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首页> 外文期刊>Catalysts >Synthesis of Three-Dimensionally Ordered Macroporous NiCe Catalysts for Oxidative Dehydrogenation of Propane to Propene
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Synthesis of Three-Dimensionally Ordered Macroporous NiCe Catalysts for Oxidative Dehydrogenation of Propane to Propene

机译:三维有序大孔NiCe催化剂的丙烷氧化脱氢制丙烯

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Three-dimensionally ordered macroporous (3DOM) NiCe catalysts with different Ni/Ce molar ratio were fabricated using the colloidal crystal templating method. The physic-chemical properties of the samples were characterized by various techniques, including N 2 adsorption–desorption, X-ray diffraction (XRD), transmission electron microscopy (TEM), Raman, and H 2 -temperature-programmed reduction (TPR) characterizations. The results revealed that the 3DOM NiCe samples preserved the three-dimensionally ordered macroporous channels with interlinked micro- or mesoporous structure and highly dispersed nickel oxide species in the framework upon different amount of nickel incorporation. In the evaluation of the oxidative dehydrogenation (ODH) of propane, the 3DOM NiCe catalysts exhibited higher selectivity and yield to propene than the amorphous NiCe catalyst. An optimum yield of propene of 11.9% with the 30.3% propane conversion at 375 °C was obtained over the 3DOM 2NiCe catalyst. Combining XRD, TPR, and Raman analysis, it could be found that the nickel incorporation in CeO 2 lattice produced a high concentration of oxygen vacancies that were the active sites for the oxidative dehydrogenation of propane. Besides this, the 3DOM structure promoted the rapid diffusion of the reactants and products—favorable for the generation of propene in the ODH of propane.
机译:利用胶体晶体模板法制备了具有不同Ni / Ce摩尔比的三维有序大孔(3DOM)NiCe催化剂。样品的理化性质通过多种技术进行表征,包括N 2吸附-解吸,X射线衍射(XRD),透射电子显微镜(TEM),拉曼和H 2-程序升温还原(TPR)表征。结果表明,3DOM NiCe样品保留了三维顺序的大孔通道,这些通道具有相互连接的微孔或中孔结构,并且在不同的镍掺入量下在框架中高度分散的氧化镍种类。在丙烷的氧化脱氢(ODH)评估中,3DOM NiCe催化剂比无定形NiCe催化剂具有更高的选择性和丙烯收率。在3DOM 2NiCe催化剂上,在375°C下丙烷转化率为30.3%时,丙烯的最佳收率为11.9%。结合XRD,TPR和拉曼分析,可以发现在CeO 2晶格中掺入镍会产生高浓度的氧空位,这些空位是丙烷氧化脱氢的活性位点。除此之外,3DOM结构还促进了反应物和产物的快速扩散,这有利于丙烷在ODH中生成丙烯。

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