Publication | Open Access
Approaches to Suppress CO2-Induced Plasticization of Polyimide Membranes in Gas Separation Applications
85
Citations
106
References
2019
Year
Materials ScienceCatalytic MembraneChemical EngineeringMembrane FormationGas Separation ApplicationsEngineeringMembrane TechnologyPolymer MembranePolymer ScienceExcellent Physicochemical PropertiesMembrane CharacterizationPolymer MembranesChemistryPlasticityPolyimide MembranesCo2 PermeationCo2-induced PlasticizationPolymer Chemistry
Polyimides with excellent physicochemical properties have aroused a great deal of interest as gas separation membranes; however, the severe performance decay due to CO2-induced plasticization remains a challenge. Fortunately, in recent years, advanced plasticization-resistant membranes of great commercial and environmental relevance have been developed. In this review, we investigate the mechanism of plasticization due to CO2 permeation, introduce effective methods to suppress CO2-induced plasticization, propose evaluation criteria to assess the reduced plasticization performance, and clarify typical methods used for designing anti-plasticization membranes.
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