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Nature and catalytic role of active silver species in the lean NO_x reduction with C_3H_6 in the presence of water

机译:活性银在水存在下用C_3H_6还原NO_x的性质和催化作用

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A study of the lean NO_x reduction activity with propene in the presence of water over Ag/Al_2O_3 catalysts with different silver loadings (1.5-6 wt%) has been done using X-ray diffraction, ultraviolet-visible spectroscopy, transmission electron microscopy, and in situ diffuse reflectance infrared and X-ray absorption spectroscopies under reaction conditions. The catalysts were prepared by an impregnation method employing EDTA complexes that allow highly dispersed silver phases to be obtained, which are stabilized under reaction conditions by strong interactions with the support. It is shown that the active species corresponds to silver aluminate-like phases with tetrahedral local symmetry. The role of silver in the reaction mechanism is shown to be mainly in the activation of NO_x and propene species. In particular, the silver entities have been found to offer a new reaction path for propene activation which involves generation of acrylate species as a partially oxidized active intermediate. Differences between two active catalysts containing 1.5 and 4.5 wt% of Ag suggest that optimization of the SCR activity can be related t the oxygen lability of the tetrahedral silver aluminate-like phase present in the catalyst. As postulated previously, the high nonselective propene oxidation activity of the highest loaded sample (with 6 wt% Ag) appears to be related to formation of metallic silver surface states at low reaction temperatures which are active for NO dissociation.
机译:已经使用X射线衍射,紫外可见光谱,透射电子显微镜和水进行了研究,研究了丙烯在不同银含量(1.5-6 wt%)的Ag / Al_2O_3催化剂上在水存在下的丙烯贫NO_x还原活性。反应条件下的原位漫反射红外和X射线吸收光谱。通过使用EDTA络合物的浸渍方法制备催化剂,该络合物允许获得高度分散的银相,其在反应条件下通过与载体的强相互作用而稳定。结果表明,活性物质对应于具有四面体局部对称性的铝酸银样相。银在反应机理中的作用主要表现在NO_x和丙烯物种的活化中。特别地,已经发现银实体为丙烯活化提供了新的反应途径,其涉及丙烯酸酯物质的生成作为部分氧化的活性中间体。两种含1.5和4.5 wt%Ag的活性催化剂之间的差异表明,SCR活性的优化可能与催化剂中存在的四面体铝酸银状相的氧稳定性有关。如前所述,最高负载样品(具有6 wt%的Ag)的高非选择性丙烯氧化活性似乎与在低反应温度下形成金属银表面态有关,这对NO的分解具有活性。

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