A method for preparing nano manganese dioxide from waste batteries
A nano-manganese dioxide and waste battery technology, applied in the direction of manganese oxide/manganese hydroxide, etc., can solve the problems of insufficient utilization of useful components in waste batteries, few methods of recycling manganese, and no solution to heavy metal pollution. , to avoid heavy metal pollution, the preparation method is simple, easy to operate, and easy to control
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Embodiment 1
[0026] A method for preparing nano-manganese dioxide from waste batteries, comprising the steps of:
[0027] (1) Calcination: crush the waste batteries and sieve them, collect the black manganese-containing mixture, mix the manganese-containing mixture and carbon powder at a mass ratio of 2.6:1, and calcinate at 450°C for 20 minutes to obtain gray-green powder;
[0028] (2) Acid-soluble: soak the gray-green powder in 6 mol / L sulfuric acid for 12 minutes, stir once every 3 minutes, add lime milk to adjust the pH to 5.0 after the reaction is complete, filter to obtain the filtrate, and add vulcanization to the filtrate while stirring Sodium, until no more precipitation occurs, suction filtration to obtain the secondary filtrate;
[0029] (3) Crystallization: Concentrate the secondary filtrate in vacuum at room temperature. When crystals are precipitated in the filtrate, cool the filtrate to 4°C to precipitate sodium sulfate crystals, filter, and add manganese sulfate in an amoun...
Embodiment 2
[0032] (1) Calcination: crush the waste batteries and sieve them, collect the black manganese-containing mixture, stir the manganese-containing mixture and carbon powder at a mass ratio of 2.2:1, and calcinate at 600°C for 15 minutes to obtain gray-green powder;
[0033] (2) Acid-soluble: Soak the gray-green powder in 8 mol / L sulfuric acid for 10 minutes, stir once every 5 minutes, add milk of lime after the reaction is complete, adjust the pH to 4.5, filter to obtain the filtrate, add sulfuration to the filtrate while stirring Sodium, until no more precipitation occurs, suction filtration to obtain the secondary filtrate;
[0034] (3) Crystallization: Concentrate the secondary filtrate in vacuum at room temperature. When crystals are precipitated in the filtrate, cool the filtrate to 5°C to precipitate sodium sulfate crystals, filter, and add manganese sulfate in an amount of 0.1 g / 100 ml to the remaining filtrate Seed, continue vacuum concentration at normal temperature, a l...
Embodiment 3
[0037] (1) Calcination: crush the waste batteries and sieve them, collect the black manganese-containing mixture, stir the manganese-containing mixture and carbon powder at a mass ratio of 3:1, and calcinate at 300°C for 30 minutes to obtain gray-green powder;
[0038] (2) Acid-soluble: Soak the gray-green powder in 5 mol / L sulfuric acid for 15 minutes, stir once every 2 minutes, add milk of lime after the reaction is complete, adjust the pH to 5.5, filter to obtain the filtrate, add sulfuration to the filtrate while stirring Sodium, until no more precipitation occurs, suction filtration to obtain the secondary filtrate;
[0039] (3) Crystallization: Concentrate the secondary filtrate in vacuum at room temperature. When crystals are precipitated in the filtrate, cool the filtrate to 2°C to precipitate sodium sulfate crystals, filter, and add manganese sulfate in an amount of 0.5 g / 100 ml to the remaining filtrate Seed, continue vacuum concentration at normal temperature, a lar...
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