim.Acta,1940,23:795-800. [8] JUDA W,MCRAE W A. Coherent ion-exchange gels and membranes [J]. J. Am. Chem. Soc.,1950,72(2):1044-1044. [9] 徐铜文,黄川徽. 离子交换膜技术及其应用 [M]. 北京:化学工业出版社,2008. [10] XU T W,HUANG C H. Electrodialysis with bipolar membranes (EDBM) for sustainable development (critical review) [J]. Environ. Sci. Technol.,2006,40(17):5233-5243. [11] ZHANG Z H,XU T W. Proton-conductive polyimides consisting of naphthalenediimide and sulfonated units alternately segmented by long aliphatic spacers [J]. J. Mater. Chem. A,2014,2:11583-11585. [12] ZHANG Z H,WU L,VARCOE J,et al. Aromatic polyelectrolytes via polyacylation of pre-quarternized monomers for alkaline fuel cells [J]. J. Mater. Chem. A,2013,1:2595-2601. [13] YANG Z J,ZHOU J H,WANG S W,et al. Strategy to construct alkali stable anion exchange membranes bearing ammonium groups via flexible spacers [J]. J. Mater. Chem. A,2015,3:15015-15019. [14] MONDAL A N,DAI C H,PAN J F,et al. Novel pendant benzene di-sulfonic acid blended SPPO membranes for alkali recovery:fabrication and properties [J]. ACS Appl. Mater. Inter.,2015,7(29):15944-15954. [15] STACHERA D M,CHILDS R F,MIKA A M,et al. Acid recovery using diffusion dialysis with poly (4-vinyl pyridine)-filled microporous membranes [J]. J. Membr. Sci.,1998,148(1):119-127. [16] WANG C,WU C M,WU Y H,et al. Polyelectrolyte complex/PVA membranes for diffusion dialysis [J]. J. Hazard. Mater.,2013,261:114-122. [17] WU Y H,LUO J Y,WU C M,et al. Multi-silicon copolymers used as versatile crosslinking agents for preparing excellent anion exchange hybrid membranes [J]. J. Phys. Chem. B,2011,115:6474–6483. [18] 孙宏伟,张国俊. 化学工程——从基础研究到工业应用 [M]. 北京:化学工业出版社,2015. [19] 吴永会. 有机无机杂化离子交换膜研究 [D]. 合肥:中国科学技术大学,2011. [20] WU Y H,GU J J,WU C M,et al. PVA-based cation exchange hybrid membranes with multifunctional groups prepared from ternary multisilicon copolymer [J]. Sep. Purif. Technol,2013,104:45-54. [21] KLAYSOM C,MARSCHALL R,MOON S H,et al. Preparation of porous composite ion-exchange membranes for desalination application [J]. J. Mater. Chem.,2011,21:7401-7409. [22] SUN F J,WU C M,WU Y H,et al. Porous BPPO-based membranes modified by multisilicon copolymer for application in diffusion dialysis [J]. J. Membr. Sci.,2014,450:103-110. [23] LIN X C,SHAMSAEI E,KONG B,et al. Fabrication of asymmetrical diffusion dialysis membranes for rapid acid recovery with high purity [J]. J. Mater. Chem. A,2015,3:24000-24007. [24] ZHANG H Z,ZHANG H M,LI X F,et al. Nanofiltration (NF) membranes:the next generation separators for all vanadium redox flow batteries (VRBs)? [J]. Energy Enviro. Sci.,2011,4:1676-1679. [25] ZHANG H Z,ZHANG H M,ZHANG F X,et al. Advanced charged membranes with highly symmetric spongy structures for vanadium flow battery application [J]. Energy Environ. Sci.,2013,6:776-781. [26] LI Y,LI X F,CAO J Y,et al. Composite porous membranes with an ultrathin selective layer for vanadium flow batteries [J]. Chem. Commun.,2014,50:4596-4599. [27] ZHAO Y,LI M,YUAN Z,et al. Advanced charged sponge-like membrane with ultrahigh stability and selectivity for vanadium flow batteries [J]. Adv. Funct. Mater.,2016,26:210-218. [28] DANG H S,WEIBER E A,JANNASCH P. Poly(phenylene oxide) functionalized with quaternary ammonium groups via flexible alkyl spacers for high-performance anion exchange membranes [J]. J. Mater. Chem. A,2015,3:5280-5284. [29] NOONAN K J T,HUGAR K M,KOSTALIKIV H A,et al. Phosphonium-functionalized polyethylene:a new class of base-stable alkaline anion exchange membranes [J]. J. Am. Chem. Soc.,2012,134(44):18161-18164. [30] ZHANG B Z,GU SH,WANG J H. Tertiary sulfonium as a cationic functional group for hydroxide exchange membranes [J]. RSC Adv.,2012,2:12683-12685. [31] RAN J,WU L,VARCOE J R,et al. Development of imidazolium-type alkaline anion exchange membranes for fuel cell application [J]. J. Membr. Sci.,2012,415/416:242-249. [32] LIN X C,WU L,LIU Y B,et al. Alkali resistant and conductive guanidinium-based anion-exchange membranes for alkaline polymer electrolyte fuel cells [J]. J. Power Sources,2012,217:373- 380. [33] LUO J Y,WU C M,XU T W,et al. Diffusion dialysis-concept,principle and applications [J]. J. Membr. Sci.,2011,366:1-16. [34] WU C M,WU Y H,LUO J Y,et al. Anion exchange hybrid membranes from PVA and multi-alkoxy silicon copolymer tailored for diffusion dialysis process [J]. J. Membr. Sci.,2010,356(1/2):96-104. [35] WU Y H,WU C M,LI Y,et al. PVA-silica anion-exchange hybrid membranes prepared through a copolymer crosslinking agent [J]. J. Membr. Sci.,2010,350 (1/2):322-332. [36] WANG H,WU C M,WU Y H,et al. Cation exchange hybrid membranes based on PVA for alkali recovery through diffusion dialysis [J]. J. Membr. Sci.,2011,376 (1/2):233-240. [37] WU Y H,HAO J W,WU C M,et al. Cation exchange PVA/SPPO/SiO2 membranes with double organic phases for alkali recovery [J]. J. Membr. Sci.,2012,423/424:383-391. [38] WU C M,GU J J,WU Y H,et al. Carboxylic acid type PVA-based hybrid membranes for alkali recovery using diffusion dialysis [J]. Sep. Puri. Technol.,2012,92:21-29. [39] WU Y H,LU J Y,WU C M,et al. Bionic multisilicon copolymers used as novel cross-linking agents for preparing anion exchange hybrid membranes [J] . J. Phys. Chem. B,2011,115:6474-6483. [40] LUO J Y,WU C M,WU Y H,et al. Diffusion dialysis of hydrochloride acid at different temperatures using PPO-SiO2 hybrid anion exchange membranes [J]. J. Membr. Sci.,2010,347:240-249. [41] 徐铜文. 中国离子交换膜技术的发展状况及国家需求[C]// 循环经济理论与实践——长三角循环经济论坛暨2006年安徽博士科技论坛论文集,合肥:安徽大学出版社,2006:402-405. [42] LI J,ZHOU M,LIN J,et al. Mono-valent cation selective membranes for electrodialysis by introducing polyquaternium-7 in a commercial cation exchange membrane [J] . J. Membr. Sci., 2015,486:89-96. [43] WANG M,JIA Y,YAO T T,et al. The endowment of monovalent selectivity to cation exchange membrane by photo-induced covalent immobilization and self-crosslinking of chitosan [J]. J. Membr. Sci.,2013,442:39-47. [44] WANG M,LIU X,JIA Y,et al. The improvement of comprehensive transport properties to heterogeneous cation exchange membrane by the covalent immobilization of polyethyleneimine [J]. Sep. Purif. Technol.,2015,140:69-76. [45] HU Y,WANG M,WANG D,et al. Feasibility study on surface modification of cation exchange membranes by quaternized chitosan for improving its selectivity [J] . J. Membr. Sci.,2008,319:5-9. [46] WANG X,WANG M,JIA Y,et al. Surface modification of anion exchange membrane by covalent grafting for imparting permselectivity between specific anions [J]. Electrochimica Acta,2015,174:1113-1121. [47] WANG M,WANG X,JIA Y,et al. An attempt for improving electrodialytic transport properties of a heterogeneous anion exchange membrane [J]. Desalination,2014,351:163-170. [48] GE L,LIU X,WANG G,et al. Preparation of proton selective membranes through constructing H+ transfer channels by acid-base pairs [J]. J. Membr. Sci.,2015,475:273-280. [49] 徐铜文. 膜化学与技术教程 [M]. 合肥:中国科学技术大学出版社,2003. [50] GE L,WU B,LI Q,et al. Electrodialysis with nanofiltration membrane (EDNF) for high-efficiency cations fractionation [J]. J. Membr. Sci.,2016,498:192-200. [51] XU J,LU S,FU D. Recovery of hydrochloric acid from the waste acid solution by diffusion dialysis [J]. J. Hazard. Mater.,2009,165(1):832-837. [52] XU T W,YANG W H. Tuning the diffusion dialysis performance by surface cross-linking of PPO anion exchange membranes-simultaneous recovery of sulfuric acid and nickel from electrolysis spent liquor of relatively low acid concentration [J]. J. Hazard. Mater.,2004,109(1):157-164. [53] WEI C,LI X,DENG Z,et al. Recovery of H2SO4 from an acid leach solution by diffusion dialysis [J]. J. Hazard. Mater.,2010,176(1):226-230. [54] LAN S,WEN X,ZHU Z,et al. Recycling of spent nitric acid solution from electrodialysis by diffusion dialysis [J]. Desalination,2011,278(1):227-230. [55] XIAO X,WU C M,CUI P,et al. Cation exchange hybrid membranes from SPPO and multi-alkoxy silicon copolymer:preparation,properties and diffusion dialysis performances for sodium hydroxide recovery [J]. J. Membr. Sci.,2011,379(1):112-120. [56] GU J J,WU C M,WU Y H,et al. PVA-based hybrid membranes from cation exchange multisilicon copolymer for alkali recovery [J]. Desalination,2012,304:25-32. [57] 徐铜文. 一种螺旋卷式扩散渗析膜组件及其制备方法:201010144042.4 [P]. 2010-04-09. [58] HAO J W,WU Y H,XU T W. Cation exchange hybrid membranes preparated from PVA and multisilicon copolymer for application in alkali recovery [J]. J. Membr. Sci.,2013,425/426:156-162. [59] YAN H Y,XUE S,WU C M,et al. Separation of NaOH and NaAl(OH)4 in alumina alkaline solution through diffusion dialysis and electrodialysis [J]. J. Membr. Sci.,2014,469:436-446. [60] YAN H Y,WU C M,WU Y H. Optimized process for separating NaOH from sodium aluminate solution coupling of electrodialysis and electro-electrodialysis [J]. Ind. Eng. Chem. Res.,2015,54:1876-1886. [61] ZHANG X,LI C R,WANG X L,et al. Recovery of hydrochloric acid from simulated chemosynthesis aluminum foils wastewater:an integration of diffusion dialysis and conventional electrodialysis [J]. J. Membr. Sci.,2012,409/410:257-263. [62] ZHUANG J X,CHEN Q,WANG S,et al. Zero discharge process for foil industry waste acid reclamation:coupling of diffusion dialysis and electrodialysis with bipolar membranes [J]. J. Membr. Sci.,2013,432:90-96. [63] HUANG C H,XU T W. Application of electrodialysis to the production of organic acids:state-of-the-art and recent developments (review) [J]. J. Membrane Sci.,2007,288:1-12. [64] WANG Y M,ZHANG X,XU T W. Integration of conventional electrodialysis and electrodialysis with bipolar membranes for production of organic acids [J]. J. Membr. Sci., 2010,365:294-301. [65] ZHANG Y,PINOY L,MEESSCHAERT B,et al. A natural driven membrane process for brackish and wastewater treatment:photovoltaic powered ED and FO hybrid system [J]. Environ. Sci. Technol,2013,47:10548-10555. |