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Effect of surface structure of supported palladium catalysts on the activity for direct decomposition of nitrogen monoxide

机译:负载钯催化剂的表面结构对一氧化氮直接分解活性的影响

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The active sites for direct decomposition of NO on supported palladium catalysts were investigated by a comparative study with single-crystal palladium surfaces. In the study of powder catalysts, the activity of Pd/Al2O3 was found to be significantly affected by the type of palladium precursor. Pd/Al2O3 catalysts prepared from palladium nitrate showed the highest activity, expressed in terms of turnover frequency (TOF), for NO decomposition to N-2. In studies using single-crystal model catalysts reported previously [I. Nakamura, T. Fujitani, and H. Hamada, Surf. Sci. 514 (2002) 409], the adsorption, dissociation, and desorption behavior of NO was closely related to the surface structures, the stepped surface palladium being active for dissociation of NO. NO adsorption by FT-IR spectroscopy confirmed the presence of the stepped palladium sites on Pd/Al2O3 catalysts, and the specific activity (TOFstep) for NO decomposition to N-2, calculated on the basis of number of step sites estimated from the amount of chemisorbed NO, was not changed for all the Pd/Al2O3 catalysts. These results suggest that direct decomposition of NO mainly proceeds on the step sites of palladium. This is in agreement with the results obtained for single-crystal model catalysts. The present study shows that the activity of powder catalyst can be well interpreted by its surface structure, indicating the usefulness of surface science techniques. (C) 2003 Elsevier Inc. All rights reserved. [References: 29]
机译:通过对单晶钯表面的比较研究,研究了负载型钯催化剂上NO直接分解的活性位。在粉末催化剂的研究中,发现钯前驱体的类型对Pd / Al2O3的活性有显着影响。用硝酸钯制备的Pd / Al2O3催化剂,对于以NO分解为N-2的活性,以周转频率(TOF)表示。在以前使用单晶模型催化剂的研究中[I.中村(T. Fujitani)和滨田(H.Hamada),冲浪。科学[514](2002)409],NO的吸附,离解和解吸行为与表面结构密切相关,阶梯式表面钯对NO的离解具有活性。 FT-IR光谱对NO的吸附证实了在Pd / Al2O3催化剂上存在阶梯状钯位点,以及NO分解为N-2的比活度(TOFstep),该比活性是根据步骤位点数量估算得出的,对于所有的Pd / Al2O3催化剂,化学吸附的NO并没有改变。这些结果表明,NO的直接分解主要在钯的台阶部位进行。这与对于单晶模型催化剂获得的结果一致。本研究表明粉末催化剂的活性可以通过其表面结构很好地解释,表明表面科学技术的有用性。 (C)2003 Elsevier Inc.保留所有权利。 [参考:29]

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