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Influence of calcination temperature on iron titanate catalyst for the selective catalytic reduction of NOx with NH3

机译:焙烧温度对钛铁催化剂对NH3选择性催化还原NOx的影响

摘要

The influence of calcination temperature on the microstructure, redox behavior, reactant adsorption capability and catalytic activity of iron titanate catalyst (FeTiOx) for the selective catalytic reduction (SCR) of NOx with NH3 was investigated in detail using various characterization methods. After high temperature calcination (above 600 degrees C), the apparent SCR activity of FeTiOx catalyst obviously decreased, which was mainly due to decrease of surface area, pore volume, mobility of lattice oxygen and reactant adsorption capability. However, well crystallized pseudobrookite Fe2TiO5 showed much higher intrinsic SCR activity after normalization by surface area. This is mainly owing to the formation of larger proportion of monodentate nitrate, which is the real reactive nitrate species in the NOx reduction process, among total nitrate species on the surface of FeTiOx catalysts with higher crystallization degree. This implies a possibility that the FeTiOx catalyst after high temperature calcination (600 or 700 degrees C) with higher thermal stability could be loaded onto porous support with large surface area to further improve its dispersion and thus the apparent SCR activity for practical use, such as the DeNO(x) process for diesel engines. (C) 2010 Elsevier B. V. All rights reserved.
机译:利用各种表征方法,详细研究了煅烧温度对钛铁催化剂(FeTiOx)对NH3选择性催化还原NOx的组织,氧化还原行为,反应物吸附能力和催化活性的影响。高温煅烧(600℃以上)后,FeTiOx催化剂的表观SCR活性明显降低,这主要是由于表面积,孔体积,晶格氧迁移率和反应物吸附能力的降低。但是,结晶良好的假板钛矿Fe2TiO5在按表面积归一化后显示出更高的固有SCR活性。这主要是由于在具有较高结晶度的FeTiOx催化剂表面的总硝酸盐物种中,形成了更大比例的单齿硝酸盐,这是NOx还原过程中真正的反应性硝酸盐物种。这意味着具有较高热稳定性的高温煅烧(600或700摄氏度)后的FeTiOx催化剂可能会被加载到具有大表面积的多孔载体上,以进一步改善其分散性,从而提高实际应用中的表观SCR活性,例如柴油机的DeNO(x)工艺。 (C)2010 Elsevier B. V.保留所有权利。

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