Fermentative kinetic modeling for protein biomass from sugar diversification

Fil: Pérez, Omar. Universidad Central Marta Abreu de Las Villas; Cuba.

Bibliographic Details
Main Authors: Pérez, Omar, Miño Valdés, Juan Esteban, García, Agustín, González Suárez, Erenio
Format: info:eu-repo/semantics/article
Language:English
Published: Juniper Publishers 2019
Subjects:
Online Access:https://hdl.handle.net/20.500.12219/5263
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author Pérez, Omar
Miño Valdés, Juan Esteban
García, Agustín
González Suárez, Erenio
author_facet Pérez, Omar
Miño Valdés, Juan Esteban
García, Agustín
González Suárez, Erenio
author_sort Pérez, Omar
collection Repositorio RIDUNaM
description Fil: Pérez, Omar. Universidad Central Marta Abreu de Las Villas; Cuba.
format info:eu-repo/semantics/article
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institution Universidad Nacional de Misiones
language English
publishDate 2019
publisher Juniper Publishers
record_format dspace
spelling ir-20.500.12219-52632024-05-28T02:49:00Z Fermentative kinetic modeling for protein biomass from sugar diversification Pérez, Omar Miño Valdés, Juan Esteban García, Agustín González Suárez, Erenio Kinetics Models Fermentation Protein biomass Sugar cane Fil: Pérez, Omar. Universidad Central Marta Abreu de Las Villas; Cuba. Fil: Miño Valdes, Juan Esteban. Universidad Nacional de Misiones. Facultad de Ingeniería. Departamento de Ingeniería Industrial; Argentina. Fil: García, Agustín. Universidad Central Marta Abreu de Las Villas; Cuba. Fil: González, Erenio. Universidad Central Marta Abreu de Las Villas; Cuba. An analysis of the models proposed in the scientific literature is carried out to describe the kinetics of fermentation from a substrate conformed by cane juice and supplemented with final honey and nutrients that are inoculated with autochthonous yeasts of the medium. It is proposed the adjustment of the models through the interactive simulation of processes with minimum integral error of the sums of the differences between the experimental values and those predicted by the models. Initial total reducing sugars concentrations of 45 and 62 g/L were considered maintaining the pH between 4.4 and 5.2 and the temperature at 36 C. The best adjustment to the experimental values was obtained for the free inhibition model of Teisiser, while the Monod model presents deficiencies to describe the first and last part of the growth curve. The parameters of Teiissier at S0=45 g/L are μm= 0,21 h-1 and KS = 11,21 g/L while at S0=62 g/L are μm= 0,25 h-1 and KS = 23,2 g/L. As a result of the simulation it was determined that there are no significant effects of inhibition by substrate or product and that the Malthos model of cell growth accurately describes this process. 2019-03-06 info:eu-repo/semantics/article info:ar-repo/semantics/artículo info:eu-repo/semantics/publishedVersion https://hdl.handle.net/20.500.12219/5263 eng info:eu-repo/semantics/altIdentifier/doi/10.19080/CTBEB.2019.18.555998 info:eu-repo/semantics/altIdentifier/urn/https://juniperpublishers.com/ctbeb/CTBEB.MS.ID.555998.php info:eu-repo/semantics/openAccess application/pdf application/pdf 318 KB Juniper Publishers
spellingShingle Kinetics
Models
Fermentation
Protein biomass
Sugar cane
Pérez, Omar
Miño Valdés, Juan Esteban
García, Agustín
González Suárez, Erenio
Fermentative kinetic modeling for protein biomass from sugar diversification
title Fermentative kinetic modeling for protein biomass from sugar diversification
title_full Fermentative kinetic modeling for protein biomass from sugar diversification
title_fullStr Fermentative kinetic modeling for protein biomass from sugar diversification
title_full_unstemmed Fermentative kinetic modeling for protein biomass from sugar diversification
title_short Fermentative kinetic modeling for protein biomass from sugar diversification
title_sort fermentative kinetic modeling for protein biomass from sugar diversification
topic Kinetics
Models
Fermentation
Protein biomass
Sugar cane
url https://hdl.handle.net/20.500.12219/5263
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AT minovaldesjuanesteban fermentativekineticmodelingforproteinbiomassfromsugardiversification
AT garciaagustin fermentativekineticmodelingforproteinbiomassfromsugardiversification
AT gonzalezsuarezerenio fermentativekineticmodelingforproteinbiomassfromsugardiversification