首页> 外文期刊>Journal of Catalysis >TRANSIENT KINETICS FROM THE TAP REACTOR SYSTEM - APPLICATION TO THE OXIDATION OF PROPYLENE TO ACROLEIN
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TRANSIENT KINETICS FROM THE TAP REACTOR SYSTEM - APPLICATION TO THE OXIDATION OF PROPYLENE TO ACROLEIN

机译:TAP反应器系统的瞬态动力学-在丙烯氧化为丙烯醛中的应用

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Transient kinetic data have been extracted by use of the Temporal Analysis of Products (TAP) reactor system. In the TAP reactor high resolution transient pulse experiments are performed under vacuum conditions. A rigorous model is developed and applied to the determination of Knudsen diffusivities from experiments with inert pulses. The model was applied to the catalytic oxidation of propylene over an industrial multicomponent bismuth molybdate catalyst. By fitting simulated curves to the experimentally observed response curves, kinetic parameters for the different elementary steps of the reaction were determined. It was shown that the adsorption of propylene is practically irreversible at reaction temperature and that CO2 and acrylic acid are formed in consecutive reactions from propylene via acrolein. From the values for the kinetic parameters it is proven that under industrial conditions the adsorption of propylene is rate determining. The surface coverage under typical conditions is shown to be quite low. The kinetic model is successfully used for the simulation of a steady state reactor operating under industrial conditions. (C) 1995 Academic Press, Inc. [References: 26]
机译:瞬态动力学数据已通过使用产品时间分析(TAP)反应器系统提取。在TAP反应器中,高分辨率瞬态脉冲实验是在真空条件下进行的。建立了严格的模型,并将其用于通过惰性脉冲实验确定克努森扩散系数。该模型用于工业多组分钼酸铋催化剂上丙烯的催化氧化。通过将模拟曲线拟合到实验观察到的响应曲线,可以确定反应不同基本步骤的动力学参数。结果表明,在反应温度下,丙烯的吸附实际上是不可逆的,并且在丙烯和丙烯醛的连续反应中,会生成CO2和丙烯酸。从动力学参数的值证明,在工业条件下丙烯的吸附是决定速率的。典型条件下的表面覆盖率非常低。动力学模型已成功用于在工业条件下运行的稳态反应器的仿真。 (C)1995 Academic Press,Inc. [参考:26]

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