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电活性生物膜中的胞外聚合物在提高微生物燃料电池和电解槽的效率方面起着至关重要的作用。

Extracellular polymeric substances in electroactive biofilms play a crucial role in improving the efficiency of microbial fuel and electrolysis cells.

机构信息

Department of Molecular Biology and Genetics, Uskudar University, Altunizade 34662, Istanbul, Turkey.

Istanbul Protein Research Application and Inovation Center (PROMER), Uskudar University, 34662 Uskudar, Istanbul, Turkey.

出版信息

Lett Appl Microbiol. 2024 Mar 1;77(3). doi: 10.1093/lambio/ovae017.

Abstract

In microbial electrochemical cells (MECs), electroactive microbial biofilms can transmit electrons from organic molecules to anodes. To further understand the production of anodic biofilms, it is essential to investigate the composition and distribution of extracellular polymeric substance (EPS) in the MECs. In this study, the structure of EPS was examined in microbial electrolysis cells from mixed cultures forming biofilm using carbon fiber fabric anode. EPS was extracted from the anode biofilm of microbial electrolysis cells inoculated with mixed microbial culture. The anode biofilm yielded 0.4 mg of EPS, of which 51.2% was humic substance, 16.2% was protein, 12.6% was carbohydrates, and 20% consisted of undetermined substances. Using epifluorescence microscopy, the composition of bacterial cells and their location inside EPS were studied, and the distribution of microbial communities was compared based on current density results in the presence of various carbohydrates. On the electrode surface, bacteria and EPS gathered or overlapped in various locations can affect microbial electrochemical performance. Our findings showed that EPS formation in electroactive biofilms would be important for enhanced efficiency of electricity- or hydrogen-producing microbial electrolysis cells.

摘要

在微生物电化学电池 (MEC) 中,电活性微生物生物膜可以将电子从有机分子传递到阳极。为了进一步了解阳极生物膜的产生,研究 MEC 中细胞外聚合物质 (EPS) 的组成和分布是至关重要的。在这项研究中,使用碳纤维织物阳极从混合培养物形成生物膜的微生物电解池中检查 EPS 的结构。从接种混合微生物培养物的微生物电解池阳极生物膜中提取 EPS。阳极生物膜产生了 0.4 毫克的 EPS,其中 51.2%是腐殖质,16.2%是蛋白质,12.6%是碳水化合物,20%是未确定的物质。使用荧光显微镜研究了细菌细胞的组成及其在 EPS 中的位置,并根据存在不同碳水化合物时的电流密度结果比较了微生物群落的分布。在电极表面,细菌和 EPS 聚集或重叠在不同的位置会影响微生物电化学性能。我们的研究结果表明,电活性生物膜中 EPS 的形成对于提高电能或氢气产生微生物电解池的效率将是重要的。

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