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 ChenABSTRACT
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.