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Isothermal Kinetics Modelling of the Fischer-Tropsch Synthesis over the Spray-Dried Fe-Cu-K Catalyst

机译:喷雾干燥Fe-Cu-K催化剂上费-托合成的等温动力学模型

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The isothermal kinetics of the Fischer-Tropsch synthesis (FTS) over Fe-Cu-K spray-dried catalyst was studied in a spinning basket reactor. The experiments were carried out at a constant temperature of 523 K, n(H_2)(CO) feed ratios of 0.8-2.0, reactor pressures of 1.1-2.5 MPa, and space velocity of 0.556xl0~(-3) Nm~3/kg_(cat)·s. Kinetic model for hydrocarbon formation was derived on the basis of simplified carbide mechanism to reduce the number of parameters. Two individual rate constants for methane and ethene were considered. Furthermore, the model was modified empirically by non-intrinsic effect, such as physisorption and fictitious olefin pressures that were taken into account, and the influences of secondary reaction of α-olefins on product distribution. The simulation results showed that the experimental phenomena of FTS and the deviations from ASF distribution, such as the relatively high yield of methane and low yield of ethene observed experimentally could be depicted basically.
机译:在旋转篮式反应器中研究了Fe-Cu-K喷雾干燥催化剂上费-托合成(FTS)的等温动力学。实验在523 K的恒定温度,n(H_2)/ n(CO)进料比为0.8-2.0,反应堆压力为1.1-2.5 MPa,空速为0.556x10〜(-3)Nm〜的条件下进行。 3 / kg_(cat)·s。基于简化的碳化物机理以减少参数数量,推导了烃形成的动力学模型。考虑了甲烷和乙烯的两个单独的速率常数。此外,该模型还通过非内在效果进行了经验修改,例如考虑了物理吸附和虚拟烯烃压力以及α-烯烃的二次反应对产物分布的影响。仿真结果表明,可以基本描述FTS的实验现象和偏离ASF分布的现象,如通过实验观察到的较高的甲烷收率和较低的乙烯收率。

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