首页> 外文期刊>Journal of nanomaterials >Synthesis of Hydrocarbons from H2-Deficient Syngas in Fischer-Tropsch Synthesis over Co-Based Catalyst Coupled with Fe-Based Catalyst as Water-Gas Shift Reaction
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Synthesis of Hydrocarbons from H2-Deficient Syngas in Fischer-Tropsch Synthesis over Co-Based Catalyst Coupled with Fe-Based Catalyst as Water-Gas Shift Reaction

机译:钴基催化剂与铁基催化剂偶合为水煤气变换反应的费托合成中H2不足的合成气合成烃

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The effects of metal species in an Fe-based catalyst on structural properties were investigated through the synthesis of Fe-based catalysts containing various metal species such, as Mn, Zr, and Ce. The addition of the metal species to the Fe-based catalyst resulted in high dispersions of the Fe species and high surface areas due to the formation of mesoporous voids about 2–4 nm surrounded by the catalyst particles. The metal-added Fe-based catalysts were employed together with Co-loaded beta zeolite for the synthesis of hydrocarbons from syngas with a lower H2/CO ratio of 1 than the stoichiometric H2/CO ratio of 2 for the Fischer-Tropsch synthesis (FTS). Among the catalysts, the Mn-added Fe-based catalyst exhibited a high activity for the water-gas shift (WGS) reaction with a comparative durability, leading to the enhancement of the CO hydrogenation in the FTS in comparison with Co-loaded beta zeolite alone. Furthermore, the loading of Pd on the Mn-added Fe-based catalyst enhanced the catalytic durability due to the hydrogenation of carbonaceous species by the hydrogen activated over Pd.
机译:通过合成包含各种金属物种(例如Mn,Zr和Ce)的Fe基催化剂,研究了Fe基催化剂中金属物种对结构性能的影响。将金属物质添加到铁基催化剂中会导致铁物质的高度分散和高表面积,这是由于形成了被催化剂颗粒包围的约2-4?nm的中孔空隙。将金属添加的铁基催化剂与共载β沸石一起用于由合成气合成烃,其H2 / CO比为1的化学计量H2 / CO比为2的费托合成(FTS) )。在这些催化剂中,添加锰的铁基催化剂对水煤气变换(WGS)反应表现出较高的活性,并且具有相当的耐用性,与负载钴的β沸石相比,导致了FTS中CO加氢的增强。单独。此外,由于在Pd上活化的氢使含碳物质氢化,Pd在添加Mn的Fe基催化剂上的负载提高了催化耐久性。

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