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Formation of Combustible Hydrocarbons and H2 during Photocatalytic Decomposition of Various Organic Compounds under Aerated and Deaerated Conditions

机译:曝气和脱气条件下各种有机化合物光催化分解过程中可燃烃和氢气的形成

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摘要

A possibility of photocatalytic production of useful aliphatic hydrocarbons and H2 from various organic compounds, including acetic acid, methanol, ethanol and glucose, over Fe-modified TiO2 is discussed. In particular, the influence of the reaction atmosphere (N2, air) was investigated. Different gases were identified in the headspace volume of the reactor depending on the substrate. In general, the evolution of the gases was more effective in air compared to a N2 atmosphere. In the presence of air, the gaseous phase contained CO2, CH4 and H2, regardless of the substrate used. Moreover, formation of C2H6 and C3H8 in the case of acetic acid and C2H6 in the case of ethanol was observed. In case of acetic acid and methanol an increase in H2 evolution under aerated conditions was observed. It was concluded that the photocatalytic decomposition of organic compounds with simultaneous generation of combustible hydrocarbons and hydrogen could be a promising method of “green energy” production.
机译:讨论了在Fe修饰的TiO2上由各种有机化合物(包括乙酸,甲醇,乙醇和葡萄糖)光催化生产有用的脂肪族烃和H2的可能性。特别地,研究了反应气氛(N 2,空气)的影响。取决于底物,在反应器的顶部空间中发现了不同的气体。通常,与N2气氛相比,气体在空气中的释放更为有效。在存在空气的情况下,无论所用的底物如何,气相均包含CO2,CH4和H2。此外,观察到在乙酸的情况下形成C 2 H 6和C 3 H 8,在乙醇的情况下观察到C 2 H 6。在乙酸和甲醇的情况下,观察到在充气条件下氢气释放的增加。结论是,光催化分解有机化合物同时生成可燃的烃和氢可能是一种有前途的“绿色能源”生产方法。

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