[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. |