
On the positive electrode plate, the lead of sulfate is dissociated as divalent lead ions and sulfate negatives under the action of the external current. Since the external power supply continues to absorb electrodes from the positive electrode, the four-orvalent lead ions near the positive electrode plate continue to release two electrons. To supplement, become tetravalent lead ions, and continue to react with water, and finally produce neutral lead in the positive electrode plate. On the negative electrode plate, under the action of the external current, the cells of sulfate are eluted into divalent lead ions and sulfate negative ions. Since the negative electrode is constantly obtaining electrons from the external power source, it is neutralized to the neutralized lead ion. And with velvet lead attached to the negative plate.
In the electrolyte, the positive electrode is constantly producing free hydrogen ions and sulfate ions, and the negative electrode is constantly producing sulfate ions, and the hydrogen ion moves to the negative electrode under the action of the electric field, and the sulfate ion moves to form a current.
Article from: http://www.brcpower.com/ Recommend: LiFePO4 Battery Manufacturer Energy storage battery Manufacturer Integrated machine energy storage battery series Manufacturer Lead lithium battery Manufacturer Outdoor Backup Battery Manufacturer Portable outdoor power supply Manufacturer Power battery Manufacturer Powerwall LiFePO4 Battery Manufacturer Battery rack Manufacturers Telecom LiFePO4 Battery Manufacturer Wall mounted battery storage Manufacturer China Lifepo4 Battery