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Size-dependent studies of Fischer-Tropsch synthesis on iron based catalyst: New kinetic model

机译:铁基催化剂上费-托合成的尺寸依赖性研究:新的动力学模型

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In this study the effect of catalyst nanoparticle size on the Fischer-Tropsch synthesis (FTS) activity is investigated on iron catalyst. A series of iron oxide particles doped by adding cupper and lanthanum were prepared as a catalyst via precipitation by microemulsion method. Because of the role of iron carbide in FTS reaction by iron catalysts, the iron carbide particle sizes was evaluated after activation and considered as active phase in this paper. The catalytic results indicated that FTS activity increased and passed through a maximum when the iron particle size increased. A size-dependent kinetic model for FTS rates was developed using a thermodynamic analysis method. The model parameters measured by experimental results and the effect of various active sizes on these parameters was evaluated. Calculated size dependent model parameters were employed for evaluation of surface tension energy (σ) for iron catalyst and size-independent activation energy for FTS reaction.
机译:在这项研究中,研究了铁催化剂上催化剂纳米颗粒尺寸对费托合成(FTS)活性的影响。通过微乳液法沉淀制备了一系列添加铜和镧掺杂的氧化铁颗粒作为催化剂。由于碳化铁在铁催化剂的FTS反应中的作用,因此在活化后评估碳化铁的粒径,并将其视为活性相。催化结果表明,当铁的粒径增加时,FTS活性增加并达到最大值。使用热力学分析方法建立了FTS速率的尺寸依赖性动力学模型。通过实验结果测量模型参数,并评估各种有效尺寸对这些参数的影响。计算得出的尺寸相关模型参数用于评估铁催化剂的表面张力能(σ)和FTS反应的尺寸独立活化能。

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