Storage battery plate additive and preparation method thereof
A storage battery and additive technology, applied to battery electrodes, circuits, electrical components, etc., can solve problems such as unresolved sulfation problems, reduced battery charge acceptance, and reduced utilization of active materials, so as to maintain the adhesion area and charge The effect of smooth transmission, increasing specific surface area and porosity
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Embodiment 1
[0022] This embodiment relates to a battery plate additive, including the following raw materials in parts by weight: 20 parts of modified graphene, 18 parts of tetrabasic lead sulfate, 23 parts of fumed nano-silica, 2,6-di-tert-butyl -5 parts of 4-hydroxytoluene, 3 parts of 2-mercapto-benzimidazole, and 10 parts of pure water.
[0023] Wherein, the modified graphene is prepared by the following method: (1) mixing graphite oxide and sodium dodecylsulfonate, then adding deionized water, stirring evenly, placing it in a numerically controlled ultrasonic machine for 2.5 hours to obtain Graphene oxide aqueous solution; (2) Put the graphene oxide aqueous solution in a reaction kettle at 190°C to keep warm for 15 hours, and then dry it in a low temperature environment to obtain the modified graphene.
[0024] Wherein, the concentration of the sodium dodecylsulfonate is 5%.
[0025] Wherein, the specific surface area of the gas-phase method nano-silica is 500m 2 / g, the particle ...
Embodiment 2
[0032] This embodiment relates to a battery plate additive, including the following raw materials in parts by weight: 40 parts of modified graphene, 27 parts of tetrabasic lead sulfate, 42 parts of fumed nano-silica, 2,6-di-tert-butyl -12 parts of 4-hydroxytoluene, 8 parts of 2-mercapto-benzimidazole, and 20 parts of pure water.
[0033] Wherein, the modified graphene is prepared by the following method: (1) mixing graphite oxide and sodium dodecylsulfonate, then adding deionized water, stirring evenly, placing it in a numerically controlled ultrasonic machine for 2.5 hours to obtain Graphene oxide aqueous solution; (2) Put the graphene oxide aqueous solution in a reaction kettle at 200°C to keep warm for 17 hours, and then place it in a low-temperature environment to dry, so as to obtain the modified graphene.
[0034] Wherein, the concentration of the sodium dodecylsulfonate is 8%.
[0035] Wherein, the specific surface area of the gas-phase method nano-silica is 500m 2 ...
Embodiment 3
[0042] This embodiment relates to a battery plate additive, including the following raw materials in parts by weight: 25 parts of modified graphene, 21 parts of tetrabasic lead sulfate, 35 parts of fumed nano-silica, 2,6-di-tert-butyl -8 parts of 4-hydroxytoluene, 4 parts of 2-mercapto-benzimidazole, and 13 parts of pure water.
[0043]Wherein, the modified graphene is prepared by the following method: (1) mixing graphite oxide and sodium dodecylsulfonate, then adding deionized water, stirring evenly, placing it in a numerically controlled ultrasonic machine for 2.5 hours to obtain Graphene oxide aqueous solution; (2) Put the graphene oxide aqueous solution in a reaction kettle at 195°C to keep warm for 16 hours, and then place it in a low-temperature environment to dry, so as to obtain the modified graphene.
[0044] Wherein, the concentration of the sodium dodecylsulfonate is 6%.
[0045] Wherein, the specific surface area of the gas-phase method nano-silica is 500m 2 / g...
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