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Determination of boundary conditions for highly efficient separation of magnesium and lithium from salt lake brine by reaction-coupled separation technology

机译:反应耦合分离技术测定盐湖盐水高效分离镁和锂的边界条件

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The high Mg/Li ratio in salt lake brine in China remains a challenge for the efficient separation of Mg and Li and the Li extraction. A reaction-coupled separation technology we proposed has been successfully applied to the highly efficient separation of Mg and Li from the brine. In this work, we conducted intensive investigations both experimentally and theoretically on the boundary conditions of Mg/Li separation from the brine in association with the initial Mg/Al ratio and Mg/Li ratio. We analyzed the relationship between the composition and the formation of precipitates by changing the Mg/Al molar ratio and the Mg/Li mass ratio in feedstock solution to determine the boundary conditions. The experimental results show that the Mg/Al molar ratio in the initial solution has a great influence on the separation of magnesium and lithium. It is evident that lithium enters the solid as a LiAl-layered double hydroxides (LiAl-LDHs) phase when the Mg/Al molar ratio is less than 2. It has also been found that the precipitate is independent of the Mg/Li mass ratio. From the theoretical results, it has been determined that an increase in the number of Li+ clusters results in a decrease of the binding energy in the same system. Al3+ prefers to combine with Mg2+ to form MgAl-LDH clusters. However, when the Mg/Al ratio is lower than 2:1, Li+ can form a cluster of LiAl-LDH layer. It can also be seen that different Li+ numbers do not change the formation of clusters. Good agreement was found between the theoretical simulation results and the experimental data. This work provides a key criterion for the efficient separation of magnesium and lithium from the brine by a reaction-coupled separation technology.
机译:中国盐湖盐水中的高Mg / Li比仍然是Mg和Li的有效分离和Li提取的挑战。我们提出的反应偶联的分离技术已成功应用于盐水中的高效分离Mg和Li。在这项工作中,我们在实验和理论上对与初始Mg / Al比和Mg / Li比与盐水分离的Mg / Li分离的边界条件进行了密集的调查。通过改变原料溶液中的Mg / Al摩尔比和Mg / Li质量比,分析了组合物与沉淀物之间的关系,以确定边界条件。实验结果表明,初始溶液中的Mg / Al摩尔比对镁和锂的分离有很大影响。显然,当Mg / Al摩尔比小于2时,锂进入固体作为LiaL-层状的双氢氧化物(LiAn-LDH)相位,也发现沉淀物与Mg / Li质量比无关。从理论结果中,已经确定Li +集群数量的增加导致同一系统中的结合能降低。 Al3 +喜欢与Mg2 +结合形成MgAL-LDH簇。然而,当Mg / Al比低于2:1时,Li +可以形成一组LDH层。还可以看出,不同的Li +数字不会改变集群的形成。在理论模拟结果和实验数据之间发现了良好的一致性。这项工作提供了通过反应耦合的分离技术在盐水中有效地分离镁和锂的关键标准。

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