Membrane technology has been recognized as an attractive and environment-friendly technology for carbon capture due to its low expense (capital and operating), ease of …
B Ghalei, K Sakurai, Y Kinoshita, K Wakimoto… - Nature Energy, 2017 - nature.com
Mixed matrix membranes (MMMs) for gas separation applications have enhanced selectivity when compared with the pure polymer matrix, but are commonly reported with low intrinsic …
Over the past three decades, polymeric gas separation membranes have become widely used for a variety of industrial gas separations applications. This review presents the …
This review provides a new perspective on the role of the state-of-the-art polymers of intrinsic microporosity (PIMs) in key energy-intensive membrane-based gas separations …
Mixed matrix membranes (MMMs) create a new horizon for developing novel materials with desired separation properties, since conventional membranes are insufficient to fully …
This review concentrates on the advances of atomistic molecular simulations to design and evaluate amorphous microporous polymeric materials for CO2 capture and separations. A …
A Iulianelli, E Drioli - Fuel processing technology, 2020 - Elsevier
The current transformation of our linear and fossil fuels-based economy into a circular economy through the redefined paradigms of the sustainable development is requesting a …
S Kim, YM Lee - Progress in Polymer Science, 2015 - Elsevier
Microporous polymers are a class of microporous materials with high free volume elements and large surface areas. Microporous polymers have received much attention for various …
Gas separation membranes can be applied to a range of processing steps during natural gas treatment. This paper considers the current and future potential of polymeric membranes …