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Mathematical Modelling of Plastic Waste Pyrolysis Kinetics
S. J. Ojolo,
Sikiru O. Ismail
Materials and Structures
Centre for Engineering Research
School of Physics, Engineering & Computer Science
Department of Engineering and Technology
Centre for Climate Change Research (C3R)
Centre for Future Societies Research
Research output
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peer-review
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Keyphrases
Waste Pyrolysis
100%
Mathematical Modeling
100%
Plastic Waste
100%
Pyrolysis Kinetics
100%
Waste Types
37%
Mathematical Model
25%
Reactor
25%
Pyrolysis
25%
Pyrolysis Temperature
25%
Flash Pyrolysis
12%
Rate of Increase
12%
Pyrolysis Reactor
12%
Conversion Rate
12%
Temperature Rise
12%
Plastic Types
12%
Fast Pyrolysis
12%
Thermogravimetric Properties
12%
Temperature Profile
12%
Engineering
Pyrolysis
100%
Mathematical Modeling
100%
Mathematical Model
25%
Optimal Design
12%
Temperature Increase
12%
Temperature Profile
12%
Experimental Result
12%
Pyrolysis Reactor
12%
Conversion Rate
12%
Rate Increase
12%
Chemical Engineering
Pyrolysis
100%
Polyethylene
75%
High Density Polyethylenes
75%
Pyrolysis Reactor
12%
Material Science
Density
100%