An ab initio thermodynamics study of cobalt surface phases under ethanol steam reforming conditions
Author:
Affiliation:
1. William G. Lowrie Department of Chemical and Biomolecular Engineering
2. The Ohio State University
3. Columbus, USA
Abstract
A combination of DFT and ab initio atomistic thermodynamics study illustrated the surface structure evolution of Co0/Co2+ catalysts under ethanol steam reforming conditions.
Publisher
Royal Society of Chemistry (RSC)
Subject
Catalysis
Link
http://pubs.rsc.org/en/content/articlepdf/2014/CY/C4CY00582A
Reference70 articles.
1. L. Jörissen , in Fuel Cells in the Waste-to-Energy Chain , ed. S. J. McPhail, V. Cigolotti and A. Moreno , 2012 , ch. 12, pp. 189–203
2. A review on reforming bio-ethanol for hydrogen production
3. Economic analysis of hydrogen production through a bio-ethanol steam reforming process: Sensitivity analyses and cost estimations
4. Production of hydrogen for fuel cells by steam reforming of ethanol over supported noble metal catalysts
5. Combined DFT, Microkinetic, and Experimental Study of Ethanol Steam Reforming on Pt
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