It is known that CO2 acts as a plasticizer in CO2/CO4 membrane separations at elevated pressures. The polymer matrix swells upon sorption of CO2, accelerating the permeation of CH4. As a consequence, the polymer membrane loses its selectivity. To overcome this effect, plasticization should be minimized. We succeeded in stabilizing the polymer membrane by a thermal treatment. For this purpose the polyimide Matrimid 5218 is used as model polymer. In single gas experiments with CO2, the untreated membrane normally shows a minimum in its pressure dependence on permeability, whereas the treated membranes do not. Membrane performances for CO2/CO4 gas mixtures showed that the plasticizing effect indeed accelerates the permeation of methane. The he...
Recently, membrane technology has attracted vast attention from many scientists and engineers, parti...
AbstractPolymeric membranes as a carbon dioxide capture technology have a number of advantages over ...
Membranes are a promising technology for bulk CO2 separation from natural gas mixtures due to their ...
CO2-induced plasticization may significantly spoil the membrane performance in high-pressure CO2/CH4...
CO2-induced plasticization may significantly spoil the membrane performance in high-pressure CO2/CH4...
Plasticization is a phenomenon frequently encountered in the application of glassy polymeric materia...
Plasticization is a phenomenon frequently encountered in the application of glassy polymeric materia...
Plasticization is a phenomenon frequently encountered in the application of glassy polymeric materia...
The suppression of CO2-induced plasticization in polyimide membranes at supercritical conditions up ...
This paper describes the influence of crown-ether ring size and rigidity on the gas separation perfo...
This work reports the CO2 plasticization of gas-separation hollow-fiber membranes based on polyimide...
This work reports the CO2 plasticization of gas-separation hollow-fiber membranes based on polyimide...
This paper describes the influence of crown-ether ring size and rigidity on the gas separation perfo...
This paper describes the influence of crown-ether ring size and rigidity on the gas separation perfo...
This paper describes the influence of crown-ether ring size and rigidity on the gas separation perfo...
Recently, membrane technology has attracted vast attention from many scientists and engineers, parti...
AbstractPolymeric membranes as a carbon dioxide capture technology have a number of advantages over ...
Membranes are a promising technology for bulk CO2 separation from natural gas mixtures due to their ...
CO2-induced plasticization may significantly spoil the membrane performance in high-pressure CO2/CH4...
CO2-induced plasticization may significantly spoil the membrane performance in high-pressure CO2/CH4...
Plasticization is a phenomenon frequently encountered in the application of glassy polymeric materia...
Plasticization is a phenomenon frequently encountered in the application of glassy polymeric materia...
Plasticization is a phenomenon frequently encountered in the application of glassy polymeric materia...
The suppression of CO2-induced plasticization in polyimide membranes at supercritical conditions up ...
This paper describes the influence of crown-ether ring size and rigidity on the gas separation perfo...
This work reports the CO2 plasticization of gas-separation hollow-fiber membranes based on polyimide...
This work reports the CO2 plasticization of gas-separation hollow-fiber membranes based on polyimide...
This paper describes the influence of crown-ether ring size and rigidity on the gas separation perfo...
This paper describes the influence of crown-ether ring size and rigidity on the gas separation perfo...
This paper describes the influence of crown-ether ring size and rigidity on the gas separation perfo...
Recently, membrane technology has attracted vast attention from many scientists and engineers, parti...
AbstractPolymeric membranes as a carbon dioxide capture technology have a number of advantages over ...
Membranes are a promising technology for bulk CO2 separation from natural gas mixtures due to their ...