Method for synthesizing lithium nickel cobalt manganese oxide by using active substance separated from waste lithium power battery as raw material
A technology of nickel-cobalt lithium manganese oxide and power battery, which is applied in the field of synthesis of nickel-cobalt lithium manganese oxide, can solve the problems of low recovery and filtration, high energy consumption of active materials, and secondary pollution, so as to maintain integrity, accelerate the dissolution process, Good for secondary use
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Embodiment 1
[0028] (1) Disassemble the discharged lithium power battery to obtain a positive electrode.
[0029] (2) The positive electrode is immersed in 5 mol / L dimethylacetamide to separate the active material on the positive electrode from the current collector of the positive electrode.
[0030] (3) Filtrate and separate the current collector and active material, wash the separated active material with deionized water, centrifuge, dry the solid precipitate at 80°C, crush, vibrate and sieve to obtain the active material of the original waste positive electrode .
[0031] (4) Dissolve the obtained active substance in 12mol / L carbonic acid solution, the molar ratio of active substance and carbonic acid solution is 1:2, and add 1mol / L hydrogen peroxide, take supernatant after centrifugation, supernatant It is a mixed acid solution containing nickel ions, cobalt ions, and manganese ions, and the concentration of nickel ions, cobalt ions, and manganese ions in the supernatant is detected ...
Embodiment 2
[0040] (1) Disassemble the discharged lithium power battery to obtain a positive electrode.
[0041] (2) The positive electrode is immersed in 8mol / L dimethylacetamide to separate the active material of the electrode from the current collector.
[0042] (3) Filtrating and separating the current collector and the active material, washing the separated active material with deionized water, drying at 90°C, crushing, and vibrating and sieving to obtain the active material of the original waste positive electrode.
[0043] (4) Dissolve the positive electrode active material obtained in step (3) in 15mol / L acetic acid solution, the molar ratio of the active material to the acetic acid solution is 1:2, and after adding 0.5mol / L hydrogen peroxide, centrifuge and take the upper A mixed acid solution containing nickel, cobalt and manganese is obtained from the clear solution, and the concentration of nickel, cobalt and manganese ions in the mixed acid solution is detected by titration. ...
Embodiment 3
[0050] (1) Disassemble the discharged lithium power battery to obtain a positive electrode.
[0051] (2) The positive electrode is immersed in 10 mol / L dimethylacetamide to separate the active material on the positive electrode from the current collector of the positive electrode.
[0052] (3) The current collector and active material are separated by filtration, and the separated active material is washed with deionized water, centrifuged, and the solid precipitate is dried at 90° C., crushed, and sieved by vibration to obtain the original waste positive active material.
[0053](4) Dissolve the positive electrode active material obtained in step (3) in the phosphoric acid solution of 15mol / L, the molar ratio of the active material to the phosphoric acid solution is 1:2, and after adding 2mol / L hydrogen peroxide, the supernatant is nickel-containing , cobalt, and manganese mixed acid solution, the concentration of nickel, cobalt, and manganese ions in the mixed acid solution ...
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Abstract
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