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Carbon nanotubes supported Pt-Ni catalysts and their properties for the liquid phase hydrogenation of cinnamaldehyde to hydrocinnamaldehyde

机译:碳纳米管负载的Pt-Ni催化剂及其在肉桂醛液相加氢制氢肉桂​​醛中的性能

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The Pt-Ni catalysts supported on CNTs have been prepared by wet impregnation and the selective hydrogenation of cinnamaldehyde (CMA) to the corresponding hydrocinnamaldehyde (HCMA) over the catalysts has been studied in ethanol at different reaction conditions. The results show that Pt-0.34 wt% Ni/CNTs catalyst exhibits the highest activity and selectivity at a reaction temperature of 70 ℃ under a pressure of around 2.0 MPa, and 98.6% for the conversion of CMA and 88.2% for the selectivity of CMA to HCMA, respectively. The selective hydrogenation for the C=C bond in CMA would be improved as increasing the reaction temperature, and the hydrogenation for the C=O bond in CMA is enhanced as increasing the H_2 pressure. In addition, these catalysts have also been characterized using TEM-EDS, XPS, H_2-TPR and H_2-TPD techniques. The results show that Pt particles are dispersed more homogeneously on the outer surface of the nanotubes, while the strong interaction between Pt and Ni would improve the increasing of activated hydrogen number because of the hydrogen spillover from reduced Pt~0 onto CNTs and increase the catalytic activity and selectivity of CMA to HCMA.
机译:通过湿法浸渍法制备了负载在CNT上的Pt-Ni催化剂,并研究了在不同反应条件下在乙醇中将肉桂醛(CMA)选择性氢化为相应的氢化肉桂醛(HCMA)的方法。结果表明,Pt-0.34 wt%Ni / CNTs催化剂在70℃,2.0 MPa左右的压力下具有最高的活性和选择性,CMA的转化率为98.6%,CMA的选择性为88.2%。分别交给HCMA。随着反应温度的升高,CMA中C = C键的选择性氢化将得到改善;随着H_2压力的升高,CMA中C = O键的氢化将得到增强。另外,这些催化剂也已经使用TEM-EDS,XPS,H_2-TPR和H_2-TPD技术进行了表征。结果表明,Pt颗粒更均匀地分散在纳米管的外表面上,而Pt和Ni之间的强相互作用将改善活性氢数的增加,这是由于氢从还原的Pt〜0溢出到CNT上,并增加了催化作用。 CMA对HCMA的活性和选择性。

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