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COMBINING REACTION WITH DISTILLATION Hydrodynamic and Mass Transfer Performance of Modular Catalytic Structured Packings

机译:精馏结合反应与模块化催化结构填料的流体力学和传质性能

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摘要

The combination of reaction with distillation is an elegant way to intensify a process.To fit the needs of catalytic distillation processes,modular arranged packings are developed to allow certain flexibility with regard to catalyst load in the column.The modular packing is built-up of alternating catalyst containing pockets with corrugated sheets.For design purposes the knowledge of hydrodynamics(dynamic liquid hold-up and pressure drop)and mass transfer efficiency characteristics(HETP)imposed by the internal configuration is vital and lacking in open literature.To overcome this,the geometry based Delft MCSP Model,a parallel column model,is developed to predict the hydrodynamics and mass transfer performance of modular catalytic structured packings(MCSP).The developed model is validated with pilot scale experiments carried out without reaction.This paper discusses the hydrodynamic performance of MCSP;the dynamic liquid hold-up is predicted within 10% and the pressure drop and capacity is well predicted.The HETP is predicted accurately around hydraulic loading of the packed bed.
机译:反应与蒸馏的结合是强化工艺的一种绝妙方法。为适应催化蒸馏过程的需求,开发了模块化布置的填料,以使塔中的催化剂负载具有一定的灵活性。为了设计目的,内部构造所要求的流体力学(动态液体滞留量和压降)和传质效率特性(HETP)的知识是至关重要的,并且在公开文献中缺乏。建立了基于几何的Delft MCSP模型,即平行柱模型,以预测模块化催化结构填料的流体动力学和传质性能。该模型通过无反应的中试实验进行了验证。 MCSP的性能;动态持液率预计在10%以内,压降和容量对HETP的预测是围绕填充床的水力负荷进行的。

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