Publication | Closed Access
Optimization of operating temperature for continuous glucose isomerase reactor system
26
Citations
27
References
1981
Year
Process DesignFructose ProductivityEngineeringBioenergeticsBiochemical EngineeringProcess ControlBiotechnologyMetabolic EngineeringProcess EngineeringOperating TemperatureKinetic ParametersMaximum PrincipleDownstream ProcessingFood BioprocessingImmobilized EnzymeProcess OptimizationEnzyme Immobilization
Abstract The Optimal temperature control policy for an immobilized glucose isomerase reactor system was studied. This optimization study takes into consideration the enzyme deactivation during the continuous reactor operation. The Kinetic parameters including reduced Michaelis–Menten constant ( K̄ m ), reduced maximum reaction rate ( V̄ m ), equilibrium constant ( K e ), and enzyme deactivation constant ( k d ) and their functional relationships to temperature were determined experimentally. The optimization problem was formulated in terms of maximization of fructose productivity as the objective function. The optimization problem was solved by making use of a maximum principle and the control vector iteration method. Approximately optimal temperature control policy was employed as compared with the reactor operation at an optimum constant temperature.
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