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在基于咪唑鎓的离子液体中使用二甘醇酰胺萃取剂进行稀土元素的萃取和回收。

Using Diglycolamide Extractants in an Imidazolium-Based Ionic Liquid for Rare Earth Element Extraction and Recovery.

作者信息

Hsieh Shu-An, Ash Tamalika, Windus Theresa L, Jing Dapeng, Prozorov Tanya, Anderson Jared L

机构信息

Ames National Laboratory, U.S. Department of Energy, Ames, Iowa 50011, United States.

Department of Chemistry, Iowa State University, Ames, Iowa 50011, United States.

出版信息

ACS Omega. 2024 Sep 10;9(38):40134-40144. doi: 10.1021/acsomega.4c06091. eCollection 2024 Sep 24.

Abstract

Growing demands for rare earth elements (REEs) have prompted sustainability concerns worldwide. Given the need for sustainable extraction methods amidst REEs, ionic liquids (ILs) have been investigated as tunable extraction substitutes for conventional organic solvents, offering negligible volatility and diverse physical and chemical properties. Recent reports have shown that the introduction of extractants, like N,N,N',N'-tetraoctyldiglycolamide (TODGA) or N,N-dioctyldiglycolamic acid (DODGAA), into ILs can provide high selectivity and affinity for REE capture. Precipitate formation has been observed in IL-extractant systems across several studies; however, the molecular interactions that drive this phenomenon have yet to be explored. This study investigates the coordination environment in the precipitate formed between [Yb], DODGAA, and the 1-butyl-3-methylimidazolium hexafluorophosphate ([BMIM][PF ]) IL. The composition of the precipitate was confirmed using several spectroscopic techniques and revealed an underlying hydrogen bonding interaction between the fluorine atom of [PF ] anion and -OH of the Yb-DODGAA complex. Computational studies were also conducted to examine the coordination environment of the Yb-TODGA and Yb-DODGAA complexes. The binding affinity of the extractants toward [Yb] is analyzed by calculating the associated binding energy values. The results clearly show a stronger binding affinity of the extractants toward [Yb], supporting the observed high extraction efficiencies of DODGAA and TODGA.

摘要

对稀土元素(REEs)需求的不断增长引发了全球对可持续性的关注。鉴于在稀土元素开采中需要可持续的提取方法,离子液体(ILs)已被研究作为传统有机溶剂的可调谐提取替代品,其挥发性可忽略不计,且具有多样的物理和化学性质。最近的报道表明,将萃取剂,如N,N,N',N'-四辛基二甘醇酰胺(TODGA)或N,N-二辛基二甘醇酸(DODGAA)引入离子液体中,可以对稀土元素捕获提供高选择性和亲和力。在多项研究中,在离子液体-萃取剂体系中均观察到沉淀的形成;然而,驱动这一现象的分子相互作用尚未得到探索。本研究调查了[Yb]、DODGAA与1-丁基-3-甲基咪唑六氟磷酸盐([BMIM][PF ])离子液体之间形成的沉淀中的配位环境。使用几种光谱技术确定了沉淀的组成,并揭示了[PF ]阴离子的氟原子与Yb-DODGAA络合物的-OH之间潜在的氢键相互作用。还进行了计算研究以检查Yb-TODGA和Yb-DODGAA络合物的配位环境。通过计算相关的结合能值来分析萃取剂对[Yb]的结合亲和力。结果清楚地表明萃取剂对[Yb]具有更强的结合亲和力,支持了观察到的DODGAA和TODGA的高萃取效率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9f43/11425711/affee5d278e1/ao4c06091_0001.jpg

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