Method for recovering lithium and transition elements in waste lithium battery positive material by liquid phase method
A technology for waste lithium batteries and cathode materials, which is applied in the field of liquid-phase method for recovering lithium and transition elements in cathode materials of waste lithium batteries, can solve the problems of excessive energy consumption, high use temperature, harsh production environment, etc., and achieves environmentally friendly energy. consumption effect
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Embodiment 1
[0026] This embodiment includes the following steps:
[0027] (1) Make the positive electrode LiCoO 2 The waste lithium battery (the active material in the positive electrode (LiCoO 2 ): Binder (PVDF): Conductive carbon black (C) mass ratio = 92:4:4) for discharge treatment, disassembled in the glove box, and dried in a vacuum oven to obtain dry electrolyte Positive plate;
[0028] (2) Place the positive electrode sheet containing 10 g of active material in 100 mL of deep eutectic solvent (the molar ratio of choline chloride to urea is 1:5, and the solution contains 0.2 mol of choline chloride), 200 Stir the active material in the positive electrode sheet at ℃ until the active material in the electrode sheet is completely dissolved to obtain a reaction solution;
[0029] (3) After the reaction solution obtained in step (2) turns dark blue without any change, it is filtered, washed, and the obtained filter cake is dried to obtain a current collector, a binder and a conductiv...
Embodiment 2
[0034] This embodiment includes the following steps:
[0035] (1) Make the cathode LiMn 2 o 4 Discharge treatment of waste lithium batteries (active material in the positive electrode (LiMn 2 o 4 ): Binder (PVDF): Conductive carbon black (C) mass ratio = 94:3:3), disassembled in the glove box and placed in a vacuum oven for drying to obtain a dry positive electrode sheet from which the electrolyte was removed;
[0036] (2) Place the positive electrode sheet containing 15 g of active material in 300 mL (the molar ratio of choline chloride: urea is 1:5, and the solution contains 0.4 mol of choline chloride), and the positive electrode is placed at 350 °C. Stir the active substance in the tablet, dissolve completely, and obtain the reaction solution;
[0037] (3) After the reaction solution obtained in step (2) turns dark blue without any change, it is filtered, washed, and the obtained filter cake is dried to obtain a current collector, a binder and a conductive agent; addin...
Embodiment 3
[0041] This embodiment includes the following steps:
[0042] (1) Make the positive electrode LiCoO 2 Discharge treatment of waste lithium batteries (active material in the positive electrode (LiCoO 2 ): Binder (PVDF): Conductive carbon black (C) mass ratio = 92:4:4), disassembled in the glove box and placed in a vacuum oven for drying treatment to obtain a dry positive electrode sheet from which the electrolyte was removed;
[0043] (2) Place the positive electrode sheet containing 10 g of active material in 100 mL (the molar ratio of tetrabutylammonium hydrogen sulfate: ethylene glycol is 10:1, and the solution contains 0.2 mol of tetrabutylammonium hydrogen sulfate), 250 Stir the active material in the positive electrode sheet at ℃, dissolve completely, and obtain the reaction solution;
[0044] (3) After the reaction solution obtained in step (2) turns dark blue without any change, it is filtered, washed, and the obtained filter cake is dried to obtain a current collecto...
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