Nasir Shah Syed, Shah Mansoor Ul Hassan, Mutalib Mohamed Ibrahim Abdul, Lethesh Kallidanthiyil Chellappan, Leveque Jean-Marc, Ullah Nehar, Suleman Humbul
Centre of Research in Ionic Liquids, Universiti Teknologi PETRONAS, Bandar Seri Iskandar, Perak 32610, Malaysia.
Department of Energy Engineering, Faculty of Mechanical and Aeronautical Engineering, University of Engineering and Technology Taxila, Rawalpindi 47080, Pakistan.
ACS Omega. 2022 Jul 26;7(31):27479-27489. doi: 10.1021/acsomega.2c02514. eCollection 2022 Aug 9.
Ionic liquids (ILs) show remarkable performance in enhancing the naphthenic acid extraction efficiency and decreasing the extraction time. However, the ultrasonic-assisted IL-based extraction of naphthenic acid is merely addressed previously. Therefore, this study investigated the impact of essential ultrasonic parameters, including amplitude and time, on naphthenic acid extraction using different ILs, and the system was optimized for maximum extraction. The IL 1,8-diazobicyclo[5.4.0]-undec-7-ene (DBU) with thiocyanate anions revealed the highest efficiency in extracting naphthenic acid from a model oil (dodecane) at optimized conditions, and the experimental liquid-liquid equilibrium data were obtained at atmospheric pressure for the mixture of dodecane, [DBU], thiocyanate, and naphthenic acid. In addition, the influence of the chain length of the cation (hexyl, octyl, or decyl) on the extraction efficiency was also evaluated by determining the distribution coefficients, and the conductor-like screening model for real solvents (COSMO-RS) study was carried out at infinite dilution. It was found that [DBU-Dec] [SCN] gives the best extraction efficiency and has a distribution coefficient of 9.2707 and a performance index of 49.48. Based on these values, ILs can be ordered as follows: [DBU-Dec] [SCN] > [DBU-Oct][SCN] > [DBU-Hex][SCN] in the decreasing order of performance index 49.48, 41.58, and 28.13. Moreover, non-random two liquid and Margules thermodynamic models were employed to investigate the interaction parameters between the components. Both models showed excellent agreement with the experimental results and could successfully be used for ultrasonic-assisted IL extraction of naphthenic acid.
离子液体(ILs)在提高环烷酸萃取效率和缩短萃取时间方面表现出卓越性能。然而,此前仅涉及基于离子液体的超声辅助环烷酸萃取。因此,本研究考察了包括振幅和时间在内的关键超声参数对使用不同离子液体萃取环烷酸的影响,并对该体系进行了优化以实现最大萃取量。含硫氰酸根阴离子的1,8 - 二氮杂双环[5.4.0] - 十一碳 - 7 - 烯(DBU)离子液体在优化条件下从模型油(十二烷)中萃取环烷酸的效率最高,且在常压下获得了十二烷、[DBU]、硫氰酸盐和环烷酸混合物的实验液 - 液平衡数据。此外,还通过测定分配系数评估了阳离子链长(己基、辛基或癸基)对萃取效率的影响,并在无限稀释条件下开展了真实溶剂的导体类筛选模型(COSMO - RS)研究。结果发现,[DBU - Dec][SCN]的萃取效率最佳,分配系数为9.2707,性能指数为49.48。基于这些数值,离子液体按性能指数49.48、41.58和28.13的降序排列如下:[DBU - Dec][SCN] > [DBU - Oct][SCN] > [DBU - Hex][SCN]。此外,采用非随机双液体和Margules热力学模型研究了各组分之间的相互作用参数。两种模型均与实验结果吻合良好,可成功用于离子液体超声辅助萃取环烷酸。