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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Effect of reduction temperature on selective hydrogenation of crotonaldehyde over Ir/TiO2 catalysts
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Effect of reduction temperature on selective hydrogenation of crotonaldehyde over Ir/TiO2 catalysts

机译:还原温度对Ir / TiO2催化剂上巴豆醛选择性加氢的影响

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摘要

Vapor-phase selective hydrogenation of crotonaldehyde was conducted over Ir/TiCh catalysts to investigate the effect of reduction temperature on the catalytic behaviors. The catalyst reduced at 100°C contained large amount of strong Lewis acid sites, which was detrimental to the activity because of the strong adsorption of crotonaldehyde molecules on the active sites. Also, the selectivity to crotyl alcohol was suppressed due to the interaction between C=C bond and the charge-deficient Ir species, which favored the formation of butanal. When the catalyst was reduced at high temperature, it was found that 300 °C was appropriate for high activity and selectivity, due to the moderate interaction between the C=O bond and the Ir species, as well as the weakened surface Lewis acid sites. However, higher reduction temperature (500 °C) led to a strong bonding of carbonyl carbon and the charge-rich Ir species and suppresses the activity, which may be related to a strong metal-support interaction (SMS1).
机译:在Ir / TiCh催化剂上进行巴豆醛的气相选择性加氢反应,以研究还原温度对催化性能的影响。在100℃下还原的催化剂含有大量的强路易斯酸位点,这是由于巴豆醛分子在活性位点上的强烈吸附而对活性有害。另外,由于C = C键与电荷不足的Ir种类之间的相互作用而抑制了对巴豆醇的选择性,这有利于丁醛的形成。当催化剂在高温下还原时,发现由于C = O键和Ir物种之间适度的相互作用以及弱的表面路易斯酸位,300°C适于高活性和高选择性。但是,较高的还原温度(500°C)导致羰基碳与富含电荷的Ir物种牢固结合并抑制了活性,这可能与强金属-载体相互作用(SMS1)有关。

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