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Unfavorable energy integration of reactive dividing wall column for simultaneous esterification reactions

机译:无反应分裂壁柱的不利能量整合,同时酯化反应

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Thermal integration in a reactive dividing wall column (RDWC) can dramatically reduce energy consumption. This study, however, addresses unfavorable energy integration of the concurrent esterification of butyl, amyl, and hexyl alcohols in the RDWC. The reaction kinetics and vapor-liquid-liquid equilibrium of reactive mixtures are utilized to assess the feasibility of energy integration in a multi-partitioned RDWC. The thermal integration effect of an RDWC is elucidated by comparing its energy efficiency with that of the direct sequential configuration of a reactive distillation column followed by a non-reactive distillation column. The unfavorable thermal integration in the RDWC originates from the large internal flow to satisfy the product purities. Therefore, a single RDWC sequence showed higher energy consumption and total annual cost than the direct RD sequence for the simultaneous triple esterification.
机译:反应性分割壁柱(RDWC)中的热集成可以显着降低能耗。然而,该研究解决了RDWC中丁基,淀粉和己醇的同时酯化的不利能量整合。反应性混合物的反应动力学和汽液 - 液平衡用于评估多分区RDWC中的能量集成的可行性。通过将其能量效率与反应蒸馏塔的直接顺序构型的能量效率进行比较,阐明了RDWC的热整合效果,然后是非反应性蒸馏塔。 RDWC中不利的热集成来自大型内部流量以满足产品纯度。因此,单个RDWC序列显示出更高的能量消耗和总年成本,而不是同时三重酯化的直接RD序列。

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