光电阴极
微生物燃料电池
催化作用
纳米颗粒
燃料电池
化学
化学工程
材料科学
纳米技术
工程类
物理
生物化学
阳极
电子
物理化学
量子力学
电极
作者
Jianjun Wang,Yanping Zhang,Bianfeng Yang,Shiyan Yang,Shiyan Yang,Tong Xuan,Mengqi Wang,Xu Ji,Sixia Yang,Sixia Yang
标识
DOI:10.1016/j.biortech.2025.132586
摘要
This study explores Cu/TiO2 nanoparticles as photocathode catalysts to enhance microbial fuel cell (MFC) performance. Cu/TiO2 samples with 1-4 wt% Cu loading were synthesized via low-temperature calcination and characterized for their optical, electrochemical, and photocatalytic properties. The 2 wt% Cu/TiO2 exhibited optimal performance, with a specific surface area 2.6 times larger than pure TiO2 and 26 % higher photocatalytic degradation efficiency of methyl orange (MO). When applied in photocatalytic microbial fuel cell (Photo-MFC), the 2 wt% Cu/TiO2/SSWM achieved an open-circuit voltage of 790 mV and a power density of 312 mW·m-2, significantly outperforming traditional Pt catalysts and stainless steel wire mesh (SSWM) controls. Additionally, the MO degradation efficiency reached 99 %, demonstrating superior photocatalytic activity. This study provides a cost-effective and high-performance solution for photocathode materials, achieving high power output and pollutant degradation efficiency, offering a promising alternative to traditional Pt catalysts for sustainable wastewater treatment.
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