The effect of specific surface area on the activity of nano-scale ceria catalysts for methanol decomposition with and without steam at SOFC operating temperatures
Author:
Publisher
Elsevier BV
Subject
Applied Mathematics,Industrial and Manufacturing Engineering,General Chemical Engineering,General Chemistry
Reference26 articles.
1. Improving catalyst structures and reactor configurations for autothermal reaction systems: application to solid oxide fuel cells;Aguiar;Chemical Engineering Science,2001
2. The multiple roles for catalysis in the production of H2;Amor;Applied Catalysis A,1999
3. Characterization of Cu–CeO2 direct hydrocarbon anodes in a solid oxide fuel cell with lanthanum gallate electrolyte;An;Solid State Ionics,2004
4. Methanol as a direct fuel in intermediate temperature (500–600∘C) solid oxide fuel cells with copper based anodes;Brett;Chemical Engineering Science,2005
5. A comparative study of fuels for on-board hydrogen production for fuel-cell-powered automobiles;Brown;International Journal of Hydrogen Energy,2001
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