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Chemical and texture promoters in Cu-Fe-Al oxide nanocomposite catalysts for combustion of solid fuel gasification products

机译:Cu-Fe-Al氧化物纳米复合催化剂中的化学和纹理启动子,用于燃烧固体燃料气化产物

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摘要

The Fe-Al and Cu-Fe-Al oxide nanocomposites active in the oxidation of CO were studied by XRD, TEM, EDX, Raman spectroscopy, TPR-H-2 and differential dissolution techniques. The nanocomposites were prepared by fusion of aluminum, iron, and copper salts that leads to their inhomogeneity. The Al3+ cations partially dissolve in the Fe2O3 lattice, which leads to a significant decrease in size of iron oxide. Copper locates in the Al-rich agglomerates to form CuO nanoparticles and partially dissolves in alumina The dissolution of copper in iron oxide and formation of a (Cu,Al,Fe)(3)O-4 spinel was observed only at a high Cu loading. Hence, aluminum plays the role of a textural promoter, preventing sintering and stabilization of the high specific surface area of oxide. Copper does not act as a textural promoter, as it does not affect the crystal size of iron oxide. The addition of Cu increases the catalytic activity of iron oxide-based catalysts.
机译:通过XRD,TEM,EDX,拉曼光谱,TPR-H-2和差分溶出技术研究活性在CO氧化中的Fe-Al和Cu-Fe-Al氧化物纳米复合材料。 通过铝,铁和铜盐融合来制备纳米复合材料,导致它们的不均匀性。 Al3 +阳离子部分溶解在Fe 2 O 3晶格中,这导致氧化铁尺寸的显着降低。 铜位于富含铝的附聚物中以形成CuO纳米颗粒,并且在氧化铝中部分溶解在氧化铁中铜的溶解,并且仅在高Cu负载下观察到(Cu,Al,Fe)(3)O-4尖晶石的形成 。 因此,铝起到纹理启动子的作用,防止了氧化物高比表面积的烧结和稳定。 铜不作为纹理启动子,因为它不会影响氧化铁的晶体尺寸。 添加Cu增加了氧化铁基催化剂的催化活性。

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