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基于聚酰胺网络标记修饰的先进锂提取膜

Advanced Lithium Extraction Membranes Derived from Tagged-Modification of Polyamide Networks.

作者信息

Peng Huawen, Liu Xufei, Su Yafei, Li Jiapeng, Zhao Qiang

机构信息

Key Laboratory of Material Chemistry for Energy Conversion and Storage, School of Chemistry and Chemical Engineering, Huazhong University of Science and Technology, 430074, Wuhan, P. R. China.

出版信息

Angew Chem Int Ed Engl. 2023 Nov 27;62(48):e202312795. doi: 10.1002/anie.202312795. Epub 2023 Oct 20.

Abstract

Efficient Mg /Li separation is crucial to combating the lithium shortage worldwide, yet current nanofiltration membranes suffer from low efficacy and/or poor scalability, because desirable properties of membranes are entangled and there is a trade-off. This work reports a "tagged-modification" approach to tackle the challenge. A mixture of 3-bromo-trimethylpropan-1-aminium bromide (E ) and 3-aminopropyltrimethylazanium (E ) was designed to modify polyethylenimine - trimesoyl chloride (PEI-TMC) membranes. E and E reacted with the PEI and TMC, respectively, and thus, the membrane properties (hydrophilicity, pore sizes, charge) were untangled and intensified simultaneously. The permeance (34.3 L m  h  bar ) and Mg /Li selectivity (23.2) of the modified membranes are about 4 times and 2 times higher than the pristine membrane, and they remain stable in a 30-days test. The permeance is the highest among all analogous nanofiltration membranes. The tagged-modification method enables the preparation of large-area membranes and modules that produce high-purity lithium carbonate (Li CO ) from simulated brine.

摘要

高效的镁/锂分离对于应对全球锂短缺至关重要,但目前的纳滤膜存在效率低和/或可扩展性差的问题,因为膜的理想性能相互纠缠且存在权衡。这项工作报道了一种“标记改性”方法来应对这一挑战。设计了3-溴-三甲基丙-1-铵溴化物(E)和3-氨丙基三甲基铵(E)的混合物来改性聚乙烯亚胺-均苯三甲酰氯(PEI-TMC)膜。E和E分别与PEI和TMC反应,从而使膜的性能(亲水性、孔径、电荷)得以解开并同时增强。改性膜的渗透率(34.3 L m  h  bar)和镁/锂选择性(23.2)分别比原始膜高约4倍和2倍,并且在30天的测试中保持稳定。该渗透率在所有类似的纳滤膜中是最高的。标记改性方法能够制备从模拟卤水中生产高纯度碳酸锂(Li CO)的大面积膜和组件。

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