Active material of super lead storage battery plate
A super lead-acid battery, positive active material technology, applied in lead-acid battery electrodes, battery electrodes, circuits, etc., can solve the problem of imperfect composition and ratio of battery plate active materials, poor low-temperature performance and short life of lead batteries, etc. problems, to achieve the effects of superior low temperature discharge performance, long cycle life, improved electrical conductivity and low temperature resistance
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Embodiment 1
[0013] Preparation of positive electrode active material and positive plate production: get 100 kg of lead powder, 0.01 kg of graphite fiber, 0.1 kg of tin oxide, 0.1 kg of carbon nanotubes, 0.01 kg of sodium carboxymethyl cellulose, 8 kg of sulfuric acid (50% by mass), Appropriate amount of water, paste the above raw materials at 60°C, apply on the coating machine, and cure the coated plate at 50°C and relative humidity of 95% to 100%, the time is not less than 36h, After the curing is completed, dry at 70°C for 12 hours, put the raw positive plate formed after drying into the electrolyte solution, and obtain a usable positive plate after chemical formation.
[0014] Negative active material preparation and negative plate production: Take 100 kg of lead powder, 0.01 kg of graphite fiber, 0.1 kg of carbon nanotubes, 0.1 kg of barium sulfate, 0.2 kg of humic acid, 0.01 kg of lignin, and 8 kg of sulfuric acid (50% by mass) , an appropriate amount of water, paste the above raw ma...
Embodiment 2
[0018] Get 100 kilograms of lead powder, 0.1 kilogram of graphite fiber, 0.5 kilogram of bismuth oxide, 0.1 kilogram of KS15 (positive electrode graphite conductive agent), 0.5 kilogram of superconducting carbon, 0.01 kilogram of sodium carboxymethyl cellulose, 8 kilograms of sulfuric acid (50% by mass percentage) , an appropriate amount of water, paste the above raw materials at a temperature below 60°C, apply on a coating machine, and put the coated plate at 50°C and a relative humidity of 95% to 100% for curing, and the time is not less than After curing for 36 hours, dry at 70°C for 12 hours, put the raw positive electrode plate formed after drying into the electrolyte solution, and obtain a usable positive electrode plate after chemical formation.
[0019] Get 100 kilograms of lead powder, 0.01 kilogram of graphite fiber, 0.5 kilogram of KS15 (positive electrode graphite conductive agent), 0.5 kilogram of high boron graphite, 0.1 kilogram of barium sulfate, 0.2 kilogram of...
Embodiment 3
[0023] Get 100 kg of lead powder, 0.15 kg of graphite fiber, 0.2 kg of cerium oxide and tin oxide, 0.1 kg of carbon nanotubes, 0.3 kg of high boron graphite, 0.01 kg of sodium carboxymethyl cellulose, 8 kg of sulfuric acid (50% by mass) , an appropriate amount of water, paste the above raw materials at a temperature below 60°C, apply on a coating machine, and put the coated plate at 50°C and a relative humidity of 95% to 100% for curing, and the time is not less than After curing for 36 hours, dry at 70°C for 12 hours, put the raw positive electrode plate formed after drying into the electrolyte solution, and obtain a usable positive electrode plate after chemical formation.
[0024] Get 100 kilograms of lead powder, 1 kilogram of graphite fiber, 0.3 kilogram of superconducting carbon, 0.4 kilogram of barium sulfate, 0.5 kilogram of humic acid, 0.05 kilogram of lignin, 10 kilograms of sulfuric acid (50% mass percentage), appropriate amount of water, put above-mentioned raw mate...
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