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首页> 外文期刊>Applied Catalysis, A. General: An International Journal Devoted to Catalytic Science and Its Applications >Selective hydrogenation of cinnamaldehyde to cinnamyl alcohol over BN-supported Pt catalysts at room temperature
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Selective hydrogenation of cinnamaldehyde to cinnamyl alcohol over BN-supported Pt catalysts at room temperature

机译:在室温下通过BN负载的Pt催化剂选择性氢化肉桂醛至肉桂醇

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BN-supported Pt catalysts were prepared by an impregnation method using Pt(NH3)(4)(NO3)(2) as metal precursors and tested in the liquid-phase selective hydrogenation of cinnamaldehyde. It was found that the Pt/BN catalyst exhibited a high performance for the selective C=O hydrogenation at room temperature. A selectivity of over 85% towards cinnamyl alcohol at a cinnamaldehyde conversion of over 95% could be obtained. The effects of supports and Pt particle sizes were explored by N-2 physisorption, XRD, TEM, HRTEM, HAADF-STEM, TPD, H-2-TPR, XPS, CO-DRIFTS, etc. The influences of solvents and operation conditions were investigated, and a simplified kinetics test was also carried out. The comparison of different supports suggested that BN with an inert surface and few acid-base sites possibly favors a simple adsorption mode of cinnamaldehyde dependent only on the supported Pt particles, resulting in a high selectivity to cinnamyl alcohol. While the abundant acid-base surface sites on the Pt/Al2O3 or Pt/SiO2, possibly associated with the multiple adsorption modes of cinnamaldehyde, had an adverse effect on the selective C=O hydrogenation. The investigation of Pt size effect showed that large Pt particles with few low coordinated Pt sites displayed a higher selectivity to cinnamyl alcohol than small Pt particles with more low coordinated Pt sites on the Pt/BN catalysts. It was also revealed that water is a suitable solvent, and the presence of water in a mixture solvent is crucial for achieving a high activity of the Pt/BN in cinnamaldehyde hydrogenation.
机译:通过使用Pt(NH 3)(4)(4)(2)作为金属前体的浸渍方法制备Bn负载的Pt催化剂,并在肉桂醛的液相选择性氢化中测试。发现Pt / BN催化剂在室温下表现出选择性C = O氢化的高性能。可以获得在肉桂醛转化超过95%的肉桂醇上超过85%的选择性。通过N-2理由,XRD,TEM,HRTEM,HAADF-STEM,TPD,H-2-TPR,XPS,共漂移等探索了支持和PT粒径的影响。溶剂和操作条件的影响是研究,还进行了简化的动力学测试。不同载体的比较表明,具有惰性表面和少量酸碱位点的BN可能仅依赖于支撑的Pt颗粒的简单吸附模式,从而产生高选择性对褐土醇。虽然Pt / Al 2 O 3或Pt / SiO 2上的丰富的酸碱表面位点可能与肉桂醛的多种吸附模式相关联,但对选择性C = O氢化具有不利影响。 PT尺寸效应的研究表明,具有少量低配位PT位点的大型Pt颗粒对糖粉的比糖醇的选择性较高,比在Pt / Bn催化剂上具有更低的配位Pt位点。还揭示了水是合适的溶剂,并在混合物溶剂中存在水对于在肉桂醛氢化中实现Pt / Bn的高活性至关重要。

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