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首页> 外文期刊>International journal of hydrogen energy >Anaerobic Fluidized Bed Reactor With Expanded Clay As Support For Hydrogen Production Through Dark Fermentation Of Glucose
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Anaerobic Fluidized Bed Reactor With Expanded Clay As Support For Hydrogen Production Through Dark Fermentation Of Glucose

机译:膨胀粘土厌氧流化床反应器通过葡萄糖的黑暗发酵生产氢气

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This study evaluated hydrogen production in an anaerobic fluidized bed reactor (AFBR) fed with glucose-based synthetic wastewater. Particles of expanded clay (2.8-3.35 mm) were used as a support material for biomass immobilization. The reactor was operated with hydraulic retention times (HRT) ranging from 8 to 1 h. The hydrogen yield production increased from 1.41 to 2.49 mol H_2 mol~(-1) glucose as HRT decreased from 8 to 2 h. However, when HRT was 1 h, there was a slight decrease to 2.41 mol H_2 mol~(-1) glucose. The biogas produced was composed of H_2 and CO_2, and the H_2 content increased from 8% to 35% as HRT decreased. The major soluble metabolites during H_2 fermentation were acetic acid (HAc) and butyric acid (HBu), accounting for 36.1-53.3% and 37.7-44.9% of total soluble metabolites, respectively. Overall, the results demonstrate the potential of using expanded clay as support material for hydrogen production in AFBRs.
机译:这项研究评估了厌氧流化床反应器(AFBR)中的葡萄糖生产合成氢的产氢量。膨胀粘土(2.8-3.35 mm)的颗粒用作固定生物质的载体材料。反应器的水力停留时间(HRT)为8到1小时。随着HRT从8h减少到2h,氢气的产氢量从1.41增加到2.49 mol H_2 mol〜(-1)葡萄糖。然而,当HRT为1 h时,葡萄糖略微降低至2.41 mol H_2 mol〜(-1)。产生的沼气由H_2和CO_2组成,随着HRT的降低,H_2的含量从8%增加到35%。 H_2发酵过程中主要的可溶性代谢产物为乙酸(HAc)和丁酸(HBu),分别占总可溶性代谢产物的36.1-53.3%和37.7-44.9%。总体而言,结果证明了使用膨化粘土作为AFBR生产氢气的载体材料的潜力。

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