• Journal of Inorganic Materials
  • Vol. 35, Issue 11, 1239 (2020)
Chunhui ZHU1, Rong XU1、*, Xiuxiu REN1, Shixiang ZUO1, Genghao GONG2, and Jing ZHONG1、*
Author Affiliations
  • 1Jiangsu Key Laboratory of Advanced Catalytic Materials and Technology, School of Petrochemical Engineering, Changzhou University, Changzhou 213164, China
  • 2State Key Laboratory of Separation Membranes and Membrane Processes, School of Material Science and Engineering, Tiangong University, Tianjin 300387, China
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    DOI: 10.15541/jim20200007 Cite this Article
    Chunhui ZHU, Rong XU, Xiuxiu REN, Shixiang ZUO, Genghao GONG, Jing ZHONG. Fabrication of ZIF-8-NH2/Organosilica Hybrid Membranes for Pervaporation Desalination[J]. Journal of Inorganic Materials, 2020, 35(11): 1239 Copy Citation Text show less
    FT-IR spectra of samples ZIF-8, ZIF-8-NH2, BTESE and ZNB-0.5
    1. FT-IR spectra of samples ZIF-8, ZIF-8-NH2, BTESE and ZNB-0.5
    XRD patterns of samples ZIF-8, ZIF-8-NH2 and ZNB-0.5
    2. XRD patterns of samples ZIF-8, ZIF-8-NH2 and ZNB-0.5
    Nitrogen isotherms (a) and pore size distributions (b) of samples ZIF-8, ZIF-8-NH2, BTESE and ZNB-0.5
    3. Nitrogen isotherms (a) and pore size distributions (b) of samples ZIF-8, ZIF-8-NH2, BTESE and ZNB-0.5
    (a) SEM image of ZIF-8-NH2 crystals, and (b) top surface and (c) cross section SEM images of ZNB-0.5 membrane
    4. (a) SEM image of ZIF-8-NH2 crystals, and (b) top surface and (c) cross section SEM images of ZNB-0.5 membrane
    Water contact angles of membranes BTESE, ZIF-8/ BTESE and ZIF-8-NH2/BTESE
    5. Water contact angles of membranes BTESE, ZIF-8/ BTESE and ZIF-8-NH2/BTESE
    Effect of ZIF-8 and ZIF-8-NH2 content on pervaporation desalination performances of the membrane (70 ℃, 6.5wt% NaCl)
    6. Effect of ZIF-8 and ZIF-8-NH2 content on pervaporation desalination performances of the membrane (70 ℃, 6.5wt% NaCl)
    Influence of feed temperature on pervaporation desalination performances of the ZNB-0.5 membrane (6.5wt% NaCl)
    7. Influence of feed temperature on pervaporation desalination performances of the ZNB-0.5 membrane (6.5wt% NaCl)
    Effect of feed concentration on pervaporation desalination performances of the ZNB-0.5 membrane (70 ℃)
    8. Effect of feed concentration on pervaporation desalination performances of the ZNB-0.5 membrane (70 ℃)
    Pervaporation performance of the ZNB-0.5 membrane as a function of operating time(55 ℃, 6.5wt% NaCl)
    9. Pervaporation performance of the ZNB-0.5 membrane as a function of operating time(55 ℃, 6.5wt% NaCl)
    Schematic drawing of water transport through the ZIF-8-NH2/BTESE membrane networks
    10. Schematic drawing of water transport through the ZIF-8-NH2/BTESE membrane networks
    SampleSBET/(m2×g-1)dp/nm
    ZIF-812750.56
    ZIF-8-NH211910.53
    BTESE4670.52
    ZNB-0.51720.54
    Table 1. Microstructures of samples ZIF-8, ZIF-8-NH2, BTESE and ZNB-0.5
    Chunhui ZHU, Rong XU, Xiuxiu REN, Shixiang ZUO, Genghao GONG, Jing ZHONG. Fabrication of ZIF-8-NH2/Organosilica Hybrid Membranes for Pervaporation Desalination[J]. Journal of Inorganic Materials, 2020, 35(11): 1239
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