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首页> 外文期刊>Journal of Catalysis >Atmospheric pressure studies of selective 1,3-butadiene hydrogenation on well-defined Pd/Al2O3/NiAl(110) model catalysts: Effect of Pd particle size
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Atmospheric pressure studies of selective 1,3-butadiene hydrogenation on well-defined Pd/Al2O3/NiAl(110) model catalysts: Effect of Pd particle size

机译:在明确定义的Pd / Al2O3 / NiAl(110)模型催化剂上进行1,3-丁二烯选择性加氢的大气压研究:Pd粒径的影响

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The selective hydrogenation of 1,3-butadiene was studied on a series of Pd/Al2O3/NiAl(110) model catalysts with mean Pd particle sizes of 2-8 nm. While Pd nanoparticles >= 4 nm exhibit a near zero-order reaction kinetics with respect to butadjene, the rate behavior on smaller Pd particles is more complex, and the rate increases with decreasing butadiene pressure. This indicates a change in the rate-limiting step from a regime governed by adsorption to a regime governed by the surface reactions. When the total number of Pd surface atoms is used for rate normalization, the turnover frequency (TOF) of 1,3-butadiene hydrogenation increases linearly with increasing particle size. But this is only an apparent particle size dependence. Considering a realistic structural model of the Pd nanoparticles [i.e., with incomplete (111) terraces] for rate normalization, 1,3-butadiene hydrogenation becomes particle size independent, even though the reaction is structure sensitive, as corroborated by reactivity studies on Pd(111) and Pd(110) single crystals. For 1,3-butadiene hydrogenation, well-faceted Pd nanoparticles >= 4 nm behave like Pd(111). (c) 2006 Elsevier Inc. All rights reserved.
机译:在一系列Pd / Al2O3 / NiAl(110)模型催化剂上研究了1,3-丁二烯的选择性加氢,其平均Pd粒径为2-8 nm。虽然> = 4 nm的Pd纳米颗粒相对于丁烯表现出接近零级的反应动力学,但在较小的Pd颗粒上的速率行为更为复杂,并且速率随着丁二烯压力的降低而增加。这表明限速步骤从由吸附控制的方案到由表面反应控制的方案的变化。当将Pd表面原子总数用于速率归一化时,1,3-丁二烯氢化的周转频率(TOF)随着粒径的增加而线性增加。但这仅是明显的粒度依赖性。考虑到用于速率归一化的Pd纳米颗粒的现实结构模型(即具有不完整的(111)台阶),即使反应是结构敏感的,1,3-丁二烯氢化也变得独立于粒径,这是通过对Pd的反应性研究证实的( 111)和Pd(110)单晶。对于1,3-丁二烯加氢,切面良好的Pd纳米颗粒> = 4 nm的行为类似于Pd(111)。 (c)2006 Elsevier Inc.保留所有权利。

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