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Photoelectrochemical reaction of biomass and bio-related compounds with nanoporous TiO2 film photoanode and O-2-reducing cathode

机译:生物质和生物相关化合物与纳米多孔TiO2薄膜光阳极和O-2-还原阴极的光电化学反应

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Photoelectrochemical decomposition of many biomass and related compounds with a nanoporous TiO2 film photoanode and an O-2-reducing cathode was successfully achieved to generate photocurrents. As long as the compound is either liquid or soluble (or solubilized) in water, it was able to be photodecomposed including even polymeric compound to produce electricity. Not only biomass (such as polysaccharides, proteins, cellulose, lignin, etc.) and bio-related materials (methanol, ethanol, glucose, amino acids, ammonia, urea, etc.), but also other electron-donating compounds, even synthetic polymers, could be photodecomposed generating electricity. The compounds underwent almost complete mineralization, i.e., they decomposed almost completely to produce either CO2 from carbon compounds or dinitrogen (N-2) from nitrogen compounds such as ammonia. It was estimated that about 78% energy of the compound is converted to electrical energy in a maximum case. A photofuel cell (PFC) was proposed and thus proved that can use varieties of biomass and bio-related compounds including other organic compounds as a direct fuel to generate electricity by using photocatalytic oxidation at a nanoporous TiO2 film photoanode and an O-2-reducing cathode. (c) 2005 Elsevier B.V. All rights reserved.
机译:利用纳米多孔TiO2薄膜光阳极和O-2还原阴极成功实现了许多生物质和相关化合物的光电化学分解,以产生光电流。只要该化合物在水中是液态的或可溶的(或增溶的),它就可以被光分解,甚至包括高分子化合物也可以产生电能。不仅生物质(例如多糖,蛋白质,纤维素,木质素等)和生物相关材料(甲醇,乙醇,葡萄糖,氨基酸,氨,尿素等),而且还包括其他供电子化合物,甚至是合成的聚合物,可以被光分解发电。这些化合物几乎完全矿化,即它们几乎完全分解以从碳化合物中产生CO2或从氮化合物如氨中产生二氮(N-2)。据估计,在最大情况下,化合物的约78%的能量会转换为电能。提出了一种光燃料电池(PFC),从而证明它可以利用多种生物量和生物相关化合物(包括其他有机化合物)作为直接燃料,通过在纳米多孔TiO2薄膜光阳极上进行光催化氧化和还原O-2-来发电阴极。 (c)2005 Elsevier B.V.保留所有权利。

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