Role of lattice oxygen in oxidative steam reforming of toluene as a tar model compound over Ni/La0.8Sr0.2AlO3 catalyst
Author:
Affiliation:
1. Department of Chemical and Biomolecular Engineering
2. National University of Singapore
3. 4 Engineering Drive 4
4. Singapore 117585
Abstract
High catalytic performance of Ni/La0.8Sr0.2AlO3 catalyst due to high amount of mobile lattice oxygen which favors direct partial oxidation of toluene while gas-phase oxygen favors complete oxidation. Both oxygen species actively oxidize coke deposited on catalyst surface, conferring coking resistance.
Publisher
Royal Society of Chemistry (RSC)
Subject
Catalysis
Link
http://pubs.rsc.org/en/content/articlepdf/2015/CY/C5CY00412H
Reference59 articles.
1. P. Basu , Biomass Gasification and Pyrolysis: Practical Design and Theory, Elsevier Inc., 2010
2. Iron-based materials as tar depletion catalysts in biomass gasification: Dependency on oxygen potential
3. Catalytic Steam Gasification of Biomass: Catalysts, Thermodynamics and Kinetics
4. Synthesis of Transportation Fuels from Biomass: Chemistry, Catalysts, and Engineering
5. Role of support lattice oxygen on steam reforming of toluene for hydrogen production over Ni/La0.7Sr0.3AlO3−δ catalyst
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