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Recovery of lithium from salt-lake brines using solvent extraction with TBP as extractant and FeCl3 as co-extraction agent

机译:使用TBP作为萃取剂和FECL3作为共萃取剂,从盐湖盐水中回收盐水溶液的回收率

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摘要

A novel extraction process to recover lithium ions from simulated salt lake brines with high Mg/Li ratio was developed. Tributyl phosphate (TBP), FeCl3 and diethyl succinate were used as extractant, co-extraction agent and diluent, respectively. Effects of extraction conditions containing the volume concentration of TBP, Fe/Li molar ratio and O/A phase ratio on extraction performances were studied. The highest one-stage extraction efficiency of lithium ions and separation factor were about 65% and 350, respectively. In addition, the third phase did not appear over all the volume concentrations of TBP. HCl + MgCl2 and HCl + NaCl were used as washing and stripping agents, respectively. Effects of washing and stripping conditions on washing and stripping performances were investigated too. Mg(OH)(2) and MgCO3 were used as regeneration agents to regenerate the organic phase. The extraction efficiency of lithium ions remained at about 53% during reusing the organic phase ten times, demonstrating that the proposed extraction system had good stability and reusability.
机译:开发了一种新的萃取方法,以回收具有高Mg / Li比的模拟盐湖盐水锂离子。磷酸二丁酯(TBP),FECL3和琥珀酸酯分别用作萃取剂,共萃取剂和稀释剂。研究了含有Tbp,Fe / Li摩尔比和O / A相比对提取性能的体积浓度的提取条件的影响。锂离子和分离因子的最高一级提取效率分别为约65%和350。此外,第三阶段没有出现在所有体积浓度上的TBP。 HCl + MgCl2和HCl + NaCl分别用作洗涤和汽提剂。研究了洗涤和剥离条件对洗涤和剥离性能的影响。 Mg(OH)(2)和MgCO 3用作再生剂以再生有机相。在重用有机相10次时,锂离子的提取效率保持在约53%,表明提出的提取系统具有良好的稳定性和可重用性。

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