Method for preparing nickel cobalt lithium manganese oxide lithium ion battery positive electrode material from waste lithium battery
A technology of lithium ion battery and lithium nickel cobalt manganese oxide, which is applied to the field of cathode material of nickel cobalt lithium manganate lithium ion battery prepared from waste lithium battery, can solve the problems of uneven distribution of elements, low product capacity, unstable product performance and the like, To achieve the effect of promoting sustainable development and saving resources
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Embodiment 1
[0024] (1) Take 5000 grams of waste nickel-cobalt-lithium-manganese-oxide positive electrode material, crush the positive electrode material, then dissolve it with 4mol / L sulfuric acid at a temperature of 60°C, and filter it. The obtained filtrate is nickel, cobalt, manganese, and lithium containing impurities. 36L of mixed metal solution;
[0025] (2) Transfer the mixed solution in step (1) to the extraction tank with extractant di(2-ethylhexyl) phosphoric acid and phosphonic acid monoester containing sulfonated kerosene, so that the calcium, magnesium and iron in the mixed solution , copper, zinc, lead, and aluminum impurities enter the organic phase of the acidic extractant, and the organic phase loaded with impurities undergoes multi-stage countercurrent, and the organic phase is back-extracted with acid, so that the organic phase can be regenerated and reused, and the calcium, magnesium, iron, copper , zinc, lead, and aluminum impurities are removed to obtain an impurity-...
Embodiment 2
[0029] (1) Take 10,000 grams of waste lithium-ion battery, disassemble the battery, take out the positive electrode material and pulverize it, then dissolve it with 6mol / L sulfuric acid at a temperature of 60°C, and filter it. The obtained filtrate contains impurities such as nickel, cobalt, manganese, Lithium mixed metal solution 48L;
[0030] (2) Transfer the mixed solution in step (1) to the extraction tank with extractant di(2-ethylhexyl) phosphoric acid and dialkylphosphonic acid diester containing sulfonated kerosene, so that the calcium, Magnesium, iron, copper, zinc, lead, and aluminum impurities enter the organic phase of the acidic extractant, and the organic phase loaded with impurities passes through multi-stage countercurrent, and the organic phase is back-extracted with acid, so that the organic phase can be regenerated and reused, and the calcium, magnesium, and Iron, copper, zinc, lead, and aluminum impurities are removed to obtain a mixed metal solution withou...
Embodiment 3
[0034] (1) Take 2000 grams of waste nickel-cobalt-lithium manganese oxide positive electrode material, crush the positive electrode material, then dissolve it with 2mol / L sulfuric acid at a temperature of 60°C, and filter it. The obtained filtrate is nickel, cobalt, manganese, and lithium containing impurities. The mixed solution 16L;
[0035](2) Transfer the mixed solution in step (1) to the extraction tank with extractant mono(2-ethylhexyl) phosphoric acid and phosphonic acid diester containing sulfonated kerosene, so that the calcium, magnesium and iron in the mixed solution , copper, zinc, lead, and aluminum impurities enter the organic phase of the acidic extractant, and the organic phase loaded with impurities undergoes multi-stage countercurrent, and the organic phase is back-extracted with acid, so that the organic phase can be regenerated and reused, and the calcium, magnesium, iron, copper , zinc, lead, and aluminum impurities are removed to obtain a mixed metal solu...
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