首页> 外文期刊>ACS Sustainable Chemistry & Engineering >CO2-Assisted Back-Extraction Method for Ionic Liquid Biphasic Systems
【24h】

CO2-Assisted Back-Extraction Method for Ionic Liquid Biphasic Systems

机译:离子液体双相系统的CO2辅助反萃取方法

获取原文
获取原文并翻译 | 示例
           

摘要

Ionic liquid (IL)-mediated extraction methods have drawn much attention due to their reduced environmental impact and improved extraction efficiencies compared to traditional separation methods. However, one long-standing challenge in the application of IL-based extraction processes is the difficulty in recovering high-boiling solutes from the IL phase due to the negligible vapor pressure of ILs and the strong interaction between solutes and ILs. In this study, a new CO2- assisted back-extraction method was developed for the recovery of high-boiling solutes from the IL phase based on the reversible chemical absorption and/or strong physical interaction of CO2 with ILs. We found the distribution coefficient (D) of the typical solute δ-tocopherol in the [P4444][Pro]/DMSO-hexane biphasic system significantly decreased from 10.38 to 2.42 after the introduction of CO2, which greatly reduced the required solvent consumption and the number of back-extractions required for tocopherol recovery. For example, the number of back-extractions required for the recovery of 90% of the tocopherols from the [P4444][Pro]/DMSO-hexane biphasic phase decreased from 24 to 5 with the aid of CO2 absorption, along with a decrease in solvent consumption by approximately 80%. The effects of the structure of the IL, the loading of CO2, the type of cosolvents, and the temperature of the CO2-assisted back-extraction processes were investigated in this study. This proof-of-concept study demonstrates the great potential of CO2-assisted back-extraction as a green method for the efficient recovery of high-boiling solutes from the IL phase.
机译:与传统的分离方法相比,离子液体(IL)介导的提取方法因其减少的环境影响和更高的提取效率而备受关注。然而,在基于IL的提取方法中,一个长期的挑战是由于IL的蒸气压可忽略,并且溶质与IL之间的相互作用强,因此很难从IL相中回收高沸点的溶质。在这项研究中,基于CO2与ILs的可逆化学吸收和/或强物理相互作用,开发了一种新的CO2辅助反萃取方法,用于从IL相中回收高沸点溶质。我们发现,引入CO2后,[P4444] [Pro] / DMSO-己烷双相体系中典型溶质δ-生育酚的分布系数(D)从10.38显着降低至2.42,这大大降低了所需的溶剂消耗并降低了生育酚回收所需的反萃取次数。例如,借助CO2吸收,从[P4444] [Pro] / DMSO-己烷双相中回收90%生育酚所需的反萃取次数从24减少到5。溶剂消耗减少约80%。本研究研究了IL的结构,CO2的载量,助溶剂的类型以及CO2辅助反萃取过程的温度的影响。这项概念验证研究证明了CO2辅助反萃取作为从IL相中高效回收高沸点溶质的绿色方法的巨大潜力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号