Preparation method of lithium-rich anode material
A lithium-rich cathode material and slurry technology, which is applied in the field of preparation of lithium-rich cathode materials, can solve the problems of complex preparation process, increase of industrial cost, and restriction of development, and achieve the effects of reduced process, low cost, and reduced low-temperature roasting process
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Embodiment 1
[0047] Weigh 103.97g of lithium carbonate, 145.56g of manganese carbonate, 17.97g of cobalt metal and 22.77g of nickelous oxide, mix them, add 800ml of deionized water, and add them to a fine grinder for fine grinding. After testing, D 50 0.09 micron, then take it out, add it to the ultra-fine grinding machine for ultra-fine grinding, the D after ultra-fine grinding 50 is 0.045 microns. Spray drying, the D of the primary particles after spray drying 50 It is 0.046 microns, and the spherical secondary particles formed are 3-15 microns. The powder obtained after spray drying was calcined at 850°C for 48 hours, cooled with the furnace, and the obtained powder was ground and passed through a 300-mesh sieve. After analysis, the composition of the prepared lithium-rich cathode material is 0.6Li 2 O 0.8Mn 0.675 Ni 0.1625 co 0.1625 o 1.75 . The particle size of primary particles after sintering is 0.8-1 micron, and the particle size of secondary particles formed is D 50 is 16...
Embodiment 2
[0049] Weigh 103.97g of lithium carbonate, 145.56g of manganese carbonate, 17.97g of metal cobalt and 22.77g of nickelous oxide, add them to the coarse grinding tank, add 350ml of deionized water, mix them, and put them on the coarse grinder for rough grinding for 24 hours. After testing, the D of primary particles 50 0.8 microns. Then add 1000ml deionized water for fine grinding. After the particle size test, the D of the primary particle 50 is 0.07 microns. Then add 400ml of deionized water for ultra-fine grinding, after the particle size test, the D of a particle 50 is 0.02 microns. Spray drying, the D of the primary particles after spray drying 50 0.02 microns, and the formed spherical secondary particles are 3-15 microns. The powder obtained after spray drying was calcined at 850°C for 48 hours, cooled with the furnace, and the obtained powder was ground and passed through a 300-mesh sieve. After analysis, the composition of the prepared lithium-rich cathode materia...
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