首页> 外文期刊>Journal of Applied Electrochemistry >Photoelectrochemical reaction of biomass-related compounds in a biophotochemical cell comprising a nanoporous TiO2 film photoanode and an O2-reducing cathode
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Photoelectrochemical reaction of biomass-related compounds in a biophotochemical cell comprising a nanoporous TiO2 film photoanode and an O2-reducing cathode

机译:包含纳米多孔TiO 2 薄膜光阳极和O 2 还原阴极的生物光化学电池中生物质相关化合物的光电化学反应

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摘要

Photoelectrochemical decomposition of bio-related compounds such as ammonia, formic acid, urea, alcohol, and glycine by a biophotochemical cell (BPCC) comprising a nanoporous TiO2 film photoanode and an O2-reducing cathode generating simultaneously electrical power was investigated. The bio-related compounds studied were all photodecomposed by the present BPCC when they were either liquid or soluble in water. It was shown that ethanol exhibits similar characteristics both under 1 atm O2 and air as studied by cyclic voltammograms. Although the present BPCC utilizes only UV light, a solar simulator at AM 1.5G and 100 mW cm−2 light intensity gave also moderate photocurrent–photovoltage (J–V) characteristics with about 2/5 of the short circuit photocurrent (J sc) values (J sc) of that under a Xe lamp irradiation at the intensity of 503 mW cm−2. It was demonstrated that varieties of bio-related compounds can be used as a direct fuel simultaneously for photodecomposition and electrical power generation. The charge transport processes in the BPCC operation were analyzed using glycine by an alternating current impedance spectroscopy, showing that the charge transfer reactions on the photoanode and the cathode surfaces compose the major resistance for the cell performance.
机译:通过包含纳米多孔TiO 2 薄膜光阳极和O 2 2 和空气下均表现出相似的特性。尽管目前的BPCC仅利用紫外线,但在1.5G AM和100 mW cm -2 光强度下的太阳模拟器也具有中等的光电流-光电压(J-V)特性,约为2/5。 Xe灯在503 mW cm -2 强度下的短路光电流(J sc )值(J sc )。已经证明,多种生物相关化合物可以同时用作光分解和发电的直接燃料。通过交流阻抗谱使用甘氨酸分析了BPCC操作中的电荷传输过程,表明光阳极和阴极表面上的电荷转移反应构成了电池性能的主要阻力。

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