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首页> 外文期刊>The Korean journal of chemical engineering >A simulation study on selection of optimized process for azeotropic separation of methanol and benzene: Internal heat integration and economic analysis
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A simulation study on selection of optimized process for azeotropic separation of methanol and benzene: Internal heat integration and economic analysis

机译:甲醇和苯共沸分离优化工艺选择的模拟研究:内部热集成与经济分析

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摘要

This work provides an insight into the separation of azeotropic mixtures by using two different techniques: pressure swing distillation and extractive distillation. Both methods are used to separate an azeotropic mixture of methanol and benzene. This mixture exhibits a minimum boiling azeotrope at temperature 57.97 A degrees C and pressure 1 bar with mole fractions of 0.61 and 0.39 for methanol and benzene, respectively. However, the azeotropic point in methanol and benzene mixture is pressure sensitive, which can be shifted by changing pressure with a process called pressure swing distillation. Extractive distillation with suitable solvent is another method to separate such kind of mixture. Both methods are rigorously simulated and optimized for minimum heat duties. Internal heat integration is applied too for increasing energy efficiency. New optimization techniques are carried out with process simulator Aspen HYSYS V8.4 and results reveal the best method for separation of methanol and benzene azeotropic mixture.
机译:这项工作通过使用两种不同的技术:变压蒸馏和萃取蒸馏,提供了共沸混合物分离的见解。两种方法都用于分离甲醇和苯的共沸混合物。该混合物在57.97 A的温度和1 bar的压力下显示出最小沸腾的共沸物,对于甲醇和苯,摩尔分数分别为0.61和0.39。但是,甲醇和苯混合物中的共沸点对压力敏感,可以通过变压蒸馏过程改变压力来改变它的位置。用合适的溶剂萃取蒸馏是分离这种混合物的另一种方法。两种方法都经过严格模拟和优化,以实现最小的热负荷。内部热集成也可用于提高能源效率。使用过程仿真器Aspen HYSYS V8.4进行了新的优化技术,结果揭示了分离甲醇和苯共沸混合物的最佳方法。

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