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Isolation of active adsorbates for the NO-CO reaction on Pd/Al2O3 by selective enhancement and selective poisoning

机译:通过选择性增强和选择性中毒分离用于Pd / Al2O3上的NO-CO反应的活性吸附剂

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摘要

A novel experimental approach which couples in situ infrared (IR) with selective enhancement and poisoning has been developed to identify the active adsorbate for the NO-CO reaction on Pd/Al2O3. In situ IR studies of the steady-state NO-CO reaction show that NO adsorbs as Pd-N drop Odelta+, Pd-N=O, and Pd-N=(O delta-); CO adsorbs as Pd-C drop O and (Pd)(Pd)>C=O. Addition of H-2 to the NO-CO flow as a reaction enhancer which reacts with adsorbed nitrogen and oxygen results in depletion of Pd-N=O, while addition of O-2 to the NO-CO flow as a reaction poison leads to accumulation of Pd-N=O on the Pd surface. These observations suggest that Pd-N=O is the active adsorbate involved in NO dissociation. The observed variation in the concentrations of CO2 and Pd-C drop O suggests that Pd-C drop O is the active adsorbate leading to CO2. This study demonstrates that combined in situ IR with careful selection of enhancing and poisoning reagents allows unambiguous identification of active adsorbates under reaction conditions. (C) 1998 Academic Press. [References: 43]
机译:已经开发出一种新颖的实验方法,该方法将原位红外(IR)与选择性增强和中毒相结合,以鉴定Pd / Al2O3上NO-CO反应的活性吸附物。稳态NO-CO反应的原位IR研究表明,NO以Pd-N下降Odelta +,Pd-N = O和Pd-N =(O delta-)的形式吸附。 CO吸附为Pd-C液滴O,且(Pd)(Pd)> C = O。在NO-CO气流中添加H-2作为与吸附的氮和氧反应的反应促进剂会导致Pd-N = O耗尽,而在NO-CO气流中添加O-2作为反应毒物会导致Pd-N = O的消耗。 Pd-N = O在Pd表面的累积。这些观察结果表明,Pd-N = O是参与NO离解的活性吸附物。观察到的CO2和Pd-C液滴O浓度的变化表明,Pd-C液滴O是导致CO2的活性吸附物。这项研究表明,原位红外与精心选择的增强剂和中毒试剂相结合,可以在反应条件下明确鉴定活性吸附物。 (C)1998年学术出版社。 [参考:43]

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