石油化工设计 ›› 2026, Vol. 43 ›› Issue (1): 28-33.

• 工程应用 • 上一篇    下一篇

液液萃取+精馏分离正己烷/丙酮共沸物的研究

廖明森   

  1. 中国石化工程建设有限公司,北京 100101
  • 出版日期:2026-02-25 发布日期:2026-02-25
  • 作者简介:廖明森,男,2014年毕业于天津大学化学工程专业,工学硕士,高级工程师,现从事炼化工艺的工程设计和新材料的技术开发工作,已发表论文4篇。联系电话:010-848777752;E-mail:liaomingsen.sei@sinopec.com
  • 基金资助:
    重点新材料及应用国家科技重大专项(2024ZD0603000)

Research on Liquid-liquid Extraction and Distillation for Separation of n-Hexane/Acetone Azeotrope

 Liao Mingsen   

  1. SINOPEC Engineering Incorporation, Beijing, 100101
  • Online:2026-02-25 Published:2026-02-25

摘要:

利用Aspen Plus V11软件,采用液液萃取+普通精馏耦合的方法,以水为萃取剂模拟研究正己烷/丙酮共沸物的分离过程。先对萃取过程的理论板数、溶剂比、 萃取温度、萃取剂残留等操作参数进行研究;再优化对精馏塔的进料板位置、总板数和塔顶操作压力,最后优化耦合分离正己烷/丙酮过程中循环萃取剂温度、萃取塔塔顶正己烷回收率,以实现系统操作能耗最低。模拟研究结果表明:萃取塔理论板数为3,溶剂比2.31,循环萃取剂温度15℃,精馏塔理论板数35,进料板33,回流比2.66,塔顶操作压力0.01MPa(表)时,耦合系统的操作能耗最低。与采用乙二醇甲醚进行萃取精馏分离相比,能耗降低19.5%,是环境友好、能耗更低的分离方法。

关键词: 正己烷/丙酮共沸物, 液液萃取, 精馏, 操作优化

Abstract: A simulation study was conducted on the separation process of n-hexane/acetone azeotrope using a coupled method of liquid-liquid extraction and conventional distillation, with water as the extractant and Aspen Plus V11 as the simulation software. First, the operating parameters of the extraction process, such as the number of theoretical plates, solvent ratio, extraction temperature, and residual extractant, were investigated. Further optimization was performed on the feed plate location, total number of plates, and overhead operating pressure of the distillation column. Finally, the temperature of the circulating extractant and the recovery rate of n-hexane at the top of the extraction column were optimized to minimize the operating energy consumption of the coupled separation process for n-hexane/acetone. The simulation results showed that the operating energy consumption of the coupled system was minimized when the extraction column had 3 theoretical plates, a solvent ratio of 2.31 and a circulating extractant temperature of 15°C, and the distillation column had 35 theoretical plates and 33 feed plates, a reflux ratio of 2.66 and an overhead operating pressure of 0.01 MPag. Compared to using ethylene glycol monomethyl ether for extractive distillation to separate the azeotrope, this method can reduce the energy consumption by 19.5%, making it an environmentally friendly and more energy-efficient separation method.

Key words: n-hexane/acetone azeotrope, liquid-liquid extraction, distillation, operation optmization