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Title Assessing the potential for up-cycling recovered resources from anaerobic digestion through microbial protein production
ID_Doc 15269
Authors Verbeeck, K; De Vrieze, J; Pikaar, I; Verstraete, W; Rabaey, K
Title Assessing the potential for up-cycling recovered resources from anaerobic digestion through microbial protein production
Year 2021
Published Microbial Biotechnology, 14, 3
DOI 10.1111/1751-7915.13600
Abstract Anaerobic digesters produce biogas, a mixture of predominantly CH(4)and CO2, which is typically incinerated to recover electrical and/or thermal energy. In a context of circular economy, the CH(4)and CO(2)could be used as chemical feedstock in combination with ammonium from the digestate. Their combination into protein-rich bacterial, used as animal feed additive, could contribute to the ever growing global demand for nutritive protein sources and improve the overall nitrogen efficiency of the current agro- feed/food chain. In this concept, renewable CH(4)and H(2)can serve as carbon-neutral energy sources for the production of protein-rich cellular biomass, while assimilating and upgrading recovered ammonia from the digestate. This study evaluated the potential of producing sustainable high-quality protein additives in a decentralized way through coupling anaerobic digestion and microbial protein production using methanotrophic and hydrogenotrophic bacteria in an on-farm bioreactor. We show that a practical case digester handling liquid piggery manure, of which the energy content is supplemented for 30% with co-substrates, provides sufficient biogas to allow the subsequent microbial protein as feed production for about 37% of the number of pigs from which the manure was derived. Overall, producing microbial protein on the farm from available methane and ammonia liberated by anaerobic digesters treating manure appears economically and technically feasible within the current range of market prices existing for high-quality protein. The case of producing biomethane for grid injection and upgrading the CO(2)with electrolytic hydrogen to microbial protein by means of hydrogen-oxidizing bacteria was also examined but found less attractive at the current production prices of renewable hydrogen. Our calculations show that this route is only of commercial interest if the protein value equals the value of high-value protein additives like fishmeal and if the avoided costs for nutrient removal from the digestate are taken into consideration.
Author Keywords
Index Keywords Index Keywords
Document Type Other
Open Access Open Access
Source Science Citation Index Expanded (SCI-EXPANDED)
EID WOS:000539343300001
WoS Category Biotechnology & Applied Microbiology; Microbiology
Research Area Biotechnology & Applied Microbiology; Microbiology
PDF https://sfamjournals.onlinelibrary.wiley.com/doi/pdfdirect/10.1111/1751-7915.13600
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