Electrodics and Electro Catalysis Division, Central Electrochemical Research Institute (CSIR-CECRI), Karaikudi 630 006, India.
Bioresour Technol. 2012 Jan;104:388-93. doi: 10.1016/j.biortech.2011.10.092. Epub 2011 Nov 11.
This study describes the cooperative effect of the two biocatalysts Acetobacter aceti and Gluconobacter roseus for biodegradation as well as current generation. The electro activity of the biofilms of these two microorganisms was investigated by the bioelectrocatalytic oxidation of ethanol and glucose using cyclic voltammetry. Two chamber microbial fuel cells (MFCs) were constructed using single culture of A. aceti (A-MFC), and G. roseus (G-MFC) and also using mixed culture (AG-MFC). Each MFC was fed with four different substrates viz., glucose, ethanol, acetate and bad wine. AG-MFC produced higher power density with glucose (1.05 W/m(3)), ethanol (1.97 W/m(3)), acetate (1.39 W/m(3)) and bad wine (3.82 W/m(3)). COD removal (94%) was maximum for acetate fed MFCs. Higher coulombic efficiency was obtained with bad wine (45%) as the fuel. This work provides the scope of using these biofuel cells in wineries for performing the dual duty of bad wine degradation along with current generation.
本研究描述了醋酸菌和玫瑰色葡萄糖酸杆菌这两种生物催化剂在生物降解和当前发电方面的协同作用。通过循环伏安法,研究了这两种微生物生物膜对乙醇和葡萄糖的生物电催化氧化作用。使用单一培养的醋酸菌(A-MFC)、玫瑰色葡萄糖酸杆菌(G-MFC)和混合培养(AG-MFC)构建了两个腔室微生物燃料电池(MFC)。每个 MFC 都用四种不同的基质进行了进料,即葡萄糖、乙醇、醋酸和劣质葡萄酒。AG-MFC 以葡萄糖(1.05 W/m(3))、乙醇(1.97 W/m(3))、醋酸(1.39 W/m(3))和劣质葡萄酒(3.82 W/m(3))为燃料时产生了更高的功率密度。以醋酸为燃料时,COD 去除率(94%)最高。使用劣质葡萄酒作为燃料时,库仑效率更高(45%)。这项工作为在酿酒厂使用这些生物燃料电池提供了范围,可以同时进行劣质葡萄酒降解和发电的双重任务。