Thin film composite membranes of poly(ether-block-amide) copolymer Pebax® 3533 were prepared for the first time on asymmetric polysulfone supports by a phase inversion method. The casting solution concentration and the number of layers were varied to study their influence on the selective layer thickness and the gas separation performance. The casting solution concentrations of polymer dissolved in the 1-propanol/1-butanol mixture were 0.25, 0.5, 1.0 and 1.5 wt%. These conditions produced membranes with selective skin layers with thicknesses from 0.2 to 1.8 µm. All the membranes were characterized by scanning electron microscopy, thermogravimetric analysis and infrared spectroscopy. Furthermore, the intrinsic viscosity of all the casting so...
The capture and storage of carbon dioxide has been identified as one potential solution to greenhous...
Single-walled carbon nanotube buckypapers (SWCNT-bps) coated with a metal–organic framework ZIF-8 la...
A thin film composite (TFC) membrane was prepared for separation of carbon dioxide (CO2) and nitroge...
This work shows the preparation of Pebax® 1041 films from solutions in DMAc and water-DMAc emulsions...
The present work is focused on the study of the effect that the casting solution concentration has o...
Poly(ether-block-amide) (PEBA, commercialized as Pebax) copolymer membranes show a highly promising ...
A high performance of thin film composite (TFC) membrane was fabricated with Pebax® 1657 as a select...
Membrane gas separation is one of the most promising technologies for the separation of carbon dioxi...
Poly(ethylene oxide)- (PEO-) based block copolymer membranes have great potential for use in CO2 sep...
The climate change becomes the global challenges due to the increasing earth’s surface temperature....
The emission of harmful gases such as carbon dioxide (CO2) via gas processing plant and daily human ...
PVDF/PEG) thin film composite (TFC) membrane for CO2/N2 gas separation. Asymmetric thin flat sheet m...
A wide variety of applications are available for gas separation, including physical and chemical ads...
We analyze the gas separation performance of five polyether-block-amide type copolymers (Pebax® 1657...
© Published under licence by IOP Publishing Ltd. With the rapid development of modern civilization, ...
The capture and storage of carbon dioxide has been identified as one potential solution to greenhous...
Single-walled carbon nanotube buckypapers (SWCNT-bps) coated with a metal–organic framework ZIF-8 la...
A thin film composite (TFC) membrane was prepared for separation of carbon dioxide (CO2) and nitroge...
This work shows the preparation of Pebax® 1041 films from solutions in DMAc and water-DMAc emulsions...
The present work is focused on the study of the effect that the casting solution concentration has o...
Poly(ether-block-amide) (PEBA, commercialized as Pebax) copolymer membranes show a highly promising ...
A high performance of thin film composite (TFC) membrane was fabricated with Pebax® 1657 as a select...
Membrane gas separation is one of the most promising technologies for the separation of carbon dioxi...
Poly(ethylene oxide)- (PEO-) based block copolymer membranes have great potential for use in CO2 sep...
The climate change becomes the global challenges due to the increasing earth’s surface temperature....
The emission of harmful gases such as carbon dioxide (CO2) via gas processing plant and daily human ...
PVDF/PEG) thin film composite (TFC) membrane for CO2/N2 gas separation. Asymmetric thin flat sheet m...
A wide variety of applications are available for gas separation, including physical and chemical ads...
We analyze the gas separation performance of five polyether-block-amide type copolymers (Pebax® 1657...
© Published under licence by IOP Publishing Ltd. With the rapid development of modern civilization, ...
The capture and storage of carbon dioxide has been identified as one potential solution to greenhous...
Single-walled carbon nanotube buckypapers (SWCNT-bps) coated with a metal–organic framework ZIF-8 la...
A thin film composite (TFC) membrane was prepared for separation of carbon dioxide (CO2) and nitroge...