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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Crystal facet dependence of carbon chain growth mechanism over the Hcp and Fcc Co catalysts in the Fischer-Tropsch synthesis
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Crystal facet dependence of carbon chain growth mechanism over the Hcp and Fcc Co catalysts in the Fischer-Tropsch synthesis

机译:碳链生长机制依赖于HCP和FCC CO催化剂的碳链生长机制在Fischer-Tropsch合成中

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摘要

Revealing the sensitivity of Co crystal facet structure to the mechanism of carbon chain growth in the Fischer-Tropsch synthesis (FTS) is of great importance yet challenging issue in the heterogeneous catalysis. According to the occupied proportion of different crystal facets in the hcp and fcc Co crystal phases, this study for the first time identifies the essential relationship between the performance of carbon chain growth in the FTS and the structure of Co crystal facets. The hcp Co generally presents much higher intrinsic activity for the carbon chain growth via the carbide mechanism compared to the fcc Co via the CHO insertion mechanism. The findings will deepen our understandings about the crystal facet structure-dependent performances of Co catalysts in the FTS reactions, and provides a clear clue for the preparation of high performance Co catalysts through the rational design of Co crystal facet with more stepped B-5-type active unit.
机译:揭示CO Cryst Compet结构对Fischer-Tropsch合成(FTS)中碳链生长机制的敏感性在异构催化中具有重要意义且挑战性问题。 根据HCP和FCC CO结晶阶段的不同晶面的占用比例,第一次研究识别FTS中碳链增长的性能与CO水晶面的结构之间的基本关系。 与通过CHO插入机构相比,HCP CO通常通过碳化物机构对碳链生长提供更高的内在活性。 该研究结果将深化关于FTS反应中CO催化剂的晶面结构依赖性性能的理解,并提供了通过具有更多阶梯式B-5-的CO水晶面的合理设计来制备高性能CO催化剂的透明线索。 键入活动单元。

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