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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >An integrated membrane process for preparation of lithium hydroxide from high Mg/Li ratio salt lake brine
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An integrated membrane process for preparation of lithium hydroxide from high Mg/Li ratio salt lake brine

机译:高Mg / Li比盐湖盐水制备氢氧化物氢氧化物的一体膜工艺

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摘要

Preparation of lithium hydroxide from high Mg/Li ratio salt lake brine is facing several challenges: separate lithium and magnesium, enrich the lithium, and produce lithium hydroxide with high purity. In this study, an integrated membrane process, combining BMED with NF, RO, and CED processes, was used to prepare LiOH from salt lake brine with the Mg/Li ratio higher than 30.0. The effects of operating pressure, pH of feed solution, and dilution multiple of feed solution on the separation and recovery efficiency of lithium were investigated. A dual-stage NF process and a RO-CED process were proved to be the effective way to remove magnesium and enrich lithium respectively, as the Mg/Li ratio can be controlled lower than 0.5 and the lithium concentration was concentrated above 14 g/L. In BMED process, the initial concentration of feed solution and current density were optimized, and the relationships between the concentration of acid/base and current efficiency were found. The results indicated that the lithium concentration of alkali solution prepared through this process was over 1.0 M, and the current efficiency and energy consumption were 36.05% and 6.20 kWh/kg, which outperformed previous works. The process was effective for preparation of LiOH from salt lake brine.
机译:从高Mg / Li比的氢氧化物的制备面临着几种挑战:单独的锂和镁,丰富锂,并高纯度生产氢氧化锂。在该研究中,使用NF,RO和CED工艺组合的集成膜方法,用于制备来自盐湖盐水的LiOH,Mg / Li比高于30.0。研究了对锂锂分离和饲料溶液的饲料溶液的效果,饲料溶液的效果和稀释率。被证明是双级NF工艺和RO CED方法是分别除去镁和富含锂的有效方法,因为Mg / Li比可以控制低于0.5,锂浓度浓缩14克/升。在BMED过程中,优化了饲料溶液和电流密度的初始浓度,并发现了酸/碱浓度与电流效率之间的关系。结果表明,通过该方法制备的碱溶液锂浓度超过1.0μm,电流效率和能耗为36.05%和6.20千瓦时/千克,这优于以前的作品。该方法对盐湖盐水制备LiOH有效。

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