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Selective catalytic reduction of NO by ammonia using mesoporous Fe-containing HZSM-5 and HZSM-12 zeolite catalysts: An option for automotive applications

机译:使用介孔含Fe HZsm-5和HZsm-12分子筛催化剂选择性催化还原NO的方法:汽车应用的一种选择

摘要

Mesoporous and conventional Fe-containing ZSM-5 and ZSM-12 catalysts (0.5–8 wt% Fe) were prepared using a simple impregnation method and tested in the selective catalytic reduction (SCR) of NO with NH. It was found that for both Fe/HZSM-5 and Fe/HZSM-12 catalysts with similar Fe contents, the activity of the mesoporous samples in NO SCR with NH is significantly higher than for conventional samples. Such a difference in the activity is probably related with the better diffusion of reactants and products in the mesopores and better dispersion of the iron particles in the mesoporous zeolite as was confirmed by SEM analysis. Moreover, the maximum activity for the mesoporous zeolites is found at higher Fe concentrations than for the conventional zeolites. This also illustrates that the mesoporous zeolites allow a better dispersion of the metal component than the conventional zeolites. Finally, the influence of different pretreatment conditions on the catalytic activity was studied and interestingly, it was found that it is possible to increase the SCR performance significantly by preactivation of the catalysts in a 1% NH/N mixture at 500 °C for 5 h. After preactivation, the activity of mesoporous 6 wt% Fe/HZSM-5 and 6 wt% Fe/HZSM-12 catalyst is comparable with that of traditional 3 wt% VO/TiO catalyst used as a reference at temperatures below 400 °C and even more active at higher temperatures.
机译:使用简单的浸渍方法制备了介孔和常规的含铁的ZSM-5和ZSM-12催化剂(0.5-8 wt%的Fe),并测试了用NH对NO的选择性催化还原(SCR)。发现对于具有相似的Fe含量的Fe / HZSM-5和Fe / HZSM-12催化剂,中孔样品在具有NH的NO SCR中的活性显着高于常规样品。活性上的这种差异可能与反应物和产物在中孔中的更好扩散以及铁颗粒在中孔沸石中的更好分散有关。而且,发现中孔沸石的最大活性是在铁浓度高于常规沸石的情况下得出的。这也说明中孔沸石比常规沸石具有更好的金属组分分散性。最后,研究了不同预处理条件对催化活性的影响,有趣的是,发现可以通过将催化剂在1%NH / N混合物中于500°C预活化5 h来显着提高SCR性能。 。预活化后,在400°C甚至更低的温度下,介孔的6 wt%Fe / HZSM-5和6 wt%Fe / HZSM-12催化剂的活性与用作参考的传统3 wt%VO / TiO催化剂的活性相当。在较高温度下更活跃。

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