费托法
化学
催化作用
离解(化学)
过渡金属
金属
化学工程
限制
一氧化碳
钴
无机化学
氢
碳化物
物理化学
选择性
有机化学
工程类
机械工程
作者
Jiachun Chai,Robert Pestman,Wei Chen,A. Iulian Dugulan,Bo Feng,Zhuowu Men,Peng Wang,Emiel J. M. Hensen
标识
DOI:10.1016/j.jcat.2021.05.027
摘要
The formation of Fe-carbide phases is relevant to the synthesis of Fischer-Tropsch synthesis catalysts. We investigated the carburization of Raney Fe as a model catalyst using spectroscopic and temperature-programmed techniques. IR spectroscopy shows that CO dissociation already occurs at −150 °C, while C diffusion into metallic Fe requires much higher temperature (~180 °C). The carburization rate increases with increasing H2/CO ratio, which can be attributed to the lower overall barrier for O removal as H2O as compared to CO2. O removal frees vacancies that are needed for CO dissociation. The resulting higher C coverage increases the driving force for Fe-carbide formation. A higher driving force leads to predominant formation of the more carbon-rich ε(́)-carbide, while χ-Fe5C2 is formed at lower H2/CO ratio. The removal of surface O appears to be the rate-limiting step under all conditions. Initially, most of deposited C is used for Fe-carbide formation with a small contribution to hydrocarbons formation.
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