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A Gibbs energy-driving force method for the optimal design of non-reactive and reactive distillation columns

机译:吉布斯能量驱动力法用于非反应和反应蒸馏塔的优化设计

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A simple Gibbs energy-driving force method for the design of non-reactive and reactive distillation columns has been developed. Based on the binary driving force concept and the equilibrium Gibbs energy computation, a systematic procedure for the design of non-reactive distillation columns (NRDC) and reactive distillation columns (RDC) is proposed. The design method exploits the connection between the driving force values and the equilibrium Gibbs energy to determine the number of stages, the optimal feed location, and the heat required at the top and bottom of the column and the minimum reflux ratio. The final design guarantees an optimal operation since maximum thermodynamic efficiency is achieved. The maximum thermodynamic efficiency criterion is equivalent to the minimum entropy condition required for a stable operation of the distillation columns. The method is applied for the design of two non-reactive systems: a) Benzene-Toluene ideal system and b) Ethanol-Water non-ideal system. A reactive distillation column considering the isomerization of n-butane in the presence of an inert compound is designed. The optimal thermal feed condition obtained through the maximum separation efficiency guarantees that the final designs obtained correspond to the minimum energy requirements for the design target of separation. (C) 2019 Elsevier Ltd. All rights reserved.
机译:已经开发出一种用于非反应性和反应性蒸馏塔设计的简单吉布斯能量驱动力方法。基于二元驱动力的概念和平衡吉布斯能量的计算,提出了非反应性蒸馏塔(NRDC)和反应性蒸馏塔(RDC)的系统设计程序。该设计方法利用驱动力值与平衡吉布斯能量之间的联系来确定级数,最佳进料位置,塔顶和塔底所需的热量以及最小的回流比。由于达到了最大的热力学效率,最终的设计保证了最佳的操作。最大热力学效率标准等于稳定运行蒸馏塔所需的最小熵条件。该方法用于两个非反应性系统的设计:a)苯-甲苯理想系统和b)乙醇-水非理想系统。设计了一种在惰性化合物存在下考虑正丁烷异构化的反应蒸馏塔。通过最大分离效率获得的最佳热进料条件保证了最终设计符合分离设计目标的最低能耗要求。 (C)2019 Elsevier Ltd.保留所有权利。

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