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Hydrodesulfurization and hydrogenation of model compounds on silica-alumina supported bimetallic systems

机译:二氧化硅-氧化铝负载的双金属体系上模型化合物的加氢脱硫和氢化

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Silica-alumina supported Pd catalysts with a second metal such as Cu, Ru or Pt have been prepared (nominal content: 1 wt%) and tested in the naphthalene hydrogenation (HYD) and dibenzothiophene hydrodesulfurization (HDS) model reactions. These catalysts were characterized by means of temperature-programmed reduction, NH_3 temperature-programmed desorption and photoelectron spectroscopy techniques. The combined use of all these techniques revealed that only in the case of PtPd system a rather uniform distribution of the metals across the pore network is achieved. Another important observation was that the PtPd system exhibited strong Broensted acid sites. The highest HYD and HDS activities of the PtPd bimetallic catalyst can be related not only to a high dispersion of the metals and their uniform distribution but also to its strong Broensted acidity. The PtPd system presented the highest DBT conversion (83.1%) and the highest C-S hydrogenolysis activity as illustrated by the lowest S-containing products (21.9 wt%) as compared with the much higher S-containing products (54.8 wt%) obtained with the monometallic Pd/ASA catalyst under the same experimental conditions.
机译:制备了带有第二金属(例如Cu,Ru或Pt)的二氧化硅-氧化铝负载的Pd催化剂(标称含量:1 wt%),并在萘加氢(HYD)和二苯并噻吩加氢脱硫(HDS)模型反应中进行了测试。这些催化剂的特征在于程序升温还原,NH_3程序升温脱附和光电子能谱技术。所有这些技术的综合使用表明,仅在PtPd系统的情况下,金属才能在整个孔网络中获得相当均匀的分布。另一个重要的观察结果是PtPd系统显示出很强的Broensted酸位。 PtPd双金属催化剂的最高HYD和HDS活性不仅与金属的高分散性及其均匀分布有关,还与其强的Broensted酸度有关。 PtPd系统显示出最高的DBT转化率(83.1%)和最高的CS氢解活性,最低的含S产物(21.9 wt%)则与之相比,PtPd系统获得的高含S产物(54.8 wt%)在相同的实验条件下使用单金属Pd / ASA催化剂。

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