首页> 外文期刊>Journal of Catalysis >PROPERTIES OF SUPPORTED PD-NI CATALYSTS PREPARED BY COEXCHANGE AND ORGANOMETALLIC CHEMISTRY .2. CORRELATION BETWEEN THE REACTIVITY FOR BUTADIENE HYDROGENATION AND THE SURFACE PROPERTIES STUDIED BY XPS AND LEIS
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PROPERTIES OF SUPPORTED PD-NI CATALYSTS PREPARED BY COEXCHANGE AND ORGANOMETALLIC CHEMISTRY .2. CORRELATION BETWEEN THE REACTIVITY FOR BUTADIENE HYDROGENATION AND THE SURFACE PROPERTIES STUDIED BY XPS AND LEIS

机译:共交换和有机化学制备的PD-NI催化剂的性能研究; 2。丁二烯加氢反应性与XPS和LEIS研究的表面性质之间的相关性

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The preparation and bulk characterization of a series of silica-supported Pd-Ni catalysts obtained either by coexchange or by organometallic chemistry have been described in Part I (J. F. Faudon, F. Senocq, G. Bergeret, B. Moraweck, G. Clugnet, C. Nicot, and A. Renouprez, J. Catal. 144, 460 (1993)). The present work describes their catalytic activity in the hydrogenation of 1,3-butadiene, in which palladium is one order of magnitude more active than nickel, in relation with their surface composition measured by LEIS, a powerful physical method, still seldom applied to study the surface of real catalysts. Both types of Pd-Ni catalysts exhibit an activity increasing monotonically with the palladium concentration, without any synergy effect, A more rapid increase of initial activity with the concentration is, however, observed for the catalysts with organometallic precursors than for those prepared by exchange. This difference is explained by the migration of palladium from the bulk to the surface of the particles, shown by XPS and LEIS measurements, which is more pronounced on the large particles of the catalysts prepared by organometallic chemistry. Indeed, the theoretical predictions for bulk alloys, based on thermodynamic calculations but corrected for the effect of particle size, are in agreement with the LEIS results and do conclude to more enrichment on large particles. Compared to nickel, the Pd-Ni alloys undergo less deactivation. A larger proportion of l-butene and trans-2-butene is formed on the alloys than on pure nickel. This variation of selectivity is explained by the presence on nickel of a strongly adsorbed di-sigma metallocyclobutene intermediate coexisting with the di-pi adsorbed form of the diene normally present on palladium. This strongly adsorbed species can also explain the low activity of nickel and its large deactivation. (C) 1997 Academic Press. [References: 19]
机译:第一部分(JF Faudon,F。Senocq,G。Bergeret,B。Moraweck,G。Clugnet, C.Nicot和A.Renouprez,J.Catal.144,460(1993))。目前的工作描述了它们在1,3-丁二烯氢化反应中的催化活性,其中钯的活性比镍高1个数量级,而其表面组成是通过强大的物理方法LEIS测量的,至今仍很少用于研究真正催化剂的表面。两种类型的Pd-Ni催化剂均显示出随钯浓度单调增加的活性,而没有任何协同作用。但是,对于有机金属前体的催化剂,其初始活性随浓度的升高比通过交换制备的催化剂更快。 XPS和LEIS测量表明,钯从颗粒的整体迁移到颗粒表面可以解释这种差异,这在通过有机金属化学制备的催化剂的大颗粒上更为明显。的确,基于热力学计算但对颗粒大小的影响进行了校正的块状合金的理论预测与LEIS结果一致,并且的确得出了对大颗粒的更多富集的结论。与镍相比,Pd-Ni合金的失活较少。与纯镍相比,在合金上形成更大比例的1-丁烯和反式-2-丁烯。选择性的这种变化可以通过在镍上存在强吸附的二西格玛金属环丁烯中间体与通常存在于钯上的二烯的二皮吸附形式共存来解释。这种强烈吸附的物质还可以解释镍的低活性及其大量失活。 (C)1997学术出版社。 [参考:19]

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