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Thermo-chemical conversion of waste lipids to distillates
Brajendra K. Sharma
, Derek Vardon
, Timothy J. Strathmann
, Nandakishore Rajagopalan
Illinois Sustainable Technology Center
Research output
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peer-review
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Keyphrases
Thermochemical Conversion
100%
Distillate
100%
Bio-oil
100%
Soapstock
100%
Waste Lipids
100%
Hydrothermal Liquefaction
66%
Physical Properties
33%
Functional Groups
33%
Viscosity
33%
Structural Characterization
33%
Elemental Analysis
33%
Hydrogen Distribution
33%
Molecular Weight Distribution
33%
Heating Value
33%
Gas Chromatography-mass Spectrometry
33%
Advanced Spectroscopic Techniques
33%
Main Components
33%
Boiling Point
33%
Bio-oil Yield
33%
Pyrolysis Oil
33%
Chromatographic Methods
33%
Type Distribution
33%
Yield Composition
33%
Distribution Components
33%
High Moisture
33%
Nitrogen Atmosphere
33%
Pyrolysis Process
33%
Carbon Distribution
33%
TLC-FID
33%
Oil Structure
33%
Type Classes
33%
Hydrocarbon Types
33%
Bio-oil Composition
33%
Yield Structure
33%
Engineering
Thermochemical Conversion
100%
Distillate
100%
Bio-Oil
100%
Soapstock
60%
Pyrolysis
40%
Fluid Viscosity
20%
Functional Group
20%
Boiling Point
20%
Conversion Process
20%
Hydrothermal Liquefaction Process
20%
Hydrothermal Liquefaction
20%
Hydrogen Distribution
20%
Main Component
20%
Gas Chromatography Mass Spectrometry
20%
Distribution Type
20%
Thin-Layer Chromatography
20%
Chromatographic Technique
20%
Calorific Value
20%
Molar Mass Distribution
20%
Chemical Engineering
Pyrolysis
100%
Functional Group
50%
Gas Chromatography Mass Spectrometry
50%
Thin-Layer Chromatography
50%
Bio-oil Yield
50%
Chemical Element
50%