One of the most promising strategies to improve membrane CO2 permeation rate and CO2/N-2 selectivity with commodity polymeric material is through blending two or more selected polymer materials in the membrane fabrication process. However, the majority of the published studies have focused on blend dense film membranes. In this study, the effects of CO2-philic additives were investigated for blend asymmetric membranes fabricated by the phase inversion technique. We present the preparation and gas transport properties of a series of blend membranes made from commercially available poly (2,6-dimethyl-1,4-phenylene oxide) (PPE) and additives including polyethylene glycol (PEG) and a PEG-PDMS copolymer (commercial name IM22). Compared with the ...
Porous flat-sheet polyamide–imide (PAI) membranes were prepared via a phase inversion method to eval...
In this paper, block copolymer poly(amide-12-b-ethylene oxide) (Pebax1074)/poly(ethylene glycol) (PE...
Until now, the leading polymer of intrinsic microporosity PIM-1 has become quite famous for its high...
Polymeric membrane gas separation process is an emerging technology for CO2 capture from power plant...
Polymer blending is a versatile tool to combine the beneficial properties of two or more components ...
Blending selected polymer materials in the membrane fabrication process has been widely investigated...
Polymer blending is a versatile tool to combine the beneficial properties of two or more components ...
Polymer blending is a versatile tool to combine the beneficial properties of two or more components ...
Polymer blending is a versatile tool to combine the beneficial properties of two or more components ...
Polymer blending is a versatile tool to combine the beneficial properties of two or more components ...
Polymer blending is a versatile tool to combine the beneficial properties of two or more components ...
Carbon dioxide (CO2) emissions have been the root cause for anthropogenic climate change. Decarbonis...
Integrally skinned asymmetric membranes were prepared from poly(2,6-dimethyl-1,4-phenylene)oxide (PP...
AbstractThis paper presents two strategies applied in our study, one involved blending CO2-phillic m...
In this paper, block copolymer poly(amide-12-b-ethylene oxide) (Pebax1074)/poly(ethylene glycol) (PE...
Porous flat-sheet polyamide–imide (PAI) membranes were prepared via a phase inversion method to eval...
In this paper, block copolymer poly(amide-12-b-ethylene oxide) (Pebax1074)/poly(ethylene glycol) (PE...
Until now, the leading polymer of intrinsic microporosity PIM-1 has become quite famous for its high...
Polymeric membrane gas separation process is an emerging technology for CO2 capture from power plant...
Polymer blending is a versatile tool to combine the beneficial properties of two or more components ...
Blending selected polymer materials in the membrane fabrication process has been widely investigated...
Polymer blending is a versatile tool to combine the beneficial properties of two or more components ...
Polymer blending is a versatile tool to combine the beneficial properties of two or more components ...
Polymer blending is a versatile tool to combine the beneficial properties of two or more components ...
Polymer blending is a versatile tool to combine the beneficial properties of two or more components ...
Polymer blending is a versatile tool to combine the beneficial properties of two or more components ...
Carbon dioxide (CO2) emissions have been the root cause for anthropogenic climate change. Decarbonis...
Integrally skinned asymmetric membranes were prepared from poly(2,6-dimethyl-1,4-phenylene)oxide (PP...
AbstractThis paper presents two strategies applied in our study, one involved blending CO2-phillic m...
In this paper, block copolymer poly(amide-12-b-ethylene oxide) (Pebax1074)/poly(ethylene glycol) (PE...
Porous flat-sheet polyamide–imide (PAI) membranes were prepared via a phase inversion method to eval...
In this paper, block copolymer poly(amide-12-b-ethylene oxide) (Pebax1074)/poly(ethylene glycol) (PE...
Until now, the leading polymer of intrinsic microporosity PIM-1 has become quite famous for its high...