首页> 外文会议>34th European Symposium of the Working Party on Computer Aided Process Engineering, 34th, May 27-30, 2001, Kolding, Denmark >Design, Sizing and Modeling of a Reactive Extractive Distillation Unit and Solvent Recovery System
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Design, Sizing and Modeling of a Reactive Extractive Distillation Unit and Solvent Recovery System

机译:反应性萃取蒸馏装置和溶剂回收系统的设计,尺寸和建模

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摘要

A new process to value a methanol + methyl acetate (MeOH + MeAc) azeotropic mixture by reactive extractive distillation with n-butanol (BuOH) using o-xylene as entrainer has been developed. High purity MeOH and butyl acetate (BuAc) were obtained as products. The aim of this work is to synthesize (batch/continuous comparison, residue curve map analysis and solvent selection), to size and rate the equipments (steady state simulation of the azeotropic separation, the reactive extractive distillation unit and the solvent recovery system) and perform the process dynamic modeling (control strategy, parameter tuning and robustness analysis). The preliminary economic study carried out reveals that the process has no profitability. As expected, the process bottleneck is the reactive distillation unit and, in particular, the control strategy to achieve the coupled targets.
机译:开发了一种新的方法,该方法通过使用邻二甲苯作为夹带剂,与正丁醇(BuOH)反应萃取蒸馏,对甲醇+乙酸甲酯(MeOH + MeAc)共沸混合物进行估价。得到高纯度的MeOH和乙酸丁酯(BuAc)。这项工作的目的是合成(批/连续比较,残渣曲线图分析和溶剂选择),设备的尺寸和等级(共沸分离,反应萃取蒸馏单元和溶剂回收系统的稳态模拟)和执行过程动态建模(控制策略,参数调整和鲁棒性分析)。进行的初步经济研究表明,该过程没有盈利能力。如预期的那样,过程瓶颈是反应性蒸馏单元,尤其是实现耦合目标的控制策略。

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