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Co-generation of hydrogen and power/current pulses from supercapacitive MFCs using novel HER iron-based catalysts

机译:使用新型HER铁基催化剂从超电容MFC共生氢和功率/电流脉冲

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摘要

In this work, four different supercapacitive microbial fuel cells (SC-MFCs) with carbon brush as the anode and an air-breathing cathode with Fe-Aminoantipyrine (Fe-AAPyr) as the catalyst have been investigated using galvanostatic discharges. The maximum power (Pmax) obtained was in the range from 1.7 mW to 1.9 mW for each SC-MFC. This in-series connection of four SC-MFCs almost quadrupled Pmax to an operating voltage of 3025 mV and a Pmax of 8.1 mW, one of the highest power outputs reported in the literature. An additional electrode (AdHER) connected to the anode of the first SC-MFC and placed in the fourth SC-MFC evolved hydrogen. The hydrogen evolution reaction (HER) taking place at the electrode was studied on Pt and two novel platinum group metal-free (PGM-free) catalysts: Fe-Aminoantipyrine (Fe-AAPyr) and Fe-Mebendazole (Fe-MBZ). The amount of H2 produced was estimated using the Faraday law as 0.86 mMd−1cm−2 (0.132 L day−1) for Pt, 0.83 mMd−1cm−2 (0.127 L day−1) for Fe-AAPyr and 0.8 mMd−1cm−2 (0.123 L day−1) for Fe-MBZ. Hydrogen evolution was also detected using gas chromatography. While HER was taking place, galvanostatic discharges were also performed showing simultaneous H2 production and pulsed power generation with no need of external power sources.
机译:在这项工作中,使用恒电流放电研究了四种不同的以碳刷为阳极和以Fe-氨基安替比林(Fe-AAPyr)为催化剂的透气阴极的超电容微生物燃料电池(SC-MFC)。每个SC-MFC的最大功率(Pmax)在1.7mW至1.9mW的范围内。四个SC-MFC的这种串联连接使Pmax几乎翻了三倍,达到3025 mV的工作电压和8.1 mW的Pmax,这是文献中报道的最高功率输出之一。连接到第一SC-MFC阳极并放置在第四SC-MFC中的附加电极(AdHER)放出氢气。研究了在Pt和两种新型无铂族金属(无PGM)催化剂上发生在电极上的氢逸出反应(HER):Fe-氨基安替比林(Fe-AAPyr)和Fe-甲苯达唑(Fe-MBZ)。使用法拉第定律估算的P2的H2生成量为0.86 mMd -1 cm -2 (0.132L day -1 ), Fe-AAPyr为0.83 mMd -1 cm −2 (0.127 L天 -1 )和0.8 mMd -1 cm −2 (0.123 L天 -1 )。还使用气相色谱检测了析氢。在发生HER时,还进行了恒电流放电,显示出同时产生H2和脉冲发电,而无需外部电源。

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