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Synthesis and investigation of highly dispersed active phases of intermetallic and supported SHS-catalysts

机译:金属间化合物和支持SHS催化剂高度分散活性相的合成与研究

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In the present study, the active phases(AP)of an Fe-Ni-Co-Mn catalyst produced from SHS-intermetallics(a), a catalyst prepared via formation an intermetallic layer on a mesh surface of chromium-nickel stainless steel(b), and of a Co-Mn catalyst prepared via SHS on silica gel support(c), were isolated and characterized by SEM and XRD.The catalysts studied were highly active in the process of deep oxidation and catalysts(b)and(c)were highly active in the process of CO2 methanation as well.All AP had oxo-metallic composition and were formed from nanoscale components, but if the structure of these components for catalyst(a)was the same as on the surface of the catalyst, the structures of AP components for catalyst(b)significantly differed from the surface structures.In addition, AP sediment grain nanostructures of catalyst(c)differed from those of catalysts(a)and(b).
机译:在本研究中,由SHS-金属间质(A)产生的Fe-Ni-Co-Mn催化剂的活性相(AP),通过在铬 - 镍不锈钢的网状表面上形成金属间层制备的催化剂(B. )通过SEM和XRD分离和特征在于硅胶载体(C)的SHS上制备的CO-Mn催化剂。研究的催化剂在深氧化和催化剂(B)和(C)的过程中高度活性。在CO 2甲烷化的过程中非常活跃。所有AP具有氧代金属组合物,并且由纳米级组分形成,但是如果催化剂(a)的这些组分的结构与催化剂表面相同,则催化剂(B)的AP组分的结构与表面结构显着不同。另外,催化剂(C)的AP沉积物颗粒纳米结构与催化剂(A)和(B)的催化剂(A)不同。

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