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Growth and substrate consumption of Nitrobacter agilis cells immobilized in carrageenan: Part 1. Dynamic modeling

✍ Scribed by C. D. de Gooijer; R. H. Wijffels; J. Tramper


Publisher
John Wiley and Sons
Year
1991
Tongue
English
Weight
678 KB
Volume
38
Category
Article
ISSN
0006-3592

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✦ Synopsis


Abstract

The modeling of the growth of Nitrobacter agilis cell immobilized in κ‐carrageenan is presented. A detailed description is given of the modeling of internal diffusion and growth of cells in the support matrix in addition to external mass transfer resistance. The model predicts the substrate and biomass profiles in the support as well as the macroscopic oxygen consumption rate of the immobilized biocatalyst in time. The model is tested by experiments with continuously operated airlift loop reactors containing cells immobilized in κ‐carrageenan. The model describes experimental data very well. It is clearly shown that external mass transfer may not be neglected. Furthermore, a sensitivity analysis of the parameters at their values during the experiments revealed that apart from the radius of the spheres and the substrate bulk concentration, the external mass transfer resistance coefficient is the most sensitive parameter for our case.


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✍ R. H. Wijffels; C. D. de Gooijer; S. Kortekaas; J. Tramper 📂 Article 📅 1991 🏛 John Wiley and Sons 🌐 English ⚖ 803 KB

## Abstract A dynamic model that predicts substrate and biomass concentration profiles across gel beads and from that the overall substrate consumption rate by the gel beads containing growing cells was evaluated with immobilized __Nitrobacter agilis__ cells in an airlift loop reactor with oxygen a