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Kinetic models of Fischer-Tropsch synthesis reaction over granule-type Pt-promoted Co/Al_2O_3 catalyst

机译:颗粒型Pt促进Co / Al_2O_3催化剂上费-托合成反应动力学模型

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Kinetic models of CO hydrogenation to paraffinic hydrocarbons through Fischer-Tropsch synthesis (FTS) reaction were studied by using Langmuir-Hinshelwood Hougen-Watson (LHHW) model of 16 different reaction steps with a pseudo steady-state assumption (PSSA) on the prototype Pt-promoted Co/Al~(2)O~(3)catalyst having a granule size of ∼1 mm of spherical γ -Al~(2)O~(3)support (surface area of 149m_(2)/g). The derived kinetic models from ten sets of experimental data by altering the reaction conditions such as temperatures, pressures, space velocities and H~(2)/CO molar ratios were found to be well fitted with reasonable kinetic parameters and small errors of conversion of CO and hydrocarbon distributions in terms of mean absolute relative residual (MARR) and relative standard deviation error (RSDE). The derived reaction rates and CO activation energy of -86 kJ/mol well correspond to the our previously reported results using power-type catalysts. Based on the LHHW model with PSSA, the possible chemical intermediates on the granule ball-type Co-Pt/Al~(2)O~(3)surfaces were precisely considered to explain the typical adsorption, initiation, propagation and termination steps of FTS reaction as well as to derive elementary reaction rates with their kinetic parameters and hydrocarbon distributions. The derived kinetic models were further used to verify temperature-profiles in a pilot-scale fixed-bed tubular FTS reactor with a packing depth of 100 cm catalyst, and it confirmed that the temperature gradients were less than 10 °C in a length of reactor by effectively removing the generated heat by an exothermic FTS reaction.
机译:通过使用16个不同反应步骤的Langmuir-Hinshelwood Hougen-Watson(LHHW)模型,在原型Pt上使用拟稳态假设(PSSA),研究了通过Fischer-Tropsch合成(FTS)反应将CO加氢生成链烷烃的动力学模型。粒径为〜1 mm球形γ-Al〜(2)O〜(3)载体的Co / Al〜(2)O〜(3)助催化剂(表面积149m_(2)/ g)。通过改变温度,压力,空速和H〜(2)/ CO摩尔比等反应条件,从十组实验数据推导出动力学模型,发现该模型动力学参数合理,CO转化率误差小。和碳氢化合物的分布,以平均绝对相对残差(MARR)和相对标准偏差误差(RSDE)表示。推导的反应速率和-86 kJ / mol的CO活化能与我们先前报道的使用动力型催化剂的结果相对应。基于带有PSSA的LHHW模型,精确地考虑了颗粒球形Co-Pt / Al〜(2)O〜(3)表面上可能存在的化学中间体,以解释FTS的典型吸附,引发,传播和终止步骤以及通过其动力学参数和烃分布推导基本反应速率。推导的动力学模型进一步用于验证填充深度为100 cm催化剂的中试规模固定床管式FTS反应器中的温度分布,并证实在反应器长度内温度梯度小于10°C通过放热的FTS反应有效地除去产生的热量。

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