A kind of preparation method of electrolyte solution for zinc anode alkaline secondary battery
A secondary battery and electrolyte technology, which is applied in the manufacture of alkaline batteries, alkaline batteries, nickel batteries, etc., can solve the problems of low-temperature discharge performance degradation, high toxicity of surfactants, and impact on battery life, and achieve improved stability Sexuality, not easy to precipitate or precipitate, and improve the effect of discharge performance
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Embodiment 1
[0032] It is a 1.6V10Ah square zinc-nickel battery assembled with the electrolyte of all the above formulas; the electrolyte includes A, B, C, D, E, F; where A is KOH, B is NaOH, C is boric acid, and D It is fumed silica, E is zinc oxide, F is pure water; A is 10mol / L, B is 1mol / L, C is 0.3mol / L, D is 0.015mol / L, and E is 1.5mol / L. According to the concentration ranges of the above-mentioned solutes, add water, mix and stir evenly to obtain the electrolyte solution of this embodiment.
[0033] The electrolyte solution of this embodiment was assembled into a 1.6V10Ah square zinc-nickel battery for use.
[0034] S1. Mix and dissolve A (total amount of A) / n and part of pure water F to form the first conductive solution, wherein n=6;
[0035] S2. Mix and dissolve B and the first conductive solution to form a second conductive solution;
[0036] S3, mixing and dissolving C in the second conductive solution in an amount of c (total amount of C) / n, mixing and dissolving A of a / n af...
Embodiment 2
[0045] It is a 1.6V10Ah square zinc-nickel battery assembled with the electrolyte of all the above formulas; the electrolyte includes A, B, C, D, E, F; where A is KOH, B is LiOH, C is boric acid, and D It is fumed silica, E is zinc oxide, F is pure water; A is 12mol / L, B is 1.2mol / L, C is 0.36mol / L, D is 0.018mol / L, and E is 1.8mol / L. According to the concentration ranges of the above-mentioned solutes, add water, mix and stir evenly to obtain the electrolyte solution of this embodiment.
[0046] The electrolyte solution of this embodiment was assembled into a 1.6V10Ah square zinc-nickel battery for use.
[0047] S1. Mix and dissolve A (total amount of A) / n and part of pure water F to form the first conductive solution, wherein n=8;
[0048] S2. Mix and dissolve B and the first conductive solution to form a second conductive solution;
[0049] S3, mixing and dissolving C in the second conductive solution in an amount of c (total amount of C) / n, mixing and dissolving A of a / n...
Embodiment 3
[0055] Embodiment 3 (comparative example)
[0056] This embodiment is a 1.6V10Ah square zinc-nickel battery assembled from an electrolyte that does not contain components C and D;
[0057] The electrolyte includes A, B, E, and F; wherein A is KOH, B is NaOH, E is zinc oxide, and F is pure water; A is 10 mol / L, B is 1 mol / L, and E is 1.5 mol / L. According to the concentration ranges of the above-mentioned solutes, add water, mix and stir evenly to obtain the electrolyte solution of this embodiment.
[0058] The electrolyte solution of this embodiment was assembled into a 1.6V10Ah square zinc-nickel battery for use. The preparation steps are the same as in Example 1 except that C and D are not added.
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