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Scenedesmus obliquus as feedstock for biohydrogen production by Enterobacter aerogenes and Clostridium butyricum

机译:斜生场面藻作为产气肠杆菌和丁酸梭菌生产生物氢的原料

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摘要

Hydrogen (H2) gas is seen as an ideal future energy carrier because it is easily converted into electricity in fuel cells, liberates a large amount of energy per unit mass, and generates no air pollutants. In this work, biological hydrogen (bioH2) was produced from the microalgal biomass of Scenedesmus obliquus which was used as a substrate for the fermentation by Enterobacter aerogenes ATCC 13048 and Clostridium butyricum DSM 10702. The bioH2 produced by each strain was assessed for different S. obliquus biomass concentrations, using both dried (5% moisture) and ‘‘wet’’ (69% moisture) biomass. The highest bioH2 production yields obtained were 57.6 mL H2/g VSalga from 2.5 galga/L by E. aerogenes and 113.1 mL H2/g VSalga from 50.0 galga/L by C. butyricum. The bioH2 production rates, and biogas purity attained by using the wet biomass as a fermentation substrate were similar or higher than those obtained with the dried microalga. This means that the drying step is not needed and therefore saves considerable energy as this is one of the highest energy demanding stages when using this feedstock in fermentations for biofuels production.
机译:氢(H2)气体被视为理想的未来能源载体,因为它很容易在燃料电池中转化为电能,每单位质量释放大量能量,并且不会产生空气污染物。在这项工作中,从斜生场景藻的微藻生物质中产生了生物氢(bioH2),它被用作产气肠杆菌ATCC 13048和丁酸梭菌DSM 10702发酵的底物。评估了每种菌株产生的bioH2的不同S.使用干燥的(5%水分)和“湿的”(69%水分)生物质,使生物质浓度倾斜。产气最高的生物H2产量是产气大肠杆菌从2.5 galga / L获得57.6 mL H2 / g VSalga,丁酸梭菌从50.0 galga / L获得113.1 mL H2 / g VSalga。通过使用湿生物质作为发酵底物获得的bioH2产生速率和沼气纯度与干燥微藻获得的相似或更高。这意味着不需要干燥步骤,因此节省了相当多的能量,因为当将这种原料用于发酵生产生物燃料时,这是最高的能量需求阶段之一。

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