Polymeric membranes offer economic separation processes but are less explored for H2 separation application. This work aims to unveil the H2 separation potential of polymeric membrane by developing PVA-based reverse selective composite membrane. CO2-selective PEBAX was blended at different PVA:PEBAX ratio. The effect of PEBAX blending on membrane morphology, crystallinity and gas separation behavior was studied. Incorporation of PEBAX at 60 wt% PEBAX enhanced both permeance and selectivity of the resulted composite as the host matrix was dominated by this PEO containing material thus greatly enhancing polymer chain mobility and promoting CO2-solubility. The best composite which contains 60 wt% PEBAX exhibited CO2 permeability of 20.0 Barrer...
Polymer is among the favorite materials used for membrane separation as they are cheap, easily cast,...
Pebax-1657 is known as a promising polymeric membrane material for CO /N and CO/H separation. In ord...
This doctorate focused on the development of dense polymeric membranes for carbon capture, mostly in...
CO2 separation performance in facilitated transport membranes has been reported depended not only on...
This thesis aims to prepare thin-film nanocomposite membranes for the separation of CO2 and H2 to im...
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 ...
This study confirms the positive effect of ionic liquid content in neat polymer on mix gas (CO2/H2) ...
In this study, Polyvinyl alcohol (PVA) blended with Polyethylene glycol (PEG), Monosodium glutamate ...
AbstractThis paper presents two strategies applied in our study, one involved blending CO2-phillic m...
Blending CO2-selective ionic liquid with block copolymers have been shown to improve the gas separat...
In this study, a poly(ether block amide) (Pebax 1657) composite membrane applied for CO2 capture was...
Poly(ether-block-amide) (PEBA, commercialized as Pebax) copolymer membranes show a highly promising ...
In this paper, blend membranes from polyvinyl acetate (PVAc) and block copolymer poly(amide-12-b-eth...
To achieve enhanced CO2/N-2 separation performance, 1,3,5-benzenetricarboxylic acid (H3BTC) was util...
Polymer is among the favorite materials used for membrane separation as they are cheap, easily cast,...
Pebax-1657 is known as a promising polymeric membrane material for CO /N and CO/H separation. In ord...
This doctorate focused on the development of dense polymeric membranes for carbon capture, mostly in...
CO2 separation performance in facilitated transport membranes has been reported depended not only on...
This thesis aims to prepare thin-film nanocomposite membranes for the separation of CO2 and H2 to im...
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 ...
This study confirms the positive effect of ionic liquid content in neat polymer on mix gas (CO2/H2) ...
In this study, Polyvinyl alcohol (PVA) blended with Polyethylene glycol (PEG), Monosodium glutamate ...
AbstractThis paper presents two strategies applied in our study, one involved blending CO2-phillic m...
Blending CO2-selective ionic liquid with block copolymers have been shown to improve the gas separat...
In this study, a poly(ether block amide) (Pebax 1657) composite membrane applied for CO2 capture was...
Poly(ether-block-amide) (PEBA, commercialized as Pebax) copolymer membranes show a highly promising ...
In this paper, blend membranes from polyvinyl acetate (PVAc) and block copolymer poly(amide-12-b-eth...
To achieve enhanced CO2/N-2 separation performance, 1,3,5-benzenetricarboxylic acid (H3BTC) was util...
Polymer is among the favorite materials used for membrane separation as they are cheap, easily cast,...
Pebax-1657 is known as a promising polymeric membrane material for CO /N and CO/H separation. In ord...
This doctorate focused on the development of dense polymeric membranes for carbon capture, mostly in...