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Kinetics of aromatics hydrogenation on HBEA
Sukaran S. Arora,
Aditya Bhan
Chemical Engineering and Materials Science
Research output
:
Contribution to journal
›
Article
›
peer-review
10
Scopus citations
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Keyphrases
Benzene
100%
Aromatic Hydrogenation
100%
Aromatics
66%
Ring Opening
66%
Hydrogenation
66%
Substituted Benzenes
66%
Hydrogenated
66%
Methylcyclopentane
66%
Zeolite
33%
High Temperature
33%
Hydrocarbons
33%
Brønsted Acid
33%
Styrene
33%
Toluene
33%
Six-membered Rings
33%
1-Methyl
33%
Naphthalene
33%
Cyclohexene
33%
Rate-determining Step
33%
Desorption
33%
Five-membered
33%
Five-membered Rings
33%
Surface Species
33%
Interconversion
33%
Kinetic Behavior
33%
Ethylbenzene
33%
Cyclopentane
33%
Alkenyl
33%
H2 Pressure
33%
First Hydrogenation
33%
Toluene Hydrogenation
33%
Co-reaction
33%
Acid Zeolites
33%
Styrene Hydrogenation
33%
Ring Reduction
33%
Naphthalene Hydrogenation
33%
Chemistry
Hydrogenation
100%
Benzene
62%
Styrene
25%
Methylcyclopentane
25%
Naphthalene
25%
formation
25%
Ring Opening Reaction
12%
Cyclohexene
12%
Cyclopentene
12%
Desorption
12%
Ethylbenzene
12%
six membered rings
12%
Chemical Engineering
Hydrogenation
100%
Styrene
25%
Naphthalene
25%
Desorption
12%
Ethylbenzene
12%