Bioengineering and Environmental Centre, Indian Institute of Chemical Technology, Hyderabad, India.
J Hazard Mater. 2010 May 15;177(1-3):487-94. doi: 10.1016/j.jhazmat.2009.12.059. Epub 2009 Dec 21.
Microbial fuel cell (MFC; open-air cathode) was evaluated as bio-electrochemical treatment system for distillery wastewater during bioelectricity generation. MFC was operated at three substrate loading conditions in fed-batch mode under acidophilic (pH 6) condition using anaerobic consortia as anodic-biocatalyst. Current visualized marked improvement with increase in substrate load without any process inhibition (2.12-2.48mA). Apart from electricity generation, MFC documented efficient treatment of distillery wastewater and illustrated its function as an integrated wastewater treatment system by simultaneously removing multiple pollutants. Fuel cell operation yielded enhanced substrate degradation (COD, 72.84%) compared to the fermentation process ( approximately 29.5% improvement). Interestingly due to treatment in MFC, considerable reduction in color (31.67%) of distillery wastewater was also observed as against color intensification normally observed due to re-polymerization in corresponding anaerobic process. Good reduction in total dissolved solids (TDS, 23.96%) was also noticed due to fuel cell operation, which is generally not amenable in biological treatment. The simultaneous removal of multiple pollutants observed in distillery wastewater might be attributed to the biologically catalyzed electrochemical reactions occurring in the anodic chamber of MFC mediated by anaerobic substrate metabolism.
微生物燃料电池(MFC;露天阴极)在产电过程中被评估为一种用于处理酿酒废水的生物电化学处理系统。在酸性(pH 6)条件下,使用厌氧菌群作为阳极生物催化剂,以分批进料模式在三种基质负荷条件下运行 MFC。随着基质负荷的增加,电流明显增加,没有任何过程抑制(2.12-2.48mA)。除了发电之外,MFC 还记录了对酿酒废水的有效处理,并通过同时去除多种污染物证明了其作为综合废水处理系统的功能。与发酵过程(约 29.5%的提高)相比,燃料电池运行产生了增强的基质降解(COD,72.84%)。有趣的是,由于在 MFC 中的处理,酿酒废水中的颜色也观察到了相当大的减少(31.67%),而在相应的厌氧过程中,由于重新聚合通常观察到颜色增强。由于燃料电池运行,总溶解固体(TDS,23.96%)也得到了很好的减少,这在生物处理中通常是不可行的。在酿酒废水中观察到的多种污染物的同时去除可能归因于在 MFC 的阳极室中发生的生物催化电化学反应,这些反应是由厌氧基质代谢介导的。