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Comprehensive Comparison of a New Tin-Coated Copper Mesh and a Graphite Plate Electrode as an Anode Material in Microbial Fuel Cell

机译:新型镀锡铜网与石墨板电极作为微生物燃料电池阳极材料的综合比较

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摘要

This paper summarizes the comparison of a new tin-coated copper (t-coating Cu) mesh electrode with a graphite plate electrode for potential power generation and biocompatibility in a microbial fuel cell (MFC). The study, which used domestic wastewater, demonstrated that t-coating Cu mesh electrode produced a power density (271 mW/m(2)) approximately three times higher than that produced by a graphite electrode (87 mW/m(2)). Scanning electron microscopy (SEM) results revealed that bacterial morphology on the two electrodes significantly varied. The t-coating Cu mesh electrode surface had higher bacterial diversity because the open three-dimensional macro-mesh structure allowed an excellent electro-biofilm attachment. Kinetic performances evaluated using the Nernst-Monod equation demonstrated that the t-coating Cu mesh electrode had both higher power density and good biocompatibility in a large surface area, high chemical stability, and favorable metallic conductivity.
机译:本文总结了新型镀锡铜(t-涂层铜)网状电极与石墨板电极在微生物燃料电池(MFC)中的潜在发电和生物相容性的比较。该研究使用了生活污水,结果表明,t涂层铜网电极产生的功率密度(271 mW / m(2))大约是石墨电极产生的功率密度(87 mW / m(2))的三倍。扫描电子显微镜(SEM)结果表明,两个电极上的细菌形态明显不同。 t涂层Cu网状电极表面具有较高的细菌多样性,因为开放的三维宏观网状结构允许极好的电生物膜附着。使用Nernst-Monod方程评估的动力学性能表明,该t涂层Cu网状电极在大表面积中具有较高的功率密度和良好的生物相容性,较高的化学稳定性和良好的金属电导率。

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