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  4. Simultaneous medium chain carboxylic acids and 1,3-propanediol production in a bioaugmented lactate-based chain elongation induced with glycerol
 
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Simultaneous medium chain carboxylic acids and 1,3-propanediol production in a bioaugmented lactate-based chain elongation induced with glycerol

Type
Journal article
Language
English
Date issued
2024
Author
Duber, Anna
Zagrodnik, Roman
Juzwa, Wojciech 
Gutowska, Natalia
Oleskowicz-Popiel, Piotr
Faculty
Wydział Nauk o Żywności i Żywieniu
Journal
Bioresource Technology
ISSN
0960-8524
DOI
10.1016/j.biortech.2023.130123
Web address
https://www.sciencedirect.com/science/article/pii/S0960852423015511
Volume
393
Number
February 2024
Pages from-to
art. 130123
Abstract (EN)
The objective was to investigate the impact of the bioaugmentation on chain elongation process using glycerol, lactate and lactose as substrates in an open culture fermentation. In the batch trials the highest selectivity for chain elongation product, i.e. caproate, was observed in trials inoculated with co-culture of Megasphaera elsdenii and Eubacterium limosum grown on glycerol (28.6%), and in non-bioaugmented open culture run on lactose + lactate (14.8%). The results showed that E. limosum, out of two bioaugmented strains, was able to survive in the open culture. A continuous open culture fermentation of glycerol led to caproate and 1,3-propanediol (1,3-PDO) formation, while lactate addition led to 1,3-PDO and short chain carboxylates production. Moving the process into batch mode triggered even-carbon chain elongation. Presence of E. limosum promoted odd-carbon chain elongation and valerate production. Imaging flow cytometry combined with machine learning enabled the discrimination of Eubacterium cells from other microbial strains during the process.
Keywords (EN)
  • mixed culture fermentation

  • bioaugmentation

  • lactic acid

  • valeric acid

  • caproic acid

  • Eubacterium limosum

  • imaging flow cytometry

  • machine learning

License
cc-bycc-by CC-BY - Attribution
Open access date
December 1, 2023
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