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首页> 外文期刊>International journal of hydrogen energy >Hydrogen productivity of photosynthetic bacteria on dark fermenter effluent of potato steam peels hydrolysate
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Hydrogen productivity of photosynthetic bacteria on dark fermenter effluent of potato steam peels hydrolysate

机译:马铃薯蒸汽皮水解产物暗发酵罐废水中光合细菌的产氢能力

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摘要

Hydrogen productivities of different photosynthetic bacteria have been searched on real thermophilic dark fermentation effluents (DFE). The results obtained with potato steam peels hydrolysate (PSP) DFE were compared to glucose DFE. Photobiological hydrogen production has been carried out in indoor, batch photobioreactors using several strains of purple non-sulfur (PNS) bacteria such as Rhodobacter capsulatus (DSM1710), Rhodobacter capsulatus hup- (YO3), Rhodobacter sphaeroides O.U.001 (DSM5864), Rb. sphaeroides O.U.001 hup- and Rhodopseudomonas palustris. The efficiency of photofermentation depends highly on the composition of the effluent and the PNS bacterial strain used. Rb. sphaeroides produced the highest amount of hydrogen on glucose DFE. Rb. capsulatus gave better results on PSP DFE. This study demonstrates that photobiological hydrogen production with high efficiency and productivity is possible on thermophilic dark fermentation effluents. Consequently, a sequential operation of dark fermentation and photofermentation is a promising route to produce hydrogen, and it provides a higher hydrogen yield compared to single step processes.
机译:已经在真正的嗜热暗发酵废水(DFE)上搜索了不同光合细菌的氢生产率。将马铃薯蒸汽果皮水解产物(PSP)DFE与葡萄糖DFE进行比较。已在室内批量光生物反应器中使用几种紫色非硫(PNS)细菌菌株(例如荚膜红细菌(DSM1710),荚膜红细菌(YO3),球形红细菌O.U.001(DSM5864),Rb)进行光生物制氢。 sphaeroides O.U.001 hup-和Palus Rhodopseudomonas palustris。光发酵的效率在很大程度上取决于流出物的组成和所使用的PNS细菌菌株。 b sphaeroides在葡萄糖DFE上产生最大量的氢。 b荚膜对PSP DFE的效果更好。这项研究表明,在嗜热的暗发酵废水中,可以高效高效地生产光生物氢气。因此,暗发酵和光发酵的顺序操作是产生氢气的有希望的途径,并且与单步工艺相比,它提供了更高的氢气产量。

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