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在实际生活污水中设计的还原氧气双向微生物电极。

Oxygen-reducing bidirectional microbial electrodes designed in real domestic wastewater.

机构信息

Laboratoire de Génie Chimique, Université de Toulouse, CNRS, INP, UPS, Toulouse, France.

Université Paris-Saclay, INRAE, PRocédés biOtechnologiques au Service de l'Environnement, 92761 Antony, France.

出版信息

Bioresour Technol. 2021 Apr;326:124663. doi: 10.1016/j.biortech.2021.124663. Epub 2021 Jan 19.

Abstract

Microbial electrodes were designed in domestic wastewaters to catalyse the oxidation of organic matter (anode) and the reduction of oxygen (cathode) alternately. The successive aeration phases (cathode) enhanced the anodic efficiency, resulting in current densities of up to 6.4 Am without the addition of any substrate. Using nitrogen during the anodic phases affected the microbial populations and the electrodes showed a lower ability to subsequently turn to O reduction than the microbial anodes formed in open-to-air conditions did. No strong difference was observed between internal and external biofilm, both of which showed a very large variety of taxa in terms of abundance as well as variance. They comprised a mix of aerobic and anaerobic species, many of which have already been identified separately in bioelectrochemical systems. Such a large diversity, which had not been observed in aerobic bidirectional bioelectrodes so far, can explain the efficiency and robustness observed here.

摘要

微生物电极被设计用于在生活废水中交替催化有机物的氧化(阳极)和氧气的还原(阴极)。连续的曝气阶段(阴极)提高了阳极效率,无需添加任何底物即可达到高达 6.4 A/m 的电流密度。在阳极阶段使用氮气会影响微生物种群,并且与在开放空气条件下形成的微生物阳极相比,电极随后转向 O 还原的能力较低。内部和外部生物膜之间没有观察到明显的差异,两者在丰度和方差方面都表现出非常多样化的分类群。它们包含了需氧和厌氧物种的混合体,其中许多在生物电化学系统中已经被单独鉴定。这种多样性在迄今为止的好氧双向生物电极中尚未观察到,它可以解释这里观察到的效率和鲁棒性。

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