Membranes (Sep 2021)

Numerical Simulation of Continuous Extraction of Li<sup>+</sup> from High Mg<sup>2+</sup>/Li<sup>+</sup> Ratio Brines Based on Free Flow Ion Concentration Polarization Microfluidic System

  • Dongxiang Zhang,
  • Xianglei Zhang,
  • Leilei Xing,
  • Zirui Li

DOI
https://doi.org/10.3390/membranes11090697
Journal volume & issue
Vol. 11, no. 9
p. 697

Abstract

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Ion concentration polarization (ICP) is a promising mechanism for concentrating and/or separating charged molecules. This work simulates the extraction of Li+ ions in a diluted high Mg2+/Li+ ratio salt lake brines based on free flow ICP focusing (FF-ICPF). The model solution of diluted brine continuously flows through the system with Li+ slightly concentrated and Mg2+ significantly removed by ICP driven by external pressure and perpendicular electric field. In a typical case, our results showed that this system could focus Li+ concentration by ~1.28 times while decreasing the Mg2+/Li+ ratio by about 85% (from 40 to 5.85). Although Li+ and Mg2+ ions are not separated as an end product, which is preferably required by the lithium industry, this method is capable of decreasing the Mg2+/Li+ ratio significantly and has great potential as a preprocessing technology for lithium extraction from salt lake brines.

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