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A study of CO/syngas bioconversion by Clostridium autoethanogenum with a flexible gas-cultivation system

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논문

A study of CO/syngas bioconversion by Clostridium autoethanogenum with a flexible gas-cultivation system

학술지

Enzyme and microbial technology

저자명

Xu, H.; Liang, C.; Yuan, Z.; Xu, J.; Hua, Q.; Guo, Y.

초록

Bioconversion of CO/syngas to produce ethanol is a novel route in bioethanol production, which can be accomplished by some acetogens. Specific culture vessels and techniques are needed to cultivate these microorganisms since they are anaerobic and substrates are gaseous. In this work, gas-sampling bag was applied as a gas-cultivation system to study CO/syngas bioconversion by Clostridium autoethanogenum and was demonstrated to be efficient because of its flexibility and excellent ability to maintain the headspace atmosphere. C. autoethanogenum can use CO as the sole carbon and energy source to produce ethanol, acetate as well as CO<SUB>2</SUB>. In the experimental range, higher ethanol production was favored by higher yeast extract concentrations, and the maximum ethanol concentration of 3.45g/L was obtained at 1.0g/L of yeast extract. Study with various bottled gases showed that C. autoethanogenum preferred to use CO other than CO<SUB>2</SUB> and produced the highest level of ethanol with 100% CO as the substrate. C. autoethanogenum can also utilize biomass-generated syngas (36.2% CO, 23.0% H<SUB>2</SUB>, 15.4% CO<SUB>2</SUB>, 11.3% N<SUB>2</SUB>), but the process proceeded slowly and insufficiently due to the presence of O<SUB>2</SUB> and C<SUB>2</SUB>H<SUB>2</SUB>. In our study, C. autoethanogenum showed a better performance in the bioconversion of CO to ethanol than Clostridium ljungdahlii, a strain which has been most studied, and for both strains, ethanol production was promoted by supplementing 0.5g/L of acetate.

발행연도

2017

발행기관

IPC Science and Technology Press ; Elsevier Science Ltd

ISSN

0141-0229

ISSN

1879-0909

101

페이지

pp.24-29

주제어

Syngas fermentation; Ethanol; Gas-cultivation system; Carbon monoxide

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1 2023-12-11
2 2023-12-11
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논문; 2017-06-01

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