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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Study by EXAFS, Raman, and NMR Spectroscopies of the Genesis of Oxidic Precursors of Zeolite-Supported HDS Catalysts
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Study by EXAFS, Raman, and NMR Spectroscopies of the Genesis of Oxidic Precursors of Zeolite-Supported HDS Catalysts

机译:通过EXAFS,拉曼光谱和NMR光谱研究沸石负载的HDS催化剂的氧化前体的成因

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摘要

A 3 wt % Mo zeolite-supported oxidic precursor prepared from ammonium heptamolybdate by incipient wetness impregnation was studied using Raman and ~(27)Al NMR spectroscopies, at the various steps of its preparation. The formation of an Anderson type aluminomolybdate anion, which was preserved during drying, was observed. This species led to the formation of aluminum molybdate Al_2(MoO_4)_3 upon calcination and was partially reformed upon rehydration of the sample. XANES and EXAFS experiments at the Mo K-edge confirmed these results and showed the Anderson entity to be the majority species. The use of different loadings and supports showed that the Anderson entity is formed through extraction from the zeolite of nonframework aluminum atoms and that ammonium heptamolybdate precipitates when the Mo loading is too high. EXAFS and XRD experiments applied to another sample prepared by MoO_3 vapocondensation showed that the observed Anderson entity cannot be situated in the supercages of the zeolite.
机译:在拉曼和〜(27)Al NMR光谱学中,在制备的各个步骤中研究了通过初湿浸渍由七钼酸铵制备的3 wt%Mo沸石负载的氧化前体。观察到在干燥过程中保留的安德森型铝钼酸根阴离子的形成。该物种导致煅烧时形成钼酸铝Al_2(MoO_4)_3,并在样品水合后部分重整。 Mo K边缘的XANES和EXAFS实验证实了这些结果,并表明安德森实体是多数种。使用不同的载荷和载体表明,安德森实体是通过从非骨架铝原子的沸石中萃取而形成的,而当钼的载荷过高时,七钼酸铵会沉淀出来。对通过MoO_3气相凝结制备的另一个样品进行的EXAFS和XRD实验表明,观察到的Anderson实体不能位于沸石的超笼中。

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