Keyphrases
Specialty Chemicals
100%
Production Transformation
100%
Catalytic Transformation
100%
Levulinic Acid
100%
Sustainable Production
28%
Cellulose
14%
Chemical Fuels
14%
Economic Considerations
14%
Commodity Chemicals
14%
Reaction Pathway
14%
Density Functional Theory
14%
Sustainable Development
14%
High Concentration
14%
Valuable Chemicals
14%
Esters
14%
Low Oxygen Content
14%
5-Aminolevulinic Acid (5-ALA)
14%
Oxygen Concentration
14%
Ab Initio Methods
14%
Lignocellulosic Biomass
14%
Transformation Method
14%
Environmental Considerations
14%
Platform Chemicals
14%
Application Properties
14%
Fossil Resources
14%
Theoretical Calculation Model
14%
2-methyltetrahydrofuran
14%
Diphenolic Acid
14%
Hemicellulose
14%
Fuel Properties
14%
Transportation Fuels
14%
γ-Valerolactone
14%
Engineering
Sustainable Production
100%
Renewables
50%
Potential Application
50%
Monomer
50%
Oxygen Content
50%
Sustainable Development
50%
Lignocellulosic Biomass
50%
Hemicellulose
50%
Fossil Resource
50%
Diphenolic Acid
50%
Methyltetrahydrofuran
50%
Derived Fuel
50%
Material Science
Density
100%
Theoretical Calculation
100%
Ab Initio Method
100%
Fuel Properties
100%
Pharmacology, Toxicology and Pharmaceutical Science
Levulinic Acid
100%
Aminolevulinic Acid
14%
Monomer
14%
Hemicellulose
14%