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Gas fermentation: cellular engineering possibilities and scale up
Björn D. Heijstra, Ching Leang, Alex Juminaga
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Abstract
output. One strategy is to curtail the gaseous atmospheric release by developing waste and syngas conversion technologies. Historically microorganisms have contributed to major, albeit slow, atmospheric composition changes. The current status and future potential of anaerobic gas-fermenting bacteria with special focus on acetogens are the focus of this review.
Keywords
SyngasBiomass (ecology)Carbon dioxideEnvironmental scienceWaste managementCommodity chemicalsCarbon fibersBiogasCarbon dioxide in Earth's atmospherePulp and paper industryBiochemical engineeringChemistryHydrogenEcologyMaterials scienceEngineeringBiologyCatalysisOrganic chemistry
Identifiers
- Journal
- Microbial Cell Factories
- Year
- 2017