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Revealing the impact of hydrogen production- consumption loop against efficient hydrogen recovery in single chamber microbial electrolysis cells (MECs)

机译:揭示制氢消耗循环对单室微生物电解池(MEC)中有效氢回收的影响

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Microbial electrolysis for hydrogen production exhibited great advantages over many other biohydrogen production techniques in terms of hydrogen yield (HY) and energy efficiency (EE). With the elimination of methanogens, homoacetogens could thrive as the major hydrogen sink to impair HY and EE. However, the determination of hydrogen loss in microbial electrolysis cells (MECs) was rather controversial. In this study, we quantitatively investigated the negative impact of homoacetogens on hydrogen recovery in single chamber MECs. Hydrogen partial pressure (HPP) ranging from 0 to 40 kPa greatly affected the hydrogen consumption rate while acetate concentration ranging from 0 to 100 mM had little impact. HY base on consumed substrate was not significantly affected with less than 20 kPa HPP but decreased from 87% to 66% with 20-34 kPa HPP. And the EE based on input electricity was decreased from 160% to 48% accompanied with the increase of HPP from 7 to 34 kPa. Microbial community analysis revealed that Acetobacterium was the dominant homoacetogenic hydrogen scavenger in cathodic biofilm and planktonic cells in the single chamber MECs. (C) 2018 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:就产氢量(HY)和能源效率(EE)而言,用于制氢的微生物电解技术比许多其他生物制氢技术具有巨大优势。随着产甲烷菌的消除,作为主要的氢吸收剂的均乙酸原可能会蓬勃发展,从而损害HY和EE。但是,确定微生物电解池(MEC)中氢损失的方法颇具争议。在这项研究中,我们定量研究了单腔MEC中均乙酸原对氢回收的负面影响。氢分压(HPP)在0到40 kPa之间,对氢的消耗率有很大的影响,而醋酸盐的浓度在0到100 mM之间,则影响不大。低于20 kPa HPP不会显着影响基于消耗底物的HY,但使用20-34 kPa HPP时,HY将从87%降低至66%。基于输入电的EE从160%降低到48%,同时HPP从7 kPa增加到34 kPa。微生物群落分析表明,在单室MEC中,醋杆菌是阴极生物膜和浮游细胞中主要的同型产乙酸氢清除剂。 (C)2018氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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