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Phenomenological approach to interpret the effect of liquid flow modulation in trickle bed reactors at the particle scale

机译:现象学方法解释滴流床反应器中颗粒尺寸的液体流量调节效应

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This work analyzes the influence of liquid flow modulation on the behavior of a reaction occurring in a spherical porous particle within a trickle bed reactor. A single first-order reaction between a gaseous reactant and a non-volatile liquid reactant is considered. Non-steady-state mass balances for gas and liquid reactants are formulated and solved under isothermal conditions in order to focus the analysis on the mass transport effects. Dynamic reactant profiles inside the catalytic particle are obtained for different cycling and system conditions. The enhancement factor (epsilon) due to periodic operation is defined to evaluate the impact of induced liquid flow modulation on reaction rate. Influence of cycling and system parameters on the enhancement factor is also reported for a wide range of conditions. Experimental trends observed by several authors can be explained with this approach. (c) 2005 Elsevier Ltd. All rights reserved.
机译:这项工作分析了液体流量调节对滴流床反应器内球形多孔颗粒中发生的反应行为的影响。考虑了气态反应物和非易失性液态反应物之间的单个一级反应。气体和液体反应物的非稳态质量平衡是在等温条件下制定和求解的,以便将分析重点放在质量传输效应上。针对不同的循环和系统条件获得了催化颗粒内部的动态反应物分布。定义了由于周期性操作而产生的增强因子(ε),以评估诱导的液体流量调制对反应速率的影响。还报道了在各种条件下循环和系统参数对增强因子的影响。可以用这种方法解释由几位作者观察到的实验趋势。 (c)2005 Elsevier Ltd.保留所有权利。

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