College of Chemistry and Chemical Engineering, and Hunan Provincial Key Laboratory of Efficient and Clean Utilization of Manganese Resources, Central South University, Changsha 410083, Hunan, China.
College of Chemistry and Chemical Engineering, and Hunan Provincial Key Laboratory of Efficient and Clean Utilization of Manganese Resources, Central South University, Changsha 410083, Hunan, China; Fujian Zijin Liyuan Material Technology Co., Ltd, Fujian 364200, China.
Waste Manag. 2023 Jul 15;167:204-212. doi: 10.1016/j.wasman.2023.05.045. Epub 2023 Jun 1.
A new method was presented for the high-efficiency selective leaching of Li and the efficient recovery of transition metals (TMs) from the cathode materials of spent lithium-ion batteries (spent LIBs). Selective leaching of Li was achieved by carbothermic reduction roasting and leaching with NaSO. After reduction roasting, high-valence TMs were reduced to low-valence metals or metal oxides, and Li was converted to LiCO. Then NaSO solution selectively extracted 94.15% of Li from roasted product with leaching selectivity of more than 99%. At last, TMs were leached with HSO without adding reductant with the leaching efficiency of metals all exceeding 99%. NaSO added during the leaching process destroyed the agglomerated structure of the roasted product to open the way Li entered the solution. Under the oxidative environment of NaSO solution, TMs would not be extracted. At the same time, it helped to regulate the phase of TMs and improved the extraction of TMs. Furthermore, the phase transformation mechanism of roasting and leaching was discussed through thermodynamic analysis, XRD, XPS, and SEM-EDS. This process not only realized the selectively comprehensive recycling of valuable metals in spent LIBs cathode materials; but also followed the principle of green chemistry.
提出了一种从废旧锂离子电池(spent LIBs)正极材料中高效选择性浸出 Li 并高效回收过渡金属(TMs)的新方法。通过碳热还原焙烧和 NaSO 浸出实现了 Li 的选择性浸出。还原焙烧后,高价 TMs 被还原为低价金属或金属氧化物,Li 转化为 LiCO。然后,NaSO 溶液选择性地从焙烧产物中浸出 94.15%的 Li,浸出选择性超过 99%。最后,在不添加还原剂的情况下用 HSO 浸出 TMs,金属的浸出率均超过 99%。NaSO 在浸出过程中添加,破坏了焙烧产物的团聚结构,为 Li 进入溶液开辟了道路。在 NaSO 溶液的氧化环境中,TMs 不会被浸出。同时,它有助于调节 TMs 的相,提高 TMs 的提取率。此外,通过热力学分析、XRD、XPS 和 SEM-EDS 探讨了焙烧和浸出的相变机制。该过程不仅实现了废旧 LIBs 正极材料中有价值金属的选择性综合回收,而且遵循绿色化学原理。