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Enhanced performance of microbial fuel cell using carbon microspheres modified graphite anode

机译:碳微球改性石墨阳极提高微生物燃料电池的性能

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Abstract In the present work, dual-chamber microbial fuel cell (MFC) was constructed, in which anaerobic sludge was used as the inoculum and potassium ferricyanide as the electron acceptor. We have investigated the untapped potential of carbon microspheres modified graphite anode (CGA) fabricated by hydrothermal and calcinations method in the MFCs operation. The results showed that the CGA could be utilized as a novel and efficient MFC anode. The output power of the MFC involved with CGA is approximately 358 mW???·m ?¢????2 , which is 3.1 times of the counterpart MFC with graphite anode (GA). Furthermore, this MFC showed a 68% chemical oxygen demand (COD) removal rate of the wastewater. Through further analysis, the CGA could improve the specific surface area and enhance the adsorption of microorganism, which could efficiently favor the electron transfer rate between the microorganism and external circuit, resulting in the increase of the electrochemical activity of MFC.
机译:摘要本文建立了以厌氧污泥为接种物,铁氰化钾为电子受体的双室微生物燃料电池(MFC)。我们已经研究了在MFCs操作中通过水热和煅烧方法制造的碳微球改性石墨阳极(CGA)的未开发潜力。结果表明,CGA可以用作新型高效的MFC阳极。 CGA所涉及的MFC的输出功率约为358 mW···m·Ω·π·2 2,是石墨阳极(GA)的MFC的3.1倍。此外,该MFC显示出废水中68%的化学需氧量(COD)去除率。通过进一步的分析,CGA可以提高比表面积并增强微生物的吸附,从而可以有效地促进微生物与外部电路之间的电子转移速率,从而导致MFC的电化学活性增加。

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