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Floating-type Microbial Fuel Cell (ft-mfc) For Treating Organic-contaminated Water

机译:浮式微生物燃料电池(ft-mfc),用于处理有机污染水

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This study examines a floating-type microbial fuel cell (FT-MFC) that can be applied to treat organic-contaminated water without mechanical aid. The bottom of the anode compartment was left open to the aquatic environment and the cathode was exposed above the water surface. When four FT-MFCs were inoculated with anaerobic digest fluid (ADF) obtained from a brewery wastewater treatment system (Gwangju, Korea), the open circuit voltages were around 0.4-0.5 V. The initial chemical oxygen demand (COD) of ADF was 1700 ppm and decreased to 380 ppm over a 2-day period under the open circuit mode. Two of the four FT-MFCs were then switched to closed circuit mode to view the current production under batch operation. The current developed was around 0.25 mA and the COD value decreased to 230 ppm after 5 days. The acetate concentration used was varied from 5 to 50 mM to observe whether or not the substrate was limited by the growth of bacteria involved in current generation. It was found that the current was maximized at 0.67 mA when 5 mM of acetate was fed at a feeding rate of 0.08 mL/min. Maximum current density and maximum power density were 138 mA/m~2 and 8 mW/m~2, respectively. These results indicate that FT-MFCs could be applied in situ to treat organic-contaminated water in natural aquatic environments without mechanical aid. Further cathode operation optimization is expected to enhance the treatment of organic materials and corresponding current production.
机译:这项研究研究了一种漂浮型微生物燃料电池(FT-MFC),该电池可在没有机械辅助的情况下用于处理有机污染的水。阳极室的底部对水生环境敞开,阴极暴露在水面上方。当用从啤酒废水处理系统(韩国光州)获得的厌氧消化液(ADF)接种四个FT-MFC时,开路电压约为0.4-0.5V。ADF的初始化学需氧量(COD)为1700 ppm,在开路模式下,在2天的时间内降至380 ppm。然后,将四个FT-MFC中的两个切换到闭路模式,以查看批处理操作下的当前产量。产生的电流约为0.25 mA,5天后COD值降至230 ppm。所使用的乙酸盐浓度在5至50 mM之间变化,以观察底物是否受到当前一代细菌生长的限制。发现当以0.08mL / min的进料速率进料5mM乙酸盐时,电流在0.67mA时最大。最大电流密度和最大功率密度分别为138 mA / m〜2和8 mW / m〜2。这些结果表明,FT-MFCs可以在没有机械帮助的情况下原位应用于天然水生环境中的有机污染水处理。预期进一步的阴极操作优化将增强有机材料的处理和相应的电流产量。

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