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首页> 外文期刊>The Canadian Journal of Chemical Engineering >Importance of proper hydrodynamics modelling in fixed-bed reactors: Fischer-Tropsch synthesis study case
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Importance of proper hydrodynamics modelling in fixed-bed reactors: Fischer-Tropsch synthesis study case

机译:固定床反应堆适当流体动力学建模的重要性:Fischer-Tropsch合成研究案例

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The importance of hydrodynamics, particularly gas density, superficial gas velocity, and total pressure in axial and radial directions, was analyzed for the modelling of a catalytic reactor using a non-isothermal pseudo-homogeneous approach. The modelling of a fixed-bed reactor in one and two stages for CO conversion by Fischer-Tropsch synthesis was taken as a study case. For the validation of the proposed model, the results of the simulations for the CO conversion and temperature profiles were compared with experimental data reported in the literature. Simulations for CO conversion and reactor temperature profiles confirmed the model's ability to predict the selectivity of the liquid products in the Fischer-Tropsch synthesis reactor in one and two stages. The proposed model predicts more suitable profiles of CO conversion and temperature along the reactor, which makes it a more robust and efficient tool for design, optimization, and control purposes.
机译:分析了使用非等温伪均匀方法的催化反应器的建模分析了流体动力学,特别是气密,浅表气体速度和总压力的轴向和径向的总压力。 用Fischer-Tropsch合成的一个和两个阶段的固定床反应器的建模作为研究案例。 为了验证所提出的模型,将CO转化和温度谱的模拟结果与文献中报道的实验数据进行了比较。 用于CO转换和反应器温度型材的模拟证实了模型在一个和两个阶段中预测液体产物在Fischer-Tropsch合成反应器中的选择性的能力。 所提出的模型预测沿着反应器的CO转换和温度的更合适的简档,这使其成为设计,优化和控制目的更稳健和有效的工具。

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