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Sustainable energy efficient distillation columns sequence design of aromatic separation unit

机译:芳烃分离装置可持续节能精馏塔顺序设计

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摘要

Distillation operations became a major concern within sustainability challenge, which it becomes a primary target of energy saving efforts in industrially developed countries. However, there is still one problem, which is how do we improve the energy efficiency of the existing distillation columns systems by considering the sustainability criteria without having major modifications. Recently, a new energy efficient distillation columns methodology that will able to improve energy efficiency of the existing separation systems without having major modifications has been developed. However, this developed methodology was only considered the energy savings without taking into consideration the sustainability criteria. Therefore, the objective of this paper is to present new improvement of existing methodology by including a sustainability analysis to design an optimal sequence of energy efficient distillation columns. Accordingly, the methodology is divided into four hierarchical sequential stages: i) existing sequence sustainability analysis, ii) optimal sequence determination, iii) optimal sequence sustainability analysis, and iv) sustainability comparison. In the first stage, a simple and reliable short-cut method is used to simulate a base (existing) sequence. The sustainability index of the base sequence is calculated and taken as a reference for the next stage. In the second stage, an optimal sequence is determined by using driving force method. All individual driving force curves is plotted and the optimal sequence is determined based on the plotted driving force curves. Then, by using a short-cut method, the new optimal sequence is simulated and the new sustainability index is calculated in the third stage. Lastly, in the fourth stage, the sustainability index for both sequences (base and optimal) is compared. The capability of this methodology is tested in designing an optimal sustainable energy efficient distillation columns sequence of aromatics separation unit. The existing aromatics separation unit consists of six compounds (Methylcyclopentane (MCP), Benzene, Methylcyclohexane (MCH), Toluene, m-Xylene and o-Xylene) with five direct sequence distillation columns is simulated using a simple and reliable short-cut method and rigorous within Aspen HYSYS simulation environment. The energy and sustainability analysis is performed and shows that the optimal sequence determined by the driving force method has better energy reduction with total of 6.78 % energy savings and 0.16 % sustainability reduction compared to existing sequence with. In addition, the economic analysis shows that the return of investment of 3.10 with payback period of 4 months. It can be concluded that, the sequence determined by the driving force method is not only capable in reducing energy consumption, but also has better sustainability index for aromatic separation unit.
机译:蒸馏操作已成为可持续性挑战中的主要关注点,它已成为工业发达国家节能努力的主要目标。但是,仍然存在一个问题,那就是我们如何在不进行重大修改的情况下通过考虑可持续性标准来提高现有蒸馏塔系统的能效。最近,已经开发了一种新的节能蒸馏塔方法,该方法可以在不进行重大修改的情况下提高现有分离系统的能源效率。但是,仅在不考虑可持续性标准的情况下考虑了这种发达的方法所节省的能源。因此,本文的目的是通过包括可持续性分析来设计节能蒸馏塔的最佳顺序,从而提出对现有方法的新改进。因此,该方法被分为四个层次的顺序阶段:i)现有的序列可持续性分析,ii)最佳序列确定,iii)最佳序列可持续性分析和iv)可持续性比较。在第一阶段,使用一种简单可靠的快捷方式来模拟基本(现有)序列。计算基本序列的可持续性指数,并将其作为下一阶段的参考。在第二阶段,通过使用驱动力方法确定最佳顺序。绘制所有单独的驱动力曲线,并根据绘制的驱动力曲线确定最佳顺序。然后,使用捷径法,在第三阶段模拟新的最佳序列并计算新的可持续性指数。最后,在第四阶段,比较两个序列(基础序列和最优序列)的可持续性指数。在设计芳香烃分离装置的最佳可持续能源效率蒸馏塔序列时,测试了该方法的能力。现有的芳烃分离单元由六种化合物(甲基环戊烷(MCP),苯,甲基环己烷(MCH),甲苯,间二甲苯和邻二甲苯)组成,使用五个简单的可靠捷径方法对五个直接顺序蒸馏塔进行了模拟,并在Aspen HYSYS仿真环境中非常严格。进行了能源和可持续性分析,结果表明,与现有序列相比,由驱动力方法确定的最佳顺序具有更好的节能效果,总共节省了6.78%的能源,并且减少了0.16%的可持续性。另外,经济分析表明投资回报为3.10,投资回收期为4个月。可以得出结论,用驱动力法确定的顺序不仅能够降低能耗,而且对于芳烃分离装置具有更好的可持续性指标。

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