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Fischer-Tropsch synthesis over potassium-promoted Co-Fe/SiO2 catalyst

机译:钾促进的Co-Fe / SiO2催化剂上的费-托合成

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Experiments for the kinetic of Fischer-Tropsch reaction (hydrocarbon formation) have been carried out over the potassium-promoted Co-Fe/90wt % SiO2 catalyst in a fixed bed micro-reactor over a range of operating conditions. Reaction rate equations are derived on the basis of the Langmuir-Hinshelwood-Hougen-Watson (LHHW) type models for the FT reactions. Seven kinetic expressions for CO consumption have been proposed and interaction between adsorption CO and dissociated adsorption hydrogen as the controlling step give the most plausible kinetic model. The product distributions in FT synthesis are found to be strongly influenced by temperature and pressure, and optimum hydrocarbon selectivity C-2-C-3 light olefins is obtained at 260 degrees C and 8 bar. The value of activation energy for CO consumption confirms that intraparticle mass transport is not significant.
机译:在固定床微型反应器中,在一定的操作条件下,对钾促进的Co-Fe / 90wt%SiO2催化剂进行了费托反应动力学(形成烃)的实验。反应速率方程式是基于FT反应的Langmuir-Hinshelwood-Hougen-Watson(LHHW)类型模型得出的。提出了七个CO消耗的动力学表达式,作为控制步骤的吸附CO与离解的吸附氢之间的相互作用给出了最合理的动力学模型。发现FT合成中的产物分布受温度和压力的强烈影响,并且在260℃和8bar下获得最佳的烃选择性C-2-C-3轻烯烃。 CO消耗的活化能的值证实了颗粒内质量传递不显着。

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