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Intermediates and kinetics for phenol gasification in supercritical water
Chad M. Huelsman,
Phillip E. Savage
Chemical Engineering
Research output
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Article
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peer-review
76
Scopus citations
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Keyphrases
Liquid Phase
100%
Gasification
100%
Supercritical Water
100%
High Temperature
66%
Gas Phase
66%
Kinetic Model
66%
CH 4
66%
Polycyclic Aromatic Hydrocarbons
33%
Reaction Time
33%
CO 2
33%
Temperature Water
33%
Pyrolysis
33%
Reaction Products
33%
Water Density
33%
Hydrothermal Reaction
33%
Reaction Pathway
33%
Reaction Intermediates
33%
Precursor Molecules
33%
Time of Concentration
33%
Dibenzofuran
33%
Environmental Risk
33%
Competing Effect
33%
Gas Chromatographic Separation
33%
Water Reaction
33%
Radical Polymerization
33%
Water Concentration
33%
Reactant Concentration
33%
Chromatographic Methods
33%
First-order Kinetics
33%
Phenol Concentration
33%
Supercritical Water Gasification
33%
Formation Pathway
33%
Char Formation
33%
Char Yield
33%
Product Gas
33%
Excess Water
33%
Chemical Engineering
Phenol
100%
Supercritical Water
100%
Pyrolysis
12%
Polycyclic Aromatic Hydrocarbon
12%
Free Radical Polymerization
12%
Dimer
12%
Phenol Concentration
12%