Advances in Chemical Engineering and Science

Advances in Chemical Engineering and Science

ISSN Print: 2160-0392
ISSN Online: 2160-0406
www.scirp.org/journal/aces
E-mail: aces@scirp.org
"Parametric Sensitivity Studies in a Commercial FCC Unit"
written by Prabha K Dasila, Indranil Choudhury, Deoki Saraf, Sawaran Chopra, Ajay Dalai,
published by Advances in Chemical Engineering and Science, Vol.2 No.1, 2012
has been cited by the following article(s):
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[3] A Review of Modelling of the FCC Unit–Part I: The Riser
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[4] A Review of Modelling of the FCC Unit—Part II: The Regenerator
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[5] Association Measure and Compact Prediction for Chemical Process Data from an Information-Theoretic Perspective
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[6] Modelling, control and supervisory optimization of generalized predictive control in catalytic cracking reactor
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[7] Comparison of the Steady-State Performances of Regulatory Control Structures for Fluid Catalytic Cracking Unit
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[8] Comparison of the Steady-State Performances of 2× 2 Regulatory Control Structures for Fluid Catalytic Cracking Unit.
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[9] State estimation of a FCCU with Unscented Kalman Filter
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[10] Development of Dispersion Models for the Simulation of Fluid Catalytic Cracking of Vacuum Gas Oil in Riser Reactor
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[11] Computational Fluid Dynamics (CFD) Analysis of Phthalic Anhydride's Yield Using Lab Synthesized and Commercially Available (V2O5/TiO2) Catalyst
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[12] Model based analysis of the effect of 2-ethylphenol addition to n-decane in fluid catalytic cracking over a series of zeolites
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[13] Modelling and simulation of an industrial RFCCU-riser reactor for catalytic cracking of vacuum residue
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[14] Estimación de estado de una unidad de craqueo catalítico fluido con filtro desaromatizado de Kalman
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[15] Computational Fluid Dynamics (CFD) Analysis of Phthalic Anhydride's Yield Using Lab Synthesized and Commercially Available (V2O5/TiO2) Catalyst.
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[16] the vision of application of multiobjective optimization and genetic algorithm in modeling and simulation of the riser reactor of a fluidized catalytic cracking unit: a …
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[18] The vision of application of multiobjective optimization and genetic algorithm in modeling and simulation of the riser reactor of a fluidized catalytic cracking …
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[19] Modeling and Simulation of the Fluidized Bed and Freeboard of an FCCU Regenerator
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[20] Seventeen-lump model for the simulation of an industrial fluid catalytic cracking unit (FCCU)
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[21] Maximizing Light Cycle Oil (Lco) Production In Fluid Catalytic Cracker
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[23] Fluid catalytic cracking unit control using model predictive control and adaptive neuro fuzzy inference system: Comparative study
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[24] Modelling of regenerator units in fluid catalytic cracking processes
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[25] Kinetic mechanism for the cracking of Colombian heavy crude oil in refinery equipments
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[26] Automation of FCC Centered Oil Refinery for Diesel Maximization
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[27] A Computational fluid dynamics (CFD) comparison of 3-Lump and 4-Lump kinetic models for predicting gasoline, light gases and coke yield in fluid catalytic cracking ( …
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[28] Simulation of fcc riser reactor using five lumpmodel
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[29] SIMULATION OF FCC UNIT USING FOUR LUMP MODEL
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[30] A Computational fluid dynamics (CFD) comparison of 3-Lump and 4-Lump kinetic models for predicting gasoline, light gases and coke yield in fluid catalytic cracking …
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[31] Prediction of gasoline yield in a fluid catalytic cracking (FCC) riser using k-epsilon turbulence and 4-lump kinetic models: A computational fluid dynamics (CFD …
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[33] A Computational fluid dynamics (CFD) comparison of 3-Lump and 4-Lump kinetic models for predicting gasoline, light gases and coke yield in fluid catalytic cracking (FCC) riser
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[34] Simulation of Fcc Riser Reactor using Five Lump Model
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[35] CONTROL OF A FLUIDIZED-BED CATALYTIC CRACKING UNIT USING PID AND FUZZY LOGIC CONTROLLERS
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[36] Modelling, Simulation And Control Of An Fcc Unit
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[37] Simulation of an Industrial Fluid Catalytic Cracking Riser Reactor Using a Novel 10-Lump Kinetic Model and Some Parametric Sensitivity Studies
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[38] Commande prédictive d'un craqueur catalytique à lit fluidisé avec estimation des paramètres clés
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[39] On The Conversion Of Gas Oil In Fluid Catalytic Cracking Risers: Application Of Residence Time Distribution (Rtd) Concept
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[40] Prediction of gasoline yield in a fluid catalytic cracking (FCC) riser using k-epsilon turbulence and 4-lump kinetic models: A computational fluid dynamics (CFD) approach
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[41] Effect of Independent Variables on the Maximization of Gasoline Yield and Closed Loop Studies in Catalytic Cracking Unit
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[42] Discontinuity analysis for the treatment of lumped parameter chemical engineering systems for singular inputs
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[43] Kinetic modelling and simulation of fluid catalytic cracking units
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[44] Discontinuity analysis for the treatment of lumped-parameter chemical engineering systems for singular inputs
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