DOI: 10.1002/asia.70931 ISSN: 1861-4728

Continuous Recovery of Spent LiFePO 4 via Ascorbic Acid Based Redox Flow Battery

Jianan Zan, Yizhi Liao, Wei Shan, Fan Xu, Lu Guo, Kwun Nam Hui, Min Luo, Fuming Chen

ABSTRACT

The direct recycling of spent LiFePO 4 is essential for building a sustainable circular economy for lithium‐ion batteries, yet conventional methods suffer from high energy consumption and environmental pollution. Here, we develop a continuous redox flow battery using regenerable ascorbic acid as a redox mediator for efficient ambient‐temperature relithiation. The electrochemical regeneration of ascorbic acid enables a near‐closed‐loop process with minimal reagent consumption. The regenerated LiFePO 4 achieves a specific capacity of 123.6 mAh/g at 0.5 C, comparable to spent LiFePO 4 , and achieve a capacity restoration efficiency of 44.3%. Structural and elemental analyses confirm successful restoration of the crystal lattice and lithium content. This work provides a green, economical, and scalable strategy for direct recycling of spent LiFePO 4 , demonstrating strong potential for industrial‐scale battery reclamation.

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