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Substrate removal and electricity generation in a membrane-less microbial fuel cell for biological treatment of wastewater

机译:无膜微生物燃料电池中的底物去除和发电,用于废水的生物处理

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Microbial fuel cells have gained popularity in recent years due to its promise in converting organic wastewater into renewable electrical energy. In this study, a membrane-less MFC with a biocathode was developed to evaluate its performance in electricity generation while simultaneously treating wastewater. The MFC fed with a continuous flow of 2g/day acetate produced a power density of 30mW/m~2 and current density of 245mA/m~2. A substrate degradation efficiency (SDE) of 75.9% was achieved with 48.7% attributed to the anaerobic process and 27.2% to the aerobic process. Sequencing analysis of the microbial consortia using 16S rDNA pryosequencing showed the predominance of Bacteroidia in the anode after one month of operation, while the microbial community in the cathode chamber was dominated by Gamma-proteobacteria and Beta-proteobacteria. Coulombic efficiencies varied from 19.8% to 58.1% using different acetate concentrations, indicating power density can be further improved through the accumulation of electron-transferring bacteria.
机译:近年来,由于微生物燃料电池有望将有机废水转化为可再生电能,因此已获得普及。在这项研究中,开发了一种带有生物阴极的无膜MFC,以评估其在发电的同时处理废水的性能。连续注入2g /天醋酸盐的MFC产生的功率密度为30mW / m〜2,电流密度为245mA / m〜2。底物降解效率(SDE)达到75.9%,其中48.7%归因于厌氧过程,27.2%归因于好氧过程。使用16S rDNA磷酸测序对微生物群落的测序分析显示,手术一个月后,阳极中的细菌占优势,而阴极室中的微生物群落主要由γ-蛋白细菌和β-蛋白细菌控制。使用不同的乙酸盐浓度,库仑效率从19.8%到58.1%不等,这表明可以通过电子传输细菌的积累来进一步提高功率密度。

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