Method for preparing lithium ion battery anode material nickle cobalt lithium manganate
A kind of technology of lithium nickel cobalt manganate and lithium ion battery
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Embodiment 1
[0029] Example 1 Three equimolar sulfates of nickel, manganese and cobalt were prepared into 10 liters of a solution with a concentration of 2M (the total concentration of the three metal ions, the same below, not specifically described). and 2M ammonium carbonate solution are added into the reactor at the same time, and the reaction pH value is controlled at 8.0-9.0. After the reaction was completed, the precipitate was filtered and washed. Add pure water to the washed filter cake to make a slurry, add 21 moles of lithium hydroxide evenly into the slurry, and then disperse the slurry. The dispersed slurry is spray-dried to obtain a precursor. The precursor was heated at a rate of 3°C / min to 800°C for 5 hours, and then cooled with the furnace. The primary fired material is pulverized and then heated to 980°C at a speed of 3°C / min for 20 hours, and then cooled with the furnace to obtain the final product. The X-ray diffraction analysis of the obtained product shows that its ...
Embodiment 2
[0030] Example 2 Three equimolar hydrochlorides of nickel, manganese and cobalt were prepared into 10 liters of solution with a concentration of 2M. and 2M sodium carbonate solution are added into the reactor at the same time, and the reaction pH value is controlled at 7.5-10.0. After the reaction was completed, the precipitate was filtered and washed. Add pure water to the washed filter cake to make a slurry, add 20.8 moles of lithium hydroxide evenly into the slurry, and then disperse the slurry. The dispersed slurry is spray-dried to obtain a precursor. The temperature of the precursor was raised to 700°C at a rate of 5°C / min for 10 hours, and then cooled with the furnace. The primary fired material is pulverized and then heated to 1000°C at a speed of 4°C / min for 20 hours, and then cooled with the furnace to obtain the final product. The X-ray diffraction analysis of the obtained product shows that its phase is a layered structure; the tap density is 2.35g / cm 3 ;The pr...
Embodiment 3
[0031] Example 3 Three equimolar sulfates of nickel, manganese and cobalt were prepared into 10 liters of solution with a concentration of 2M. and 2M sodium carbonate solution are added into the reactor at the same time, and the reaction pH value is controlled at 8.0-10.0. After the reaction was completed, the precipitate was filtered and washed. Add pure water to the washed filter cake to make a slurry, add 22 moles of lithium hydroxide evenly into the slurry, and then disperse the slurry. The dispersed slurry is spray-dried to obtain a precursor. The temperature of the precursor was raised to 850°C for 10 hours at a rate of 6°C / min, and the material was cooled at a cooling rate of 3°C / min. After primary burning, the material is pulverized and then heated to 1000°C at a speed of 3°C / min for 20 hours, and cooled at a cooling rate of 4°C / min to obtain the final product. The X-ray diffraction analysis of the obtained product shows that its phase is a layered structure; the ta...
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