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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Comparison in dark hydrogen fermentation followed by photo hydrogen fermentation and methanogenesis between protein and carbohydrate compositions in Nannochloropsis oceanica biomass
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Comparison in dark hydrogen fermentation followed by photo hydrogen fermentation and methanogenesis between protein and carbohydrate compositions in Nannochloropsis oceanica biomass

机译:拟南芥生物质中蛋白质和碳水化合物组成的暗氢发酵,光氢发酵和甲烷生成之间的比较

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摘要

The thermodynamic comparison in dark fermentation between amino acids and reducing sugars released from Nannochloropsis oceanica biomass are investigated for the first time. The total utilisation efficiencies of amino acids and reducing sugars are both about 95% in dark fermentation. But the consumption time of most amino acids is about 2 times as long as that of most reducing sugars in dark fermentation. A three-stage method comprising dark fermentation, photofermentation and methanogenesis is proposed to improve hydrogen and energy yields from N. oceanica biomass. Overall, the maximum hydrogen yield of 183.9. ml/g-total volatile solids (TVS) and the methane yield of 161.3. ml/g-TVS are achieved from N. oceanica biomass through the three-stage method. The total energy yield of hydrogen and methane from microalgae biomass through the three-stage method is 1.7 and 1.3 times higher than those through the two-stage (dark fermentation and methanogenesis) and single-stage (methanogenesis) methods, respectively.
机译:首次研究了Nannochloropsis oceanica生物质释放的氨基酸和还原糖在黑暗发酵中的热力学比较。在黑暗发酵中,氨基酸和还原糖的总利用率均约为95%。但是大多数氨基酸的消耗时间是黑暗发酵中大多数还原糖消耗时间的2倍左右。提出了一种包括暗发酵,光发酵和甲烷生成的三阶段方法,以提高海洋猪笼草生物量的氢和能量产量。总体而言,最大氢产量为183.9。毫升/克总挥发性固体(TVS),甲烷产率为161.3。 ml / g-TVS是通过三步法从海洋新生物中获得的。通过三步法从微藻生物质中产生的氢气和甲烷的总能量产率分别比通过两步法(暗发酵和甲烷生成)和单步(甲烷生成)法分别高1.7和1.3倍。

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