首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Co-generation of biohydrogen and biomethane through two-stage batch co-fermentation of macro- and micro-algal biomass
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Co-generation of biohydrogen and biomethane through two-stage batch co-fermentation of macro- and micro-algal biomass

机译:通过大型和微型藻类生物质的两阶段分批发酵,共同产生生物氢和生物甲烷

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摘要

Aquatic micro-algae can be used as feedstocks for gaseous biofuel production via biological fermentation. However, micro-algae usually have low C/N ratios, which are not advantageous for fermentation. In this study, carbon-rich macro-algae (Laminaria digitata) mixed with nitrogen-rich micro-algae (Chlorella pyrenoidosa and Nannochloropsis oceanica) were used to maintain a suitable C/N ratio of 20 for a two-stage process combining hydrogen and methane fermentation. Co-fermentation of L. digitata and micro-algae facilitated hydrolysis and acidogenesis, resulting in hydrogen yields of 94.5-97.0 mL/gVS; these values were 15.5-18.5% higher than mono-fermentation using L. digitata. Through the second stage of methane co-fermentation, a large portion of energy remaining in the hydrogenogenic effluents was recovered in the form of biomethane. The two-stage batch co-fermentation markedly increased the energy conversion efficiencies (ECEs) from 4.6-6.6% during the hydrogen fermentation to 57.0-70.9% in the combined hydrogen and methane production. (C) 2016 Elsevier Ltd. All rights reserved.
机译:水生微藻可用作通过生物发酵生产气态生物燃料的原料。然而,微藻通常具有低的C / N比,这不利于发酵。在这项研究中,富碳的大型藻类(海带)与富氮的微藻类(小球藻和拟南芥)混合使用,以使氢和氢的两阶段过程的C / N比保持在20。甲烷发酵。共同发酵的指状乳酸菌和微藻类促进了水解和产酸作用,产生的氢气产量为94.5-97.0 mL / gVS。这些数值比使用指状乳酸杆菌的单发酵高出15.5-18.5%。通过甲烷共发酵的第二阶段,以生物甲烷的形式回收了残留在产氢废水中的大部分能量。两阶段分批共同发酵使能量转化效率(ECE)从氢​​气发酵过程中的4.6-6.6%显着提高到氢气和甲烷生产的总和中的57.0-70.9%。 (C)2016 Elsevier Ltd.保留所有权利。

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