Production of short-chain fatty acids (SCFAs) as chemicals or substrates for microbes to obtain biochemicals

Получение короткоцепочечных жирных кислот (КЖК) в качестве химических продуктов или субстратов для микроорганизмов при производстве биохимических продуктов
Elia Tomás‐Pejó, Cristina González‐Fernández, Silvia Greses, Christian Kennes, Nuria Otero-Logilde, María C. Veiga, David Bolzonella, Bettina Müller, Volkmar Passoth
2023-06-03

anaerobic fermentationlignocellulosic wastemicrobial electrolytic cellspolyhydroxyalkanoatesshort-chain fatty acids
Carboxylic acids have become interesting platform molecules in the last years due to their versatility to act as carbon sources for different microorganisms or as precursors for the chemical industry. Among carboxylic acids, short-chain fatty acids (SCFAs) such as acetic, propionic, butyric, valeric, and caproic acids can be biotechnologically produced in an anaerobic fermentation process from lignocellulose or other organic wastes of agricultural, industrial, or municipal origin. The biosynthesis of SCFAs is advantageous compared to chemical synthesis, since the latter relies on fossil-derived raw materials, expensive and toxic catalysts and harsh process conditions. This review article gives an overview on biosynthesis of SCFAs from complex waste products. Different applications of SCFAs are explored and how these acids can be considered as a source of bioproducts, aiming at the development of a circular economy. The use of SCFAs as platform molecules requires adequate concentration and separation processes that are also addressed in this review. Various microorganisms such as bacteria or oleaginous yeasts can efficiently use SCFA mixtures derived from anaerobic fermentation, an attribute that can be exploited in microbial electrolytic cells or to produce biopolymers such as microbial oils or polyhydroxyalkanoates. Promising technologies for the microbial conversion of SCFAs into bioproducts are outlined with recent examples, highlighting SCFAs as interesting platform molecules for the development of future bioeconomy.
1
Bacteria and oleaginous yeasts can utilize SCFA mixtures, enabling their conversion in microbial electrolytic cells and supporting circular-economy and bioeconomy development.
2
Efficient application of SCFAs requires suitable concentration and separation processes, particularly for mixtures generated by anaerobic fermentation.
3
SCFA biosynthesis offers advantages over chemical synthesis by avoiding fossil-derived feedstocks, expensive toxic catalysts, and harsh operating conditions.
4
SCFAs can serve as platform molecules and carbon sources for microorganisms, supporting production of microbial oils, polyhydroxyalkanoates, and other bioproducts.
5
Short-chain fatty acids, including acetate, propionate, butyrate, valerate, and caproate, can be produced anaerobically from lignocellulose and diverse organic wastes.

Short-chain fatty acids (SCFAs) produced from lignocellulosic and other complex organic wastes by anaerobic fermentation

The biosynthesis, recovery, and microbial conversion of SCFAs into chemicals and bioproducts

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Publication Date
2023-06-03
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Authors
Elia Tomás‐Pejó
Cristina González‐Fernández
Silvia Greses
Christian Kennes
Nuria Otero-Logilde
María C. Veiga
David Bolzonella
Bettina Müller
Volkmar Passoth
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