Sharma Tushar, Reddy A Leela Mohana, Chandra T S, Ramaprabhu S
Biotechnology Department, IIT Madras, Chennai 600036, India.
J Nanosci Nanotechnol. 2008 Aug;8(8):4132-4. doi: 10.1166/jnn.2008.an15.
Microbial Fuel Cells (MFC) are robust devices capable of taping biological energy, converting sugars into potential sources of energy. Persistent efforts are directed towards increasing power output. However, they have not been researched to the extent of making them competitive with chemical fuel cells. The power generated in a dual-chamber MFC using neutral red (NR) as the electron mediator has been previously shown to be 152.4 mW/m2 at 412.5 mA/m2 of current density. In the present work we show that Pt thin film coated carbon paper as electrodes increase the performance of a microbial fuel cell compared to conventionally employed electrodes. The results obtained using E. coli based microbial fuel cell with methylene blue and neutral red as the electron mediator, potassium ferricyanide in the cathode compartment were systematically studied and the results obtained with Pt thin film coated over carbon paper as electrodes were compared with that of graphite electrodes. Platinum coated carbon electrodes were found to be better over the previously used for microbial fuel cells and at the same time are cheaper than the preferred pure platinum electrodes.
微生物燃料电池(MFC)是能够利用生物能,将糖类转化为潜在能源的坚固装置。人们一直在持续努力提高其功率输出。然而,对它们的研究还未达到使其能与化学燃料电池竞争的程度。先前已表明,在双室MFC中使用中性红(NR)作为电子介质时,在电流密度为412.5 mA/m²的情况下,产生的功率为152.4 mW/m²。在本研究中,我们表明,与传统使用的电极相比,以涂有铂薄膜的碳纸作为电极可提高微生物燃料电池的性能。系统研究了以大肠杆菌为基础的微生物燃料电池,分别以亚甲基蓝和中性红作为电子介质,在阴极室中使用铁氰化钾时的情况,并将以涂有铂薄膜的碳纸作为电极所获得的结果与石墨电极的结果进行了比较。结果发现,铂涂层碳电极比先前用于微生物燃料电池的电极更好,同时比首选的纯铂电极更便宜。