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Simultaneous bio-electricity and bio-hydrogen production in a continuous flow single microbial electrochemical reactor

机译:同时bio-electricity和bio-hydrogen在连续流生产单一的微生物电化学反应器

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摘要

The purpose of this study was to evaluate the simultaneous production of bio-electricity and bio-hydrogen using a novel continuous flow single chamber hydrogen-producing microbial electrochemical reactor (sMER-H-2). The inocula tested were: raw municipal wastewater (I 1), sporulated Gram-positive bacteria (I 2), and a mixture of anaerobic granular sludge with sediments thermally pretreated (I 3). The best performance for bioelectrochemical and simultaneous hydrogen production occurred when the inoculum I 3 was tested. The maximum voltage generated with an external resistance of 1000 omega was 671 mV. The maximum power density and volumetric density obtained in the sMER-H-2 was 46 mW/m(2) and 6.4 W/m(3), respectively. The maximum bio-hydrogen production rate was 5.2 L H-2/L center dot d., reaching up to 2.39 mol H-2/mol sucrose. Using this new configuration of microbial fuel cell, high bio-electricity and high bio-hydrogen production were simultaneously generated. (c) 2018 American Institute of Chemical Engineers Environ Prog, 38: 297-304, 2019
机译:本研究的目的是评估同时生产bio-electricity和bio-hydrogen使用一种新型连续流单身室hydrogen-producing微生物电化学反应器(sMER-H-2)。测试是:原始城市污水(1),(2)形成孢子的革兰氏阳性细菌,和一个厌氧颗粒污泥的混合物沉积物热预处理(我3)。最好的性能实验和同时氢生产时发生我3测试的培养液。1000年生成与外部阻力ω是671 mV。体积密度在sMER-H-2获得46兆瓦/ m(2)和6.4 W / m(3),分别。最大bio-hydrogen产量为5.2 L2点d / L中心。,达到2.39摩尔2 /摩尔蔗糖。微生物燃料电池,bio-electricity和高同时高bio-hydrogen生产生成的。化学工程师环境掠夺,38:297 - 304,2019

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