References

  1. C.H. Fu, D. Cai, S. Hu, Q. Miao, Y. Wang, P.Y. Qin, Z. Wang, T.W. Tan, Ethanol fermentation integrated with PDMS composite membrane: an effective process, Bioresour. Technol., 200 (2016) 648–657.
  2. S. Santoro, F. Galiano, J.C. Jansen, A. Figoli, Strategy for scale-up of SBS pervaporation membranes for ethanol recovery from diluted aqueous solutions, Sep. Purif. Technol., 176 (2017) 252–261.
  3. A.J. Ragauskas, C.K. Williams, B.H. Davison, G. Britovsek, J. Cairney, C.A. Eckert, W.J. Frederick Jr., J.P. Hallett, D.J. Leak, C.L. Liotta, J.R. Mielenz, R. Murphy, R. Templer, T. Tschaplinski, The path forward for biofuels and biomaterials, Science, 311 (2006) 484–489.
  4. L.M. Vane, A review of pervaporation for product recovery from biomass fermentation processes, J. Chem. Technol. Biotechnol., 80 (2005) 603–629.
  5. P. Peng, B. Shi, Y. Lan, A review of membrane materials for ethanol recovery by pervaporation, Sep. Sci. Technol., 46 (2010) 234–246.
  6. L.M. Vane, Separation technologies for the recovery and dehydration of alcohols from fermentation broths, Biofuels, Bioprod. Biorefin., 2 (2008) 553–588.
  7. 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.
  8. X. Zhan, J.D. Li, J.Q. Huang, C.X. Chen, Enhanced pervaporation performance of multi-layer PDMS/PVDF composite membrane for ethanol recovery from aqueous solution, Appl. Biochem. Biotechnol., 160 (2010) 632–642.
  9. J.A. León, J. Fontalvo, PDMS modified membranes by 1-dodecanol and its effect on ethanol removal by pervaporation, Sep. Sci. Technol., 210 (2019) 364–370.
  10. X. Han, L. Wang, J.D. Li, X. Zhan, J. Chen, J.C. Yang, Separation of ethanol from ethanol/water mixtures by pervaporation with silicone rubber membranes: effect of silicone rubbers, J. Appl. Polym. Sci., 119 (2011) 3413–3421.
  11. H.B. Park, J. Kamcev, L.M. Robeson, M. Elimelech, B.D. Freeman, Maximizing the right stuff: the trade-off between membrane permeability and selectivity, Science, 356 (2017) eaab0530.
  12. H. Te Hennepe, D. Bargeman, M. Mulder, C. Smolders, Zeolitefilled silicone rubber membranes: part 1. Membrane preparation and pervaporation results, J. Membr. Sci., 35 (1987) 39–55.
  13. H.L. Zhou, J.Q. Zhang, Y.H. Wan, W.Q. Jin, Fabrication of high silicalite-1 content filled PDMS thin composite pervaporation membrane for the separation of ethanol from aqueous solutions, J. Membr. Sci., 524 (2017) 1–11.
  14. M.D. Jia, K.V. Peinemann, R.D. Behling, Preparation and characterization of thin-film zeolite PDMS composite membranes, J. Membr. Sci., 73 (1992) 119–128.
  15. X. Zhan, J.D. Li, J.Q. Huang, X.L. Han, Pervaporation separation of ethanol/water mixtures with chlorosilane modified silicalite- 1/PDMS hybrid membranes, Chin. J. Polym. Sci., 28 (2010) 625–635.
  16. X.J. Zhuang, X.R. Chen, Y. Su, J.Q. Luo, Sh.Ch. Feng, H. Zhou, Y.H. 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.
  17. Sh.L. Yi, Y.H. Wan, Separation performance of novel vinyltriethoxysilane (VTES)-g-silicalite-1/PDMS/PAN thinfilm composite membrane in the recovery of bioethanol from fermentation broths by pervaporation, J. Membr. Sci., 524 (2017) 132–140.
  18. S. Hu, W.Q. Ren, D. Cai, T.C. Hughes, P.Y. Qin, T.W. Tan, A mixed matrix membrane for butanol pervaporation based on micron-sized silicalite-1 as macro-crosslinkers, J. Membr. Sci., 533 (2017) 270–278.
  19. L.M. Vane, V.V. Namboodiri, T.C. Bowen, Hydrophobic zeolitesilicone rubber mixed matrix membranes for ethanol-water separation: effect of zeolite and silicone component selection on pervaporation performance, J. Membr. Sci., 308 (2008) 230–241.
  20. X. Zhan, J. Lu, T.T. Tan, J.D. Li, Mixed matrix membranes with HF acid etched ZSM-5 for ethanol/water separation: preparation and pervaporation performance, Appl. Surf. Sci., 259 (2012) 547–556.
  21. Q.Q. Li, L. Cheng, J. Shen, J.Y. Shi, G.N. Chen, J. Zhao, J.G. Duan, G.P. Liu, W.Q. Jin, Improved ethanol recovery through mixed-matrix membrane with hydrophobic MAF-6 as filler, Sep. Sci. Technol., 178 (2017) 105–112.
  22. A. Khan, M. Ali, A. Ilyas, P. Naik, I.F.J. Vankelecom, M.A. Gilani, M.R. Bilad, Z. Sajjad, A.L. Khan, ZIF-67 filled PDMS mixed matrix membranes for recovery of ethanol via pervaporation, Sep. Sci. Technol., 206 (2018) 50–58.
  23. S. Xu, H. Zhang, F. Yu, X. Zhao, Y. Wang, Enhanced ethanol recovery of PDMS mixed matrix membranes with hydrophobically modified ZIF-90, Sep. Sci. Technol., 206 (2018) 80–89.
  24. H. Mao, H.G. Zhen, A. Ahmad, A.S. Zhang, Z.P. Zhi, In situ fabrication of MOF nanoparticles in PDMS membrane via interfacial synthesis for enhanced ethanol permselective pervaporation, J. Membr. Sci., 573(2019) 344–358.
  25. N.X. Wang, G.X. Shi, J. Gao, J. Li, L. Wang, H.X. Guo, G.J. Zhang, S.L. Ji, MCM-41@ZIF-8/PDMS hybrid membranes with microand nanoscaled hierarchical structure for alcohol permselective pervaporation, Sep. Sci. Technol., 153 (2015) 146–155.
  26. Y.B. Li, L.H. Wee, J.A. Martens, I.F.J. Vankelecom, ZIF-71 as a potential filler to prepare pervaporation membranes for bioalcohol recovery, J. Mater. Chem. A, 2 (2014) 10034–10040.
  27. P.V. Naik, L.H. Wee, M. Meledina, S. Turner, Y.b. Li, G.V. Tendeloo, J.A. Martens, I.F.J. Vankelecom, PDMS membranes containing ZIF-coated mesoporous silica spheres for efficient ethanol recovery via pervaporation, J. Mater. Chem. A, 4 (2016) 12790–12798.
  28. D. Sun, B.B. Li, Zh.L. Xu, Pervaporation of ethanol/water mixture by organophilic nano-silica filled PDMS composite membranes, Desalination, 322 (2013) 159–166.
  29. H. Yan, J. Li, H. Fan, S. Ji, G. Zhang, Z. Zhang, Sonicationenhanced in situ assembly of organic/inorganic hybrid membranes: evolution of nanoparticle distribution and pervaporation performance, J. Membr. Sci., 481 (2015) 94–105.
  30. S.W. Kuo, F.C. Chang, POSS related polymer nanocomposites, Prog. Polym. Sci., 36 (2011) 1649–1696.
  31. D.Zh. Chen, Sh.P. Yi, P.F. Fang, Y.L. Zhong, Ch. Huang, X.J. Wu, Synthesis and characterization of novel room temperature vulcanized (RTV) silicone rubbers using octa[(trimethoxysilyl) ethyl]-POSS as cross-linker, React. Funct. Polym., 71 (2011) 502–511.
  32. Sh. Yang, A.Zh. Pan, L. He, Organic/inorganic hybrids by linear PDMS and caged MA-POSS for coating, Mater. Chem. Phys., 153 (2015) 396–404.
  33. N.L. Le, Y. Wang, T.Sh. Chung, Pebax/POSS mixed matrix membranes for ethanol recovery from aqueous solutions via pervaporation, J. Membr. Sci., 379 (2011) 174–183.
  34. G.P. Liu, W.S. Hung, J. Shen, Q.Q. Li, Y.H. Huang, W.Q. Jin, K.R. Lee, J.Y. Lai, Mixed matrix membranes with molecularinteraction- driven tunable free volumes for efficient bio-fuel recovery, J. Mater. Chem. A, 3 (2015) 4510–4521.
  35. Q.G. Zhang, B.C. Fan, Q.L. Liu, A.M. Zhu, F.F. Shi, A novel poly(dimethyl siloxane)/poly(oligosilsesquioxanes) composite membrane for pervaporation desulfurization, J. Membr. Sci., 366 (2011) 335–341.
  36. R. Konietzny, T. Koschine, K. Rätzke, C. Staudt, POSShybrid membranes for the removal of sulfur aromatics by pervaporation, Sep. Sci. Technol.,123 (2014) 175–182.
  37. M.R. Wang, R.S. Xing, H. Wu, F.Sh. Pan, J.J. Zhang, H. Ding, Zh.Y. Jiang, Nanocomposite membranes based on alginate matrix and high loading of pegylated POSS for pervaporation dehydration, J. Membr. Sci., 538 (2017) 86–95.
  38. F.J. Fu, S. Zhang, Sh.P. Sun, K.Y. Wang, T.S. Chung, POSScontaining delamination-free dual-layer hollow fiber membranes for forward osmosis and osmotic power generation, J. Membr. Sci., 443 (2013) 144–155.
  39. P. Iyer, G. Iyer, M. Coleman, Gas transport properties of polyimide-POSS nanocomposites, J. Membr. Sci., 358 (2010) 26–32.
  40. F. Li, Y. Li, T.S. Chung, S. Kawi, Facilitated transport by hybrid POSS®-Matrimid®-Zn2+ nanocomposite membranes for the separation of natural gas, J. Membr. Sci., 356 (2010) 14–21.
  41. Y. Li, T.S. Chung, Molecular-level mixed matrix membranes comprising Pebax and POSS for hydrogen purification via preferential CO2 removal, Int. J. Hydrogen Energy, 35 (2010) 10560–10568.
  42. D. Xu, L.S. Loo, K. Wang, Pervaporation performance of novel chitosan-POSS hybrid membranes: effects of POSS and operating conditions, J. Polym. Sci., Part B: Polym. Phys., 48 (2010) 2185–2192.
  43. X. Zhan, J. Lu, H. Xu, J.H. Liu, X.S. Liu, X.Z. Cao, J.D. Li, Enhanced pervaporation performance of PDMS membranes based on nano-sized Octa[(trimethoxysilyl)ethyl]-POSS as macro-crosslinker, Appl. Surf. Sci., 473 (2019) 785–798.
  44. D. Murphy, M.N. de Pinho, An ATR-FTIR study of water in cellulose acetate membranes prepared by phase inversion, J. Membr. Sci., 106 (1995) 245–257.
  45. N.J. Harrick, Internal Reflection Spectroscopy, Wiley, NY, 1967.
  46. R.H. Baney, M. Itoh, A. Sakakibara, T. Suzuki, Silsesquioxanes, Chem. Rev., 95 (1995) 1409–1430.
  47. M.Q. Fang, C.L. Wu, Z.J. Yang, T. Wang, Y. Xia, J.D. Li, ZIF-8/PDMS mixed matrix membranes for propane/nitrogen mixture separation: experimental result and permeation model validation, J. Membr. Sci., 474 (2015) 103–113.
  48. X.X. Cheng, F.S. Pan, M.R. Wang, W.D. Li, Y.M. Song, G.H. Liu, H. Yang, B.X. Gao, H. Wu, Z.Y. Jiang, Hybrid membranes for pervaporation separations, 2017, J. Membr. Sci., 541 (2017) 329–346.