Buitrón Germán, Moreno-Andrade Iván
Laboratory for Research on Advanced Processes for Water Treatment, Instituto de Ingeniería, Unidad Académica Juriquilla, Universidad Nacional Autónoma de México, Blvd. Juriquilla 3001, Querétaro, 76230, Mexico,
Appl Biochem Biotechnol. 2014 Dec;174(7):2471-81. doi: 10.1007/s12010-014-1195-5. Epub 2014 Sep 18.
The performance of a single-chamber microbial fuel cell (MFC) using wastewater containing phenol as the anodic fuel was evaluated. The evaluation was performed considering the effects of the presence of different phenol concentrations in the anodic fuel and the external resistance at which the cells were adapted. Maximum power and current densities of 49.8 mW m(-2) and 292.8 mA m(-2) were obtained, respectively. Microbial diversity on the anode surface remained relatively stable when the phenol concentration was increased. Pseudomonas sp. was the most abundant microorganism in the MFC, followed by the genus Geobacter and Shewanella. Phenol degradation was mainly conducted by bacteria present in the wastewater, and its presence did not affect the electricity generation. The operation of the MFC with a resistance different to the adaptation resistance produced lower current and power densities; however, the variation in external resistances did not adversely affect the phenol degradation.
评估了使用含酚废水作为阳极燃料的单室微生物燃料电池(MFC)的性能。评估过程考虑了阳极燃料中不同酚浓度的存在以及电池适应的外部电阻的影响。分别获得了最大功率密度49.8 mW m(-2)和最大电流密度292.8 mA m(-2)。当酚浓度增加时,阳极表面的微生物多样性保持相对稳定。假单胞菌属是MFC中最丰富的微生物,其次是地杆菌属和希瓦氏菌属。酚的降解主要由废水中存在的细菌进行,其存在不影响发电。与适应电阻不同的电阻运行MFC会产生较低的电流和功率密度;然而,外部电阻的变化不会对酚的降解产生不利影响。