Keyphrases
Thermochemical Conversion
100%
Diesel Fuel
100%
Thermal Cracking
100%
Post-consumer
100%
Waste Plastics
100%
Plastic Fuel
100%
Diesel
87%
Ultra-low Sulfur Diesel
87%
Crude Oil
62%
Pyrolysis
37%
Oxidative Stability
37%
Fuel Properties
37%
Blend Component
25%
Energy Content
25%
Distillation
25%
Kinematic Viscosity
25%
Low-temperature Properties
12%
Blending Ratio
12%
Reaction Conditions
12%
Oil Yield
12%
Residence Time
12%
Reaction Temperature
12%
Non-catalytic
12%
Elemental Composition
12%
Batch Reactor
12%
Polypropylene
12%
Plastic Materials
12%
Best Combination
12%
Distillate
12%
Boiling Point
12%
Petroleum
12%
Low-temperature Performance
12%
Gas Oil
12%
Cold Filter Plugging Point
12%
Gasoline Fuel
12%
Pilot-scale System
12%
Vacuum Gas Oil
12%
Petrodiesel
12%
Pour Point
12%
EN 590
12%
Motor Gasoline
12%
Polyethylene Plastic
12%
Waste Polypropylene
12%
Pilot Production
12%
Synthetic Diesel
12%
Polypropylene Plastic
12%
Waste Polyethylene
12%
Synthetic Gasoline
12%
Engineering
Thermochemical Conversion
100%
Thermal Cracking
100%
Diesel Fuel
100%
Crude Oil
62%
Pyrolysis
37%
Oxidative Stability
37%
Low-Temperature
25%
Energy Content
25%
Gas Oil
25%
Kinematic Viscosity
25%
Relative Performance
12%
Boiling Point
12%
Elemental Composition
12%
Scale Production
12%
Distillate
12%
Temperature Property
12%
Optimum Condition
12%
Cold Filter Plugging Point
12%
Pour Point
12%
Motor Gasoline
12%
Chemical Engineering
Pyrolysis
100%
Polypropylene
66%
Oxidative Addition
33%
Chemical Element
33%
Batch Reactor
33%
Vacuum Gas Oil
33%
Material Science
Diesel Fuel
100%
Fuel Properties
37%
Polypropylene
25%
Kinematic Viscosity
25%
Gas Oil
25%
Density
12%
Polyethylene
12%
Plastic Material
12%
Oxidative Addition
12%