Carbon molecular sieve (CMS) membranes have been developed to replace or support energy-intensive cryogenic distillation for olefin/paraffin separation. Olefin and paraffin have similar molecular properties, but can be separated effectively by a CMS membrane with a rigid, slit-like pore structure. A variety of polymer precursors can give rise to different outcomes in terms of the structure and performance of CMS membranes. Herein, for olefin/paraffin separation, the CMS membranes derived from a number of polymer precursors (such as polyimides, phenolic resin, and polymers of intrinsic microporosity, PIM) are introduced, and olefin/paraffin separation properties of those membranes are summarized. The effects from incorporation of inorganic m...
Carbon molecular sieve (CMS) is a type of carbon-based membranes with amorphous microporous structur...
A poly [2, 2'-(p-oxydiphenylene)-5, 5'-bibenzimidazole] (OPBI) was employed to pyrolyze under an ine...
Novel carbon molecular sieve membranes with high separation performance and stability in the presenc...
The goal of this work is to develop a framework to understand the material science options to fabric...
For ethylene/ethane separation, a CMS (carbon molecular sieve) membrane was developed with a PAN (po...
Nitrogen-selective Carbon Molecular Sieve (CMS) membranes were developed for nitrogen/methane separa...
Membrane separation of propane and propylene provides a more energy-efficient route than traditional...
Membrane separation of propane and propylene provides a more energy-efficient route than traditional...
Abstract: The applications of carbon membranes are becoming more important than ever due to their re...
Carbon molecular sieve membranes having desirable selectivity for ethylene/ethane separations are pr...
The use of membranes as a new means for olefin/paraffin separation has attracted the attention of ma...
Carbon molecular sieve (CMS) membranes are usually prepared from dense polymeric precursors that alr...
Membrane-based technology has proved its practicality in gas separation through its performance. Var...
Polymer/molecular sieve composites are gaining headway as new materials for separations. While this ...
Membrane separations are simple, energy efficient processes, which can be economically competitive w...
Carbon molecular sieve (CMS) is a type of carbon-based membranes with amorphous microporous structur...
A poly [2, 2'-(p-oxydiphenylene)-5, 5'-bibenzimidazole] (OPBI) was employed to pyrolyze under an ine...
Novel carbon molecular sieve membranes with high separation performance and stability in the presenc...
The goal of this work is to develop a framework to understand the material science options to fabric...
For ethylene/ethane separation, a CMS (carbon molecular sieve) membrane was developed with a PAN (po...
Nitrogen-selective Carbon Molecular Sieve (CMS) membranes were developed for nitrogen/methane separa...
Membrane separation of propane and propylene provides a more energy-efficient route than traditional...
Membrane separation of propane and propylene provides a more energy-efficient route than traditional...
Abstract: The applications of carbon membranes are becoming more important than ever due to their re...
Carbon molecular sieve membranes having desirable selectivity for ethylene/ethane separations are pr...
The use of membranes as a new means for olefin/paraffin separation has attracted the attention of ma...
Carbon molecular sieve (CMS) membranes are usually prepared from dense polymeric precursors that alr...
Membrane-based technology has proved its practicality in gas separation through its performance. Var...
Polymer/molecular sieve composites are gaining headway as new materials for separations. While this ...
Membrane separations are simple, energy efficient processes, which can be economically competitive w...
Carbon molecular sieve (CMS) is a type of carbon-based membranes with amorphous microporous structur...
A poly [2, 2'-(p-oxydiphenylene)-5, 5'-bibenzimidazole] (OPBI) was employed to pyrolyze under an ine...
Novel carbon molecular sieve membranes with high separation performance and stability in the presenc...