Super battery consisting of plumbic acid capacitance and preparation method thereof
A super battery and capacitor technology, applied in lead-acid batteries, lead-acid battery construction, hybrid capacitor electrodes, etc. problems, to achieve the effect of enhancing the charging receiving capacity, reducing the lead content and increasing the consumption
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Embodiment 1
[0021] The present embodiment comprises 7 positive pole plates, 8 negative pole plates, and the positive pole plate adopts the common positive pole plate of common lead-acid battery, adopts 8 activated carbon pole pieces in the negative pole plate, and described activated carbon pole piece adopts the following method to make: the activated carbon, conductive agent (Acetylene black), binder (PDFE) are mixed in a ratio of 98:1:1, after stirring evenly, add 1% alcohol, add pure water to cover the mixture, boil for 5 minutes, filter, and press into 0.1mm thick Flakes, and then press the shaped flakes on the negative plate, and dry at 40 degrees Celsius to form a new negative electrode sheet.
[0022] During the charging process of the product in this example, the porosity and acidity of carbon accelerate the diffusion of sulfuric acid, and the oxygen diffused to the negative electrode during overcharging can form organic molecules with carbon atoms, reducing the oxidation of the po...
Embodiment 2
[0026] This embodiment includes 7 positive plates and 8 negative plates. The positive plates are common positive plates of common lead-acid batteries. In the production process of 8 negative plates, 1wt% activated carbon paste is added to the lead paste. The preparation method of the activated carbon mixture is as follows : Activated carbon, conductive agent (graphite), and binder (PDFE) are mixed in a ratio of 92:5:3. After stirring evenly, add 5% alcohol to dissolve, dry at 40 degrees for 12 hours, and then use a pulverizer to grind into diameter Powder smaller than 1mm, added to lead paste as an additive.
[0027] During the charging process of the product of this embodiment, the porosity and acidity of carbon accelerate the diffusion of sulfuric acid, and the oxygen diffused to the negative electrode during overcharging can form organic molecules with carbon, reducing the oxidation of the positive electrode grid. Thereby indirectly improving the charging receiving capacity...
Embodiment 3
[0031] The present embodiment comprises 7 positive plates and 8 negative plates. The positive plates adopt common positive plates of common lead-acid batteries. In the negative plates, 2 activated carbon pole pieces are used. The activated carbon pole pieces are made by the following method: activated carbon, conductive Agent (acetylene black) and binder (PDFE) are mixed in a ratio of 80:10:10, after stirring evenly, add 1% alcohol, add pure water to cover the mixture, boil for 5 minutes, filter, and press into a 2mm thick Sheet, and then press the shaped sheet on the negative grid, and dry it at 40 degrees Celsius to form a new negative electrode sheet.
[0032] During the charging process of the product in this example, the porosity and acidity of carbon accelerate the diffusion of sulfuric acid, and the oxygen diffused to the negative electrode during overcharging can form organic molecules with carbon atoms, reducing the oxidation of the positive electrode grid, thereby ind...
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