Wang Junbo, Jiang Jie, Wang Jing, Hu Shouyuan, Hu Jiahao, Li Yalong, Tao Zhiyu, Wu Chengju, Li Pei, Chen Liang
School of Physical Science and Technology, Ningbo University Ningbo 315211 China
State Key Laboratory of Surface Physics and Department of Physics, Fudan University Shanghai 200433 China.
RSC Adv. 2025 Apr 22;15(16):12528-12537. doi: 10.1039/d5ra00580a. eCollection 2025 Apr 16.
Nanofiltration has emerged as an effective technique for the selective separation of mono- and divalent ions, such as Mg/Li mixtures, and plays a crucial role in lithium extraction from salt lakes. In this study, a graphene oxide (GO) membrane with positively charged channels was prepared by crosslinking arginine (Arg) onto GO nanosheets, followed by vacuum filtration to form the membrane, and then thermal reduction (Arg-rGO). The Arg-rGO membrane exhibits high performance in the ion separation of a typical brine with a Mg/Li mass ratio of 20. The separation factor ( ) reached up to 45.6-two times the highest separation factor reported-while maintaining an advanced water permeance of 21.3 L m h bar. Furthermore, the Mg/Li mass ratio was reduced from 20 to 0.2 after two-stage crossflow filtration with high flux under high pressure. The observed separation performance can be attributed to the synergistic effect of electrostatic repulsion and size-exclusion. These findings confirmed efficient separation of Mg/Li using GO membranes, demonstrating potential for practical application in lithium extraction from salt lakes.
纳滤已成为一种用于选择性分离单价和二价离子(如镁/锂混合物)的有效技术,在从盐湖中提取锂方面发挥着关键作用。在本研究中,通过将精氨酸(Arg)交联到氧化石墨烯(GO)纳米片上制备了具有带正电荷通道的氧化石墨烯膜,随后通过真空过滤形成膜,然后进行热还原(Arg-rGO)。Arg-rGO膜在镁/锂质量比为20的典型卤水中的离子分离方面表现出高性能。分离因子( )高达45.6,是报道的最高分离因子的两倍,同时保持了21.3 L m h bar的先进水渗透率。此外,在高压下进行高通量的两级错流过滤后,镁/锂质量比从20降至0.2。观察到的分离性能可归因于静电排斥和尺寸排阻的协同作用。这些发现证实了使用GO膜有效分离镁/锂,展示了在从盐湖中提取锂的实际应用中的潜力。