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首页> 外文期刊>Catalysis science & technology >Inhibitory effect of NO2 on the selective catalytic reduction of NO_x with NH3 over one-pot-synthesized Cu-SSZ-13 catalyst
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Inhibitory effect of NO2 on the selective catalytic reduction of NO_x with NH3 over one-pot-synthesized Cu-SSZ-13 catalyst

机译:NO2对NO_X的选择性催化降低NO_X的抑制作用在一盘合成的Cu-SSZ-13催化剂上

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摘要

The selective catalytic reduction of NO_x with NH3 (NH3-SCR) on a Cu-SSZ-13 catalyst prepared by a one-pot-synthesis method was inhibited by NO2 in the low temperature range. NH4NO3 that accumulated on the catalyst surface was the reason for this phenomenon. The key step of the NH3-SCR reaction oyer the catalyst at low temperatures was the formation of nitrate on the Cu sites. However, NO2, with its larger kinetic diameter, could not form nitrate species on the Cu sites efficiently, and part of these molecules formed NH4NO3 in combination with NH4~+ on the Br0nsted acid sites. The consumption rate of NH4NO3 by NO was lower than its accumulation under "fast SCR" conditions at low temperatures, making the active sites become blocked by NH4NO3 and inactive. The results of kinetic studies indicate that N2 formation mainly results from the reaction between NO and NH3, even under "fast SCR" reaction conditions.
机译:NO2在低温范围内抑制了NO_X在通过单盘合成法制备的CU-SSZ-13催化剂上使用NH3(NH3-SCR)的选择性催化还原。 积聚在催化剂表面上的NH4NO3是这种现象的原因。 NH3-SCR反应的关键步骤oyer在低温下催化剂是在Cu位点形成硝酸盐。 然而,NO2具有较大的动力学直径,无法在CU位点形成硝酸盐物种,并且这些分子的一部分形成了NH4NO3与BR0NSTED酸位点结合使用NH4〜+。 在低温下,NH4NO3的消耗率低于其在“快速SCR”条件下的积累,这使活动位点被NH4NO3堵塞并且不活跃。 动力学研究的结果表明,即使在“快速SCR”反应条件下,N2的形成主要是由NO和NH3之间的反应引起的。

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