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Syngas Fermentation: A Microbial Conversion Process of Gaseous Substrates to Various Products

机译:合成气发酵:从气态底物到各种产品的微生物转化过程

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Biomass and other carbonaceous materials can be gasified to produce syngas with high concentrations of CO and H 2 . Feedstock materials include wood, dedicated energy crops, grain wastes, manufacturing or municipal wastes, natural gas, petroleum and chemical wastes, lignin, coal and tires. Syngas fermentation converts CO and H 2 to alcohols and organic acids and uses concepts applicable in fermentation of gas phase substrates. The growth of chemoautotrophic microbes produces a wide range of chemicals from the enzyme platform of native organisms. In this review paper, the Wood–Ljungdahl biochemical pathway used by chemoautotrophs is described including balanced reactions, reaction sites physically located within the cell and cell mechanisms for energy conservation that govern production. Important concepts discussed include gas solubility, mass transfer, thermodynamics of enzyme-catalyzed reactions, electrochemistry and cellular electron carriers and fermentation kinetics. Potential applications of these concepts include acid and alcohol production, hydrogen generation and conversion of methane to liquids or hydrogen.
机译:可以将生物质和其他碳质材料气化,以产生具有高浓度CO和H 2的合成气。原料包括木材,专用能源作物,谷物废物,制造或城市废物,天然气,石油和化学废物,木质素,煤炭和轮胎。合成气发酵将CO和H 2转化为醇和有机酸,并使用了适用于气相底物发酵的概念。化学自养微生物的生长会从天然生物的酶平台产生多种化学物质。在这篇综述文章中,描述了化学自养生物使用的Wood-Ljungdahl生化途径,包括平衡反应,物理位于细胞内的反应位点以及控制生产的能量守恒的细胞机制。讨论的重要概念包括气体溶解度,传质,酶催化反应的热力学,电化学和细胞电子载体以及发酵动力学。这些概念的潜在应用包括酸和酒精的生产,氢气的产生以及甲烷到液体或氢气的转化。

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