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Molecular tracking: A novel approach for multicomponent distillation column design

机译:分子跟踪:一种多组分蒸馏塔设计的新方法

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This paper proposes a new systematic methodology to design a distillation column with middle products (side-draw) for ideal ternary mixtures, where the middle boiling component is present at trace concentrations.The method uses a molecular tracking concept, which uses a probability function based on the thermodynamic properties of the system.The probability function expresses the possibility of upward/downward movement of a single molecule on a tray inside a column.The advantage of this method compared to other existing methods is in its capability to quickly and efficiently provide a feasible solution without relying on rigorous optimization or trial/error approaches.In addition, the inherently graphical nature of the methodology allows engineers to get an intuitive understanding of the movement of the often-complicated middle product.The methodology is demonstrated on an ideal ternary mixture of benzene and p-xylene with toluene as the trace middle boiler, where the results obtained through the molecular tracking were validated against a rigorous process simulation.
机译:本文提出了一种新的系统方法,可以设计具有中产量(侧拉)的蒸馏塔,用于理想的三元混合物,其中中间沸点组分以痕量浓度存在。该方法使用分子跟踪概念,其使用概率函数基于概率在系统的热力学性质上。概率函数表达单个分子在塔内托盘上的向上/向下移动的可能性。该方法与其他现有方法相比的优点是其能力,以快速有效地提供a不可行的解决方案而不依赖于严格的优化或试验/错误方法。此外,该方法的固有图形性质使工程师能够直观地了解常用的中产量的运动。在理想的三元混合物上证明了方法。方法苯和二甲苯与甲苯作为痕量锅炉,得到的结果通过分子跟踪验证了严格的过程模拟。

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