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Towards further internal heat integration in design of reactive distillation columns-Part IV: Application to a high-purity ethylene glycol reactive distillation column

机译:在反应蒸馏塔的设计中进一步实现内部热集成-第IV部分:在高纯度乙二醇反应蒸馏塔中的应用

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In the first three papers of this series, it has been shown that strengthening internal heat integration within a reactive distillation column involving reactions with high thermal effect is really effective for the reduction of utility consumption and capital investment besides the improvement in process dynamics and operation. One important issue that remains unstudied so far is the influences of reaction selectivity upon the reinforcement of internal heat integration, since the reaction operation is often accompanied by side-reactions and the maintenance of a high selectivity is extremely necessary in process synthesis and design. A reactive distillation column synthesizing high-purity ethylene glycol through the hydration of ethylene oxide is chosen and studied in this work. Because of the unfavorable physicochemical properties of the reacting mixture separated (e.g., the fairly large volatility between the reactants and the existence of a consecutive side-reaction), the process represents a challenging problem for the reinforcement of internal heat integration. Intensive comparison is conducted between the process designs with and without the consideration of further internal heat integration between the reaction operation and the separation operation involved, and it has been found that seeking further internal heat integration still leads to a substantial reduction of energy requirement, in addition to a further abatement in capital investment. Moreover, a favorable effect is again observed upon the process dynamics and operability. These striking outcomes manifest evidently that seeking further internal heat integration should be considered in process synthesis and design irrespective of what a reaction selectivity has been assigned.
机译:在该系列的前三篇论文中,已经表明,在具有高热效应的反应的反应精馏塔中加强内部热集成,除了改善过程动力学和操作之外,对于减少公用事业消耗和资本投资确实是有效的。到目前为止,尚未研究的一个重要问题是反应选择性对增强内部热集成的影响,因为反应操作通常伴随有副反应,并且在工艺合成和设计中非常需要保持高选择性。本文选择并研究了通过环氧乙烷水合合成高纯度乙二醇的反应蒸馏塔。由于分离出的反应混合物的不利的物理化学性质(例如,反应物之间的相当大的挥发性和连续的副反应的存在),该方法代表了增强内部热集成的挑战性问题。在有和没有考虑到反应操作和分离操作之间进一步的内部热集成的情况下,在工艺设计之间进行了深入的比较,并且发现,寻求进一步的内部热集成仍会导致能量需求的显着降低。除了进一步减少资本投资。此外,再次在过程动力学和可操作性上观察到有利的效果。这些惊人的结果显然表明,在工艺合成和设计中应考虑寻求进一步的内部热集成,而与指定的反应选择性无关。

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