This study deals with Polyethersulfone (representative glassy polymer) and PEBAX-1657 (representative rubbery polymer) membranes for gas separation. Fundamental understanding of transport behavior of pure (CO2, O2 and N2) and binary gas (CO2/N2 and O2/N2) mixtures are performed through systematic pressure and composition study. Modelling studies are conducted to bridge the gap between pure and mixed gas permeation mechanism in the context of condensable (e.g., CO2) and non-condensable (O2 and N2) gases. For glassy polymer, dual mode sorption and partial immobilization theory is used to understand mechanism through competitive and non-competitive models. Whereas, for rubbery polymer, Flory-Huggins estimations are used to understand the relat...
The characterization of polymeric membranes for gas separation is often performed with pure-gas test...
Among various reported membrane-based gas separation processes, the best explanation is generally ac...
Mixed Matrix type membranes (MMMs) containing 10 wt% of either silicalite, SAPO - 34, and ZIF - 8 in...
We analyze the gas separation performance of five polyether-block-amide type copolymers (Pebax® 1657...
Polymeric membranes play a vital role in many industrial separation processes. A considerable amount...
The improvement of the separation performance of polymeric membranes for gas separations has been pu...
The improvement of the separation performance of polymeric membranes for gas separations has been pu...
ABSTRACT: The ability of membranes to separate efficiently CO2 from other light gases has received a...
The main objective of this work is to study the effect of solvents and polymer blending on the deve...
The properties of membranes have to be adjusted to the separation problems. In gas separation soluti...
The evaluation of the mixed gas solubility in glassy polymers is of fundamental importance in severa...
The evaluation of the mixed gas solubility in glassy polymers is of fundamental importance in severa...
The evaluation of the mixed gas solubility in glassy polymers is of fundamental importance in severa...
We studied the separation of four practice-relevant gas mixtures on three different membranes which ...
Processing of biogas, flue and natural gas is a highly relevant industrial process because of econom...
The characterization of polymeric membranes for gas separation is often performed with pure-gas test...
Among various reported membrane-based gas separation processes, the best explanation is generally ac...
Mixed Matrix type membranes (MMMs) containing 10 wt% of either silicalite, SAPO - 34, and ZIF - 8 in...
We analyze the gas separation performance of five polyether-block-amide type copolymers (Pebax® 1657...
Polymeric membranes play a vital role in many industrial separation processes. A considerable amount...
The improvement of the separation performance of polymeric membranes for gas separations has been pu...
The improvement of the separation performance of polymeric membranes for gas separations has been pu...
ABSTRACT: The ability of membranes to separate efficiently CO2 from other light gases has received a...
The main objective of this work is to study the effect of solvents and polymer blending on the deve...
The properties of membranes have to be adjusted to the separation problems. In gas separation soluti...
The evaluation of the mixed gas solubility in glassy polymers is of fundamental importance in severa...
The evaluation of the mixed gas solubility in glassy polymers is of fundamental importance in severa...
The evaluation of the mixed gas solubility in glassy polymers is of fundamental importance in severa...
We studied the separation of four practice-relevant gas mixtures on three different membranes which ...
Processing of biogas, flue and natural gas is a highly relevant industrial process because of econom...
The characterization of polymeric membranes for gas separation is often performed with pure-gas test...
Among various reported membrane-based gas separation processes, the best explanation is generally ac...
Mixed Matrix type membranes (MMMs) containing 10 wt% of either silicalite, SAPO - 34, and ZIF - 8 in...