首页> 外文期刊>Journal of Catalysis >LI+ PROMOTION OF PD/SIO2 - THE EFFECT ON HYDROGENATION, HYDROGENOLYSIS, AND METHANOL SYNTHESIS
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LI+ PROMOTION OF PD/SIO2 - THE EFFECT ON HYDROGENATION, HYDROGENOLYSIS, AND METHANOL SYNTHESIS

机译:Li + PD / SiO2的促进 - 对氢化,氢解和甲醇合成的影响

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A novel but fairly simple approach has been used to elucidate the effect of Li+ promotion of 5 wt% Pd/SiO2 [(Li/Pd)(atomic) = 0, 1, 2, 4] by using a set of three distinct reactions (CO hydrogenation, isobutylene hydrogenation, and ethane hydrogenolysis) in addition to H-2 TPD, CO chemisorption, XRD, and TEM. The results were used to indicate the degree of metal surface blockage by the promoter and to better understand how Li+ goes about affecting Pd catalysis, especially CO hydrogenation which is known to be greatly modified. Li+ promotion decreased the strength of H-2 adsorption and enhanced CO adsorption on Pd/SiO2. Additionally, it significantly decreased the hydrogenation (in the presence of CO) and ethane hydrogenolysis activities of Pd/SiO2 relative to those of the unpromoted catalyst, with the activities decreasing monotonically with increasing Li+ loading. Isobutylene hydrogenation results suggest Li+ blockage of some of the active Pd sites. Steady-state isotopic transient kinetic analysis (SSITKA) of isobutylene hydrogenation in the presence of CO indicates that surface coverage by CO was significantly enhanced by Li+ promotion. The simultaneous enhancement and suppression of CO and H-2 adsorption, respectively, coupled with active site blockage by Li+ resulted in olefin hydrogenation appearing to behave like a structure sensitive reaction. Ethane hydrogenolysis results indicate a nonuniform distribution of the promoter on Pd as well as its probable dispersion on the surface of the support as well. Despite the fact that site blockage resulted in a decrease in the hydrogenation and ethane hydrogenolysis activities of Li-Pd/SiO2 (Li/Pd = 1), an increase in the rate of methanol formation was observed. This increase in the methanol formation rate with low levels of Li+ promotion can be attributed to an increase in the number of active sites or in the coverage of the active sites by the surface intermediates since TEM indicated no change in Pd particle size distribution. Higher loadings of Li+ (Li/Pd greater than or equal to 2) resulted in a decrease in methanol formation. (C) 1995 Academic Press, Inc. [References: 34]
机译:一种新颖但相当简单的方法已被使用使用一组三种不同的反应来阐明5wt%pd / siO 2 [(li / pd)(原子)= 0,1,2,4]的促进促进的升+促进的影响(除了H-2 TPD,CO Chemisoralital,XRD和TEM之外,CO氢化,异丁烯氢化和乙烷氢解)。结果用于指示启动子的金属表面堵塞程度,并更好地理解Li +如何影响影响PD催化,特别是已知的氢化是大大修饰的。 Li +促进降低了H-2吸附和增强CO吸附对Pd / SiO2的强度。另外,它显着降低了Pd / SiO 2的乙烷氢解活性的氢化(在CO)和乙烷氢解活动中,相对于未磨合的催化剂的那些,随着Li +载荷的增加而单调地减小活性。异丁烯氢化结果表明Li +堵塞了一些活性Pd位点。 CO存在下异丁烯氢化的稳态同位素瞬态动力学分析(SSITKA)表明LI +促进的CO的表面覆盖率显着增强。同时增强和抑制CO和H-2吸附,与Li +的活性位点堵塞偶联,导致烯烃氢化出现,表现得如结构敏感反应。乙烷氢解效果表明Pd上的启动子的不均匀分布以及其在载体表面上的可能分散。尽管部位堵塞导致Li-Pd / SiO 2的氢化和乙烷氢解活性降低(Li / Pd = 1),但观察到甲醇形成的增加。随着Li +促进的低水平Li +促进的这种增加可以归因于活性位点的数量或通过表面中间体的活性位点的覆盖率增加,因为由于TEM表示没有改变PD粒度分布。 Li +(大于或等于2的Li / Pd的更高负载导致甲醇形成的降低。 (c)1995年学术出版社,Inc。[参考文献:34]

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