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Energy-efficient polymeric gas separation membranes for a sustainable future: A review

Polymer · 2013 · Vol. 54(18) · pp. 4729–4761
David F. SandersZachary P. SmithRuilan GuoLloyd M. RobesonJames E. McGrathDonald R. PaulBenny D. Freeman

Abstract

Over the past three decades, polymeric gas separation membranes have become widely used for a variety of industrial gas separations applications. This review presents the fundamental scientific principles underpinning the operation of polymers for gas separations, including the solution-diffusion model and various structure/property relations, describes membrane fabrication technology, describes polymers believed to be used commercially for gas separations, and discusses some challenges associated with membrane materials development. A description of new classes of polymers being considered for gas separations, largely to overcome existing challenges or access applications that are not yet practiced commercially, is also provided. Some classes of polymers discussed in this review that have been the focus of much recent work include thermally rearranged (TR) polymers, polymers of intrinsic microporosity (PIMs), room-temperature ionic liquids (RTILs), perfluoropolymers, and high-performance polyimides.

Membrane Separation and Gas TransportIonic liquids properties and applicationsCovalent Organic Framework ApplicationsGas separationPolymerMembraneMaterials scienceNanotechnologyWork (physics)FabricationSynthetic membraneProcess engineeringChemistry

Funding

  • National Science Foundation
  • U.S. Department of Energy
  • Oak Ridge Associated Universities
  • Oak Ridge Institute for Science and Education
Citations
1,419
FWCI
96.33
field-weighted impact
References
390
Percentile
100%
vs. same field & year
Citations per year
Cited by
Gas Separation Membrane Materials: A Perspective
Macromolecules · 2014 · 1,166 citations
References
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The solution-diffusion model: a review
Journal of Membrane Science · 1995 · 3,355 citations
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Journal of Membrane Science · 1982 · 613 citations
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The Journal of Chemical Physics · 1959 · 3,880 citations
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