Modelling and simulation of an industrial RFCCU-riser reactor for catalytic cracking of vacuum residue

A one-dimensional adiabatic mathematical model was developed for the riser reactor of an industrial residue fluid catalytic cracking unit (RFCCU). A seven-lump kinetic model was presented for the catalytic cracking of vacuum residue, taking cognisance of diffusion resistance, which is a departure fr...

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Veröffentlicht in:Applied petrochemical research 2018-12, Vol.8 (4), p.219-237
Hauptverfasser: Olafadehan, Olaosebikan Abidoye, Sunmola, Opeyemi Praise, Jaiyeola, Adeleke, Efeovbokhan, Vincent, Abatan, Olubunmi Grace
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Sprache:eng
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Zusammenfassung:A one-dimensional adiabatic mathematical model was developed for the riser reactor of an industrial residue fluid catalytic cracking unit (RFCCU). A seven-lump kinetic model was presented for the catalytic cracking of vacuum residue, taking cognisance of diffusion resistance, which is a departure from the general norm in the literature. Also, heat transfer resistance between the fluid and solid phases was incorporated into the energy balances for instantaneous and one-dimensional vaporization of feedstock. The developed model was a set of twelve coupled, highly non-linear and stiff ordinary differential equations, ODEs, which was numerically solved with an implicit MATLAB built-in solver, ode23t, designed deliberately for handling stiff differential equations to circumvent the problem of instability associated with explicit methods. An excellent agreement was achieved between the industrial RFCCU plant data and the simulated results of this study, with average absolute deviation being 
ISSN:2190-5525
2190-5525
2190-5533
DOI:10.1007/s13203-018-0212-y