Lactic acid production by batch fermentation of whey permeate: A mathematical model

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Abstract

The batch fermentation of whey permeate to lactic acid was improved by supplementing the broth with enzyme-hydrolyzed whey protein. A mathematical model based on laboratory results predicts to a 99% confidence limit the kinetics of this fermentation. Cell growth, acid production and protein and sugar use rates are defined in quantifiable terms related to the state of cell metabolism. The model shows that the constants of the Leudeking-Piret model are not true constants, but must vary with the medium composition, and especially the peptide average molecular weight. The kinetic mechanism on which the model is based also is presented. © 1989 Society for Industrial Microbiology.

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APA

Leh, M. B., & Charles, M. (1989). Lactic acid production by batch fermentation of whey permeate: A mathematical model. Journal of Industrial Microbiology, 4(1), 65–70. https://doi.org/10.1007/BF01569695

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