首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Efficient CO2 conversion to formic acid in a novel microbial photoelectrochemical cell using a visible-light responsive Co3O4 nanorod-arrayed photocathode
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Efficient CO2 conversion to formic acid in a novel microbial photoelectrochemical cell using a visible-light responsive Co3O4 nanorod-arrayed photocathode

机译:使用可见光响应式CO3O4纳米频带串联光电阴道在新型微生物光电化学电池中高效的CO2转化为甲酸中的甲酸

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摘要

A microbial photoelectrochemical cell (MPEC) is a self-biased, solar-driven device combining bioenergy with solar energy to produce sustainable electricity and chemicals. Here, an MPEC with a p-type Co3O4 nanorod-arrayed photocathode and bio-anode was constructed that matched well the redox potentials of anode microorganisms with the band gap of the Co3O4. The yield of formic acid produced by this MPEC under visible light irradiation with an external resistance of 300 O was 239 +/- 10 mu mol in 10 h, which was 1.8 times that produced by a bare Co3O4 photocathode under visible light, and 4.9 times that produced by the MPEC operated in dark. The maximum power density was 331 +/- 4mW m(-2) under visible light, compared to 175 +/- 25mW m(-2) in the dark. This study of MPEC with the synergistic effect of light energy and bioenergy opens up new opportunities for applications in environmental treatment of wastewaters and chemicals production.
机译:微生物光电化学电池(MPEC)是一种自偏置的太阳能驱动的装置,将生物能源与太阳能结合起来,以产生可持续的电力和化学品。 这里,构建了具有p型CO3O4纳米棒串联光电阴极和生物阳极的MPEC,其匹配孔与CO3O4的带隙的阳极微生物的氧化还原电位。 通过该MPEC在具有300 o的外部电阻下的可见光照射下产生的甲酸的产率为10小时,其在可见光下的裸CO3O4光电阴极产生的1.8倍,4.9倍。 由MPEC在黑暗中运行的。 在可见光下,最大功率密度为331 +/- 4mW m(-2),而黑暗中的175 +/- 25mW m(-2)。 本研究了MPEC,具有光能和生物能源协同作用,为废水和化学品生产的环境处理中的应用开辟了新的机会。

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