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Design and performance of distillation sequences for ternary systems using multiobjective optimization

机译:多目标优化的三元系统精馏序列设计与性能

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摘要

This paper discusses the design and separation performance of distillation schemes for ternary mixtures using a multi-objective optimization approach. Severalternary systems have been considered as cases of study to illustrate the capabilities and limitations of traditional, nonsharp and intensified distillation configurations in terms of their tradeoffs between the purity of target compounds and the energy required for the separation. A detailed analysis of the process effectiveness of these distillation sequences has been carried out where the impact of design parameters on both separation efficacy and energy efficiency has been considered. Results showed that the efficacy ofthese separation schemes can vary substantially when both the energy consumption and the composition of a key component are the targets in conflict. In fact, the conventional direct distillation sequence may offer a better trade off between composition and energy consumption than those obtained for intensified schemes in some tested ternary mixtures. Therefore, this study highlights the importance of performing a reliable design of multi-component separation sequences to evaluate their advantages and potential improvements for industrial applications.
机译:本文讨论了使用多目标优化方法的三元混合物精馏方案的设计和分离性能。已经考虑了几种三元体系作为研究案例,以从目标化合物的纯度与分离所需的能量之间进行权衡,来说明传统的,不锐利的和强化蒸馏配置的功能和局限性。在考虑了设计参数对分离效率和能量效率的影响的情况下,已经对这些蒸馏顺序的过程有效性进行了详细的分析。结果表明,当能耗和关键成分的组成都成为冲突的目标时,这些分离方案的功效可能会发生很大变化。实际上,与在某些测试的三元混合物中强化方案获得的结果相比,常规的直接蒸馏过程可能会在组成和能耗之间提供更好的平衡。因此,本研究强调了对多组分分离序列进行可靠设计以评估其优势和工业应用潜在改进的重要性。

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