首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Platinum catalyzed reduction of nitric oxide by n-butane in the presence of oxygen: role of the hydrocarbon
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Platinum catalyzed reduction of nitric oxide by n-butane in the presence of oxygen: role of the hydrocarbon

机译:在氧气存在下铂催化正丁烷还原一氧化氮:烃的作用

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摘要

The mechanism of the catalytic reduction of nitric oxide by n-butane in an oxidizing atmosphere has been investigated at temperatures from 373 to 723 K. The reaction was carried out with a TAP (temporal analysis of products) reactor on a platinum sponge catalyst. When admitting pulses of NO alone on a reduced surface until reaching a steady surface coverage, the processes of NO reduction into N2 and N2O occur on time scales noticeable under TAP conditions according to the well accepted decomposition mechanism. When admitting oxygen and n-butane, the nitric oxide reduction is promoted: the N2 yield reached 74% at 633 K compared to 6% only when admitting NO alone. The role of the hydrocarbon is not limited to the creation of free sites where NO can adsorb and dissociate. Carbon containing surface species formed during the hydrocarbon combustion increase the NO reduction by direct reaction between NO and these carbon containing species.
机译:已经研究了在373至723 K的温度下,在氧化气氛中通过正丁烷催化还原一氧化氮的机理。该反应是使用TAP(产物的时间分析)反应器在铂海绵催化剂上进行的。当仅在还原表面上允许NO脉冲进入直到达到稳定的表面覆盖率时,根据公认的分解机制,在TAP条件下,NO还原为N2和N2O的过程会在很明显的时间范围内发生。当允许氧气和正丁烷进入时,一氧化氮的还原作用得以促进:在633 K下,N2的收率达到74%,而仅允许NO的情况下仅为6%。碳氢化合物的作用不仅限于在其中NO可以吸附和解离的自由位点的产生。在烃燃烧期间形成的含碳表面物质通过NO与这些含碳物质之间的直接反应而增加了NO的还原。

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