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首页> 外文期刊>Chemical Engineering Science >Determination of kinetics and equilibria of heterogeneously catalyzed gas-phase reactions in gradientless autoclave reactors by using the total pressure method: Methanol synthesis
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Determination of kinetics and equilibria of heterogeneously catalyzed gas-phase reactions in gradientless autoclave reactors by using the total pressure method: Methanol synthesis

机译:通过使用总压力法:甲醇合成测定渐变式高压釜反应器中异相催化气相反应的动力学和平衡测定

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Rapid methods are very valuable in the determination of the kinetic and mass transfer effects for heterogeneously catalyzed reactions. The total pressure method is a classical tool in the measurement of the kinetics of gas-phase reactions, but it can be successfully applied to the kinetic measurements of gasphase processes enhanced by solid catalysts. A general theory for the analysis of heterogeneously catalyzed gas-phase kinetics in gradientless batch reactors was presented for the case of intrinsic kinetic control and combined kinetic-diffusion control in porous catalysts. The concept was applied to gasphase synthesis of methanol from carbon monoxide and hydrogen on a commercial copper-based catalyst (CuO/ZnO/Al2O3 R3-12 BASF). The reaction temperature was 180-210 degrees C and the initial total pressure was varied between 11 and 21 bar in a laboratory-scale autoclave reactor equipped with a rotating basket for the catalyst particles. The initial molar ratios CO-to-H-2 were approximately 1:2, 1:3 and 1:4. The experimental data from methanol synthesis were compared with numerical simulations and a good agreement between the experiments and model simulations was achieved. The predicted equilibrium agrees with previously reported values. (C) 2019 Elsevier Ltd. All rights reserved.
机译:快速方法在测定非均相催化反应的动力学和传质作用时非常有价值。总压力方法是测量气相反应动力学的经典工具,但它可以成功地应用于通过固体催化剂增强的气相方法的动力学测量。提出了一种分析偏振批料反应器中的异均催化气相动力学的一般理论,以便在多孔催化剂中的内在动力学控制和组合动力学扩散控制的情况下。将该概念应用于商业铜基催化剂中的一氧化碳和氢气的甲醇的气体合成(CuO / ZnO / Al2O3 R3-12 Basf)。反应温度为180-210℃,在配备有用于催化剂颗粒的旋转篮的实验室级高压釜反应器中,初始总压力在11到21巴之间变化。初始摩尔比载于-H-2约为1:2,1:3和1:4。将来自甲醇合成的实验数据与数值模拟进行比较,实验与模型模拟之间的良好一致性。预测的均衡与先前报告的值同意。 (c)2019年elestvier有限公司保留所有权利。

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