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Inverse problem analysis for identification of reaction kinetics constants in microreactors for biodiesel synthesis
by
Pontes, P C
, Naveira-Cotta, C P
in
Algorithms
/ Biodiesel fuels
/ Eigenvectors
/ Exact solutions
/ Heuristic methods
/ Integral transforms
/ Inverse problems
/ Liquid flow
/ Mass transfer
/ Microreactors
/ Parallel plates
/ Particle swarm optimization
/ Physics
/ Reaction kinetics
/ Transesterification
/ Triglycerides
2016
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Inverse problem analysis for identification of reaction kinetics constants in microreactors for biodiesel synthesis
by
Pontes, P C
, Naveira-Cotta, C P
in
Algorithms
/ Biodiesel fuels
/ Eigenvectors
/ Exact solutions
/ Heuristic methods
/ Integral transforms
/ Inverse problems
/ Liquid flow
/ Mass transfer
/ Microreactors
/ Parallel plates
/ Particle swarm optimization
/ Physics
/ Reaction kinetics
/ Transesterification
/ Triglycerides
2016
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Do you wish to request the book?
Inverse problem analysis for identification of reaction kinetics constants in microreactors for biodiesel synthesis
by
Pontes, P C
, Naveira-Cotta, C P
in
Algorithms
/ Biodiesel fuels
/ Eigenvectors
/ Exact solutions
/ Heuristic methods
/ Integral transforms
/ Inverse problems
/ Liquid flow
/ Mass transfer
/ Microreactors
/ Parallel plates
/ Particle swarm optimization
/ Physics
/ Reaction kinetics
/ Transesterification
/ Triglycerides
2016
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Inverse problem analysis for identification of reaction kinetics constants in microreactors for biodiesel synthesis
Journal Article
Inverse problem analysis for identification of reaction kinetics constants in microreactors for biodiesel synthesis
2016
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Overview
The theoretical analysis for the design of microreactors in biodiesel production is a complicated task due to the complex liquid-liquid flow and mass transfer processes, and the transesterification reaction that takes place within these microsystems. Thus, computational simulation is an important tool that aids in understanding the physical-chemical phenomenon and, consequently, in determining the suitable conditions that maximize the conversion of triglycerides during the biodiesel synthesis. A diffusive-convective-reactive coupled nonlinear mathematical model, that governs the mass transfer process during the transesterification reaction in parallel plates microreactors, under isothermal conditions, is here described. A hybrid numerical-analytical solution via the Generalized Integral Transform Technique (GITT) for this partial differential system is developed and the eigenfunction expansions convergence rates are extensively analyzed and illustrated. The heuristic method of Particle Swarm Optimization (PSO) is applied in the inverse analysis of the proposed direct problem, to estimate the reaction kinetics constants, which is a critical step in the design of such microsystems. The results present a good agreement with the limited experimental data in the literature, but indicate that the GITT methodology combined with the PSO approach provide a reliable computational algorithm for direct-inverse analysis in such reactive mass transfer problems.
Publisher
IOP Publishing
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