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Systematic design of energy efficient extractive distillation column for azeotrope mixture

机译:增胶混合物节能萃取蒸馏塔的系统设计

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The last dozen years produced so many articles on the synthesis of separation systems. For distillation systems, they can be divided into several types such as ordinary distillation and azeotropic distillation. When designing a separation system for mixtures containing azeotrope(s), ordinary distillation can be considered as not feasible since high purity products cannot be obtained. When designing a distillation based separation process, several problems may occur such as determination of optimal number of plates, optimal location for feed, and optimal reflux ratio. The main objective of this paper is to propose a methodology to design an energy efficient extractive distillation process using driving force approach. The design concept is to design the distillation column system at maximum driving force. At maximum driving force, the energy required for the system will be minimum. A case study of ethanol-water mixture from a literature was selected and investigated. Initially, the literature case study was analysed and simulated by using Aspen PLUS V9 to determine the energy usage and capital cost of the existing design. Then, the feed information from the existing design was used for a new design which was developed according to the driving force approach in the methodology. Optimum design variables were determined from the methodology. Since the literature case study used NRTL thermodynamic properties, similar package was used to ensure reliable data. Finally, both designs were anatysed and compared in terms of capital and operating cost. Based on the findings, the capital cost was reduced up to 0.47 % and operation cost up to 7.61 %. Performance confirms that by using this methodology, optimum or near optimum design for extractive distillation can be developed in an easy, practical and systematic manner.
机译:最后十几年产生了许多关于分离系统的合成的文章。对于蒸馏系统,它们可以分为几种类型,例如普通蒸馏和共沸蒸馏。当设计含有共沸物的混合物的分离系统时,由于不能获得高纯度产物,可以认为普通蒸馏不能是不可行的。在设计基于蒸馏的分离过程时,可能发生若干问题,例如确定最佳板的最佳板,饲料最佳位置和最佳回流比。本文的主要目的是提出一种使用驱动力方法设计能量有效的提取蒸馏工艺的方法。设计理念是在最大驱动力下设计蒸馏柱系统。在最大驱动力下,系统所需的能量将最低。选择并研究了文献中乙醇 - 水混合物的案例研究。最初,通过使用Aspen Plus V9来分析和模拟文献案例研究,以确定现有设计的能量使用和资本成本。然后,来自现有设计的饲料信息用于根据方法中的驱动力方法开发的新设计。从方法论确定最佳设计变量。由于文献案例研究使用了NRTL热力学性质,因此使用类似的包来确保可靠的数据。最后,在资本和运营成本方面,两种设计都被消除并比较。根据调查结果,资本成本降低至0.47%,运营成本高达7.61%。性能证实,通过使用这种方法,可以以简单,实用和系统的方式开发用于萃取蒸馏的最佳或接近最佳设计。

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