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Direct regeneration of cathode materials from spent lithium iron phosphate batteries using a solid phase sintering method

机译:使用固相烧结法直接从废磷酸铁锂电池中再生正极材料

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A direct regeneration of cathode materials from spent LiFePO4 batteries using a solid phase sintering method has been proposed in this article. The spent battery is firstly dismantled to separate the cathode and anode plate, and then the cathode plate is soaked in DMAC organic solvent to separate the cathode materials and Al foil at optimal conditions of 30 min at 30 °C and solid liquid ratio of 1?:?20 g ml?1. XRD and SEM results of the spent LiFePO4 after separation show that there are some impurity phase components and irregular morphologies with many agglomerations. The spent materials are regenerated at appropriate temperatures with doping of new LiFePO4 at different ratios. Battery capacities from regenerated LiFePO4 can reach over 120 mA h g?1 at 0.1C discharge conditions, especially with the highest value of 144 mA h g?1 with a doping ratio of 3?:?7 at 700 °C. The rate capabilities and cycling performance of batteries made from regenerated LiFePO4 with doping at 600 °C and 700 °C are generally better than those at 800 °C. All the performances of batteries made from regenerated LiFePO4 with pure phase and uniform morphology can meet the basic requirements for reuse.
机译:本文提出了采用固相烧结法从废LiFePO 4 电池中直接再生正极材料的方法。首先将废电池拆下以分离阴极和阳极板,然后将阴极板浸泡在DMAC有机溶剂中,以在30°C的最佳条件30分钟和固液比为1?3的条件下分离阴极材料和铝箔。 :?20 g ml ?1 。分离后的废LiFePO 4 的XRD和SEM结果表明,存在一些杂质相成分和不规则形貌,且有许多团聚。用不同比例掺杂新的LiFePO 4 在适当的温度下再生废料。再生LiFePO 4 的电池容量在0.1C放电条件下可达到120 mA hg ?1 ,特别是在在700°C下最高掺杂值为144 mA hg ?1 。由再生的LiFePO 4 掺杂在600°C和700°C下制成的电池的倍率性能和循环性能通常优于800°C。由纯相且形态均匀的再生LiFePO 4 制成的电池的所有性能都可以满足重复使用的基本要求。

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