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Photothermal heterogeneous oxidation of ethanol over Pt/TiO2

机译:Pt / TiO2上乙醇的光热多相氧化

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Photothermal catalytic oxidation of ethanol over TiO2 and Pt/TiO2 has been investigated. Platinum was deposited on the titania using both photoreduction and adsorption of the PtCl62- anion. The nominal weight loadings of Pt were less than 1 wt%. Thermal contributions to ethanol oxidation over Pt could be distinguished from photo-contributions to ethanol oxidation over TiO2 by comparing illuminated and dark reactions under the same conditions. A significant photothermal synergistic effect was seen for Pt/TiO2 catalysts. The activity for complete oxidation to CO2 is much greater than the contribution from photo-oxidation over TiO2 plus thermal oxidation over Pt. Experiments were conducted to investigate the mechanistic nature of the synergistic effect. The synergistic effect was found to be sensitive to preparation conditions, with photoreduced catalysts having higher activities compared to thermally reduced catalysts prepared by adsorption of the PtCl62- anion: The differences between the photo and thermally reduced Pt/TiO2 are attributed to differing extents of etching of the TiO2 surface by the acidic solution of chloroplatinic acid. An experiment with layered beds of Pt/TiO2 and TiO2 showed that adding unetched TiO2 to etched Pt/TiO2 could improve CO2 production. The photothermal synergistic enhancement of CO2 production appears to be caused primarily by gas phase transport of intermediates between the two catalyst phases in a mixed series-parallel kinetic pathway. Increased levels of acetaldehyde produced by photo-oxidation over TiO2 can lead to CO2 production by thermal reaction of the acetaldehyde over Pt. (C) 1998 Academic Press. [References: 48]
机译:研究了乙醇在TiO2和Pt / TiO2上的光热催化氧化。使用PtCl62阴离子的光还原和吸附将铂沉积在二氧化钛上。 Pt的标称重量负载小于1重量%。通过比较相同条件下的光照反应和黑暗反应,可以区分Pt上乙醇氧化的热贡献与TiO2上乙醇氧化的光贡献。 Pt / TiO2催化剂具有明显的光热协同作用。完全氧化为CO2的活性远远大于TiO2上的光氧化作用和Pt上的热氧化作用。进行实验以研究协同效应的机制性质。发现协同效应对制备条件敏感,与通过吸附PtCl62-阴离子制备的热还原催化剂相比,光还原催化剂具有更高的活性:光还原和热还原Pt / TiO2之间的差异归因于蚀刻程度不同氯铂酸的酸性溶液对TiO2表面的吸附对Pt / TiO2和TiO2进行分层实验表明,将未蚀刻的TiO2添加到蚀刻的Pt / TiO2中可以提高CO2的产生。产生CO2的光热协同增效似乎主要是由两个催化剂相之间的混合串联-并联动力学路径中的中间体气相输送引起的。通过在TiO2上进行光氧化而产生的乙醛含量增加,可导致乙醛在Pt上发生热反应而产生CO2。 (C)1998年学术出版社。 [参考:48]

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