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首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Optimization of a 3-D isothermal plug-flow model of a monolith reactor featuring first order reactions
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Optimization of a 3-D isothermal plug-flow model of a monolith reactor featuring first order reactions

机译:优化一级反应器的三维等温塞流模型,具有一阶反应的一级反应器

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In this work, monolith reactor optimization is carried out. A 3-D monolith reactor model is first developed for a plug flow, isothermal, reactor featuring first order irreversible volumetric and surface reactions, then solved analytically using a series-based solution method, and finally optimized by establishing a number of mathematical model properties, and carrying out a broad search of the resulting reduced two-dimensional design parameter space. It is shown that maximum conversion is attained at a fluid velocity upper bound determined by the channel's width, height, and capital cost to compression cost ratio. For reactors featuring only a surface reaction, maximum conversion is also attained at the maximum allowable channel width, and the minimum allowable channel hydraulic diameter. The optimum reactor residence time is inversely proportional (proportional) to the channel's optimum hydraulic diameter (the reactor's capital cost to production ratio). (C) 2019 Published by Elsevier B.V. on behalf of Institution of Chemical Engineers.
机译:在这项工作中,进行整形反应器优化。首先开发3-D单块反应器模型用于塞流,等温,反应器,具有一定阶级不可逆的体积和表面反应,然后使用基于系列的解决方案方法进行分析解决,并通过建立许多数学模型属性来进行优化,并进行广泛的搜索所产生的二维设计参数空间。结果表明,在通道的宽度,高度和基本成本与压缩成本比确定的流体速度上限处获得最大转换。对于仅具有表面反应的反应器,还可以在最大允许沟道宽度和最小允许沟道液压直径的最大转换。最佳反应器停留时间与通道的最佳液压直径(反应堆的生产比率成本成比例)成反比(比例)。 (c)2019年由Elsevier B.V发布。代表化学工程师机构。

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