Synthesis of silicalite-poly(furfuryl alcohol) composite membranes for oxygen enrichment from air
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  • 作者:Li He (1)
    Dan Li (1)
    Kun Wang (1)
    Akkihebbal K Suresh (2)
    Jayesh Bellare (2)
    Tam Sridhar (1)
    Huanting Wang (1)
  • 关键词:poly(furfuryl alcohol) ; silicalite ; composite membrane ; air separation
  • 刊名:Nanoscale Research Letters
  • 出版年:2011
  • 出版时间:December 2011
  • 年:2011
  • 卷:6
  • 期:1
  • 全文大小:808KB
  • 参考文献:1. Baker RW: / Membrane Technology and Applications. 2nd edition. New York: John Wiley & Sons, Ltd; 2004. CrossRef
    2. Kimura SG, Browall WR: Membrane oxygen enrichment: I. Demonstration of membrane oxygen enrichment for natural gas combustion. / J Membrane Sci 1986, 29:69-7. CrossRef
    3. Bhide BD, Stern SA: A new evaluation of membrane processes for the oxygen-enrichment of air. I. Identification of optimum operating conditions and process configuration. / J Membrane Sci 1991, 62:13-5. CrossRef
    4. Liang F, Jiang H, Schiestel T, Caro Jr: High-purity oxygen production from air using perovskite hollow fiber membranes. / Ind Eng Chem Res 2010, 49:9377-384. CrossRef
    5. Baker RW: Future directions of membrane gas separation technology. / Ind Eng, Chem Res 2002, 41:1393-411. CrossRef
    6. Koros WJ, Mahajan R: Pushing the limits on possibilities for large scale gas separation: which strategies. / J Membrane Sci 2000, 175:181-96. CrossRef
    7. Matson SL, Ward WJ, Kimura SG, Browall WR: Membrane oxygen enrichment: II. Economic assessment. / J Membrane Sci 1986, 29:79-6. CrossRef
    8. Robeson LM: The upper bound revisited. / J Membrane Sci 2008, 320:390-00. CrossRef
    9. Koros WJ: Gas separation membranes: needs for combined materials science and processing approaches. / Macromol Symp 2002, 188:13-2. CrossRef
    10. Ordo?ez MJC, Balkus KJ Jr, Ferraris JP, Musselman IH: Molecular sieving realized with ZIF-8/Matrimid ? mixed-matrix membranes. / J Membrane Sci 2010, 361:28-7. CrossRef
    11. Wang HT, Holmberg BA, Yan YS: Homogeneous polymer-zeolite nanocomposite membranes by incorporating dispersible template-removed zeolite nanocrystals. / J Mater Chem 2002, 12:3640-643. CrossRef
    12. Wang HT, Huang LM, Holmberg BA, Yan YS: Nanostructured zeolite 4A molecular sieving air separation membranes. / Chem Commun 2002, 1708-709.
    13. Li S, Sun J, Li Z, Peng H, Gidley D, Ryan ET, Yan YS: Evaluation of pore structure in pure silica zeolite MFI low-k thin films using positronium annihilation lifetime spectroscopy. / J Phys Chem B 2004, 108:11689-1692. CrossRef
    14. Flanigen EM, Bennett JM, Grose RW, Cohen JP, Patton RL, Kirchner RM, Smith JV: Silicalite, a new hydrophobic crystalline silica molecular sieve. / Nature 1978, 271:512-16. CrossRef
    15. Wang HT, Wang ZB, Yan YS: Colloidal suspensions of template-removed zeolite nanocrystals. / Chem Commun 2000, 2333-334.
    16. He L, Li D, Dong DH, Yao JF, Huang Y, Wang HT: Effects of polymerization conditions on properties of poly (furfuryl alcohol) membranes. / J Appl Polym Sci 2011. doi:10.1002/app.35356
    17. Yan YS, Davis ME, Gavalas GR: Preparation of zeolite ZSM-5 membranes by in-situ crystallization on porous α-Al 2 O 3 . / Ind Eng Chem Res 1995, 34:1652-661. CrossRef
    18. Whitley DM, Adolf DB: Barrier properties of polyethylene terephthalate, atactic polypropylene, and cis-1,4-polybutadiene via molecular dynamics simulation. / Soft Matter 2011, 7:2981-988. CrossRef
    19. Barrer RM, Rideal EK: Permeation, diffusion and solution of gases in organic polymers. / Trans Faraday Soc 1939, 35:628-43. CrossRef
    20. Li D, Zhu HY, Ratinac KR, Ringer SP, Wang HT: Synthesis and characterization of sodalite-polyimide nanocomposite membranes. / Microporous Mesoporous Mater 2009, 126:14-9. CrossRef
    21. Park HB, Kim JK, Nam SY, Lee YM: Imide-siloxane block copolymer/silica hybrid membranes: preparation, characterization and gas separation properties. / J Membrane Sci 2003, 220:59-3. CrossRef
    22. Villaluenga JPG, Seoane B, Hradil J, Sysel P: Gas permeation characteristics of heterogeneous ODPA-BIS P polyimide membranes at different temperatures. / J Membrane Sci 2007, 305:160-68. CrossRef
    23. Jiang LY, Chung TS, Kulprathipanja S: An investigation to revitalize the separation performance of hollow fibers with a thin mixed matrix composite skin for gas separation. / J Membrane Sci 2006, 276:113-25. CrossRef
    24. Ward WJ III, Browall WR, Salemme RM: Ultrathin silicone/polycarbonate membranes for gas separation processes. / J Membrane Sci 1976, 1:99-08. CrossRef
    25. Huang LM, Wang ZB, Sun J, Miao L, Li Q, Yan YS, Zhao DY: Fabrication of ordered porous structures by self-assembly of zeolite nanocrystals. / J Am Chem Soc 2000, 122:3530-531. CrossRef
    26. Turley JW: / X-ray Diffraction Patterns of Polymers. Newtown Square: ICDD; 1965.
    27. He L, Li D, Zhang GY, Webley PA, Zhao DY, Wang HT: Synthesis of carbonaceous poly(furfuryl alcohol) membrane for water desalination. / Ind Eng Chem Res 2010, 49:4175-180. CrossRef
    28. Budd PM, Msayib KJ, Tattershall CE, Ghanem BS, Reynolds KJ, McKeown NB, Fritsch D: Gas separation membranes from polymers of intrinsic microporosity. / J Membrane Sci 2005, 251:263-69. CrossRef
    29. Teraguchi M, Masuda T: Poly(diphenylacetylene) membranes with high gas permeability and remarkable chiral memory. / Macromolecules 2002, 35:1149-151. CrossRef
    30. Chung TS, Jiang LY, Li Y, Kulprathipanja S: Mixed matrix membranes (MMMs) comprising organic polymers with dispersed inorganic fillers for gas separation. / Prog Polym Sci 2007, 32:483-07. CrossRef
  • 作者单位:Li He (1)
    Dan Li (1)
    Kun Wang (1)
    Akkihebbal K Suresh (2)
    Jayesh Bellare (2)
    Tam Sridhar (1)
    Huanting Wang (1)

    1. Department of Chemical Engineering, Monash University, Clayton, Victoria, 3800, Australia
    2. Department of Chemical Engineering, Indian Institute of Technology Bombay, Bombay, Maharashtra, 400076, India
  • ISSN:1556-276X
文摘
Silicalite-poly(furfuryl alcohol) [PFA] composite membranes were prepared by solution casting of silicalite-furfuryl alcohol [FA] suspension on a porous polysulfone substrate and subsequent in situ polymerization of FA. X-ray diffraction, nitrogen sorption, thermogravimetric analysis, scanning electron microscopy, and energy-dispersive X-ray spectroscopy were used to characterize silicalite nanocrystals and silicalite-PFA composite membranes. The silicalite-PFA composite membrane with 20 wt.% silicalite loading exhibits good oxygen/nitrogen selectivity (4.15) and high oxygen permeability (1,132.6 Barrers) at 50°C. Silicalite-PFA composite membranes are promising for the production of oxygen-enriched air for various applications.

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