Method for recycling lithium cobalt oxide from waste positive electrode of lithium cobalt oxide battery
A technology of lithium cobalt oxide and positive electrode, which is applied in the comprehensive utilization of resources and the field of non-ferrous hydrometallurgy. It can solve the problems of a large amount of toxic and harmful gases, troublesome post-processing, incomplete separation, etc., and achieves the avoidance of toxic and harmful gases, convenient operation, and easy The effect of industrialization promotion
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Embodiment 1
[0021] In this embodiment, the method for reclaiming lithium cobaltate from the waste positive electrode sheet of lithium cobaltate battery comprises the following steps:
[0022] (1) Put 100g of the waste positive electrode sheet of lithium cobaltate battery into 1L of 1mol / L hydrochloric acid leaching solution dissolved with 60g of citric acid, and react at 60°C for 6h;
[0023] (2) Filter the leaching solution in step (1) to separate the aluminum foil and solid particles;
[0024] (3) Stir and wash the solid particles with 100 mL of absolute ethanol at 40°C for 1 hour, and dry at 105°C for 2 hours;
[0025] (4) Add lithium carbonate to the solid particles to adjust the Co / Li mass ratio in the solid particles to 1.15:1, mix well, calcinate at 750°C for 4 hours, and cool to obtain lithium cobaltate.
[0026] According to the method for reclaiming lithium cobalt oxide in the waste positive plate of lithium cobalt oxide battery in this embodiment, the recovery rate of cobalt i...
Embodiment 2
[0028] In this embodiment, the method for reclaiming lithium cobaltate from the waste positive electrode sheet of lithium cobaltate battery comprises the following steps:
[0029] (1) Put 100g of spent lithium cobaltate battery positive electrode sheet into 1L of 1.5mol / L hydrochloric acid leaching solution dissolved with 70g of citric acid, and react at 70°C for 5h;
[0030] (2) Filter the leaching solution in step (1) to separate the aluminum foil and solid particles;
[0031] (3) Stir and wash the solid particles with 100 mL of absolute ethanol at 50°C for 1 hour, and dry at 105°C for 2 hours;
[0032] (4) Add lithium carbonate to the solid particles to adjust the Co / Li mass ratio in the solid particles to 1.10:1, mix well, calcinate at 780°C for 6 hours, and cool to obtain lithium cobaltate.
[0033] According to the method of reclaiming lithium cobalt oxide in the waste positive electrode sheet of lithium cobalt oxide battery in this embodiment, the recovery rate of coba...
Embodiment 3
[0035] In this embodiment, the method for reclaiming lithium cobaltate from the waste positive electrode sheet of lithium cobaltate battery comprises the following steps:
[0036] (1) Put 100g of spent lithium cobalt oxide battery positive electrode sheet into 1L of 2mol / L hydrochloric acid leaching solution dissolved with 80g of citric acid, and react at 80°C for 4h;
[0037] (2) Filter the leaching solution in step (1) to separate the aluminum foil and solid particles;
[0038] (3) Stir and wash the solid particles with 100 mL of absolute ethanol at 60°C for 1 hour, and dry at 105°C for 2 hours;
[0039] (4) Add lithium carbonate to the solid particles to adjust the Co / Li mass ratio in the solid particles to 1.05 / 1, mix well, calcinate at 800° C. for 5 hours, and cool to obtain lithium cobaltate.
[0040] According to the method for reclaiming lithium cobalt oxide in the waste positive electrode sheet of lithium cobalt oxide battery in this embodiment, the recovery rate of ...
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