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Effect of oxomolybdate species dispersion on direct methanol oxidation to dimethoxymethane over MoOx/TiO2 catalysts

机译:钼酸钼物种分散对MoOx / TiO2催化剂上甲醇直接氧化为二甲氧基甲烷的影响

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AbstractThe one-step selective oxidation of methanol to dimethoxymethane (DMM) was demonstrated over titania-supported molybdenum oxide catalysts, containing different amounts of molybdenum and prepared using two different impregnation techniques, namely wet impregnation and incipient wetness impregnation. The corresponding catalysts exhibited both acidic and redox properties, which are necessary for the oxidation of methanol to formaldehyde with subsequent condensation of the latter with excess methanol to finally yield DMM. The formation of well-dispersed polyoxomolybdate species on the catalyst surface was evidenced using IR-Raman, X-ray diffraction, and nitrogen physisorption. Varying the amount of these polyoxomolydate species was associated with a modulation of the acidic and redox properties, as shown by NH3-TPD and H2-TPR. With respect to the catalytic performances, the best balance between acid and redox properties was observed over the samples containing 8 wt.% Mo, which corresponds to a theoretical MoOx species coverage close to a monolayer.
机译:摘要在二氧化钛负载的氧化钼催化剂上证明了甲醇选择性氧化成二甲氧基甲烷(DMM)的步骤,该催化剂含有不同量的钼,并采用湿法浸渍和初湿法浸渍两种方法制备。相应的催化剂同时具有酸性和氧化还原特性,这对于将甲醇氧化成甲醛,随后将其与过量的甲醇缩合以最终生成DMM来说是必需的。使用IR-拉曼光谱,X射线衍射和氮物理吸附证明了催化剂表面上分散良好的聚氧钼酸酯物质的形成。如NH 3 -TPD和H 2 -TPR所示,这些多氧肟酸酯种类的变化与酸性和氧化还原特性的调节有关。关于催化性能,在含8wt。%Mo的样品上观察到酸和氧化还原性能之间的最佳平衡,这对应于理论上接近单层的MoO x 物种覆盖率。

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