Sun Yat-sen University, Guangzhou, Guangdong, China.
J Environ Sci Health A Tox Hazard Subst Environ Eng. 2010 Aug;45(10):1195-206. doi: 10.1080/10934529.2010.493780.
Veratryl alcohol (VA) is a product from the biodegradation of lignocellulosic biomass. The objective of this study was to explore the possibility whether VA could be used as the fuel of the microbial fuel cell (MFC) to generate power. Two types of MFCs, a two-chamber MFC and a single-chamber air-cathode MFC, were set up for experiments. In the two-chamber MFC, average maximum current outputs higher than 700 microA were obtained using various mixtures of glucose and VA as the fuel. The highest power density of 35.17 W m(-3) was achieved using the mixture of 1000 mg L(-1) glucose and 50 mg L(-1) VA as the fuel. With 500 mg L(-1) VA as the fuel in the MFC, we obtained an average maximum current output of 181 microA. In the single-chamber MFC, the maximum current output reached up to 178 microA with 500 mg L(-1) VA in the fed-batch mode and the maximum CE reached 23.77% with 100 mg L(-1) VA. At the end of all operation cycles of the MFCs, the glucose and VA were undetectable in the solution, and the removal efficiencies of COD were between 75% and 88%. The denaturing gradient gel electrophoresis profiles of 16S rRNA gene indicated that the dominant species on the anode biofilm did not change significantly with the different substrates, but the abundance of some species increased greatly. The scanning electron micrographs showed that the most abundant bacteria on the electrode were bacilli. The dominant species belonged to bacteroidetes and proteobacterium.
藜醇是木质纤维素生物质生物降解的产物。本研究旨在探索藜醇作为微生物燃料电池(MFC)燃料产生电能的可能性。本研究搭建了双室 MFC 和单室空气阴极 MFC 两种电池进行实验。在双室 MFC 中,使用不同浓度的葡萄糖和藜醇混合燃料,获得了平均最高电流输出值高于 700μA。当以 1000mg/L 葡萄糖和 50mg/L 藜醇混合燃料为燃料时,获得了最高的功率密度 35.17W/m3。以 500mg/L 藜醇为燃料时,MFC 获得了平均最高电流输出 181μA。在单室 MFC 中,在批进料模式下,当以 500mg/L 藜醇为燃料时,最大电流输出达到 178μA,最大 CE 达到 23.77%,当以 100mg/L 藜醇为燃料时。在 MFC 所有运行周期结束时,溶液中无法检测到葡萄糖和藜醇,COD 的去除效率在 75%到 88%之间。16S rRNA 基因的变性梯度凝胶电泳图谱表明,不同底物的阳极生物膜上的优势种没有明显变化,但一些种的丰度大大增加。扫描电子显微镜显示,电极上最丰富的细菌是杆菌。优势种属于拟杆菌门和变形菌门。