4.7 Review

Two-dimensional materials in enhancement of membrane-based lithium recovery from metallic-ions-rich wastewaters: A review

Journal

DESALINATION
Volume 543, Issue -, Pages -

Publisher

ELSEVIER
DOI: 10.1016/j.desal.2022.116096

Keywords

Li+ selective recovery; 2D materials; Nanofiltration strategies; Graphene; Membrane distillation crystallization

Funding

  1. Sungkyunkwan University (SKKU)
  2. Nanjing Forestry University [163020211, 163020816]
  3. Symbolic Achievement Cultivation Project [163020139]
  4. Zhejiang Normal University [YS304221928]
  5. Natural Science Foundation of Zhejiang Province [LD21E080001]
  6. Zhejiang Provincial Ten Thousand Talent Program [ZJWR0302055]

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This review discusses the latest advances in using newly-developed 2D nanomaterials for selective lithium recovery via membrane-based technology. It examines improvements in selectivity, addition of new functionalities, and evaluates the role of 2D materials as fillers, their benefits, separation, and transport mechanisms, while also discussing the drawbacks and prospects of each classification.
The ubiquitous use and continuously growing demand for lithium (Li) in transportation and high-technology products have rendered Li+ recovery imperative for sustainable growth. Recently, particular emphasis has been placed on two-dimensional (2D) materials-based membranes due to their superior characteristics compared to ceramic or polymer membranes. This review focuses on the state-of-the-art progress in exploiting applications of newly-developed 2D nanomaterials in selective lithium recovery via membrane-based technology and design of filtration membranes, including selectivity improvement and adding new favorable functionalities like anti-bacterial, antifouling, and hydrophobicity. From the viewpoint of application, advances in selectivity enhancement via 2D materials, role of these materials as fillers, their benefits, separation, and the transport mechanism of each group are critically assessed, and their drawbacks and prospects of each classification are discussed in detail. In addition to the compendium of basics and reasons behind each ion separation route, experimental outcomes reported in the literature have been comprehensively summarized. Finally, future op-portunities for lithium are highlighted to inspire subsequent research.

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