Lithium extraction from salt‐lake brines using dicationic ionic liquids: ePC ‐ SAFT modeling and molecular mechanisms
作者:Gangqiang Yu, Yufeng Li, Xinhe Zhang, Iman Bahrabadi Jovein, Paul Figiel, Biaohua Chen, Yuanhui Ji, Gabriele Sadowski, Christoph Held · 发表于:AIChE Journal · 年份:2025 · DOI:10.1002/aic.18907 · 被引用次数:9 · 研究领域:Extraction and Separation Processes、Ionic liquids properties and applications、Radioactive element chemistry and processing
Abstract This work proposes a novel strategy for enhancing Li + extraction from salt‐lake brines with the high Mg 2+ /Li + ratio using dicationic ionic liquid (DIL)‐based extractants. The ternary mixture of the DIL [DOMIM][Tf 2 N] 2 , tributyl phosphate (TBP), and dichloromethane (DCM) as a diluent achieved a higher single‐stage Li + extraction efficiency (86.40%) and separation selectivity of Li + /Mg 2+ (302.37) compared with the ternary mixture based on monocationic IL [OMIM][Tf 2 N] instead of the DIL. The high Li + extraction performance could be maintained over five‐cycle regeneration. Electrolyte perturbed‐chain statistical associating fluid theory was used to qualitatively predict activity coefficients of Li + and Mg 2+ in the organic phase of the so‐called “organic–inorganic complex strong electrolyte system.” The DIL‐enhanced extraction mechanisms at the molecular level (i.e., Li + extracted the form of 2Li + + 3TBP + 2[Tf 2 N] − complex) was revealed by slope analysis spectrum characters and quantum chemical calculations. This study provides guidance for the rational design of new IL‐based extractants for high‐efficiency Li + extraction from brines.