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Membrane thinning for efficient CO2 capture
by
Fujikawa, Shigenori
, Selyanchyn, Roman
in
100 Materials
/ 102 Porous / Nanoporous / Nanostructured materials
/ 105 Low-Dimension (1D/2D) materials
/ 206 Energy conversion / transport / storage / recovery
/ 306 Thin film / Coatings
/ 50 Energy Materials
/ Carbon dioxide
/ carbon neutral energy
/ Carbon sequestration
/ Fluxes
/ Focus on Carbon-neutral Energy Science and Technology
/ freestanding nanomembrane
/ Gas permeation
/ Gas separation
/ membrane gas separation
/ Membranes
/ molecularly tailored nanochannel
/ Nanomembrane
/ Review
/ Thinning
2017
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Membrane thinning for efficient CO2 capture
by
Fujikawa, Shigenori
, Selyanchyn, Roman
in
100 Materials
/ 102 Porous / Nanoporous / Nanostructured materials
/ 105 Low-Dimension (1D/2D) materials
/ 206 Energy conversion / transport / storage / recovery
/ 306 Thin film / Coatings
/ 50 Energy Materials
/ Carbon dioxide
/ carbon neutral energy
/ Carbon sequestration
/ Fluxes
/ Focus on Carbon-neutral Energy Science and Technology
/ freestanding nanomembrane
/ Gas permeation
/ Gas separation
/ membrane gas separation
/ Membranes
/ molecularly tailored nanochannel
/ Nanomembrane
/ Review
/ Thinning
2017
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Do you wish to request the book?
Membrane thinning for efficient CO2 capture
by
Fujikawa, Shigenori
, Selyanchyn, Roman
in
100 Materials
/ 102 Porous / Nanoporous / Nanostructured materials
/ 105 Low-Dimension (1D/2D) materials
/ 206 Energy conversion / transport / storage / recovery
/ 306 Thin film / Coatings
/ 50 Energy Materials
/ Carbon dioxide
/ carbon neutral energy
/ Carbon sequestration
/ Fluxes
/ Focus on Carbon-neutral Energy Science and Technology
/ freestanding nanomembrane
/ Gas permeation
/ Gas separation
/ membrane gas separation
/ Membranes
/ molecularly tailored nanochannel
/ Nanomembrane
/ Review
/ Thinning
2017
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Journal Article
Membrane thinning for efficient CO2 capture
2017
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Overview
Enhancing the fluxes in gas separation membranes is required for utilizing the membranes on a mass scale for CO
2
capture. Membrane thinning is one of the most promising approaches to achieve high fluxes. In addition, sophisticated molecular transport across membranes can boost gas separation performance. In this review, we attempt to summarize the current state of CO
2
separation membranes, especially from the viewpoint of thinning the selective layers and the membrane itself. The gas permeation behavior of membranes with ultimate thicknesses and their future directions are discussed.
Publisher
Taylor & Francis,Taylor & Francis Ltd,Taylor & Francis Group
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