Keyphrases
Hydrocarbons
100%
Plastic Waste
100%
Catalytic Fast Pyrolysis
100%
Aromatic Hydrocarbons
100%
Polycarbonate Plastic
100%
Polystyrene Plastics
100%
Polystyrene
60%
ZSM-5
60%
Monocyclic Aromatic Hydrocarbons
60%
Zeolite Y
40%
Molar Ratio
40%
Rationing
20%
Catalytic Conversion
20%
Mobil
20%
Alternative Energy
20%
Additive Effect
20%
Polyethylene
20%
Hydrogen Donor
20%
Aluminosilicate
20%
Polypropylene
20%
Temperature Zones
20%
Energy-based
20%
Non-catalytic
20%
Hydrogen-rich
20%
ZSM-5 Zeolite
20%
Catalyst Type
20%
Catalytic Decomposition
20%
Thermochemical Conversion
20%
Competing Reactions
20%
Faujasite
20%
Si Effect
20%
Catalytic Degradation
20%
Degradation Temperature
20%
Benzene Formation
20%
Phenolic Product
20%
Aromatic Oxygenates
20%
Fold Increase
20%
Competitive Reaction
20%
Polycarbonate Wastes
20%
Chemical Engineering
Polystyrene
100%
Polycarbonate
100%
Co-Pyrolysis
100%
Aromatic Hydrocarbon
71%
Monocyclic Aromatic Hydrocarbons
42%
Polypropylene
14%
Aluminosilicate
14%
Catalytic Degradation
14%
Chemistry
Pyrolysis
100%
Arene
100%
Polycarbonate
100%
Hydrogen
37%
formation
25%
Catalytic Decomposition
12%
Poly(propylene)
12%
Faujasite
12%
Aluminosilicates
12%
Catalyst Type
12%
Hydrogen Donor
12%
Benzene
12%
Engineering
Polycarbonate
100%
Pyrolysis
100%
Aromatics
100%
Molar Ratio
22%
Temperature Region
11%
Fold Increase
11%
Thermochemical Conversion
11%
Phenolics
11%
Competing Reaction
11%
Renewable Energy
11%