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使用新型双金属离子液体从液相烯烃/烷烃混合物中高效提取烯烃

Efficient Extraction of Olefin from Liquid-Phase Olefin/Alkane Mixtures Using Novel Bimetallic Ionic Liquids.

作者信息

Cui Jiaxin, Yin Mengfan, Zheng Tao, Liu Han, Zhang Rui, Liu Haiyan, Liu Zhichang, Xu Chunming, Meng Xianghai

机构信息

State Key Laboratory of Heavy Oil Processing, China University of Petroleum, Beijing 102249, China.

出版信息

ACS Omega. 2025 Apr 25;10(17):17744-17757. doi: 10.1021/acsomega.5c00224. eCollection 2025 May 6.

Abstract

The separation of olefins and alkanes is beneficial for resource utilization of oil products, and liquid-liquid extraction is an important method of liquid-phase olefin/alkane separation. This study investigated the feasibility of bimetallic ionic liquids for the extraction of olefin from liquid-phase olefin/alkane mixtures using 1-hexene/-hexane as a model hydrocarbon mixture. The bimetallic ionic liquids were first synthesized from different metal chlorides (ZnCl, SnCl, AlCl, FeCl) and CuCl with triethylamine hydrochloride. This newly prepared Fe-Cu bimetallic ionic liquid [EtNH]Cl-0.47FeCl-0.8CuCl had a good extraction performance, and the extraction selectivity could reach up to 8.41, which was about 4 times that of the organic solvent such as -formylmorpholine and γ-butyrolactone used in the industry. The liquid-liquid equilibrium (LLE) of 1-hexene/-hexane and Fe-Cu bimetallic ionic liquid system was investigated under different extraction temperatures, extraction times, and mass ratios of extractant to feed. Through 5 recycling experiments, the extraction selectivity decreased by less than 2%, and the characteristic peaks of the recovered bimetallic ionic liquids were unchanged by IR analysis, which proved that the bimetallic ionic liquid had excellent reversibility. Furthermore, the mechanism of 1-hexene extraction was investigated by quantum chemistry calculation and Raman spectroscopy, and there was π-complexation between Cu and 1-hexene. Then, the charge density of Cu in bimetallic ionic liquids was larger than that of cuprous-based ionic liquids. The results revealed that the addition of FeCl could activate Cu and weaken the Cu-Cl bond, enhancing the ability of the bimetallic ionic liquid to extract 1-hexene. Therefore, [EtNH]Cl-0.47FeCl-0.8CuCl was a good potential extractant during the efficient extraction of 1-hexene.

摘要

烯烃与烷烃的分离有利于石油产品的资源利用,液液萃取是液相烯烃/烷烃分离的重要方法。本研究以1-己烯/正己烷作为模型烃类混合物,考察了双金属离子液体从液相烯烃/烷烃混合物中萃取烯烃的可行性。双金属离子液体首先由不同的金属氯化物(ZnCl、SnCl、AlCl、FeCl)和CuCl与盐酸三乙胺合成。新制备的Fe-Cu双金属离子液体[EtNH]Cl-0.47FeCl-0.8CuCl具有良好的萃取性能,萃取选择性可达8.41,约为工业上使用的有机溶剂如N-甲酰基吗啉和γ-丁内酯的4倍。研究了不同萃取温度、萃取时间和萃取剂与进料质量比下1-己烯/正己烷与Fe-Cu双金属离子液体体系的液液平衡(LLE)。通过5次循环实验,萃取选择性下降不到2%,红外分析表明回收的双金属离子液体特征峰未变,证明双金属离子液体具有优异的可逆性。此外,通过量子化学计算和拉曼光谱研究了1-己烯的萃取机理,发现Cu与1-己烯之间存在π络合作用。而且,双金属离子液体中Cu的电荷密度大于亚铜基离子液体中的电荷密度。结果表明,添加FeCl可活化Cu并削弱Cu-Cl键,增强双金属离子液体萃取1-己烯的能力。因此,[EtNH]Cl-0.47FeCl-0.8CuCl在高效萃取1-己烯过程中是一种良好的潜在萃取剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6337/12060059/8f930232e575/ao5c00224_0001.jpg

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