The rate of fermentation of glucose by Saccharomyces uvarum in steadystate continuous culture in excess of substrates showed non-competltive inhibition kinetics with respect to ethanol. A model is presented which predicts that growth stops at a Finite ethanol concentration, which was calculated to b
Mathematical modelling of lipid production by oleaginous yeasts in continuous cultures
β Scribed by A. Ykema; E. C. Verbree; H. W. Verseveld; H. Smit
- Publisher
- Springer Netherlands
- Year
- 1986
- Tongue
- English
- Weight
- 837 KB
- Volume
- 52
- Category
- Article
- ISSN
- 0003-6072
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β¦ Synopsis
A mathematical model was constructed to describe the influence of'the carbon to nitrogen ratio (C/N-ratio) of the growth medium on lipid production by oleaginous yeasts. To test this model and to determine some relevant model parameters, the oleaginous yeast Apiotrichum curvature ATCC 20509 was grown in continuous cultures at various C/N-ratios and dilution rates. It appeared that when nitrogen is limiting for the formation of biomass, the remaining glucose can be converted to storage carbohydrate and storage lipid. No clear dependence of carbohydrate yield on the C/Nratio could be demonstrated, but lipid yield increased gradually with increasing C/N-ratios.
The maximal dilution rate for lipid producing yeast cells appeared to be optimal at relatively low C/N-ratios. It can be concluded that the experimental results fitted well with the mathematical model. By using this model, lipid yield and lipid production rate can be calculated at any C/N-ratio of the growth medium and optimum operation conditions can be predicted for the production of microbial lipids.
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A new apparatus for continuous ethanol production with internal separation of yeast cells is described. The removal of cell-free medium is accomplished by cake filtration through a thin layer of diatomaceous earth. By using a feeding pump connected with a level meter, fresh medium is supplied at the
## Abstract Coβfermentation of lignocelluloseβbased carbohydrates is a potential solution to improve the economics of microbial lipid production. In the present paper, experiments were performed to optimize the media composition for lipid production by the oleaginous yeast __Lipomyces starkeyi__ AS