In this study, a poly(ether block amide) (Pebax 1657) composite membrane applied for CO2 capture was prepared by coating Pebax 1657 solution on polyacrylonitrile (PAN) ultrafiltration membrane. Ethanol/water mixture was used as the solvent of Pebax and the effects of ethanol/water mass ratios and Pebax concentration on the permeation properties of composite membrane were studied. To enhance the composite membrane permeance, the gutter layer, made from reactive amino silicone crosslinking with polydimethylsiloxane (PDMS), was designed. The influence of crosslinking degree of the gutter layer on membrane performance was investigated. As a result, a Pebax/aminoPDMS/PAN multilayer membrane with hexane resistance was developed, showing CO2 perme...
In this paper, poly(amide-6-b-ethylene oxide) (Pebax1657)/SAPO-34 mixed matrix membranes (MMMs) were...
In this paper, Pebax and Pebax-Tripropionin (TPP) blend multilayer composite membranes were firstly ...
An inspiring challenge for membrane scientists is to exceed the current materials’ performance while...
In this study, a poly(ether block amide) (Pebax 1657) composite membrane applied for CO 2 capture wa...
In this paper, block copolymer poly (amide-6-b-ethylene oxide) Pebax (R) MH 1657 (PEBA1657) is used ...
Poly(ether-block-amide) (PEBA, commercialized as Pebax) copolymer membranes show a highly promising ...
AbstractThis paper presents two strategies applied in our study, one involved blending CO2-phillic m...
The presence of CO2 has created significant challenges in natural gas processing in order to meet co...
Hypothesis: Carbon dioxide (CO2) separation from flue gases as a green-house gas produced from the c...
In this paper, poly(amide-6-b-ethylene oxide) (PEBA1657) copolymer was used to prepare polyetherimid...
Membrane gas separation is one of the most promising technologies for the separation of carbon dioxi...
PES/Pebax and PEI/Pebax composite membranes were prepared by coating the porous PES and PEI substrat...
We analyze the gas separation performance of five polyether-block-amide type copolymers (Pebax® 1657...
In this study, Polyvinyl alcohol (PVA) blended with Polyethylene glycol (PEG), Monosodium glutamate ...
Membrane technology can be used for both post combustion carbon dioxide capture and acidic gas sweet...
In this paper, poly(amide-6-b-ethylene oxide) (Pebax1657)/SAPO-34 mixed matrix membranes (MMMs) were...
In this paper, Pebax and Pebax-Tripropionin (TPP) blend multilayer composite membranes were firstly ...
An inspiring challenge for membrane scientists is to exceed the current materials’ performance while...
In this study, a poly(ether block amide) (Pebax 1657) composite membrane applied for CO 2 capture wa...
In this paper, block copolymer poly (amide-6-b-ethylene oxide) Pebax (R) MH 1657 (PEBA1657) is used ...
Poly(ether-block-amide) (PEBA, commercialized as Pebax) copolymer membranes show a highly promising ...
AbstractThis paper presents two strategies applied in our study, one involved blending CO2-phillic m...
The presence of CO2 has created significant challenges in natural gas processing in order to meet co...
Hypothesis: Carbon dioxide (CO2) separation from flue gases as a green-house gas produced from the c...
In this paper, poly(amide-6-b-ethylene oxide) (PEBA1657) copolymer was used to prepare polyetherimid...
Membrane gas separation is one of the most promising technologies for the separation of carbon dioxi...
PES/Pebax and PEI/Pebax composite membranes were prepared by coating the porous PES and PEI substrat...
We analyze the gas separation performance of five polyether-block-amide type copolymers (Pebax® 1657...
In this study, Polyvinyl alcohol (PVA) blended with Polyethylene glycol (PEG), Monosodium glutamate ...
Membrane technology can be used for both post combustion carbon dioxide capture and acidic gas sweet...
In this paper, poly(amide-6-b-ethylene oxide) (Pebax1657)/SAPO-34 mixed matrix membranes (MMMs) were...
In this paper, Pebax and Pebax-Tripropionin (TPP) blend multilayer composite membranes were firstly ...
An inspiring challenge for membrane scientists is to exceed the current materials’ performance while...