Negative pole lead paste for lead-carbon super storage battery and preparation method thereof
A technology of super battery and negative electrode paste, which is applied in the direction of lead-acid battery electrodes, battery electrodes, circuits, etc., and can solve problems such as poor binding force, sulfation, and poor cycle performance
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Embodiment 1
[0030] Weigh 62.84kg of lead powder, 35kg of lead-carbon composite material with a mass percentage of 25% of lead, 0.5kg of sodium lignosulfonate, 0.3kg of barium sulfate, 0.5kg of carbon black, polyester fiber with a length of 8mm and a diameter of 12μm 0.06kg, 0.8kg of humic acid for lead-acid batteries, put the above materials into the paste mixer and stir for 25 minutes, then quickly add 10.7kg of deionized water, mix for 50 minutes, and the pouring density is 1.35g / cm 3 (25°C) sulfuric acid solution 8.7kg, mixed for 1.5 hours, the temperature of the paste was controlled to be 50~60°C during the paste process, and when the temperature dropped to 45°C, the material was discharged to obtain the negative lead paste for lead-carbon super battery. Paint the negative plate. The coated plate can be processed according to the usual curing and drying process of the lead-acid battery plate, and enter the assembly and internalization process of the super battery. The craft is carrie...
Embodiment 2
[0033] Weigh 93kg of lead powder, 2kg of lead-carbon composite material with a mass percentage of 38% of lead, 1.35kg of sodium lignosulfonate, 0.78kg of barium sulfate, 0.8kg of carbon black, 0.07kg of polyester fiber with a length of 8mm and a diameter of 12μm. kg, 2kg of humic acid for lead-acid batteries, put the above materials into the paste machine and stir for 10 minutes, then quickly add 13kg of deionized water, mix for 80 minutes, and the pouring density is 1.4g / cm 3 (25 DEG C) of sulfuric acid solution 11kg, mixed for 0.5 hours, the temperature of the paste was controlled to be 50-60 DEG C during the paste process, and when the temperature dropped to 45 DEG C, the material was discharged to obtain the negative lead paste for lead-carbon super batteries.
[0034] The preparation process of the lead-carbon composite material used in this embodiment is as follows: the specific surface area is 1530m 2 / g Activated carbon, carbon black, polyvinylidene fluoride and nitrog...
Embodiment 3
[0036] Weigh 1 kg of lead powder, 95 kg of lead-carbon composite material with a mass percentage of 55% of lead, 0.05 kg of sodium lignosulfonate, 2.8 kg of barium sulfate, 0.1 kg of carbon black, and 0.05 kg of polyester fiber with a length of 8 mm and a diameter of 12 μm. kg, 1kg of humic acid for lead-acid batteries, put the above materials into the paste machine and stir for 30 minutes, then quickly add 10kg of deionized water, mix for 20 minutes, and the pouring density is 1.3g / cm 3 (25°C) of sulfuric acid solution 7kg, mixed for 2.5 hours, the temperature of the paste was 50-60°C during the control and paste process, and discharged when the temperature dropped to 45°C to obtain the negative lead paste for lead-carbon super batteries.
[0037] The preparation process of the lead-carbon composite material used in the present embodiment is as follows: the specific surface area is 2030m 2 / g Activated carbon, carbon black, polyvinylidene fluoride and nitrogen methyl pyrrolid...
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