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铁-氮共掺杂活性炭作为阴极催化剂提高单室空气阴极微生物燃料电池的发电性能。

Iron-nitrogen-activated carbon as cathode catalyst to improve the power generation of single-chamber air-cathode microbial fuel cells.

机构信息

College of Environmental Science and Engineering, Nankai University, Tianjin 300071, China.

College of Environmental Science and Engineering, Nankai University, Tianjin 300071, China.

出版信息

Bioresour Technol. 2016 Apr;206:285-289. doi: 10.1016/j.biortech.2016.01.112. Epub 2016 Feb 4.

Abstract

In order to improve the performance of microbial fuel cell (MFC), iron-nitrogen-activated carbon (Fe-N-C) as an excellent oxygen reduction reaction (ORR) catalyst was prepared here using commercial activated carbon (AC) as matrix and employed in single chamber MFC. In MFC, the maximum power density increased to 2437±55 mW m(-2), which was 2 times of that with AC. The open circuit potential (OCP) of Fe-N-C cathode (0.47) was much higher than that of AC cathode (0.21 V). The R0 of Fe-N-C decreased by 47% from 14.36 Ω (AC) to 7.6 Ω (Fe-N-C). From X-ray photoelectron spectroscopy (XPS), pyridinic nitrogen, quaternary nitrogen and iron species were present, which played an important role in the ORR performance of Fe-N-C. These results demonstrated that the as-prepared Fe-N-C material provided a potential alternative to Pt in AC air cathode MFC for relatively desirable energy generation and wastewater treatment.

摘要

为了提高微生物燃料电池 (MFC) 的性能,本文采用商用活性炭 (AC) 为基质,制备了铁氮活性炭 (Fe-N-C) 作为一种优秀的氧还原反应 (ORR) 催化剂,并将其应用于单室 MFC。在 MFC 中,最大功率密度增加到 2437±55 mW m(-2),是 AC 的 2 倍。Fe-N-C 阴极的开路电位 (OCP) (0.47 V) 远高于 AC 阴极的开路电位 (0.21 V)。Fe-N-C 的 R0 从 14.36 Ω (AC) 降低了 47%,至 7.6 Ω (Fe-N-C)。X 射线光电子能谱 (XPS) 表明,吡啶氮、季氮和铁物种的存在对 Fe-N-C 的 ORR 性能起着重要作用。这些结果表明,所制备的 Fe-N-C 材料为 AC 空气阴极 MFC 中替代 Pt 提供了一种有潜力的选择,以实现相对理想的能量产生和废水处理。

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