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Enhanced separation of maximum boiling azeotropic mixtures with extractive heterogeneous-azeotropic distillation

机译:用萃取异质共沸蒸馏增强最大沸点共沸混合物的分离

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In the separation industry the extractive heterogeneous-azeotropic distillation (EHAD) is a new and powerful innovation, that is capable of making the separation of highly non-ideal mixtures feasible and economical. In the last years there has been much attention paid to the separation of the minimum boiling homogeneous azeotropes. Although maximum boiling azeotropes are fewer in numbers than the minimum boiling ones but their separation is more complicated but it could be solved with the EHAD, too. Since EHAD is not limited to the separation of minimum boiling azeotropes, the separation of the maximum boiling azeotropes is studied in this work. Our work is motivated by industrial problems because there are such maximum boiling azeotropes in the liquid wastes of the fine chemical industry. The separation of highly non-ideal Water-Acetone-Chloroform-Methanol and Water-Ethyl Acetate-Chloroform-Ethanol quaternary mixtures are investigated and optimized in professional flowsheet simulator environment. Total Annual Costs are also determined. The purity requirement is 99.5 m/m% for Chloroform and the bottom product should be as clear as possible in water so that less liquid organic waste has to be incinerated. It is also an important merit of the EHAD that the chemicals in the distillate can be usually reused supporting sustainability. Different solutions for the separations supplemented with heat integration are examined. On the basis of the computer simulations and the experimental verification it can be concluded, the first time on the literature, that the separation efficiency of EHAD is superior also for the separation of the maximum boiling azeotrope mixtures. (C) 2019 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:在分离工业中,萃取的异质 - 共沸蒸馏(EHAD)是一种新的和强大的创新,能够分离高度非理想的混合物可行和经济的。在过去几年中,由于最小沸腾均相共沸物的分离而有很多关注。虽然最大沸腾的共沸物的数量比最小沸腾倍数较少,但它们的分离更复杂,但也可以用ehad解决。由于Ehad不限于最小沸腾共沸物的分离,因此在这项工作中研究了最大沸腾共沸物的分离。我们的作品受到产业问题的推动,因为精细化工工业的液体废物中具有如此最大的沸腾共沸物。研究和优化了高度非理想的水 - 丙酮 - 氯仿 - 甲醇和水 - 乙酸乙酯 - 氯仿 - 乙醇季混合物的分离,并在专业的流程模拟器环境中进行了优化。还确定了年度总费用。氯仿的纯度要求为99.5 m / m%,底部产品应尽可能清晰,因此必须滴注较少的液体有机废物。它也是蒸馏液中的化学物质的重要优点,通常可以重复使用支持可持续性。检查了补充热集成的分离的不同解决方案。在计算机模拟和实验验证的基础上,可以在文献中首次结束,即Ehad的分离效率也是优越的,也用于分离最大沸腾的共沸混合物。 (c)2019化学工程师机构。 elsevier b.v出版。保留所有权利。

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