Chinese Journal of Chemical Engineering ›› 2017, Vol. 25 ›› Issue (11): 1616-1626.DOI: 10.1016/j.cjche.2017.05.004
Jing Zhao, Wanqin Jin
收稿日期:
2016-12-14
修回日期:
2017-05-14
出版日期:
2017-11-28
发布日期:
2018-01-18
通讯作者:
Wanqin Jin,E-mail address:wqjin@njtech.edu.cn
基金资助:
Supported by the National Natural Science Foundation of China (21490585, 21606123), the Jiangsu Province Natural Science Foundation for the Youth (BK20160980), the Innovative Research Team Program by the Ministry of Education of China (IRT13070), Top-notch Academic Programs Project of Jiangsu Higher Education Institutions (TAPP) and A Project Funded by the Priority Academic Program Development of Jiangsu Higher Education Institutions (PAPD).
Jing Zhao, Wanqin Jin
Received:
2016-12-14
Revised:
2017-05-14
Online:
2017-11-28
Published:
2018-01-18
Contact:
Wanqin Jin,E-mail address:wqjin@njtech.edu.cn
Supported by:
Supported by the National Natural Science Foundation of China (21490585, 21606123), the Jiangsu Province Natural Science Foundation for the Youth (BK20160980), the Innovative Research Team Program by the Ministry of Education of China (IRT13070), Top-notch Academic Programs Project of Jiangsu Higher Education Institutions (TAPP) and A Project Funded by the Priority Academic Program Development of Jiangsu Higher Education Institutions (PAPD).
摘要: Alcohol-permselectivity pervaporation has been arousing increasingly more attention in bioalcohol production due to the advantages of environmental friendliness, low energy consumption and easy coupling with fermentation process. With the intrinsic feature of larger molecules preferentially permeating and the consequent inferiority in selective diffusion, the development of alcohol-permselective membrane is relatively retarded compared with water-permselective membrane. This review presents the prevalent membrane materials utilized for alcohol-permselective pervaporation and emphatically expatiates the representative and important developments in the past five years from the aspect of tuning confined structure in membranes. In particular, the diverse structure tuning methods are described with the classifications of physical structure and chemical structure. The corresponding structure-performance relationships in alcohol-permselective pervaporation membranes are also analyzed to identify the objective of structure optimization. Furthermore, the tentative perspective on the possible future directions of alcohol-permselective pervaporation membrane is briefly presented.
Jing Zhao, Wanqin Jin. Manipulation of confined structure in alcohol-permselective pervaporation membranes[J]. Chinese Journal of Chemical Engineering, 2017, 25(11): 1616-1626.
Jing Zhao, Wanqin Jin. Manipulation of confined structure in alcohol-permselective pervaporation membranes[J]. Chin.J.Chem.Eng., 2017, 25(11): 1616-1626.
[1] G. Liu, W. Wei, W. Jin, Pervaporation membranes for biobutanol production, ACS Sustain. Chem. Eng. 2(4) (2014) 546-560. [2] C. Fu, D. Cai, S. Hu, Q. Miao, Y. Wang, P. Qin, Z. Wang, T. Tan, Ethanol fermentation integrated with PDMS composite membrane:An effective process, Bioresour. Technol. 200(2016) 648-657. [3] S. Yi, B. Qi, Y. Su, Y. Wan, Effects of fermentation by-products and inhibitors on pervaporative recovery of biofuels from fermentation broths with novel silane modified silicalite-1/PDMS/PAN thin film composite membrane, Chem. Eng. J. 279(2015) 547-554. [4] H. Fan, Q. Shi, H. Yan, S. Ji, J. Dong, G. Zhang, Simultaneous spray self-assembly of highly loaded ZIF-8-PDMS nanohybrid membranes exhibiting exceptionally high biobutanol-permselective pervaporation, Angew. Chem. Int. Ed. 53(22) (2014) 5578-5582. [5] Y.K. Ong, G.M. Shi, N.L. Le, Y.P. Tang, J. Zuo, S.P. Nunes, T.-S. Chung, Recent membrane development for pervaporation processes, Prog. Polym. Sci. 57(2016) 1-31. [6] G. Zhang, J. Li, N. Wang, H. Fan, R. Zhang, G. Zhang, S. Ji, Enhanced flux of polydimethylsiloxane membrane for ethanol permselective pervaporation via incorporation of MIL-53 particles, J. Membr. Sci. 492(2015) 322-330. [7] C. Xue, G.-Q. Du, L.-J. Chen, J.-G. Ren, J.-X. Sun, F.-W. Bai, S.-T. Yang, A carbon nanotube filled polydimethylsiloxane hybrid membrane for enhanced butanol recovery, Sci. Rep. 4(2014). [8] N. Wang, G. Shi, J. Gao, J. Li, L. Wang, H. Guo, G. Zhang, S. Ji, MCM-41@ZIF-8/PDMS hybrid membranes with micro-and nanoscaled hierarchical structure for alcohol permselective pervaporation, Sep. Purif. Technol. 153(2015) 146-155. [9] A. Rom, A. Friedl, Investigation of pervaporation performance of POMS membrane during separation of butanol from water and the effect of added acetone and ethanol, Sep. Purif. Technol. 170(2016) 40-48. [10] W. Zhang, C. Xia, L. Li, Z. Ren, J. Liu, X. Yang, Preparation and application of a novel ethanol permselective poly(vinyltriethoxysilane) membrane, RSC Adv. 4(28) (2014) 14592. [11] S.Claes, P. Vandezande, S.Mullens, K. DeSitter, R. Peeters, M.K.Van Bael, Preparation and benchmarking of thin film supported PTMSP-silica pervaporation membranes, J. Membr. Sci. 389(2012) 265-271. [12] X. Zhuang, X. Chen, Y. Su, J. Luo, S. Feng, H. Zhou, Y. Wan, Surface modification of silicalite-1 with alkoxysilanes to improve the performance of PDMS/silicalite-1 pervaporation membranes:Preparation, characterization and modeling, J. Membr. Sci. 499(2016) 386-395. [13] Y. Lan, N. Yan, W. Wang, Application of PDMS pervaporation membranes filled with tree bark biochar for ethanol/water separation, RSC Adv. 6(53) (2016) 47637-47645. [14] J. Li, S. Ji, G. Zhang, H. Guo, Surface-modification of poly(dimethylsiloxane) membrane with self-assembled monolayers for alcohol permselective pervaporation, Langmuir 29(25) (2013) 8093-8102. [15] G.L. Jadav, V.K. Aswal, P.S. Singh, In-situ preparation of polydimethylsiloxane membrane with long hydrophobic alkyl chain for application in separation of dissolved volatile organics from wastewater, J. Membr. Sci. 492(2015) 95-106. [16] W. Wei, S. Xia, G. Liu, X. Gu, W. Jin, N. Xu, Interfacial adhesion between polymer separation layer and ceramic support for composite membrane, AIChE J. 56(6) (2010) 1584-1592. [17] S.L. Schmidt, M.D. Myers, S.S. Kelley, J.D. McMillan, N. Padukone, Evaluation of PTMSP membranes in achieving enhanced ethanol removal from fermentations by pervaporation, Appl. Biochem. Biotechnol. 63-5(1997) 469-482. [18] I.L. Borisov, A.O. Malakhov, V.S. Khotimsky, E.G. Litvinova, E.S. Finkelshtein, N.V. Ushakov, V.V. Volkov, Novel PTMSP-based membranes containing elastomeric fillers:Enhanced 1-butanol/water pervaporation selectivity and permeability, J. Membr. Sci. 466(2014) 322-330. [19] S. Claes, P. Vandezande, S. Mullens, R. Leysen, K. De Sitter, A. Andersson, F.H.J. Maurer, H. Van den Rul, R. Peeters, M.K. Van Bael, High flux composite PTMSPsilica nanohybrid membranes for the pervaporation of ethanol/water mixtures, J. Membr. Sci. 351(1-2) (2010) 160-167. [20] M. ?ák, M. Klepic, L.?. Štastná, Z. Sedláková, H. Vychodilová, Š. Hovorka, K. Friess, A. Randová, L. Bro?ová, J.C. Jansen, M.R. Khdhayyer, P.M. Budd, P. Izák, Selective removal of butanol from aqueous solution by pervaporation with a PIM-1 membrane and membrane aging, Sep. Purif. Technol. 151(2015) 108-114. [21] O. Salinas, X.H. Ma, E. Litwiller, I. Pinnau, Ethylene/ethane permeation, diffusion and gas sorption properties of carbon molecular sieve membranes derived from the prototype ladder polymer of intrinsic microporosity (PIM-1), J. Membr. Sci. 504(2016) 133-140. [22] H.Y. Zhao, Q. Xie, X.L. Ding, J.M. Chen, M.M. Hua, X.Y. Tan, Y.Z. Zhang, High performance post-modified polymers of intrinsic microporosity (PIM-1) membranes based on multivalent metal ions for gas separation, J. Membr. Sci. 514(2016) 305-312. [23] H.-W. Yen, Z.-H. Chen, I.K. Yang, Use of the composite membrane of poly(etherblock-amide) and carbon nanotubes (CNTs) in a pervaporation system incorporated with fermentation for butanol production by Clostridium acetobutylicum, Bioresour. Technol. 109(2012) 105-109. [24] S. Liu, G. Liu, X. Zhao, W. Jin, Hydrophobic-ZIF-71 filled PEBA mixed matrix membranes for recovery of biobutanol via pervaporation, J. Membr. Sci. 446(2013) 181-188. [25] S. Liu, G. Liu, J. Shen, W. Jin, Fabrication of MOFs/PEBA mixed matrix membranes and their application in bio-butanol production, Sep. Purif. Technol. 133(2014) 40-47. [26] H.F. Tan, Y.H. Wu, Y. Zhou, Z.N. Liu, T.M. Li, Pervaporative recovery of n-butanol from aqueous solutions MCM-41 filled PEBA mixed matrix membrane, J. Membr. Sci. 453(2014) 302-311. [27] Y.K. Li, J. Shen, K.C. Guan, G.P. Liu, H.L. Zhou, W.Q. Jin, PEBA/ceramic hollow fiber composite membrane for high-efficiency recovery of bio-butanol via pervaporation, J. Membr. Sci. 510(2016) 338-347. [28] A.E. Ozcam, N. Petzetakis, S. Silverman, A.K. Jha, N.P. Balsara, Relationship between segregation strength and permeability of ethanol/water mixtures through block copolymer membranes, Macromolecules 46(24) (2013) 9652-9658. [29] H.S. Samanta, S.K. Ray, Separation of ethanol from water by pervaporation using mixed matrix copolymer membranes, Sep. Purif. Technol. 146(2015) 176-186. [30] C.C. Tong, Y.X. Bai, J.P. Wu, L. Zhang, L.R. Yang, J.W. Qian, Pervaporation recovery of acetone-butanol from aqueous solution and fermentation broth using HTPB-based polyurethaneurea membranes, Sep. Sci. Technol. 45(6) (2010) 751-761. [31] J. Chen, H. Huang, L. Zhang, H. Zhang, A novel high-flux asymmetric p(VDF-HFP) membrane with a dense skin for ethanol pervaporation, RSC Adv. 4(46) (2014) 24126. [32] K.V. Agrawal, B. Topuz, T.C.T. Pham, T.H. Nguyen, N. Sauer, N. Rangnekar, H. Zhang, K. Narasimharao, S.N. Basahel, L.F. Francis, C.W. Macosko, S. Al-Thabaiti, M. Tsapatsis, K.B. Yoon, Oriented MFI membranes by gel-less secondary growth of sub-100 nm MFI-nanosheet seed layers, Adv. Mater. 27(21) (2015) 3243-3249. [33] K. Varoon, X. Zhang, B. Elyassi, D.D. Brewer, M. Gettel, S. Kumar, J.A. Lee, S. Maheshwari, A. Mittal, C.-Y. Sung, M. Cococcioni, L.F. Francis, A.V. McCormick, K.A. Mkhoyan, M. Tsapatsis, Dispersible exfoliated zeolite nanosheets and their application as a selective membrane, Science 334(6052) (2011) 72-75. [34] L. Chai, J. Yang, J. Lu, D. Yin, Y. Zhang, J. Wang, Ethanol perm-selective B-ZSM-5 zeolite membranes from dilute solutions, AIChE J. 62(7) (2016) 2447-2458. [35] Y. Peng, H. Lu, Z. Wang, Y. Yan, Microstructural optimization of MFI-type zeolite membranes for ethanol-water separation, J. Mater. Chem. A 2(38) (2014) 16093-16100. [36] S. Xia, Y. Peng, Z. Wang, Microstructure manipulation of MFI-type zeolite membranes on hollow fibers for ethanol-water separation, J. Membr. Sci. 498(2016) 324-335. [37] J.A. Stoeger, J. Choi, M. Tsapatsis, Rapid thermal processing and separation performance of columnar MFI membranes on porous stainless steel tubes, Energy Environ. Sci. 4(9) (2011) 3479-3486. [38] X. Zou, P. Bazin, F. Zhang, G. Zhu, V. Valtchev, S. Mintova, Ethanol recovery from water using silicalite-1 membrane:An operando infrared spectroscopic study, Chem. Plus. Chem. 77(6) (2012) 437-444. [39] X. Shu, X. Wang, Q. Kong, X. Gu, N. Xu, High-flux MFI zeolite membrane supported on YSZ hollow fiber for separation of ethanol/water, Ind. Eng. Chem. Res. 51(37) (2012) 12073-12080. [40] L. Shan, J. Shao, Z. Wang, Y. Yan, Preparation of zeolite MFI membranes on alumina hollow fibers with high flux for pervaporation, J. Membr. Sci. 378(1-2) (2011) 319-329. [41] X.-L. Zhang, M.-H. Zhu, R.-F. Zhou, X.-S. Chen, H. Kita, Synthesis of a silicalite zeolite membrane in ultradilute solution and its highly selective separation of organic/water mixtures, Ind. Eng. Chem. Res. 51(35) (2012) 11499-11508. [42] M. Weyd, H. Richter, P. Puhlfurß, I. Voigt, C. Hamel, A.S. Morgenstern, Transport of binary water-ethanol mixtures through a multilayer hydrophobic zeolite membrane, J. Membr. Sci. 307(2008) 239-248. [43] A. Huang, Q. Liu, N. Wang, J. Caro, Highly hydrogen permselective ZIF-8 membranes supported on polydopamine functionalized macroporous stainless-steel-nets, J. Mater. Chem. A 2(22) (2014) 8246-8251. [44] J.W. Hou, P.D. Sutrisna, Y.T. Zhang, V. Chen, Formation of ultrathin, continuous metal-organic framework membranes on flexible polymer substrates, Angew. Chem. Int. Ed. 55(12) (2016) 3947-3951. [45] J. Fu, S. Das, G. Xing, T. Ben, V. Valtchev, S. Qiu, Fabrication of COF-MOF composite membranes and their highly selective separation of H2/CO2, J. Am. Chem. Soc. 138(24) (2016) 7673-7680. [46] X.L. Dong, Y.S. Lin, Synthesis of an organophilic ZIF-71 membrane for pervaporation solvent separation, Chem. Commun. 49(2013) 1196-1198. [47] K. Huang, Q.Q. Li, G.P. Liu, J. Shen, K.C. Guan, W.Q. Jin, A ZIF-71 hollow fiber membrane fabricated by contra-diffusion, ACS Appl. Mater. Interfaces 7(30) (2015) 16157-16160. [48] S.H. Kim, S.Y. Kwak, T. Suzuki, Positron annihilation spectroscopic evidence to demonstrate the flux-enhancement mechanism in morphology-controlled thinfilm-composite (TFC) membrane, Environ. Sci. Technol. 39(6) (2005) 1764-1770. [49] C. Gao, M. Zhang, Z. Jiang, J. Liao, X. Xie, T. Huang, J. Zhao, J. Bai, F. Pan, Preparation of a highly water-selective membrane for dehydration of acetone by incorporating potassium montmorillonite to construct ionized water channel, Chem. Eng. Sci. 135(2015) 461-471. [50] T.T. Moore, W.J. Koros, Non-ideal effects in organic-inorganic materials for gas separation membranes, J. Mol. Struct. 739(1-3) (2005) 87-98. [51] G. Liu, W.-S. Hung, J. Shen, Q. Li, Y.-H. Huang, W. Jin, K.-R. Lee, J.-Y. Lai, Mixed matrix membranes with molecular-interaction-driven tunable free volumes for efficient bio-fuel recovery, J. Mater. Chem. A 3(8) (2015) 4510-4521. [52] M.J. Raaijmakers, M.A. Hempenius, P.M. Schon, G.J. Vancso, A. Nijmeijer, M. Wessling, N.E. Benes, Sieving of hot gases by hyper-cross-linked nanoscale-hybrid membranes, J. Am. Chem. Soc. 136(1) (2014) 330-335. [53] L.H. Wee, Y. Li, K. Zhang, P. Davit, S. Bordiga, J. Jiang, I.F.J. Vankelecom, J.A. Martens, Submicrometer-sized ZIF-71 filled organophilic membranes for improved bioethanol recovery:Mechanistic insights by monte carlo simulation and FTIR spectroscopy, Adv. Funct. Mater. 25(4) (2015) 516-525. [54] P.V. Naik, S. Kerkhofs, J.A. Martens, I.F.J. Vankelecom, PDMS mixed matrix membranes containing hollow silicalite sphere for ethanol/water separation by pervaporation, J. Membr. Sci. 502(2016) 48-56. [55] N. Wang, J. Liu, J. Li, J. Gao, S. Ji, J.-R. Li, Tuning properties of silicalite-1 for enhanced ethanol/water pervaporation separation in its PDMS hybrid membrane, Microporous Mesoporous Mater. 201(2015) 35-42. [56] X. Han, X. Zhang, X. Ma, J. Li, Modified ZSM-5/polydimethylsiloxane mixed matrix membranes for ethanol/water separation via pervaporation, Polym. Compos. 37(4) (2016) 1282-1291. [57] G. Liu, F. Xiangli, W. Wei, S. Liu, W. Jin, Improved performance of PDMS/ceramic composite pervaporation membranes by ZSM-5 homogeneously dispersed in PDMS via a surface graft/coating approach, Chem. Eng. J. 174(2-3) (2011) 495-503. [58] X. Liu, Y. Li, Y. Liu, G. Zhu, J. Liu, W. Yang, Capillary supported ultrathin homogeneous silicalite-poly(dimethylsiloxane)nanocompositemembraneforbio-butanol recovery, J. Membr. Sci. 369(1-2) (2011) 228-232. [59] Y. Huang, P. Zhang, J. Fu, Y. Zhou, X. Huang, X. Tang, Pervaporation of ethanol aqueous solution by polydimethylsiloxane/polyphosphazene nanotube nanocomposite membranes, J. Membr. Sci. 339(1-2) (2009) 85-92. [60] S. Qiu, M. Xue, G. Zhu, Metal-organic framework membranes:From synthesis to separation application, Chem. Soc. Rev. 43(16) (2014) 6116-6140. [61] N.C. Su, D.T. Sun, C.M. Beavers, D.K. Britt, W.L. Queen, J.J. Urban, Enhanced permeation arising from dual transport pathways in hybrid polymer-MOF membranes, Energy Environ. Sci. 9(3) (2016) 922-931. [62] J.E. Bachman, Z.P. Smith, T. Li, T. Xu, J.R. Long, Enhanced ethylene separation and plasticization resistance in polymer membranes incorporating metal-organic framework nanocrystals, Nat. Mater. 15(8) (2016) 845-849. [63] T. Rodenas, I. Luz, G. Prieto, B. Seoane, H. Miro, A. Corma, F. Kapteijn, F.X. Llabres i Xamena, J. Gascon, Metal-organic framework nanosheets in polymer composite materials for gas separation, Nat. Mater. 14(1) (2015) 48-55. [64] X.-L. Liu, Y.-S. Li, G.-Q. Zhu, Y.-J. Ban, L.-Y. Xu, W.-S. Yang, An organophilic pervaporation membrane derived from metal-organic framework nanoparticles for efficient recovery of bio-alcohols, Angew. Chem. Int. Ed. 50(45) (2011) 10636-10639. [65] Y. Li, L.H. Wee, J.A. Martens, I.F.J. Vankelecom, ZIF-71 as a potential filler to prepare pervaporation membranes for bio-alcohol recovery, J. Mater. Chem. A 2(26) (2014) 10034-10040. [66] Q. Liu, B. Huang, A. Huang, Polydopamine-based superhydrophobic membranes for biofuel recovery, J. Mater. Chem. A 1(38) (2013) 11970. [67] H. Ni, H. Zhang, X. Wang, X. Wang, Pervaporation performance of polystyrene membrane surface with perfluoroalkyl groups, J. Appl. Polym. Sci. 106(6) (2007) 3975-3982. [68] W. Kujawski, S. Krajewska, M. Kujawski, L. Gazagnes, A. Larbot, M. Persin, Pervaporation properties of fluoroalkylsilane (FAS) grafted ceramic membranes, Desalination 205(1-3) (2007) 75-86. [69] X. Zhuang, X. Chen, Y. Su, J. Luo, W. Cao, Y. Wan, Improved performance of PDMS/silicalite-1 pervaporation membranes via designing new silicalite-1 particles, J. Membr. Sci. 493(2015) 37-45. [70] M. Krea, D. Roizard, N. Moulai-Mustefa, D. Sacco, Synthesis of polysiloxane-imide membranes-application tothe extraction of organics from water mixtures, Desalination 163(1-3) (2004) 203-206. [71] T. Uragami, T. Doi, T. Miyata, Control of permselectivity with surface modifications of poly 1-(trimethylsilyl)-1-propyne membranes, Int. J. Adhes. Adhes. 19(5) (1999) 405-409. [72] S. Araki, D. Gondo, S. Imasaka, H. Yamamoto, Permeation properties of organic compounds from aqueous solutions through hydrophobic silica membranes with different functional groups by pervaporation, J. Membr. Sci. 514(2016) 458-466. [73] L. Gao, M. Alberto, P. Gorgojo, G. Szekely, P.M. Budd, High-flux PIM-1/PVDF thin film composite membranes for 1-butanol/water pervaporation, J. Membr. Sci. 529(2017) 207-214. [74] S.F. Nai, X.F. Liu, W. Liu, B.Q. Zhang, Ethanol recovery from its dilute aqueous solution using Fe-ZSM-5 membranes:Effect of defect size and surface hydrophobicity, Microporous Mesoporous Mater. 215(2015) 46-50. [75] B. Elyassi, M.Y. Jeon, M. Tsapatsis, K. Narasimharao, S.N. Basahel, S. Al-Thabaiti, Ethanol/water mixture pervaporation performance of b-oriented silicalite-1 membranes made by gel-free secondary growth, AIChE J. 62(2016) 556-563. |
阅读次数 | ||||||||||||||||||||||||||||||||||||||||||||||||||
全文 244
|
|
|||||||||||||||||||||||||||||||||||||||||||||||||
摘要 1631
|
|
|||||||||||||||||||||||||||||||||||||||||||||||||