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Dynamic modeling and simulations of the behavior of a fixed-bed reactor-exchanger used for CO2 methanation

机译:用于CO2甲烷化的固定床反应器交换器的动态建模与模拟

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摘要

A multidimensional heterogeneous and dynamic model of a fixed-bed heat exchanger reactor used for CO2 methanation has been developed in this work that is based on mass, energy and momentum balances in the gas phase and mass and energy balances for the catalyst phase. The dynamic behavior of this reactor is simulated for transient variations in inlet gas temperature, cooling temperature, gas inlet flow rate, and outlet pressure. Simulation results showed that wrong-way behaviors can occur for any abrupt temperature changes. Conversely, temperature ramp changes enable to attenuate and even fade the wrong-way behavior. Traveling hot spots appear only when the change of an operating condition shifts the reactor from an ignited steady state to a non-ignited one. Inlet gas flow rate variations reveal overshoots and undershoots of the reactor maximum temperature. (c) 2017 American Institute of Chemical Engineers AIChE J, 64: 468-480, 2018
机译:在本作品中开发了用于CO 2甲烷化的固定床热交换器反应器的多维异构和动态模型,其基于气相和催化剂相对于催化剂相的质量和质量余量的质量,能量和动量平衡。 模拟该反应器的动态行为,用于入口气体温度,冷却温度,气体入口流速和出口压力的瞬态变化。 仿真结果表明,对于任何突然温度变化,可能会出现错误的行为。 相反,温度斜坡变化使得能够衰减,甚至消退错误的行为。 仅当操作条件的变化将反应器从点火状态移位到非点燃的稳定状态时,才会出现行驶热点。 入口气体流速变化揭示了反应器最高温度的过冲和下冲。 (c)2017美国化学工程师研究所Aiche J,64:468-480,2018

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