Modelling and parameter identification for batch fermentations withStreptomyces tendaeunder phosphate limitation
โ Scribed by Claudia Mundry; Klaus-Peter Kuhn
- Publisher
- Springer
- Year
- 1991
- Tongue
- English
- Weight
- 581 KB
- Volume
- 35
- Category
- Article
- ISSN
- 1432-0614
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โฆ Synopsis
A simple structured model for the dynamics of phosphate-limited batch fermentations with Strepto- myces tendae is presented. The model describes the influence of intracellular phosphate storage upon the growth behaviour of the culture. The development of the model takes into account the possible internal regulatory processes of phosphate metabolism. These complex biochemical pathways are summarized with regard to rate-limiting steps to obtain relatively simple model equations. The model parameters are fitted to the experimental data with an identification programme based on the sequential quadratic programming algorithm. Modifications in this algorithm yield a good performance for this application. With respect to the sensitivity of the model parameters, a feedback on the modelling is given. After several loops of modelling and identification, a model was achieved that fits to a set of batch fermentations. Furthermore the simulations show that RNA measurements of some recent fermentations can be interpreted by the simulated internal state variable and that there is evidence for RNA as an intracellular phosphate reserve.
๐ SIMILAR VOLUMES
Non-linear population balance models (PBMs), which have been recently introduced due to the limitations of the classical linear time-invariant (LTINV) model, account for multi-particle interactions and thus are capable of predicting many types of complex non-first order breakage kinetics during size