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MORE ACTIVE AND SULFUR RESISTANT BIMETALLIC Pd-Ni CATALYSTS

机译:更具活性和耐硫性的Pd-Ni催化剂

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The influence of the kind of metal precursor and the sequence of impregnation on the properties of Pd-Ni catalysts was evaluated during the test reaction of selective hydrogenation of styrene to ethylbenzene by means of physicochemical characterization. The focus was put on the final hydrogenating activity and the resistance to deactivation by sulfided compounds (thiophene). The used techniques of characterization were ICP, XPS, XDR, TPR, CO chemisorption and TEM. XPS results indicated the presence of different Pd species: Pdδ-, Pd?o and Pdδ+. In the case of the Ni containing catalysts, Ni?o and NiO species were also detected. These palladium and nickel species would be responsables of the variation of activity and sulfurresistance of the catalysts. NiClPd catalysts had a higher resistance to deactivation by sulfur poisoning. This was associated to a higher concentration of Pdη+ClxOy species that would prevent the adsorption of thiophene by both steric and electronic effects. It could also be due to the lower concentration of Pd?o and Ni?o on these catalysts, as compared to those shown by the PdNiCl catalysts. Both the Pd?o and Ni?o species are more prone to poisoning because of their higher electronic availability.
机译:在通过物理化学表征将苯乙烯选择性氢化为乙苯的测试反应过程中,评估了金属前体的种类和浸渍顺序对Pd-Ni催化剂性能的影响。重点放在最终的氢化活性和对硫化化合物(噻吩)失活的抗性上。使用的表征技术为ICP,XPS,XDR,TPR,CO化学吸附和TEM。 XPS结果表明存在不同的Pd物质:Pdδ-,Pdδo和Pdδ+。在含镍催化剂的情况下,还检测到Ni 2 O和NiO物质。这些钯和镍物质将是催化剂活性和耐硫性变化的原因。 NiClPd催化剂具有较高的抗硫中毒失活的能力。这与较高浓度的Pdη+ ClxOy物质有关,这将通过空间效应和电子效应阻止噻吩的吸附。与PdNiCl催化剂所显示的相比,这也可能是由于这些催化剂上的Pd2o和Ni2o浓度较低。 Pd?o和Ni?o物种都更容易中毒,因为它们具有更高的电子利用率。

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