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Composite electrolyte membranes for high temperature CO
2
separation
Jennifer L. Wade
, Catherine Lee
, Alan C. West
, Klaus S. Lackner
Research output
:
Contribution to journal
›
Article
›
peer-review
135
Scopus citations
Overview
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2
separation'. Together they form a unique fingerprint.
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Keyphrases
High Temperature
100%
CO2 Flux
100%
Composite Materials
100%
Mechanism-based
100%
Transport Mechanism
100%
Pore Space
100%
Aluminum Oxide
100%
Ion Conductivity
100%
CO2 Separation
100%
Solid Oxide
100%
Gadolinia-doped Ceria
100%
Membrane Device
100%
CO2 Permeation
100%
Dual-ion
100%
CO Selectivity
100%
Yttria-doped Zirconia
100%
Composite Electrolyte Membrane
100%
Oxide Ion
100%
Solid Oxide Electrolyte
100%
Carbonate Ion
100%
Ion Transport Mechanism
100%
Ionic Current
100%
Molten Carbonate Electrolyte
100%
Material Science
Carbon Dioxide
100%
Oxide Compound
75%
Composite Material
25%
Al2O3
25%
Zirconia
25%
Yttrium Oxide
25%
Gadolinium
25%
Cerium Oxide
25%
Chemical Engineering
Yttrium Oxide
100%
Gadolinium
100%
Cerium Compound
100%