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首页> 外文期刊>Journal of Chemical Engineering of Japan >Separation of Binary Azeotrope Mixture via Pressure-Swing Distillation with Heat Integration
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Separation of Binary Azeotrope Mixture via Pressure-Swing Distillation with Heat Integration

机译:通过热交换的压力波动蒸馏分离二元共沸混合物

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This paper addresses the addition of internal heat integration to the pressure-swing distillation (PSD) process used in the separation of binary pressure-sensitive azeotropes. The primary step in the process design is to determine the pressure elevation from the low- to high-pressure distillation columns, followed by the design of internal heat integration between the two distillation columns. A general procedure is suggested and illustrated through the separation of an acetonitrile-water binary mixture, which forms pressure-sensitive minimum-boiling azeotropes. Comparisons are made between the conventional and the internally heat integrated PSD processes. It is demonstrated that breaking pressure-sensitive azeotropic mixtures can be made more economical than the current practice with conventional PSD processes. However, the degree of cost reduction is strongly dependent upon the properties of the mixtures to be separated.
机译:本文讨论了在二元压敏共沸物分离中使用的变压蒸馏(PSD)过程中增加了内部热集成。工艺设计的第一步是确定从低压蒸馏塔到高压蒸馏塔的压力升高,然后设计两个蒸馏塔之间的内部热集成。通过分离乙腈-水二元混合物(其形成压敏的最小沸点共沸物),提出并举例说明了一般程序。比较了传统的和内部热集成的PSD工艺。事实证明,与传统的PSD工艺相比,打破压敏共沸混合物的经济性更高。但是,成本降低的程度在很大程度上取决于待分离混合物的性质。

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