A method for recycling and reusing waste lithium ion battery lithium iron phosphate cathode material
A lithium-ion battery and lithium iron phosphate technology, which is applied in the field of resource recovery and reuse of lithium iron phosphate cathode materials for waste lithium-ion batteries, can solve the problem that the properties of recycled materials are very different, and it is difficult to completely regenerate the electrochemical activity of cathode materials. Repair, inventors are difficult to achieve and other problems, to achieve the effect of excellent cycle reversibility, excellent electrochemical activity, and easy large-scale industrial production
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Embodiment 1
[0024] Preparation of lithium iron phosphate-based composite material: Soak the lithium iron phosphate positive electrode sheet separated from the waste lithium-ion battery in a sodium hydroxide solution with a molar concentration of 0.2mol / L for 20 minutes, rinse in deionized water for 10 minutes, Then, under a nitrogen atmosphere, calcined at 450°C for 2 hours to separate the positive electrode active material from the aluminum foil, dry, grind, and sieve to obtain the pretreated lithium iron phosphate material; the recovered lithium iron phosphate material, sulfurous acid Iron and organic additive polyvinyl alcohol are mixed uniformly by ball milling at a mass ratio of 1:0.2:0.1; the resulting mixture is subjected to a high temperature treatment at 600°C for 2 hours under the protection of nitrogen, cooled, pulverized, and sieved to obtain a lithium iron phosphate-based composite material .
[0025] Preparation of lithium iron phosphate-based composite material negative ele...
Embodiment 2
[0028] Preparation of lithium iron phosphate-based composite material: Soak the lithium iron phosphate positive electrode sheet separated from the waste lithium-ion battery in a sodium hydroxide solution with a molar concentration of 0.05mol / L for 15 minutes, rinse in deionized water for 15 minutes, Then, under a nitrogen atmosphere, calcined at a high temperature of 550°C for 1.5 hours to separate the positive electrode active material from the aluminum foil, dry, grind, and sieve to obtain the pretreated lithium iron phosphate material; the recovered lithium iron phosphate material, oxalate Iron and organic additive ascorbic acid are ball-milled and mixed uniformly at a mass ratio of 1:0.3:0.05; the resulting mixture is subjected to a high temperature treatment at 700°C for 1 hour under nitrogen protection, cooled, pulverized, and sieved to obtain a lithium iron phosphate-based composite material.
[0029]Preparation of lithium iron phosphate-based composite material negative...
Embodiment 3
[0032] Preparation of lithium iron phosphate-based composite material: Soak the lithium iron phosphate positive electrode sheet separated from the waste lithium-ion battery in a sodium hydroxide solution with a molar concentration of 0.1mol / L for 30 minutes, rinse in deionized water for 20 minutes, Then, under a nitrogen atmosphere, calcined at a high temperature of 500°C for 1 hour to separate the positive electrode active material from the aluminum foil, dry, grind, and sieve to obtain the pretreated lithium iron phosphate material; the recovered lithium iron phosphate material, sulfurous acid Iron and organic additive glucose were ball milled and mixed uniformly at a mass ratio of 1:0.6:0.3; the resulting mixture was subjected to a high temperature treatment at 600°C for 2 hours under the protection of nitrogen, cooled, pulverized, and sieved to obtain a lithium iron phosphate-based composite material.
[0033] Preparation of lithium iron phosphate-based composite material n...
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