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Fundamental and applied studies of metal ion extraction by crown ethers into imidazolium-based room temperature ionic liquids.

机译:冠醚将金属离子萃取到咪唑基室温离子液体中的基础研究和应用研究。

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摘要

Growing recognition of the extraordinary physicochemical properties and unique solvation environment afforded by ionic liquids (ILs) has drawn increasing attention to these solvents as media for chemical separations. Until recently, little was known about how ionic liquids behave as solvents in this application, particularly in the extraction of ionic solutes such as metal ions. In contrast to the single pathway observed using molecular diluents (i.e., neutral complex extraction), metal ion extraction in these systems has been shown to proceed through as many as three competing pathways over a wide range of conditions. Despite this added complexity, the favorable physicochemical characteristics of the ionic liquids (e.g., non-flammability and unprecedented structural tunability), along with the higher extraction efficiencies and selectivities sometimes observed with these solvents, suggest that they offer significant potential in various separations applications on both the industrial and analytical scale. This potential will not be fully realized, however, without an improved understanding of the fundamental aspects of metal ion partitioning between ionic liquids and aqueous solutions. The objective of this work, therefore, is to clarify the factors controlling the balance among the various partitioning pathways observed when these solvents are employed in extraction.;To this end, a series of N,N'-dialkylimidazolium-based ionic liquids have been evaluated as substitutes for the conventional organic solvents (i.e., n-alcohols) frequently employed in the extraction of alkali and alkaline earth cations from acidic aqueous phases by crown ethers. Insight into the fundamental aspects of metal ion extraction in these systems has been obtained by analysis of the acid and extractant dependencies of metal ion distribution ratios, measurements of the IL phase water content and of the solubility of the ionic liquids in the aqueous phase, determination of the partitioning of inorganic ions, and consideration of the relative hydrophobicities of the ionic liquids employed. To assess the potential practical utility of these ionic liquids as extraction solvents, these studies were aimed at obtaining information about the relationship between solvent structure and performance as solvents in the extraction of alkali and alkaline earth metal ions. The results obtained represent an important step in the development of guidelines for the rational design of ionic liquid-based metal ion separation systems.
机译:离子液体(ILs)提供的非凡的理化性质和独特的溶剂化环境日益受到人们的关注,这引起了人们对这些溶剂作为化学分离介质的日益关注。直到最近,人们对离子液体在该应用中如何作为溶剂的了解还很少,特别是在诸如金属离子之类的离子溶质的提取中。与使用分子稀释剂(即中性络合物萃取)观察到的单一途径相反,这些系统中的金属离子萃取已被证明可在多种条件下通过多达三个竞争途径进行。尽管增加了复杂性,但离子液体的良好理化特性(例如,不可燃性和前所未有的结构可调性),以及有时用这些溶剂观察到的更高的萃取效率和选择性,表明它们在各种分离应用中具有巨大的潜力。工业和分析规模。但是,如果不能更好地理解离子液体和水溶液之间金属离子分配的基本方面,则无法充分实现这种潜力。因此,这项工作的目的是弄清控制在萃取中使用这些溶剂时观察到的各种分配途径之间平衡的因素。为此,一系列基于N,N'-二烷基咪唑鎓的离子液体评估可替代传统有机溶剂(即正醇)的替代品,这些有机溶剂通常是通过冠醚从酸性水相中萃取碱金属和碱土金属阳离子的。通过分析金属离子分布比率对酸和萃取剂的依赖性,IL相水含量的测量以及离子液体在水相中的溶解度的测定,测定,可以深入了解这些系统中金属离子萃取的基本方面。无机离子的分配,并考虑所用离子液体的相对疏水性。为了评估这些离子液体作为萃取溶剂的潜在实用性,这些研究旨在获得有关溶剂结构与碱和碱土金属离子萃取中作为溶剂性能之间关系的信息。获得的结果代表了合理设计基于离子液体的金属离子分离系统指南的重要一步。

著录项

  • 作者

    Hawkins, Cory.;

  • 作者单位

    The University of Wisconsin - Milwaukee.;

  • 授予单位 The University of Wisconsin - Milwaukee.;
  • 学科 Chemistry General.;Chemistry Inorganic.;Chemistry Analytical.
  • 学位 Ph.D.
  • 年度 2012
  • 页码 260 p.
  • 总页数 260
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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