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Kinetic modeling of total oxidation of propane over rhodium
Ran Sui
, John Mantzaras
, Zirui Liu
,
Chung K. Law
Research output
:
Contribution to journal
›
Article
›
peer-review
20
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Scopus citations
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Keyphrases
Propane
100%
Kinetic Model
100%
Total Oxidation
100%
Rhodium
100%
Homogeneous Ignition
75%
Catalytic Reaction Mechanism
75%
Global Reaction
50%
Reaction Parameters
50%
Heat Release Rate
50%
Microcalorimetry
50%
Planar Channel
50%
Hetero-/homogeneous Combustion
50%
Gas Phase
25%
Raman Measurements
25%
Intermediate Species
25%
Atmospheric Pressure
25%
Reaction Mechanism
25%
Kinetic Data
25%
Hetero
25%
Fuel-lean
25%
Dissociative Adsorption
25%
Species Concentration
25%
Propane-air Mixture
25%
Atmospheric Temperature
25%
Decomposition Reaction
25%
Thermodynamically Consistent Model
25%
Kinetic Control
25%
Catalytic Ignition
25%
Gas-phase Chemistry
25%
Microcalorimeter
25%
Catalytic Reactivity
25%
Surface Kinetics
25%
Pressure Dependence of Catalytic Reactivity
25%
Surface Mechanism
25%
Chemistry
Rhodium
100%
Catalytic Reaction Mechanism
100%
Chemical Kinetics Characteristics
100%
Total Oxidation
100%
Microcalorimetry
66%
Reaction Parameter
66%
Kinetics Type
33%
Chemistry
33%
Methane
33%
Dissociative Adsorption
33%
Chemical Decomposition
33%
Catalyst
33%
Engineering
Ignition
100%
Reaction Analysis
100%
Gas-Phase
50%
Homogeneous Combustion
50%
Methane
25%
Air Mixture
25%
Calorimeter
25%
Heat Release Rate
25%
Rate of Heat Release
25%
Surface Kinetics
25%
Atmospheric Pressure
25%
Catalyst
25%