Authors
Oishi Sanyal, Samuel S Hays, Nicholas E León, Yoseph A Guta, Arun K Itta, Ryan P Lively, William J Koros
Publication date
2020/11/9
Journal
Angewandte Chemie
Volume
132
Issue
46
Pages
20523-20527
Description
Demand for energy‐efficient gas separations exists across many industrial processes, and membranes can aid in meeting this demand. Carbon molecular sieve (CMS) membranes show exceptional separation performance and scalable processing attributes attractive for important, similar‐sized gas pairs. Herein, we outline a mathematical and physical framework to understand these attributes. This framework shares features with dual‐mode transport theory for glassy polymers; however, physical connections to CMS model parameters differ from glassy polymer cases. We present evidence in CMS membranes for a large volume fraction of microporous domains characterized by Langmuir sorption in local equilibrium with a minority continuous phase described by Henry's law sorption. Using this framework, expressions are provided to relate measurable parameters for sorption and transport in CMS materials. We …
Total citations
202020212022202320241291310