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A systematic approach for simulation of fermentation processes

 
: Bergstedt, U.; Körner, H.-J.; Kabasci, S.; Deerberg, G.

Kreysa, G. ; Gesellschaft für Chemische Technik und Biotechnologie -DECHEMA-:
Biotechnology 2000. The World Congress on Biotechnology, 11th International Biotechnology Symposium and Exhibition. Vol.1: Updated programme and lecture abstracts : 3 - 8 September 2000, ICC, Berlin
Frankfurt/Main: DECHEMA, 2000
S.527-529
World Congress on Biotechnology <2000, Berlin>
International Biotechnology Symposium and Exhibition <11, 2000, Berlin>
Englisch
Konferenzbeitrag
Fraunhofer UMSICHT Oberhausen ()
fermentation process; bioreactor; bioreaction; optimization; modelling; simulation; Fermentationsprozess; Bioreaktion; Optimierung; Modellierung; Simulation

Abstract
A bioreactor can be described as a heterogeneous system with at least three structural phases: the liquid, the gas, which together form the abiotic phase and the biological phase, which consists of the cell population. Our model is based on the zone cell network model for the stirred tank reactor containing two physical phases. The models for process engineering and biological processes are formulated separately and implemented in a suitable program structure. The progam enables to calculate different combinations of biological models and submodels in a process technology context.

: http://publica.fraunhofer.de/dokumente/N-100731.html