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Dynamic operation of fixed-bed methanation reactors: Yield control by catalyst dilution profile and magnetic induction

机译:固定床甲烷化合物的动态操作:催化剂稀释曲线和磁感应的产量控制

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Dynamic operation of fixed-bed methanation reactors has been subject to increasing research efforts over the past years, as a consequence of its potential interest for the energy transition (power-to-gas). Due to the reaction exothermicity, the thermal management of a reactor is particularly difficult. In the present work, a model and a software are developed to simulate the behavior of a reactor whose reaction medium contains a mixture of catalytic pellets and induction-sensitive pellets. The study shows that a reactor made-up of two reaction zones of different catalytic fractions can produce a gas of identical steady-state compositions for two different flow rates. A steep shift from the low to the high inflow rate generates a transient drop in the methane yield. Magnetic induction rapidly heats up an appropriate portion of the reaction medium, so that the yield remains nearly constant during both transient and steady state after a flow rate shift. This study constitutes a first step towards the final aim of using induction and catalyst dilution profile to stabilize the yield for any flow rate variation in a given range. (C) 2019 Elsevier Ltd. All rights reserved.
机译:由于其对能源转换(电力到气体)的潜在利息,固定床甲烷化合物的动态操作已越来越多的研究努力。由于反应放热,反应器的热管理特别困难。在本作工作中,开发了一种模型和软件以模拟反应介质含有催化粒料和诱导敏感粒料的混合物的反应器的行为。该研究表明,不同催化级分的两个反应区的反应器制备可用于两种不同流速的相同稳态组合物的气体。从低流入速率的陡偏移产生甲烷产量的瞬态下降。磁感应迅速加热反应介质的适当部分,使得在流量偏移后的瞬态和稳定状态下,产率几乎恒定。本研究构成了促进诱导和催化剂稀释曲线的最终目的的第一步,以稳定给定范围内任何流速变化的产率。 (c)2019 Elsevier Ltd.保留所有权利。

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