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首页> 外文期刊>Catalysis Today >Formation and depression of N2O in selective reduction of NO by NH3 over Fe2O3-promoted V2O5-WO3/TiO2 catalysts: Roles of each constituent and strongly-adsorbed NH3 species
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Formation and depression of N2O in selective reduction of NO by NH3 over Fe2O3-promoted V2O5-WO3/TiO2 catalysts: Roles of each constituent and strongly-adsorbed NH3 species

机译:N 2 O的形成和抑制在Fe2O3促进的V2O5-WO3 / TiO2催化剂中的选择性降低NO NO NO NO NO NO NO-WO3 / TiO2催化剂:每个组分和强烈吸附的NH 3种的作用

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摘要

Roles of each composition and strongly-adsorbed NH3 in the formation and depression of N2O in selective catalytic reduction of NO by NH3 (NH3-SCR) with unpromoted and Fe2O3-promoted V2O5/TiO2-based catalysts were intensively studied. V2O5 was found to be active in N2O production at high temperatures while Fe2O3 exhibited a depressive effect. N2O reduction with NH3 and in situ N2O TPSR (temperature programmed surface reaction) measurements indicate that the Fe2O3-promoted catalysts could allow a successful reduction of N2O by strongly-adsorbed surface NH3 species. In situ diffuse reflectance infrared Fourier-transformation spectroscopy (DRIFTS) measurements disclose the presence of strongly-adsorbed NH3 species which were not desorbed even at 500 degrees C and these species could readily react with gaseous N2O at temperatures > 300 degrees C. X-ray photoelectron spectroscopy (XPS) results suggest a charge transfer from V to Fe, which may play a role in decreasing N2O formation at high temperatures. Based on these results, a reaction between N2O and strongly-adsorbed NH3 on Fe2O3 and/or Fe2O3-adjacent VOx species is proposed to be a main pathway for the depression of N2O formation in NH3-SCR reaction with the promoted catalysts.
机译:深入研究了每种成分和强吸附NH3在使用未经修饰和Fe2O3促进的V2O5/TiO2基催化剂通过NH3(NH3-SCR)选择性催化还原NO过程中形成和抑制N2O中的作用。在高温下,V2O5对N2O的生成具有活性,而Fe2O3则表现出抑制作用。NH3还原N2O和原位N2O TPSR(程序升温表面反应)测量表明,Fe2O3促进的催化剂可以通过强吸附的表面NH3物种成功还原N2O。原位漫反射红外傅里叶变换光谱(DRIFTS)测量揭示了强吸附NH3物种的存在,这些物种即使在500℃下也不会解吸,并且这些物种在>300℃的温度下很容易与气态N2O反应。X射线光电子能谱(XPS)结果表明,从V到Fe的电荷转移,这可能会在高温下减少N2O的生成。基于这些结果,N2O与Fe2O3和/或Fe2O3相邻VOx物种上强吸附NH3之间的反应被认为是抑制NH3-SCR反应中N2O生成的主要途径。

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