Modeling and Validation of a LiOH Production Process by Bipolar Membrane Electrodialysis from Concentrated LiCl

被引:2
|
作者
Gonzalez, Alonso [1 ]
Grageda, Mario [1 ]
Ushak, Svetlana [1 ]
机构
[1] Univ Antofagasta, Ctr Adv Study Lithium & Ind Minerals CELiMIN, Dept Ingn Quim & Proc Minerales, Campus Coloso,Ave Univ Antofagasta, Antofagasta 02800, Chile
关键词
lithium hydroxide production; bipolar membrane electrodialysis; high concentration LiCl solutions; modeling and process simulation; CATION-EXCHANGE MEMBRANES; LITHIUM HYDROXIDE; ELECTROCHEMICAL PERFORMANCE; DESALINATION BRINES; ACID; RECOVERY; OPTIMIZATION; DIFFUSION; VALORIZATION; SEPARATION;
D O I
10.3390/membranes13020187
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Electromembrane processes for LiOH production from lithium brines obtained from solar evaporation ponds in production processes of the Salar de Atacama are considered. In order to analyze high concentrations' effect on ion exchange membranes, the use of concentrated LiCl aqueous solutions in a bipolar membrane electrodialysis process to produce LiOH solutions higher than 3.0% by mass is initially investigated. For this purpose, a mathematical model based on the Nernst-Planck equation is developed and validated, and a parametric study is simulated considering as input variables electrolyte concentrations, applied current density, stack design, process design and membrane characteristics. As a novelty, this mathematical model allows estimating LiOH production in a wide concentration range of LiCl, HCl and LiOH solutions and its effect on the process, providing data on final LiOH solution purity, current efficiency, specific electricity consumption and membrane performance. Among the main results, a concentration of 4.0% to 4.5% by LiOH mass is achieved, with a solution purity higher than 95% by mass and specific electrical energy consumption close to 4.0 kWh/kg. The work performed provides key information on process sensitivity to operating conditions and process design characteristics. These results serve as a guide in the application of this technology to lithium hydroxide production.
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页数:26
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