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Controlled oxidation-reduction potential on dark fermentative hydrogen production from glycerol: Impacts on metabolic pathways and microbial diversity of an acidogenic sludge

机译:从甘油的深色发酵氢气产生的控制氧化还原电位:对酸性污泥的代谢途径和微生物多样性的影响

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The oxidation-reduction potential (ORP) is an important factor in H-2 production via dark fermentation however its effect over microbial diversity in an acidogenic sludge has not, been well studied. This work studies the effect of ORP controlled by hydrogen peroxide and potassium ferricyanide on continuous hydrogen production and microbial diversity in an acidogenic sludge fed (HRT 12 h and pH 5.5) with glycerol. Results show that the more oxidizing ORP control environment (-540 mV) improves H2 yield by 50-70% (0.31 -0.51 molH(2)/mol glycerol) over non-ORP control conditions. Oxidizing ORP values were shown to enrich microorganisms of the genus Clostridium, which have been linked to high H-2 yields. Therefore, controlling ORP in an acidogenic sludge was shown to directly modify microbial diversity at the genus level, and could likely to indirectly regulate metabolic function. Additionally, metabolic pathways were regulated by the kind of agent used. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:氧化还原电位(ORP)是通过深色发酵的H-2产生的重要因素然而,它对酸性污泥中微生物多样性的影响并没有得到很好的研究。本作研究研究ORP控制由过氧化氢和铁氰化物的氢气和钾氢生产和微生物多样性在用甘油(HRT 12 H和pH 5.5)中的连续氢气产生和微生物多样性。结果表明,在非ORP对照条件下,较氧化的ORP控制环境(-540mV)(-540mV)将提高H2产率50-70%(0.31-0.51molH(2)/ mol甘油)。显示氧化ORP值,以富含梭菌属的微生物,其与高H-2产率相关联。因此,显示在酸性污泥中的控制ORP直接在属级别改变微生物多样性,并且可能间接调节代谢功能。另外,代谢途径被使用的种类调节。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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