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A microbial fuel cell equipped with a biocathode for organic removal and denitrification

机译:配备有用于有机去除和反硝化的生物阴极的微生物燃料电池

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Microbial fuel cells (MFCs) are a promising anaerobic technology but they are limited by the high cost of the catalyst used at the cathode (typically platinum). In this study, we designed a novel type of two-chambered MFC wherein an autoheterotrophic denitrifying biofilm replaced the costly catalyst on the cathode surface. Micro-organisms performed denitrification by using electrons supplied by bacteria oxidizing domestic wastewater and acetate as substrates in the anode chamber. This two-chambered MFC equipped with a biocathode generated during more than 1.5 month up to 9.4mW m(-2) of anode surface or 0.19Wm(-3) of anode chamber volume, while removing over 65% of COD, 84% of total nitrogen and nearly 30% of suspended solids with domestic wastewater as a substrate, and nearly 95% of acetate in the subsequent experiments.
机译:微生物燃料电池(MFCs)是一种有前途的厌氧技术,但受到阴极所用催化剂(通常为铂)的高成本的限制。在这项研究中,我们设计了一种新型的两腔MFC,其中一种自异养反硝化生物膜代替了阴极表面上昂贵的催化剂。微生物利用细菌提供的电子将阳极废水和乙酸盐氧化为阳极室中的底物,进行反硝化作用。这种两腔室MFC配备了在超过1.5个月的时间内产生的生物阴极,阳极表面高达9.4mW m(-2)或阳极室体积为0.19Wm(-3),同时去除了超过65%的COD,84%的在随后的实验中,总氮和近30%的悬浮固体(以生活污水为底物)和近95%的乙酸盐。

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