Optimizing Operational Parameters for Lithium Hydroxide Production via Bipolar Membrane Electrodialysis

Guoxiang Wei, Mengmeng Wang, Chenxiao Lin, Chuan Xu, Jie Gao
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Abstract

Traditional lithium hydroxide production techniques, like lithium sulfate and lithium carbonate causticizing methods, suffer from drawbacks including high specific energy consumption, time-consuming processes, and low recovery rates. The conversion of lithium chloride to lithium hydroxide using bipolar membrane electrodialysis is straightforward; however, the influence of operational parameters on bipolar membrane electrodialysis performance have not been investigated. Herein, the impact of the current density (20 mA/cm2~80 mA/cm2), feed concentration (0.5 M~2.5 M), initial feed pH (2.5, 3.5 and 4.5), and the volume ratio of the feed and base solution (1:1, 2:1 and 3:1) on the current efficiency and specific energy consumption in the bipolar membrane electrodialysis was systematically investigated. The bipolar membrane electrodialysis process showed promising results under optimal conditions with a current density of 50 mA/cm2 and an initial lithium chloride concentration of 1.5 M. This process achieved a current efficiency of 75.86% with a specific energy consumption of 3.65 kwh/kg lithium hydroxide while also demonstrating a lithium hydroxide recovery rate exceeding 90% with a purity of about 95%. This work will provide valuable guidance for hands on implementation of bipolar membrane electrodialysis technology in the production of LiOH.
优化双极膜电渗析氢氧化锂生产的操作参数
传统的氢氧化锂生产技术,如硫酸锂和碳酸锂苛化法,存在比能耗高、工艺耗时长、回收率低等缺点。利用双极膜电渗析法将氯化锂转化为氢氧化锂是一种简单易行的方法,但操作参数对双极膜电渗析性能的影响尚未得到研究。本文系统研究了电流密度(20 mA/cm2~80 mA/cm2)、料液浓度(0.5 M~2.5 M)、初始料液 pH 值(2.5、3.5 和 4.5)以及料液和碱液的体积比(1:1、2:1 和 3:1)对双极膜电渗析电流效率和比能耗的影响。在电流密度为 50 mA/cm2、初始氯化锂浓度为 1.5 M 的最佳条件下,双极膜电渗析工艺取得了良好的结果。该工艺的电流效率为 75.86%,比能耗为 3.65 kwh/kg,氢氧化锂回收率超过 90%,纯度约为 95%。这项工作将为双极膜电渗析技术在氢氧化锂生产中的实际应用提供宝贵的指导。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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阿拉丁
Sodium hydroxide
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Lithium chloride
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