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Single-Phase Catalysis for Reductive Etherification of Diesel Bioblendstocks
Glenn Hafenstine
, Nabila Huq
, Davis Conklin
,
Matthew Wiatrowski
, Xiangchen Huo
, Qianying Guo
, Kinga Unocic
, Derek Vardon
Catalytic Carbon Transformation and Scale-Up Center
Oak Ridge National Laboratory
Research output
:
Contribution to journal
›
Article
›
peer-review
24
Scopus Citations
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Dive into the research topics of 'Single-Phase Catalysis for Reductive Etherification of Diesel Bioblendstocks'. Together they form a unique fingerprint.
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Chemistry
Metal Oxide
100%
Etherification
100%
Surface Area
66%
acidity
66%
Catalyst Deactivation
33%
Reaction Activation Energy
33%
Nanoparticle Size
33%
Catalyst Support
33%
Ketones
33%
Hydrogenation
33%
Niobium
33%
Diesel Fuel
33%
Size Effect
33%
Catalyst Activity
33%
stability
33%
formation
33%
Thermal Stability
33%
coke
33%
Catalyst Regeneration
33%
acetalization
33%
Engineering
Mols
100%
Etherification
100%
Applicability
50%
Enzymatic Activity
25%
Nanoparticles
25%
Flow Reactor
25%
Equivalent Weight
25%
Apparent Activation Energy
25%
Catalyst Deactivation
25%
Size Effect
25%
Hydrogenation
25%
Diesel Fuel
25%
Chemical Engineering
Etherification
100%
Catalyst Deactivation
33%
Hydrogenation
33%
Nanoparticle
33%
Coke Formation
33%
Batch Reactor
33%
Oxide Catalysts
33%
Space Velocity
33%
Time on Stream
33%