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Use of Pyrolyzed Iron Ethylenediaminetetraacetic Acid Modified Activated Carbon as Air-Cathode Catalyst in Microbial Fuel Cells

机译:热解乙二胺四乙酸铁改性的活性炭在微生物燃料电池中作为空气阴极催化剂的应用

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Activated carbon (AC) is a cost-effective catalyst for the oxygen reduction reaction (ORR) in air-cathode microbial fuel cells (MFCs). To enhance the catalytic activity of AC cathodes, AC powders were pyrolyzed with iron ethylenediaminetetraacetic acid (FeEDTA) at a weight ratio of FeEDTA:AC = 0.2:1. MFCs with FeEDTA modified AC cathodes and a stainless steel mesh current collector produced a maximum power density of 1580 ± 80 mW/m~2, which was 10% higher than that of plain AC cathodes (1440 ± 60 mW/m~2) and comparable to Pf cathodes (1550 ± 10 mW/m~2). Further increases in the ratio of FeEDTA:AC resulted in a decrease in performance. The durability of AC-based cathodes was much better than Pt-catalyzed cathodes. After 4.5 months of operation, the maximum power density of Pt cathode MFCs was 50% lower than MFCs with the AC cathodes. Pyridinic nitrogen, quaternary nitrogen and iron species likely contributed to the increased activity of FeEDTA modified AC. These results show that pyrolyzing AC with FeEDTA is a cost-effective and durable way to increase the catalytic activity of AC.
机译:活性炭(AC)是用于空气阴极微生物燃料电池(MFC)中氧还原反应(ORR)的具有成本效益的催化剂。为了增强AC阴极的催化活性,AC粉末用乙二胺四乙酸铁(FeEDTA)以FeEDTA:AC = 0.2:1的重量比进行热解。具有FeEDTA修饰的交流阴极和不锈钢网状集电器的MFC产生的最大功率密度为1580±80 mW / m〜2,比普通的交流阴极(1440±60 mW / m〜2)高10%。相当于Pf阴极(1550±10 mW / m〜2)。 FeEDTA:AC比例的进一步增加导致性能下降。 AC基阴极的耐久性比Pt催化阴极好得多。运行4.5个月后,Pt阴极MFC的最大功率密度比带有AC阴极的MFC低50%。吡啶氮,季氮和铁物种可能有助于FeEDTA改性AC活性的提高。这些结果表明,用FeEDTA热解AC是增加AC催化活性的经济有效且持久的方法。

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