Method for preparing ternary cathode material precursor by recycling lithium-ion battery material
A technology for ion batteries and positive electrode materials, which is applied in the field of preparing ternary positive electrode material precursors, can solve the problems of complex process, dissolution loss of extractant, and high production cost, and achieves the effects of simple process, low raw material cost, and low production cost.
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example 1
[0045] Get 50g of the nickel-cobalt lithium manganese oxide positive electrode strip of the waste lithium-ion battery, adopt concentration to be that the sulfuric acid of 3mol / L and the hydrogen peroxide of mass concentration are 20% hydrogen peroxide to stirring and leaching the positive electrode strip at 30 DEG C for 30min, filter after leaching to obtain nickel, cobalt, Manganese, lithium, aluminum sulfate mixed solution, use sodium hydroxide solution to adjust the pH value of the solution to 5, add diatomaceous earth, react at 30°C for 100min, generate aluminum hydroxide precipitate and filter to remove aluminum hydroxide precipitate, to obtain nickel, Cobalt, manganese, lithium sulfate mixed solution. Add appropriate nickel sulfate, cobalt sulfate and manganese sulfate in the solution to adjust the molar ratio of nickel, cobalt and manganese in the solution to 0.4:0.3:0.4, then add sodium carbonate and ammonia water as a complex precipitation agent and adjust the pH value...
example 2
[0047] Get waste and old lithium ion battery lithium cobalt oxide and lithium nickel cobalt manganese oxide positive electrode band 50g, wherein, m (lithium cobalt oxide): m (lithium nickel cobalt manganate)=3:1, adopt concentration to be the sulfuric acid of 5mol / L and mass The hydrogen peroxide with a concentration of 40% is stirred and leached on the positive electrode belt at 50°C for 30 minutes, and filtered to obtain a mixed solution of nickel, cobalt, manganese, lithium, and aluminum sulfate. Use lithium hydroxide solution to adjust the pH value of the solution to 6.5 and add diatoms. Soil, react at 50°C for 30 minutes to form aluminum hydroxide precipitate and remove the aluminum hydroxide precipitate by filtration to obtain a mixed solution of nickel, cobalt, manganese, and lithium sulfate. Add appropriate nickel sulfate, cobalt sulfate and manganese sulfate to the solution to adjust the molar ratio of nickel, cobalt and manganese in the solution to 0.6:0.1:0.2, then a...
example 3
[0049] Get waste lithium ion battery lithium manganese oxide, lithium cobalt oxide and nickel cobalt lithium manganese oxide positive pole strip 50g, wherein, m (lithium manganate): m (lithium cobalt oxide): m (nickel cobalt lithium manganate)=1:3 : 1, the sulfuric acid that adopts concentration to be 4mol / L and the hydrogen peroxide that mass concentration is 30% when 40 ℃ to anode band agitation leaching 60min, filter after leaching to obtain nickel, cobalt, manganese, lithium, aluminum sulfate mixed solution, utilize hydrogen Sodium oxide solution was used to adjust the pH value of the solution to 6, diatomaceous earth was added, and reacted at 40°C for 60 minutes to form aluminum hydroxide precipitate, which was removed by filtration to obtain a mixed solution of nickel, cobalt, manganese, and lithium sulfate. Add appropriate nickel sulfate, cobalt sulfate and manganese sulfate in the solution to adjust the molar ratio of nickel, cobalt and manganese in the solution to 0.5:...
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