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MOF-Derived Iron Catalysts for Nonoxidative Propane Dehydrogenation
Michele L. Sarazen
, Christopher W. Jones
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peer-review
35
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Keyphrases
Propene
100%
Iron Catalyst
100%
Non-oxidative Dehydrogenation
100%
Metal-organic Framework-derived
100%
Pyrolysis
66%
Metal-organic Frameworks (MOFs)
66%
Propane Dehydrogenation
66%
Iron Phases
66%
Pre-reduction
66%
Diffraction
33%
Reduction Conditions
33%
Carbon Support
33%
Carbides
33%
X-ray Absorption Spectroscopy
33%
Alkenes
33%
Hydrocarbons
33%
X-ray
33%
Ethene
33%
Reaction Conditions
33%
Light Alkanes
33%
Temperature Affect
33%
Oxide Metal
33%
Butene
33%
Dehydrogenation
33%
High Temperature Reduction
33%
Metallic Iron
33%
Shale Gas
33%
Catalyst Structure
33%
High-temperature Reaction
33%
Fe-containing
33%
Product Selectivity
33%
Pyrolysis Temperature
33%
Fe-BTC
33%
Catalyst State
33%
Isoconversion Method
33%
Supported Iron Catalyst
33%
Framework Fe
33%
Petrochemical Feedstocks
33%
Chemical Engineering
Propylene
100%
Metal-Organic Frameworks
100%
Propane Dehydrogenation
100%
Pyrolysis
66%
Olefin
33%
Dehydrogenation
33%
Butene
33%
Ethylene
33%
Hydrocarbon
33%
Oxide
33%
Pyrolysis Temperature
33%
Supported Iron Catalyst
33%