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Integrated bioconversion of syngas into bioethanol and biopolymers

机译:将合成气的综合生物转化成生物乙醇和生物聚合物

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摘要

Syngas bioconversion is a promising method for bioethanol production, but some VFA remains at the end of fermentation. A two-stage process was set-up, including syngas fermentation as first stage under strict anaerobic conditions using C. autoethanogenum as inoculum, with syngas (CO/CO2/H-2/N-2, 30/10/20/40) as gaseous substrate. The second stage consisted in various fed-batch assays using a highly enriched PHA accumulating biomass as inoculum, where the potential for biopolymer production from the remaining acetic acid at the end of the syngas fermentation was evaluated. All of the acetic acid was consumed and accumulated as biopolymer, while ethanol and 2,3-butanediol remained basically unused. It can be concluded that a high C/N ratio in the effluent from the syngas fermentation stage was responsible for non-consumption of alcohols. A maximum PHA content of 24% was reached at the end of the assay. (C) 2017 Elsevier Ltd. All rights reserved.
机译:合成气生物转化是一种有希望的生物乙醇生产方法,但一些VFA仍然在发酵结束时。 建立了两阶段过程,包括使用C. autoethanogenum作为接种物的严格厌氧条件下作为第一阶段的合成阶段发酵,用合成气(Co / Co2 / H-2 / N-2,30/10/20/40) 作为气态衬底。 使用高度富集的PHA累积生物质作为接种物的各种美联储分批测定中的第二阶段评估了在合成气结束时从剩余的乙酸产生的生物聚合物产生的电位。 所有醋酸都被消耗并积聚为生物聚合物,而乙醇和2,3-丁二醇仍然基本上未使用。 可以得出结论,来自合成气发酵阶段的流出物中的高C / N比对醇的不消耗负责。 在测定结束时达到了24%的最大pHa含量。 (c)2017 Elsevier Ltd.保留所有权利。

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