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首页> 外文期刊>Journal of the Taiwan Institute of Chemical Engineers >Electrochemical impedance study on methyl orange and methyl red as power enhancing electron mediators in glucose fed microbial fuel cell
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Electrochemical impedance study on methyl orange and methyl red as power enhancing electron mediators in glucose fed microbial fuel cell

机译:葡萄糖喂入微生物燃料电池中甲基橙和甲基红作为功率增强电子介体的电化学阻抗研究

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摘要

Methyl orange and methyl red are studied as electron mediators in a glucose-fed microbial fuel cell with graphite anode, Flemion? membrane and platinum sheet cathode. Anaerobic activated sludge is used as bacterial medium. Maximum output power levels of the cell are about 106μW/cm~2 in the absence of any added mediator, 164μW/cm2 and 207μW/cm~2 in the presence of 1mM of methyl orange and 1mM of methyl red in the anolyte, respectively, normalized to anode geometric surface area. Also addition of these organic mediators increases the open circuit potential and short circuit current of the cell from 425mV and 1.12mA/cm2 to 512mV and 1.51mA/cm2 for methyl orange and 585mV and 1.51mA/cm~2 for methyl red. Impedance measurements are performed for the microbial fuel cell in a two electrode configuration. From impedance spectra it is found that the main factor resulting in an increased power level of the cell is the decrease in the anodic charge transfer resistance. It seems this decrease in a direct consequence of more feasible micro-organism assisted anodic oxidation and electron transfer reaction in the anodic compartment in the presence of studied mediators.
机译:在带有石墨阳极的Flemion?葡萄糖葡萄糖微生物燃料电池中,研究了甲基橙和甲基红作为电子介体。膜和铂片阴极。厌氧活性污泥用作细菌培养基。在没有添加任何介体的情况下,电池的最大输出功率水平约为106μW/ cm〜2,在阳极液中存在1mM的甲基橙和1mM的甲基红时,电池的最大输出功率分别为164μW/ cm2和207μW/ cm〜2,归一化到阳极几何表面积。此外,添加这些有机介体会使电池的开路电势和短路电流从425mV和1.12mA / cm2增加到甲基橙的512mV和1.51mA / cm2,对于甲基橙则是585mV和1.51mA / cm〜2。在两个电极的配置中对微生物燃料电池进行阻抗测量。从阻抗谱发现,导致电池功率水平提高的主要因素是阳极电荷转移电阻的降低。在存在研究的介体的情况下,这种减少似乎是在阳极室中更可行的微生物辅助的阳极氧化和电子转移反应的直接结果。

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