Document details

Kinetic model evaluation of ethanol fermentation from lactose

Author(s): Juraščík, Martin cv logo 1 ; Klein, Jaroslav cv logo 2 ; Teixeira, J. A. cv logo 3 ; Markoš, J. cv logo 4

Date: 2006

Persistent ID: http://hdl.handle.net/1822/5145

Origin: RepositóriUM - Universidade do Minho

Subject(s): Ethanol fermentation of lactose; Recombinant Saccharomyces cerevisiae; Kinetic model; Kinetic parameters estimation


Description
This work presents a multi-route, nonstructural kinetic model for characterization of ethanol fermentation of lactose using a recombinant flocculent Saccharomyces cerevisiae strain expressing both the LAC4 (coding for β-galactosidase) and LAC12 (coding for lactose permease) genes of Kluyveromyces lactis. In this model, the values of different metabolic pathways are calculated applying a modified Monod equation rate in which the growth rate is proportional to the concentration of a key enzyme controlling the single metabolic pathway. In this study, three main metabolic routes for S. cerevisiae are considered: oxidation of lactose, reduction of lactose (producing ethanol) and oxidation of ethanol. The main bioprocess variables determined experimentally were lactose, ethanol, biomass and dissolved oxygen concentrations. Parameters of the proposed kinetic model were established by fitting the experimental data obtained in a small lab-scale fermentor with the initial lactose concentrations ranging from 5 g dm ˉ³to 50 g dmˉ³. A very good agreement between experimental data and simulated profiles of the main variables (lactose, ethanol, biomass and dissolved oxygen concentrations) was achieved.
Document Type Conference Object
Language English
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