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Fischer-Tropsch Synthesis: Reaction mechanisms for iron catalysts

机译:费-托合成:铁催化剂的反应机理

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The reaction mechanism for the Fischer-Tropsch synthesis with iron catalysts under low-temperature conditions is described. Our data are considered to support an oxygenate intermediate. The structure of the chain initiating species is considered to be, or closely resembles, the formate species responsible of the water-gas shift reaction. Chain propagation is considered to involve a different species that is either CO or a species derived from CO. The growing chain is considered to lose the final oxygen during the chain termination step. The structure of the stable low-temperature iron catalyst is considered to consist of a core that is Fe3O4 with the core surrounded by a layer of iron carbide. The data show that iron carbide is the active phase and that there is a synergistic interaction between the alkali and structural promoter that maintains an adequate iron carbide layer.
机译:描述了在低温条件下用铁催化剂进行费-托合成的反应机理。我们的数据被认为支持含氧中间体。链引发物种的结构被认为是或非常类似于负责水煤气变换反应的甲酸盐物种。链传播被认为涉及不同的物种,该物种可能是CO或衍生自CO的物种。生长的链被认为在链终止步骤中失去了最终的氧气。认为稳定的低温铁催化剂的结构由Fe 3 O 4核组成,该核被碳化铁层包围。数据表明,碳化铁是活性相,并且在碱和结构促进剂之间存在协同相互作用,从而保持了足够的碳化铁层。

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