LAPSE:2023.10676
Published Article
LAPSE:2023.10676
Automatic Fed-Batch Cultivation Enhances Microbial Lipid Production from Volatile Fatty Acids
February 27, 2023
Abstract
Organic waste is generated worldwide, and its disposal and recycling are becoming a challenge. Due to its high carbon content, however, it may be converted into valuable products. Carbon neutrality is essential, and unstable international oil prices stress the increasing importance of biofuels significantly. Volatile fatty acids (VFA) derived from organic waste can be converted to microbial lipids by oleaginous yeast using it as a carbon source. When VFA is consumed by oleaginous yeast, the pH of the medium rises; hence, acidic agents have to be added to the medium to maintain the broth’s pH. In this study, we enhanced microbial lipid productivity by automatic fed-batch cultivation using VFA as an acidic agent, and the modified cultivation showed 48.9% and 69.0% higher biomass and lipid productivity than manual multi-fed culture. At a VFA concentration of 5 g/L and pH 7.0, a lipid yield of 0.25 g/g alongside lipid productivity of 0.11 g/L/h was obtained from an automatic fed-batch system. Oleic acid accounted for the largest proportion of microbial lipids, and the fatty acid composition was suitable for biodiesel production.
Keywords
microbial lipid, oleaginous yeast, organic waste, volatile fatty acids
Subject
Suggested Citation
Shin S, Go JH, Moon M, Park GW. Automatic Fed-Batch Cultivation Enhances Microbial Lipid Production from Volatile Fatty Acids. (2023). LAPSE:2023.10676
Author Affiliations
Shin S: Gwangju Clean Energy Research Center, Korea Institute of Energy Research, Gwangju 61003, Republic of Korea [ORCID]
Go JH: Gwangju Clean Energy Research Center, Korea Institute of Energy Research, Gwangju 61003, Republic of Korea [ORCID]
Moon M: Gwangju Clean Energy Research Center, Korea Institute of Energy Research, Gwangju 61003, Republic of Korea
Park GW: Gwangju Clean Energy Research Center, Korea Institute of Energy Research, Gwangju 61003, Republic of Korea [ORCID]
Journal Name
Energies
Volume
16
Issue
4
First Page
1996
Year
2023
Publication Date
2023-02-17
ISSN
1996-1073
Version Comments
Original Submission
Other Meta
PII: en16041996, Publication Type: Journal Article
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LAPSE:2023.10676
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https://doi.org/10.3390/en16041996
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