Chemistry and Chemical Engineering Research Center of Iran, P.O. Box, Tehran, 14335-186, Iran.
Environ Sci Pollut Res Int. 2024 Aug;31(39):52523-52539. doi: 10.1007/s11356-024-34617-8. Epub 2024 Aug 17.
Solvent extraction of lithium from brine with a high Mg/Li ratio was investigated. Tributyl phosphate (TBP), ferric chloride (FeCl), and kerosene were used as the extractant, co-extractant, and diluent, respectively. The mechanism of the extraction process was studied by LC-MS, UV-VIS, and FT-IR analyses. Effects of organic to aqueous phase volume ratio (O/A) on the extraction efficiency and separation factor were optimized. The effects of major parameters including Fe/Li molar ratio, hydrochloric acid concentration, and TBP volume percent as well as their interactions on the lithium extraction efficiency were evaluated using central composite design. These major parameters represent interactions within their selected ranges. While the lithium extraction efficiency as the response value in the experimental design showed the most sensitivity to the acid concentration, the separation factors were more affected by alteration in the TBP volume percent with the fixed optimum values of the other major parameters. The highest one-stage extraction efficiency of 76.3% and Li/Mg separation factor of 304 were obtained at the optimum conditions of Fe/Li = 2.99, HCl = 0.01 M, and TBP = 55%. The Mg/Li mass ratio could be significantly reduced from 192 in the feed to 1.5 in the stripping solution. Based on the findings, a schematic diagram of the process including extraction, stripping, and saponification steps was proposed.
本文研究了高镁锂比卤水的溶剂萃取法。三丁基磷酸(TBP)、氯化铁(FeCl)和煤油分别用作萃取剂、共萃取剂和稀释剂。通过 LC-MS、UV-VIS 和 FT-IR 分析研究了萃取过程的机理。优化了有机相与水相体积比(O/A)对萃取效率和分离因子的影响。采用中心复合设计评价了主要参数(包括 Fe/Li 摩尔比、盐酸浓度、TBP 体积百分比及其相互作用)对锂萃取效率的影响。这些主要参数代表了在所选择范围内的相互作用。虽然实验设计中作为响应值的锂萃取效率对酸浓度最敏感,但分离因子受 TBP 体积百分比变化的影响更大,其他主要参数的固定最优值。在 Fe/Li=2.99、HCl=0.01 M 和 TBP=55%的最佳条件下,获得了 76.3%的单级萃取效率和 304 的 Li/Mg 分离因子。进料中的 Mg/Li 质量比可以从 192 显著降低到 1.5,进入汽提溶液。根据研究结果,提出了包括萃取、汽提和皂化步骤的工艺示意图。