Mathematical Analysis of Enzyme Savings in a Process Operated in a Batch Bioreactor with the Optimal Temperature Control under Temperature Constraints

Author:

Grubecki Ireneusz1,Politowska Dagmara1

Affiliation:

1. Faculty of Chemical Technology and Engineering, University of Technology and Life Sciences

Publisher

Society of Chemical Engineers, Japan

Subject

General Chemical Engineering,General Chemistry

Reference43 articles.

1. Bellman, R.; Dynamic Programming, Princeton Univ. Press, Princeton, U.S.A. (1957)

2. Burdette, D. S., V. Tchernajencko and J. G. Zeikus; “Effect of Thermayl and Chemical Denaturants on Thermoanaerobacter ethanolicus Secondary-Alcohol Dehydrogenase Stability and Activity,” Enzyme Microb. Technol., 27, 11–18 (2000)

3. Chou, A., W. H. Ray and R. Aris; “Simple Control Policies for Reactors with Catalyst Decay,” Trans. Inst. Chem. Eng., 45, T153–T158 (1967)

4. Gómez, J. L., A. Bódalo, E. Gómez, J. Bastida and M. F. Maximo; “Two-parameter Model for Evaluating Effectiveness Factor for Immobilized Enzymes with Reversible Michaelis–Menten Kinetics,” Chem. Eng. Sci., 58, 4287–4290 (2003)

5. Gómez Carrasco, J. L., A. Bódalo Santoyo, E. Gómez Gómez, J. Bastida Rodríguez, M. F. Máximo Martín and M. Gómez Gómez; “A Short Tecursive Procedure for Evaluating Effectiveness Factors for Immobilized Enzymes with Reversible Michaelis–Menten Kinetics,” Biochem. Eng. J., 39, 58–65 (2008)

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