2022
DOI: 10.1002/cite.202200153
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COxFixation to Elementary Building Blocks: Anaerobic Syngas Fermentation vs. Chemical Catalysis

Abstract: Heterogeneous catalysis and anaerobic syngas fermentation represent two different approaches for the conversion of synthesis gas into chemicals and fuels. This review provides a unique comparison of different reaction paths for the fixation of CO 2 , CO and H 2 into elementary building blocks such as methanol, acetic acid and ethanol. Operating conditions, reactor engineering, influence of gas impurities, yields, conversion efficiencies as well as downstream product recovery are compared. It was found that mas… Show more

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Cited by 8 publications
(5 citation statements)
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“…However, there are a number of shortcomings that should be overcome. For example, low cell densities and low gas–liquid mass transfer rates are the main limitations of this technology, thus generating low productivities (Perret et al, 2022 ). Likewise, inhibition of the solventogenic biocatalyst could be affected by many factors, for example non‐optimal pH values, metabolites accumulation and presence of oxygen.…”
Section: Future Perspectivesmentioning
confidence: 99%
“…However, there are a number of shortcomings that should be overcome. For example, low cell densities and low gas–liquid mass transfer rates are the main limitations of this technology, thus generating low productivities (Perret et al, 2022 ). Likewise, inhibition of the solventogenic biocatalyst could be affected by many factors, for example non‐optimal pH values, metabolites accumulation and presence of oxygen.…”
Section: Future Perspectivesmentioning
confidence: 99%
“…Due to low product concentrations, product separation and purification is associated with high costs. Therefore, an increase of the cell density, which means an increase of the density of the biocatalyst in the reactor, represents an essential key variable in order to increase the space-time yield as part of the process development . By using a biomass retention system, the outflow of the biocatalyst in the product stream during continuous operation can be avoided and, thus, an increase in cell density can be achieved.…”
Section: Introductionmentioning
confidence: 99%
“…14,15 A major bottleneck for the commercialization of syngas fermentation is the low space-time yield, which is up to 3 orders of magnitude lower than of heterogeneous catalysis. 3 Due to low product concentrations, product separation and purification is associated with high costs. Therefore, an increase of the cell density, which means an increase of the density of the biocatalyst in the reactor, represents an essential key variable in order to increase the space-time yield as part of the process development.…”
Section: ■ Introductionmentioning
confidence: 99%
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