High-performance lead-carbon negative electrode lead paste and preparation method thereof
A negative electrode lead paste, high-performance technology, applied in negative electrodes, active material electrodes, battery electrodes, etc., can solve the problems that hydrogen suppressors cannot meet the requirements of lead-carbon batteries, the power characteristics and hydrogen evolution of lead-carbon batteries, etc. , to achieve the effect of simple and scientific formula design, high power characteristics, and solving the difficulty of dispersion
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Embodiment 1
[0028] Corn starch (passed through 200 mesh sieve) → 220°C muffle furnace high temperature treatment, 6h → -10°C low temperature quenching, 5min → room temperature set aside, 1h → 50% sulfuric acid solution soaking, 24h → absolute ethanol soaking, 2h → ether soaking , 20min → drying at 80°C, 30min → planetary ball mill grinding treatment, agate balls, 15min (1000 rpm) → passing through a 120-mesh sieve → complete the preparation of corn starch-based carbon black, set aside.
[0029] Dissolve 5g of sodium lignosulfonate in 240ml of battery water. After the lignin is completely dissolved, add 20g of the prepared corn starch-based carbon black, conductive polyaniline powder→ultrasonic stirring at 50°C, 30min→mechanical stirring, 10min (3000 turn / min), slowly add 106ml of 50% sulfuric acid solution during the stirring process (lignin re-precipitation process) → stir and add to 2kg of lead powder within 10min, mix with 16g of barium sulfate, 3g of yttrium fluoride and 3g of polyprop...
Embodiment 2
[0037] Corn starch (passed through 200 mesh sieve) → 220°C muffle furnace high temperature treatment, 6h → -15°C low temperature quenching, 7min → room temperature settling, 1h → 50% sulfuric acid solution soaking, 26h → absolute ethanol soaking, 2.5h → ether Soaking, 25min → drying at 80°C, 35min → planetary ball mill grinding, agate balls, 15min (1000 rpm) → passing through a 120-mesh sieve → complete the preparation of corn starch-based carbon black, set aside.
[0038]Dissolve 125g of sodium lignosulfonate in 6L of battery water. After the lignin is completely dissolved, add 500g of the prepared cornstarch-based carbon black, 50g of conductive polythiophene powder→ultrasonic stirring at 50°C for 30min→mechanical stirring for 10min( 3000 rev / min), slowly add 2650ml of 50% sulfuric acid solution (sodium lignosulfonate re-precipitation process) in the stirring process → stir and join in the lead powder of 50kg in 10min, with the barium sulfate of 400g, 75g dysprosium fluoride ...
Embodiment 3
[0050] Corn starch (through a 300-mesh sieve) → 300°C muffle furnace high temperature treatment, 8h → -10°C low temperature quenching, 10min → room temperature settling, 2h → 50% sulfuric acid solution soaking, 30h → absolute ethanol soaking, 3h → ether soaking , 30min → dry at 100°C, 40min → planetary ball mill grinding treatment, agate balls, 15min (1000 rpm) → pass through a 120 mesh sieve → complete the preparation of corn starch-based carbon black, set aside.
[0051] Dissolve 125g of sodium lignosulfonate in 6000ml of battery water, after the lignin is completely dissolved, add 120g of prepared cornstarch-based carbon black, 75g of two powders of conductive polyaniline and polythiophene (the mass ratio of the two is 2: 3)→Ultrasonic stirring at 50°C, 30min→mechanical stirring, 10min (3000 rpm), slowly add 2650ml of 50% sulfuric acid solution during the stirring process (re-precipitation process of sodium lignosulfonate)→add 50kg of sulfuric acid solution within 10min of s...
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