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Analysis of the Surface-Enhanced Homogeneous Reaction during Oxidative Dehydrogenation of Propane over a V-Mg-O Catalyst
Kimmai T. Nguyen,
Harold H. Kung
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Corresponding author for this work
Chemical and Biological Engineering
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Article
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peer-review
30
Scopus citations
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INIS
surfaces
100%
catalysts
100%
oxidation
100%
propane
100%
dehydrogenation
100%
reactors
60%
conversion
60%
propyl radicals
60%
distribution
40%
reaction kinetics
40%
pyrolysis
40%
hydroxyl radicals
40%
comparative evaluations
20%
volume
20%
modeling
20%
gases
20%
desorption
20%
methyl radicals
20%
ethyl radicals
20%
Chemistry
Propane
100%
Analytical Method
100%
Surface
100%
Chemical Reaction
100%
Catalyst
100%
Oxidative Dehydrogenation
100%
Rate Constant
42%
Reactor
42%
Product Distribution
28%
Rate
28%
Desorption
14%
Oxidation Reaction
14%
Ethyl
14%
Chemical Specie
14%
Reactive Intermediate
14%
Gas Phase Reactions
14%
Volume
14%
Chemical Engineering
Propane
100%
Oxidative Dehydrogenation
100%
Oxidative Pyrolysis
40%
Desorption
20%
Oxidation Reaction
20%