首页> 外文期刊>Journal of Chemical Engineering of Japan >Extracting Lithium from the High Concentration Ratio of Magnesium and Lithium Brine Using Imidazolium-Based Ionic Liquids with Varying Alkyl Chain Lengths
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Extracting Lithium from the High Concentration Ratio of Magnesium and Lithium Brine Using Imidazolium-Based Ionic Liquids with Varying Alkyl Chain Lengths

机译:使用烷基链长度可变的咪唑类离子液体从高浓度的镁和锂盐水中提取锂

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References(15) Cited-By(1) The present study investigates the extraction of lithium ion from the high concentration ratio of magnesium and lithium salt lake brine in a series of 1-alkyl-3-methylimidazolium-based ionic liquids (ILs), in which the alkyl chain lengths were n-butyl (C4), n-pentyl (C5), n-hexyl (C6), n-heptyl (C7), n-octyl (C8) or n-nonyl (C9), in the presence of triisobutyl phosphate (TIBP)+kerosene systems. The results showed that with shorter alkyl chain length of imidazolium-based ILs there was higher extraction efficiency of lithium ion. The optimal novel FeCl3-free extraction system of [C4mim][PF6]+TIBP+kerosene was established, and the single-pass extraction and back extraction efficiencies for lithium ion were 74.14% and 86.37% under the optimal conditions of [C4mim][PF6] : TIBP : kerosene=1 : 8 : 1 (v/v), pH=5.0, R(O/A)=2.0 in the extraction step, as well as 1 mol/L HCl eluent, R(O/A)=3 in the back extraction step. A comparison of extraction behaviors in a multilevel cross-flow and multistage counter-current extraction process for lithium ion was also carried out. On the basis of infrared spectroscopy and slope analysis methods, a cation-exchange extraction mechanism in the system of [C4mim][PF6]+TIBP+kerosene for lithium ion extraction was demonstrated.
机译:参考文献(15)引用了(1)本研究研究了在一系列基于1-烷基-3-甲基咪唑鎓的离子液体(IL)中镁和锂盐湖卤水的高浓度比中提取锂离子的方法,其中烷基链长为正丁基(C4),正戊基(C5),正己基(C6),正庚基(C7),正辛基(C8)或正壬基(C9)磷酸三异丁酯(TIBP)+煤油体系的存在。结果表明,基于咪唑鎓类离子的烷基链长度越短,锂离子的提取效率越高。建立了[C4mim] [PF6] + TIBP +煤油的新型最佳无FeCl3萃取体系,在[C4mim]的最佳条件下,锂离子的单程萃取和反萃取效率分别为74.14%和86.37%。 PF6]:TIBP:煤油= 1:8:1(v / v),pH = 5.0,R(O / A)= 2.0在萃取步骤中,以及1 mol / L HCl洗脱液,R(O / A )= 3。还对锂离子在多级错流和多级逆流萃取过程中的萃取行为进行了比较。基于红外光谱和斜率分析方法,证明了[C4mim] [PF6] + TIBP +煤油体系中阳离子交换萃取机理的研究。

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