萃取(化学)
材料科学
化学工程
无机化学
化学
电化学
核化学
阴极
化学成分
冶金
作者
Shuzheng Wang,Xuanze Wang,Jiaxin Ren,Zu Chang,Mingli Xu,Haipeng Wang,Haoliang Yu,Shiqi Fu,C. Guo,Hao Chen,Jie Yang,Jun Qian,Xiaohong Hu
标识
DOI:10.1021/acsenergylett.6c00477
摘要
Current pyrometallurgy/hydrometallurgy recycling of lithium-ion batteries, particularly for lithium iron phosphate (LiFePO 4 ) cathodes, faces challenges such as high energy consumption, long processing cycles, and inefficient impurity separation. Here, we propose an ozone (O 3 )-mediated chemical delithiation strategy to achieve selective Li extraction from LiFePO 4 via a single-step solid-phase transformation mechanism. In-situ generated O 3 from water electrolysis oxidizes Fe(II) in the LiFePO 4 lattice to Fe(III), driving direct conversion to FePO 4, while releasing Li + to maintain charge neutrality. Benefiting from O 3 ’s strong oxidizing capability, the process achieves >99.8% lithium extraction efficiency within 45 min at room temperature, with negligible Fe dissolution. The Li 2 CO 3 and FePO 4 collected after the delithiation reaction, together with the byproduct H 2 gas from water electrolysis, can be directly used for LiFePO 4 resynthesis. This O 3 -mediated chemical delithiation reaction combines high selectivity, low energy consumption, and environmental compatibility, offering a practical route for battery recycling.
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