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Enhancing In Situ Burning With Ferrocene for Improved Combustion and Reduced Smoke Production
Joshua O. Olowoyo
, David Cooper
, Qin Xin
, Kurt Hansen
, Amarjeet Bassi
, Kenneth Lee
, Ying Zheng
*
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Corresponding author for this work
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peer-review
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Dive into the research topics of 'Enhancing In Situ Burning With Ferrocene for Improved Combustion and Reduced Smoke Production'. Together they form a unique fingerprint.
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Keyphrases
In-situ Burning
100%
Smoke Production
100%
Ferrocene
100%
Diesel
28%
Burning Experiment
28%
Dilbit
28%
Crude Oil
28%
Bitumen
28%
Commercial Diesel
14%
High Boiling Point
14%
Decarboxylation Reaction
14%
Oxygen Addition
14%
Oxidation Reaction
14%
Temperature Stage
14%
Reduced Resistance
14%
Atmospheric Air
14%
Molecular Species
14%
Ignition
14%
Oil Oxidation
14%
Isoconversional Kinetics
14%
Oil Spill
14%
Open Water Bodies
14%
Apparent Activation Energy
14%
Combustion Kinetics
14%
FTIR Fourier Transform Infrared Spectroscopy
14%
Bond Scission
14%
Oxidation Behavior
14%
Thermal Kinetics
14%
Incomplete Combustion
14%
Oxygenated Hydrocarbons
14%
Spectroscopic System
14%
Engineering
Smoke
100%
Crude Oil
50%
Oxidation Reaction
25%
Atmospheric Air
25%
Iso
25%
Open Water
25%
Ignition
25%
Oil Spill
25%
Incomplete Combustion
25%
Apparent Activation Energy
25%
Chemical Engineering
Smoke
100%
Fourier Transform
33%