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Effects of resazurin on perchlorate reduction and bioelectricity generation in microbial fuel cells and its catalysing mechanism

机译:刃天青对微生物燃料电池中高氯酸盐还原和生物发电的影响及其催化机理

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摘要

Resazurin could improve the performance of microbial fuel cells (MFCs). Compared with a mediator-free MFC, MFCs with 3 mu M resazurin, 6 mu M resazurin, and 9 mu M resazurin exhibited increases in perchlorate reduction ratio of 50.8%, 72.6% and 101.6%, respectively, and increases in the output voltage of 24.5%, 33.3% and 41.7%, respectively. An electrochemical analysis indicated that adding resazurin decreased the anode resistance and enhanced the biocatalytic activities of the anode. The content of humic acid increased, and the content of polysaccharide decreased in the resazurin-addition MFCs, which accelerated the transfer of electrons to the anode. Adding 9 mu M resazurin to MFC with one of eight different inhibitors (6 mu M) demonstrated that the acceleration sites of resazurin were NADH-ubiquinone reductase, NADH reductase and methylnaphthoquinone. A microbial analysis showed that adding resazurin changed the composition of the anodic microbial community and stimulated the growth of certain dominant species. (C) 2016 Elsevier B.V. All rights reserved.
机译:刃天青可以改善微生物燃料电池(MFC)的性能。与不含介体的MFC相比,含有3μM刃天青,6μM刃天青和9μM刃天青的MFC的高氯酸盐还原率分别增加了50.8%,72.6%和101.6%,并且输出电压增加了分别为24.5%,33.3%和41.7%。电化学分析表明,加入刃天青降低了阳极电阻并增强了阳极的生物催化活性。添加刃天青的MFCs中的腐殖酸含量增加,多糖含量降低,这加速了电子向阳极的转移。用8种不同抑制剂之一(6μM)向MFC中添加9μM刃天青素,表明刃天青的促进位点是NADH-泛醌还原酶,NADH还原酶和甲基萘醌。微生物分析表明,加入刃天青可改变阳极微生物群落的组成,并刺激某些优势种的生长。 (C)2016 Elsevier B.V.保留所有权利。

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