Efficient lithium recovery from geothermal brines is crucial for the battery industry. Current electrochemical separation methods struggle with the simultaneous presence of Na(+), K(+), Mg(2+), and Ca(2+) because these cations are similar to Li(+), making it challenging to separate effectively. We address these challenges with a three-chamber reactor featuring a polymer porous solid electrolyte in the middle layer. This design improves the transference number of Li(+) (t(Li+)) by 2.1 times compared to the two-chamber reactor and also reduces the chlorine evolution reaction, a common side reaction in electrochemical lithium extraction, to only 6.4% in Faradaic Efficiency. Employing a lithium-ion conductive glass ceramic (LICGC) membrane, the reactor achieved high t(Li+) of 97.5% in LiOH production from simulated brine, while the concentrations of Na(+) K(+), Mg(2+), and Ca(2+) are below the detection limit. Electrochemical experiments and surface analysis elucidated the cation transport mechanism, highlighting the impact of Na(+) on Li(+) migration at the LICGC interface.
Three-chamber electrochemical reactor for selective lithium extraction from brine.
用于从盐水中选择性提取锂的三室电化学反应器
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作者:Feng Yuge, Park Yoon, Hao Shaoyun, Fang Zhiwei, Terlier Tanguy, Zhang Xiao, Qiu Chang, Zhang Shoukun, Chen Fengyang, Zhu Peng, Nguyen Quan, Wang Haotian, Biswal Sibani Lisa
| 期刊: | Proceedings of the National Academy of Sciences of the United States of America | 影响因子: | 9.100 |
| 时间: | 2024 | 起止号: | 2024 Nov 19; 121(47):e2410033121 |
| doi: | 10.1073/pnas.2410033121 | ||
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