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超声辅助沉淀法从含锂溶液中回收碳酸锂

Lithium carbonate recovery from lithium-containing solution by ultrasound assisted precipitation.

作者信息

Zhao Chunlong, Zhang Yanling, Cao Hongbin, Zheng Xiaohong, Van Gerven Tom, Hu Yingyan, Sun Zhi

机构信息

Beijing Engineering Research Center of Process Pollution Control, National Engineering Laboratory for Hydrometallurgical Cleaner Production & Technology, Institute of Process Engineering, Chinese Academy of Sciences, Beijing 100190, China; State Key Laboratory of Advanced Metallurgy, University of Science and Technology Beijing, Beijing 100083, China.

State Key Laboratory of Advanced Metallurgy, University of Science and Technology Beijing, Beijing 100083, China.

出版信息

Ultrason Sonochem. 2019 Apr;52:484-492. doi: 10.1016/j.ultsonch.2018.12.025. Epub 2018 Dec 15.

Abstract

Lithium carbonate (LiCO), one of the most important lithium compounds, is usually prepared from lithium-containing solution. The lithium recovery rate and the purity of LiCO are highly dependent on the lithium concentration. In order to get a high lithium recovery rate, high concentrated lithium-containing solution is required, while the purity of LiCO can be low remaining a significant amount of impurities. Usually, it is not possible to obtain high purity LiCO by single-step precipitation with a relatively high lithium recovery rate especially from a low concentrated lithium-containing solution. In this research, ultrasound is introduced to increase lithium recovery rate and prepare industrial grade LiCO. The research found that ultrasound can significantly reduce the polymerization of LiCO crystal particles and promote dissociation of impurity ions. At the same time, ultrasound accelerates the nucleation process of LiCO and boosts lithium recovery rate because of cavitation. The different parameters during the LiCO precipitation process were systematically discussed. Under the optimized conditions, the lithium recovery rate can be increased by 12% with a global lithium recovery rate of 97.4%. LiCO with a purity higher than industrial grade can be obtained by one-step precipitation. It demonstrates a potential pathway for effective lithium recovery from low concentrated lithium-containing solution and preparation of industrial grade LiCO.

摘要

碳酸锂(LiCO)是最重要的锂化合物之一,通常由含锂溶液制备。碳酸锂的锂回收率和纯度高度依赖于锂浓度。为了获得高锂回收率,需要高浓度的含锂溶液,而碳酸锂的纯度可能较低,仍残留大量杂质。通常,通过单步沉淀法尤其是从低浓度含锂溶液中获得高纯度碳酸锂且具有较高锂回收率是不可能的。在本研究中,引入超声以提高锂回收率并制备工业级碳酸锂。研究发现,超声可显著减少碳酸锂晶体颗粒的聚合,并促进杂质离子的解离。同时,超声由于空化作用加速了碳酸锂的成核过程并提高了锂回收率。系统地讨论了碳酸锂沉淀过程中的不同参数。在优化条件下,锂回收率可提高12%,总体锂回收率达到97.4%。通过一步沉淀可获得纯度高于工业级的碳酸锂。这展示了从低浓度含锂溶液中有效回收锂并制备工业级碳酸锂的潜在途径。

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