Leaching method of lithium cobalt oxide waste battery cathode material
A technology for positive electrode materials and waste batteries, which is applied in the leaching field of positive electrode materials for lithium cobalt oxide waste batteries, and can solve problems such as troublesome storage, transportation and use of industrial pure oxygen, uneconomical use of industrial pure oxygen for personal use, and small amount of industrial pure oxygen. , to achieve obvious economic and environmental benefits, reduce pollution treatment costs, and increase the metal leaching rate
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Embodiment 1
[0018] Example 1: Add 100g of lithium cobalt oxide waste battery positive electrode material (containing 53.6% cobalt, 5.3% lithium, 8.2% copper, 3.4% aluminum) and 30g reed powder ≤ 1.5mm into a titanium-lined pressure reactor with a volume of 2L. Add 1180ml of a mixed acid solution with a concentration of sulfuric acid of 1.5mol / L and a concentration of nitric acid of 5g / L, leaching at 60°C to 70°C with closed stirring (stirring speed 80r / min) for 4.0h, and liquid-solid separation after leaching to obtain 1160ml Leaching solution (without leach slag wash water). The leaching rates of cobalt, lithium, copper and aluminum are 99.0%, 99.2%, 98.9% and 98.8% respectively (calculated based on cobalt, lithium, copper and aluminum entering the leaching solution and leaching slag washing solution).
Embodiment 2
[0019] Example 2: Add 190 g of 500 g lithium cobalt oxide waste battery cathode material (containing 53.6% cobalt, 5.3% lithium, 8.2% copper, 3.4% aluminum) ≤ 1.5mm reed powder into a titanium-lined pressure reactor with a volume of 5L, and add 3500ml of mixed acid solution with a sulfuric acid concentration of 3.0mol / L and a nitric acid concentration of 10g / L was leached at 70°C to 80°C with closed stirring (stirring speed 70r / min) for 2 hours, and liquid-solid separation was carried out after leaching to obtain 3300ml leaching solution (excluding leaching residue washing water), the leaching rates of cobalt, lithium, copper and aluminum are 99.1%, 99.3%, 99.0% and 98.9% respectively (according to the cobalt, lithium, copper and aluminum calculation).
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