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Simulation and optimization of different pressure thermally coupled distillation for separating a close-boiling mixture of Emphasis Type="Italic"n/Emphasis-butanol and iso-butanol

机译:分离 n -丁醇和异丁醇的密闭混合物的不同压力热耦合蒸馏的模拟和优化

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Substantial quantities of energy are required in conventional distillation columns applied in high-purity separation of close-boiling mixtures. To achieve energy saving of distillation, a novel different pressure thermally coupled distillation (DPTCD) was proposed for separating the close-boiling mixture of n-butanol and iso-butanol. Both this intensified energy integration technique and two other processes, namely conventional distillation (CD) and vapor recompression column (VRC), were simulated in process simulator Aspen Plus. The optimization was carried out to determine the optimal values of design and operating variables on the basis of minimizing energy consumption. Subsequently, the energy saving and economic efficiency of the DPTCD scheme were evaluated through the comparison with the other two processes. The results showed that, compared to the CD and VRC processes, the energy consumption of DPTCD process was decreased by 65.21 and 15.79%, respectively, and the total annual cost (TAC) of DPTCD process can be reduced by 33.75 and 10.46%. It demonstrated that DPTCD scheme was the most promising alternative to reduce the total energy consumption and TAC with high purity (99.1?wt%) n-butanol and iso-butanol products among these separation processes.
机译:在用于高纯度分离沸腾混合物的常规蒸馏塔中需要大量能量。为了实现蒸馏的节能,提出了一种新颖的差压热耦合蒸馏法(DPTCD),用于分离正丁醇和异丁醇的沸腾混合物。在过程仿真器Aspen Plus中模拟了这种强化的能量集成技术以及其他两个过程,即常规蒸馏(CD)和蒸气再压缩塔(VRC)。在最小化能耗的基础上进行了优化,以确定设计和操作变量的最佳值。随后,通过与其他两个过程的比较评估了DPTCD方案的节能和经济效率。结果表明,与CD和VRC流程相比,DPTCD流程的能耗分别降低了65.21和15.79%,DPTCD流程的年总成本(TAC)可以降低33.75和10.46%。结果表明,在这些分离过程中,DPTCD方案是降低总能耗和TAC的最有前途的替代方案,其中TAC具有高纯度(99.1wt%)正丁醇和异丁醇产品。

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