Enhanced substrate conversion efficiency of fermentation processes

The present invention relates to the field of fermentation technology. In particular the invention relates to fermentation processes for the production of a first and a second fermentation product by a single production organism wherein the first product is in a more reduced state than the substrate and the second fermentation product is in a more oxidised state than the substrate yet in less oxidised state than the final oxidation product CO2, such that the concurrent synthesis of the first and second product in the organism allows recycling of reducing power and can be performed under (partially) anaerobic conditions. The invention further relates to processes in which the first fermentation product is weak alkaline compound and the second fermentation product is a weak acidic compound. In such instances both products may be produced by a single organism in a single fermenter or each the first and second product may be produced by two different organisms that are co-fermented. Co-fermentation may be performed in two separate fermenters that are connected through micro-sieves that allow circulation of soluble medium components between the two fermenters but prevent circulation of the production organisms' cells. The invention also relates to such processes in which the first and second fermentation products are capable of forming a(n) (insoluble) complex or salt.

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Bibliographic Details
Main Authors: Sanders, J.P.M., Weusthuis, R.A., Mooibroek, H.
Format: Patent biblioteca
Language:English
Subjects:Life Science,
Online Access:https://research.wur.nl/en/publications/enhanced-substrate-conversion-efficiency-of-fermentation-processe
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spelling dig-wur-nl-wurpubs-3451462024-06-25 Sanders, J.P.M. Weusthuis, R.A. Mooibroek, H. Patent Enhanced substrate conversion efficiency of fermentation processes 2006 The present invention relates to the field of fermentation technology. In particular the invention relates to fermentation processes for the production of a first and a second fermentation product by a single production organism wherein the first product is in a more reduced state than the substrate and the second fermentation product is in a more oxidised state than the substrate yet in less oxidised state than the final oxidation product CO2, such that the concurrent synthesis of the first and second product in the organism allows recycling of reducing power and can be performed under (partially) anaerobic conditions. The invention further relates to processes in which the first fermentation product is weak alkaline compound and the second fermentation product is a weak acidic compound. In such instances both products may be produced by a single organism in a single fermenter or each the first and second product may be produced by two different organisms that are co-fermented. Co-fermentation may be performed in two separate fermenters that are connected through micro-sieves that allow circulation of soluble medium components between the two fermenters but prevent circulation of the production organisms' cells. The invention also relates to such processes in which the first and second fermentation products are capable of forming a(n) (insoluble) complex or salt. en application/pdf https://research.wur.nl/en/publications/enhanced-substrate-conversion-efficiency-of-fermentation-processe https://edepot.wur.nl/31432 Life Science Wageningen University & Research
institution WUR NL
collection DSpace
country Países bajos
countrycode NL
component Bibliográfico
access En linea
databasecode dig-wur-nl
tag biblioteca
region Europa del Oeste
libraryname WUR Library Netherlands
language English
topic Life Science
Life Science
spellingShingle Life Science
Life Science
Sanders, J.P.M.
Weusthuis, R.A.
Mooibroek, H.
Enhanced substrate conversion efficiency of fermentation processes
description The present invention relates to the field of fermentation technology. In particular the invention relates to fermentation processes for the production of a first and a second fermentation product by a single production organism wherein the first product is in a more reduced state than the substrate and the second fermentation product is in a more oxidised state than the substrate yet in less oxidised state than the final oxidation product CO2, such that the concurrent synthesis of the first and second product in the organism allows recycling of reducing power and can be performed under (partially) anaerobic conditions. The invention further relates to processes in which the first fermentation product is weak alkaline compound and the second fermentation product is a weak acidic compound. In such instances both products may be produced by a single organism in a single fermenter or each the first and second product may be produced by two different organisms that are co-fermented. Co-fermentation may be performed in two separate fermenters that are connected through micro-sieves that allow circulation of soluble medium components between the two fermenters but prevent circulation of the production organisms' cells. The invention also relates to such processes in which the first and second fermentation products are capable of forming a(n) (insoluble) complex or salt.
format Patent
topic_facet Life Science
author Sanders, J.P.M.
Weusthuis, R.A.
Mooibroek, H.
author_facet Sanders, J.P.M.
Weusthuis, R.A.
Mooibroek, H.
author_sort Sanders, J.P.M.
title Enhanced substrate conversion efficiency of fermentation processes
title_short Enhanced substrate conversion efficiency of fermentation processes
title_full Enhanced substrate conversion efficiency of fermentation processes
title_fullStr Enhanced substrate conversion efficiency of fermentation processes
title_full_unstemmed Enhanced substrate conversion efficiency of fermentation processes
title_sort enhanced substrate conversion efficiency of fermentation processes
url https://research.wur.nl/en/publications/enhanced-substrate-conversion-efficiency-of-fermentation-processe
work_keys_str_mv AT sandersjpm enhancedsubstrateconversionefficiencyoffermentationprocesses
AT weusthuisra enhancedsubstrateconversionefficiencyoffermentationprocesses
AT mooibroekh enhancedsubstrateconversionefficiencyoffermentationprocesses
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