4.6 Article

Metal-Induced Polymer Framework Membrane with High Performance for CO2 Separation

Journal

AICHE JOURNAL
Volume 65, Issue 1, Pages 239-249

Publisher

WILEY
DOI: 10.1002/aic.16429

Keywords

PVAmacid; metal-induced polymer framework-1 membrane; monomolecular surface diffusion; CO2 permeance; CO2/(N-2 center dot CH4 or H-2) selectivity

Funding

  1. National Key RAMP
  2. D Program of China [2017YFB0603400]
  3. Natural Science Foundation of China [21436009]

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In this study, a novel porous material, that is, metal-induced polymer framework-1 (MPF-1) was synthesized using Zn(NO3)(2)center dot 6H(2)O and a high-molecular weight PVAmacid. MPF-1 has two structural advantages that help to create CO2 separation membranes with simple fabrication procedure and high performance. First, MPF-1 is a high-molecular weight polymer with certain flexibility, and thus having good membrane-forming ability. Second, MPF-1 has small and uniform distributed pores, and contains amine groups those can react with CO2 molecules reversibly. Therefore, CO2 molecules can preferentially adsorb on pore walls of MPF-1 and transport across the pores by monomolecular surface diffusion, while most of N-2, CH4, or H-2 molecules are excluded out the pores. The MPF-1 was employed to fabricate a microporous membrane by coating the MPF-1 dispersions on a polysulfone ultrafiltration membrane. CO2 permeance and selectivity of the membrane keep almost unchanged with the feed pressure increasing from 0.11 to 1.0 MPa. (C) 2018 American Institute of Chemical Engineers

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