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Metabolic pathways of hydrogen production in fermentative acidogenic microflora

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논문

Metabolic pathways of hydrogen production in fermentative acidogenic microflora

학술지

Journal of microbiology and biotechnology

저자명

Zhang, Liguo; Li, Jianzheng; Ban, Qiaoying; He, Junguo; Jha, Ajay Kumar

초록

Biohydrogen production from organic wastewater by anaerobically activated sludge fermentation has already been extensively investigated, and it is known that hydrogen can be produced by glucose fermentation through three metabolic pathways, including the oxidative decarboxylation of pyruvic acid to acetyl-CoA, oxidation of NADH to <TEX>$NAD^+$</TEX>, and acetogenesis by hydrogen-producing acetogens. However, the exact or dominant pathways of hydrogen production in the anaerobically activated sludge fermentation process have not yet been identified. Thus, a continuous stirred-tank reactor (CSTR) was introduced and a specifically acclimated acidogenic fermentative microflora obtained under certain operation conditions. The hydrogen production activity and potential hydrogen-producing pathways in the acidogenic fermentative microflora were then investigated using batch cultures in Erlenmeyer flasks with a working volume of 500 ml. Based on an initial glucose concentration of 10 g/l, pH 6.0, and a biomass of 1.01 g/l of a mixed liquid volatile suspended solid (MLVSS), 247.7 ml of hydrogen was obtained after a 68 h cultivation period at <TEX>$35{\pm}1^{\circ}C$</TEX>. Further tests indicated that 69% of the hydrogen was produced from the oxidative decarboxylation of pyruvic acid, whereas the remaining 31% was from the oxidation of NADH to <TEX>$NAD^+$</TEX>. There were no hydrogen-producing acetogens or they were unable to work effectively in the anaerobically activated sludge with a hydraulic retention time (HRT) of less than 8 h.

발행연도

2012

발행기관

The Korean Society for Microbiology and Biotechnology

ISSN

1017-7825

ISSN

1738-8872

22

5

페이지

pp.668-673

주제어

Biohydrogen production; metabolic pathways; fermentation; NADH/ $NAD^+$; Acetogenesis

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1 2023-12-11

논문; 2012-05-28

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