Medium Chain Carboxylic Acids from Complex Organic Feedstocks by Mixed Culture Fermentation

Среднецепочечные карбоновые кислоты из сложного органического сырья посредством ферментации смешанной культурой
Vicky De Groof, Marta Coma, Tom Arnot, David J. Leak, Ana Lanham
2019-01-22

anaerobic fermentationchain elongationcomplex organic feedstocksmedium-chain carboxylic acidsmixed microbial cultures
Environmental pressures caused by population growth and consumerism require the development of resource recovery from waste, hence a circular economy approach. The production of chemicals and fuels from organic waste using mixed microbial cultures (MMC) has become promising. MMC use the synergy of bio-catalytic activities from different microorganisms to transform complex organic feedstock, such as by-products from food production and food waste. In the absence of oxygen, the feedstock can be converted into biogas through the established anaerobic digestion (AD) approach. The potential of MMC has shifted to production of intermediate AD compounds as precursors for renewable chemicals. A particular set of anaerobic pathways in MMC fermentation, known as chain elongation, can occur under specific conditions producing medium chain carboxylic acids (MCCAs) with higher value than biogas and broader applicability. This review introduces the chain elongation pathway and other bio-reactions occurring during MMC fermentation. We present an overview of the complex feedstocks used, and pinpoint the main operational parameters for MCCAs production such as temperature, pH, loading rates, inoculum, head space composition, and reactor design. The review evaluates the key findings of MCCA production using MMC, and concludes by identifying critical research targets to drive forward this promising technology as a valorisation method for complex organic waste.
1
Critical research targets remain for advancing mixed-culture chain elongation as a waste-valorization technology within the circular economy.
2
Key operational parameters influencing MCCA production include temperature, pH, loading rate, inoculum, headspace composition, and reactor design.
3
MCCA production relies on anaerobic chain elongation pathways that transform intermediate products of anaerobic digestion into renewable chemicals.
4
Mixed microbial culture fermentation can convert complex organic waste feedstocks into medium-chain carboxylic acids (MCCAs), offering higher-value products than biogas.
5
The review covers diverse complex feedstocks, including food-production by-products and food waste, suitable for MCCA generation.

medium chain carboxylic acid production from complex organic feedstocks by mixed microbial culture fermentation

anaerobic chain elongation pathways and the operational factors governing medium chain carboxylic acid production

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2019-01-22
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Vicky De Groof
Marta Coma
Tom Arnot
David J. Leak
Ana Lanham
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