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首页> 外文期刊>Journal of Catalysis >THE EFFECT OF METAL-SUPPORT INTERACTIONS ON THE HYDROGENATION OF BENZALDEHYDE AND BENZYL ALCOHOL
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THE EFFECT OF METAL-SUPPORT INTERACTIONS ON THE HYDROGENATION OF BENZALDEHYDE AND BENZYL ALCOHOL

机译:金属与金属的相互作用对苯甲醛和苯甲醇的加氢反应的影响

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Both rates (per g catalyst) and turnover frequencies for benzaldehyde hydrogenation were markedly enhanced on Pt/TiO2 after a high-temperature reduction (HTR) step, compared to either Pt/TiO2 after a low-temperature reduction (LTR) step, Pt/SiO2 or Pt/Al2O3. All these catalysts consisted of dispersed 1-nm Pt crystallites and ail gave similar activation energies of 8 +/- 2 kcal/mole. More importantly, Pt/TiO2 (HTR) retained a selectivity to benzyl alcohol of 100% up to conversions of 80%, whereas significant amounts of toluene and benzene began to be formed at conversions above 20% with the other Pt catalysts, including Pt powder. The specific activity for pure benzyl alcohol hydrogenation was similar to that for pure benzaldehyde on PtAl2O3 and Pt/TiO2 (LTR), but it was greatly suppressed on Pt/TiO2 (HTR). Thus, in addition to a higher formation rate of benzyl alcohol and less competitive benzyl alcohol adsorption compared to benzaldehyde, the lower intrinsic rate constant for benzyl alcohol hydrogenation further enhances the maintenance of high selectivity to benzyl alcohol at high conversions. A simple Langmuir-Hinshelwood model invoking the addition of the second H atom to benzaldehyde as the rate-determining step fit the data well. (C) 1997 Academic Press. [References: 39]
机译:与低温还原(LTR)步骤之后的Pt / TiO2(Pt /)相比,高温还原(HTR)步骤之后在Pt / TiO2上苯甲醛加氢的速率(每克催化剂)和周转频率均得到显着提高。 SiO2或Pt / Al2O3。所有这些催化剂均由分散的1 nm Pt微晶组成,并且所有催化剂均具有相似的8 +/- 2 kcal / mole活化能。更重要的是,Pt / TiO2(HTR)保留了100%的苯甲醇选择性,最高转化率达到80%,而在包括Pt粉末在内的其他Pt催化剂中,转化率超过20%时开始形成大量的甲苯和苯。 。纯苯甲醇加氢的比活与纯苯甲醛在PtAl2O3和Pt / TiO2(LTR)上的比活相似,但在Pt / TiO2(HTR)上却被大大抑制。因此,与苯甲醛相比,除了较高的苄醇形成速率和较低的苄醇吸附竞争性之外,较低的苄醇氢化固有速率常数进一步提高了在高转化率下对苄醇的高选择性。一个简单的Langmuir-Hinshelwood模型可以通过将第二个H原子添加到苯甲醛中作为速率确定步骤,从而很好地拟合了数据。 (C)1997学术出版社。 [参考:39]

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