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Selective catalytic reduction of nitric oxide by n-decane on Cu/sulfated-zirconia catalysts in oxygen rich atmosphere

机译:富氧气氛下正癸烷在铜/硫酸盐氧化锆催化剂上选择性催化还原一氧化氮

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摘要

The effect of sulfur and copper contents on the activity of Cu/sulfated-zirconia (SZ) catalysts, in the selective reduction of NO by n-decane, were investigated in the 298-723 K temperature range. ZrO2 and SZ solids exhibited no activity below 773 K, Cu/ZrO2 is active and selective at low temperature (<600 K) but oxidises selectively NO to NO2 at higher temperatures. By contrast, whatever the temperature, a 100% selectivity to N-2 is obtained with Cu/SZ catalysts. The highest activity is reached with the catalyst containing the highest number of acid sites which corresponds to a sulfur content close to the amount required to form a sulfate monolayer. Acidity plays a significant role only at temperatures above 600 K, where it is concluded that a bifunctional mechanism governs the reduction of NO to N-2. (C) 1998 academic Press. [References: 48]
机译:在298-723 K的温度范围内,研究了在正癸烷选择性还原NO时,硫和铜含量对Cu /硫酸化氧化锆(SZ)催化剂活性的影响。 ZrO2和SZ固体在773 K以下没有活性,Cu / ZrO2在低温(<600 K)下具有活性和选择性,但在较高温度下会选择性地将NO氧化为NO2。相比之下,无论温度如何,使用Cu / SZ催化剂均可获得对N-2的100%选择性。含有最高数目的酸位点的催化剂达到最高活性,这对应于硫含量接近形成硫酸盐单层所需的硫含量。酸性仅在高于600 K的温度下才起重要作用,可以得出结论,双功能机制决定了NO还原为N-2。 (C)1998年学术出版社。 [参考:48]

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