In this study, α-LiAlO(2) was investigated for the first time as a Li-capturing positive electrode material to recover Li from aqueous Li resources. The material was synthesized using hydrothermal synthesis and air annealing, which is a low-cost and low-energy fabrication process. The physical characterization showed that the material formed an α-LiAlO(2) phase, and electrochemical activation revealed the presence of AlO(2)* as a Li deficient form that can intercalate Li(+). The AlO(2)*/activated carbon electrode pair showed selective capture of Li(+) ions when the concentrations were between 100 mM and 25 mM. In mono salt solution comprising 25 mM LiCl, the adsorption capacity was 8.25 mg g(-1), and the energy consumption was 27.98 Wh mol Li(-1). The system can also handle complex solutions such as first-pass seawater reverse osmosis brine, which has a slightly higher concentration of Li than seawater at 0.34 ppm.
Novel LiAlO(2) Material for Scalable and Facile Lithium Recovery Using Electrochemical Ion Pumping.
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作者:Elmakki Tasneem, Zavahir Sifani, Hafsa Umme, Al-Sulaiti Leena, Ahmad Zubair, Chen Yuan, Park Hyunwoong, Shon Ho Kyong, Ho Yeek-Chia, Han Dong Suk
| 期刊: | Nanomaterials | 影响因子: | 4.300 |
| 时间: | 2023 | 起止号: | 2023 Feb 27; 13(5):895 |
| doi: | 10.3390/nano13050895 | ||
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