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首页> 外文期刊>Catalysis science & technology >Fischer-Tropsch reaction-diffusion in a cobalt catalyst particle: aspects of activity and selectivity for a variable chain growth probability
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Fischer-Tropsch reaction-diffusion in a cobalt catalyst particle: aspects of activity and selectivity for a variable chain growth probability

机译:钴催化剂粒子中的Fischer-Tropsch反应扩散:可变链生长概率的活性和选择性方面

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摘要

The reaction-diffusion performance for the Fischer-Tropsch reaction in a single cobalt catalyst particle is analysed, comprising the Langmuir-Hinshelwood rate expression proposed by Yates and Satterfield and a variable chain growth parameter a, dependent on temperature and syngas composition (H2/CO ratio). The goal is to explore regions of favourable operating conditions for maximized C_(5+) productivity from the perspective of intra-particle diffusion limitations, which strongly affect the selectivity and activity. The results demonstrate the deteriorating effect of an increasing H2/CO ratio profile towards the centre of the catalyst particle on the local chain growth probability, arising from intrinsically unbalanced diffusivities and consumption ratios of H2 and CO. The C_(5+) space time yield, a combination of catalyst activity and selectivity, can be increased with a factor 3 (small catalyst particle, d_(cat) = 50 μm) to 10 (large catalyst particle, d_(cat) = 2.0 mm) by lowering the bulk H2/CO ratio from 2 to 1, and increasing temperature from 500 K to 530 K. For further maximization of the C_(5+) space time yield under these conditions (H2/CO = 1, T = 530 K) it seems more effective to focus catalyst development on improving the activity rather than selectivity. Furthermore, directions for optimal reactor operation conditions are indicated.
机译:分析了单个钴催化剂粒子中Fischer-Tropsch反应的反应扩散性能,包括Yates和Satterfield提出的Langmuir-Hinshelwood速率表达,以及可变链生长参数A,取决于温度和合成物的组成(H2/CO组成)比率)。目的是从粒子内扩散限制的角度探索最大化C_(5+)生产力的有利操作条件的区域,从而强烈影响选择性和活性。结果表明,H2/CO比率增加到催化剂粒子中心对局部链生长概率的恶化影响,这是由于本质上不平衡的扩散率和H2和CO的消耗比引起的。C_(5+)。 ,可以通过降低散装H2/ H2/,可以通过降低BOLK H2/ H2/降低催化剂活性和选择性的组合来增加因子3(小催化剂粒子,d_(cat)=50μm)至10(大催化剂粒子,d_(cat)= 2.0 mm) CO比率从2到1,从500 K增加到530K。在这些条件下(H2/CO = 1,T = 530 K)的C_(5+)时空产量进一步最大化,似乎更有效将催化剂的开发用于改善活动而不是选择性。此外,指示了最佳反应器操作条件的方向。

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