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Promotion by sodium in emission control catalysis: A kinetic and spectroscopic study of the Pd-catalyzed reduction of NO by propene

机译:钠在排放控制催化中的促进:钯催化钯还原NO的动力学和光谱学研究

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摘要

Sodium strongly promotes the reduction of NO by propene over Pd catalysts supported on 8 mol% yttria stabilised zirconia (YSZ) in the temperature range 520-720 K. Rate increases by an order of magnitude are achievable, while the selectivity towards to N-2 is improved from similar to 75% over the unpromoted Pd catalyst to >95% over the optimally Na-promoted catalyst. The results indicate that promotion is due to sodium-induced increases in the strength of NO chemisorption relative to propene. This is accompanied by weakening of the N-O bond, thus facilitating NO dissociation, which process is proposed as the critical reaction initiating step. The XPS and Auger data are consistent with this view. These findings are in excellent accord with a recent study of the same reaction under conditions of electrochemical promotion (EP) (I. V. Yentekakis et al., J. PhJ s. Chem. B 101, 3759 (1997)). (C) 1998 Academic Press. [References: 30]
机译:在温度范围为520-720 K的条件下,与8 mol%氧化钇稳定的氧化锆(YSZ)上负载的Pd催化剂相比,钠可大大促进丙烯对NO的还原。速率可提高一个数量级,同时对N-2的选择性相对于未促进的Pd催化剂,其含量从相似的75%提高到了最佳的Na促进的催化剂> 95%。结果表明促进作用是由于钠引起的相对于丙烯的NO化学吸附强度的增加。这伴随着N-O键的弱化,从而促进了NO的离解,该过程被提议为关键的反应引发步骤。 XPS和Auger数据与此视图一致。这些发现与最近在电化学促进(EP)条件下相同反应的研究非常一致(I.V.Yentekakis等,J.PhJ s.Chem.B 101,3759(1997))。 (C)1998年学术出版社。 [参考:30]

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