CIESC Journal ›› 2025, Vol. 76 ›› Issue (5): 2241-2250.DOI: 10.11949/0438-1157.20241262

• Separation engineering • Previous Articles     Next Articles

Crystal structure of xylene·CuAlCl4 and measurement of solid-liquid equilibrium of binary system

Han LIU(), Jiaxin CUI, Mengfan YIN, Tao ZHENG, Rui ZHANG(), Xianghai MENG, Zhichang LIU, Haiyan LIU, Chunming XU   

  1. State Key Laboratory of Heavy Oil Processing, China University of Petroleum, Beijing 102249, China
  • Received:2024-11-08 Revised:2024-12-20 Online:2025-06-13 Published:2025-05-25
  • Contact: Rui ZHANG

CuAlCl4-二甲苯络合物晶体结构及二元固液相平衡测定

刘晗(), 崔家馨, 殷梦凡, 郑涛, 张睿(), 孟祥海, 刘植昌, 刘海燕, 徐春明   

  1. 中国石油大学(北京)重质油全国重点实验室,北京 102249
  • 通讯作者: 张睿
  • 作者简介:刘晗(1996—),女,博士研究生,421998678@qq.com
  • 基金资助:
    国家自然科学基金项目(22021004)

Abstract:

Para-xylene (PX) is an important basic chemical raw material. The separation of PX from mixed xylenes (mixture of meta-xylene (MX), ortho-xylene (OX), and PX) is a prerequisite for its utilization. The complex crystallization method, combining complexation with crystallization, has great potential for separating PX from mixed xylenes. Three new crystals including 2PX·CuAlCl4, 2MX·CuAlCl4, and 2OX·CuAlCl4 were obtained by complexing the bimetallic halide CuAlCl4 with xylene isomers by π-complexation as a complexing agent. The melting points of these crystals were 41.0℃, 15.1℃ and 55.7℃, respectively. The solid-liquid equilibrium data of the binary systems 2PX·CuAlCl4/2MX·CuAlCl4 and 2PX·CuAlCl4/2OX·CuAlCl4 were further determined. Both were simple eutectic systems. The mole fraction of 2PX·CuAlCl4 at the eutectic point was 0.3969 and 0.6107, and the corresponding temperatures were -3.36℃ and 14.83℃, which were 49.2℃ and 47.7℃ higher than those of the pure arene binary system, respectively. The temperature required for the crystallization operation was greatly increased. The phase equilibrium data were fitted by the ideal solution model, and the results showed that the model could be used to relate the solid-liquid phase equilibrium of the binary system. This provided a thermodynamic basis for the separation of mixed xylenes by bimetallic halide complex crystallization. A purity of 98% PX was obtained through initial crystallization, verifying the feasibility of the method.

Key words: bimetallic halides, para-xylene, π complexation, complex crystallization, solid-liquid phase diagram

摘要:

对二甲苯(PX)作为基本化工原料,将其从二甲苯混合物中分离是化工利用的前提。络合结晶法通过耦合络合与结晶过程,对于分离相近沸点混合物具有很高的潜力。以双金属卤化物CuAlCl4作为络合剂与二甲苯通过π-络合得到三种新晶体2PX·CuAlCl4、2MX·CuAlCl4和2OX·CuAlCl4,熔点分别为41.0、15.1和55.7℃。测定了2PX·CuAlCl4/2MX·CuAlCl4和2PX·CuAlCl4/2OX·CuAlCl4二元体系的固液平衡数据,均为简单低共熔体系,低共熔点处2PX·CuAlCl4摩尔分数分别为0.3969和0.6107,对应温度为-3.36℃和14.83℃,与纯芳烃二元体系相比分别提高了49.2℃和47.7℃,结晶操作所需温度大幅度提升。采用理想溶液模型进行拟合,发现该模型可较好地关联固液平衡数据,为双金属卤化物络合结晶分离混合二甲苯提供了热力学基础。通过初步结晶分离得到98%纯度的PX,证明了该方法的可行性。

关键词: 双金属卤化物, 对二甲苯, π络合, 络合结晶, 固液相图

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