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Hydrothermal Liquefaction to Convert Biomass into Crude Oil
Yuanhui Zhang
Agricultural and Biological Engineering
Grainger College of Engineering
Mechanical Science and Engineering
Bioengineering
National Center for Supercomputing Applications (NCSA)
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Keyphrases
Biomass Feedstock
14%
Biowaste
14%
Carbon Dioxide
14%
Coal-based
14%
Crop Residues
14%
Crude Oil
100%
Diatom Algae
14%
Direct Liquefaction
28%
Dry Biomass
28%
Fisher-Tropsch
14%
Food Processing Waste
14%
Fossil Fuels
14%
Heating Process
14%
High Pressure
14%
High Temperature
14%
Hydrothermal Liquefaction
100%
Hydrothermal Pyrolysis
14%
Lignocellulose
14%
Liquid Oil
28%
Manure Processing
14%
Natural Coal
14%
Natural Gas
14%
Organic Compounds
14%
Petroleum
28%
Pressurized Oxygen
14%
Pyrolysis
28%
Reform Process
14%
Short-chain Hydrocarbon
14%
Solid Biomass
14%
State-of-the-art Knowledge
14%
Syngas
57%
Thermochemical Conversion
42%
Engineering
Crude Oil
100%
Fossil Fuel
14%
Heating Process
14%
Hydrocarbon Chain
14%
Hydrothermal Liquefaction
100%
Natural Gas
14%
Pyrolysis
42%
Syngas
57%
Thermochemical Conversion
42%
Waste Processing
14%
Chemical Engineering
Industrial Heating
33%
Pyrolysis
100%
Waste Processing
33%