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Evaluation of the accuracy of modelling the separation of highly non-ideal mixtures: extractive heterogeneous-azeotropic distillation

机译:评价高度非理想混合物分离的模拟准确性:萃取异质 - 共沸蒸馏

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The distillation based separation can be extremely complex if highly non-ideal mixtures are to be separated. In spite of different successfully applied unit operations there is still possibility to improve distillation technique and widen its toolbar. A new improvement in this area is the introduction of the extractive heterogeneous-azeotropic distillation (EHAD). This unit operation includes the merits of the extractive and heterogeneous-azeotropic distillations in one unit without an extra material addition. In spite of the complexity of this unit operation it can be efficiently applied and complex separation technologies can be simplified with its application. The separations of ternary and quaternary mixtures from the fine chemical industry show both in the modelled and the experimental results that the extractive heterogeneous-azeotropic distillation is an efficient tool of this area. Demonstrating the accuracy of EHAD, the separation of methanol-ethyl-acetate-water and ethanol-ethyl-acetate-water mixtures are examined and the EHAD is compared with conventional distillation techniques. These separation processes are rigorously modelled and optimized with dynamic optimization method in professional flowsheeting environment. The objective function is the total annual cost but the energy consumption is also investigated. The modelling results are verified with laboratory experiments, too. It can be concluded that the extractive heterogeneous-distillation is a capable method for the separation of these highly non-ideal mixtures.
机译:如果要分离高度非理想的混合物,则基于蒸馏的分离可以是非常复杂的。尽管有不同成功的应用单元操作,但仍有可能提高蒸馏技术并扩大其工具栏。该领域的新改进是引入萃取异质 - 共沸蒸馏(EHAD)。该单元操作包括在一个单元中的萃取和非均相 - 共沸蒸馏的优点,而没有额外的材料加入。尽管本机操作的复杂性,但它可以有效地应用,并且可以通过其应用简化复杂的分离技术。从细化学工业中的三元和四月混合物的分离在模型和实验结果中显示出萃取的非均相 - 共沸蒸馏是该区域的有效工具。展示EHAD的准确性,检查甲醇 - 乙基 - 乙酸乙酯 - 水和乙醇 - 乙酸乙酯 - 水混合物的分离,与常规蒸馏技术进行比较。这些分离过程在专业流程环境中以动态优化方法严格建模和优化。目标职能是年度总成本,但也调查了能源消耗。使用实验室实验验证了建模结果。可以得出结论,萃取异质蒸馏是一种能够分离这些高度非理想的混合物的方法。

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