Wang Jun, Wang Andong, Liu Jiayuan, Niu Qiang, Zhang Yijia, Liu Ping, Liu Chengwen, Wang Hongshan, Zeng Xiangdong, Zeng Guangyong
College of Biological and Chemical Engineering, Panzhihua University, Panzhihua 617000, China.
The 4th Geological Brigade of Sichuan, Chengdu 611130, China.
Molecules. 2024 Sep 12;29(18):4326. doi: 10.3390/molecules29184326.
As global demand for renewable energy and electric vehicles increases, the need for lithium has surged significantly. Extracting lithium from salt lake brine has become a cutting-edge technology in lithium resource production. In this study, two-dimensional (2D) GO/MXene composite membranes were fabricated using pressure-assisted filtration with a polyethyleneimine (PEI) coating, resulting in positively charged PEI-GO/MXene membranes. These innovative membranes, taking advantage of the synergistic effects of interlayer channel sieving and the Donnan effect, demonstrated excellent performance in Mg/Li separation with a mass ratio of 20 (Mg rejection = 85.3%, Li rejection = 16.7%, S = 5.7) in simulated saline lake brine. Testing on actual salt lake brine in Tibet, China, confirmed the composite membrane's potential for effective Mg/Li separation. In the actual brine test with high concentration, Mg/Li after membrane separation is 2.2, which indicates that the membrane can significantly reduce the concentration of Mg in the brine. Additionally, the PEI-GO/MXene composite membrane demonstrated strong anti-swelling properties and effective divalent ion rejection. This research presents an innovative approach to advance the development of 2D membranes for the selective removal of Mg and Li from salt lake brine.
随着全球对可再生能源和电动汽车的需求增加,锂的需求大幅飙升。从盐湖卤水中提取锂已成为锂资源生产中的一项前沿技术。在本研究中,采用压力辅助过滤并结合聚乙烯亚胺(PEI)涂层制备了二维(2D)氧化石墨烯/碳化钛复合膜,得到带正电的PEI-氧化石墨烯/碳化钛膜。这些创新型膜利用层间通道筛分和唐南效应的协同作用,在模拟盐湖卤水中实现了优异的镁锂分离性能,镁锂质量比为20时(镁截留率 = 85.3%,锂截留率 = 16.7%,分离因子S = 5.7)。在中国西藏实际盐湖卤水的测试中,证实了该复合膜具有有效分离镁锂的潜力。在高浓度实际卤水测试中,膜分离后的镁锂比为2.2,这表明该膜可显著降低卤水中镁的浓度。此外,PEI-氧化石墨烯/碳化钛复合膜表现出很强的抗溶胀性能和有效的二价离子截留能力。本研究提出了一种创新方法,以推动二维膜用于从盐湖卤水中选择性去除镁和锂的技术发展。