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首页> 外文期刊>Catalysis Today >Shape-selective FeMnK/Al2O3@Silicalite-2 core-shell catalyst for Fischer-Tropsch synthesis to lower olefins
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Shape-selective FeMnK/Al2O3@Silicalite-2 core-shell catalyst for Fischer-Tropsch synthesis to lower olefins

机译:形状选择性Femnk / Al2O3 /硅灰硅-2核 - 壳催化剂,用于降低烯烃的费 - 托合成

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摘要

A catalyst with a core (FeMnK/Al2O3 powder)-shell (Silicalite-2) structure was successfully synthesized by combination of Strober method and hydrothermal crystallization method. TEM, XRD, and N-2 adsorption techniques demonstrated that the supported catalyst FeMnK/Al2O3 was encapsulated by Silicalite-2 zeolite with microporous structure. After eliminating diffusion limitation by removal of residual amorphous SiO2 with alkaline treatment, the micron-scale zeolite core-shell catalyst exhibited a much higher selectivity of lower olefins with a favorable CO conversion in Fischer-Tropsch synthesis, while the formation of C5+ was greatly restrained because of the confinement effect of S2. Finally, the encapsulated catalyst was found to be highly stable after a long-time running due to the inhibition of carbon deposit. In summary, this preparation method provides us a new clue for the design of highly selective catalyst for Fischer-Tropsch synthesis to lower olefins.
机译:通过串联方法和水热结晶法的组合成功地合成了具有芯(Femnk / Al2O3粉末) - 壳(硅沸石-2)结构的催化剂。 TEM,XRD和N-2吸附技术表明,由硅沸石-2沸石用微孔结构包封负载的催化剂Femnk / Al2O3。 在通过用碱性处理除去残留的无定形SiO 2来消除扩散限制后,微米级沸石核 - 壳催化剂在Fischer-Tropsch合成中具有良好的CO转化的低温选择性,而C5 +的形成大大抑制 由于S2的限制效果。 最后,由于抑制碳沉积物,在长期运行后发现包封催化剂非常稳定。 总之,该制备方法为我们提供了一种新的线索,用于设计高选择性催化剂,用于使Fischer-Tropsch合成至下烯烃。

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