Power supply container, power carrier and using method of power supply container
A container and power supply technology, which is applied to the use/maintenance of primary batteries, fuel cell half-cells, primary battery half-cells, and storage battery charging methods. It can solve the problems of low cost and high specific energy of zinc-air batteries.
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Embodiment 1
[0067] Design a power supply container for providing electric energy for the external discharge load 4, the power supply container includes: a box body 7, a power storage device 2 and a power management system 3, and its basic structure is schematically shown as Figure 1a and Figure 1b As shown; wherein, the power storage device 2 is composed of 35 disposable zinc-air single batteries 6 electrically connected in series, which are fixedly installed in the box body 7 of the power supply container; the box body 7 is made of iron alloy material with six sides , five of which are movable surfaces that can be opened and closed, and the internal space after the five movable surfaces are fitted is a six-sided cavity, and the inside of the box body 7 is provided with a fitting seat frame and retaining screws for fixing 35 Zinc-air single battery 6; each zinc-air single battery is composed of a casing 6a, an air membrane electrode 6d, a replaceable zinc electrode 6b, a fitting tank 6c ...
Embodiment 2
[0074] Embodiment 1 The power supply container is designed to use a standard zinc-air single battery product, and the zinc electrode 6b has been installed when it is submitted to the user for the first use, and only needs to be placed in the housing 6a of each zinc-air single battery Adding the electrolyte of standard design can activate the described power storage device 2 . But the zinc-air battery also has a product that is installed by the user when using it for the first time. At the same time, after the zinc-air battery is discharged, the plate body 6b2 of the zinc electrode 6b will be dissolved in the electrolyte. Reinstall the zinc electrode 6b.
[0075] This embodiment is aimed at the zinc-air battery that requires the user to install the zinc electrode 6b when it is used for the first time, and to replace the zinc electrode 6b when it is used again and to regularly maintain the electrolyte or re-add the electrolyte during use. Install the zinc electrode 6b according ...
Embodiment 3
[0081] The liquid addition of the electrolyte described in the above embodiments 1 and 2 uses an external liquid flow tool, and the zinc-air single battery 6 of this embodiment is provided with a dedicated electric liquid flow pump. The electric liquid flow pump is composed of a liquid flow pump and a connected DC motor, and is arranged outside the casing 6a close to the upper liquid filling hole 5, and the liquid flow output pipe is connected to the casing 6a through the upper liquid filling hole 5 Inside, the DC motor is connected to the power output terminal of the power storage device 2 through a power switch (the operating voltage of the DC motor must match the output voltage of the power storage device 2). When the power storage device 2 is filled with liquid, the liquid flow input pipe of the electric liquid flow pump is connected to the electrolyte storage tank arranged outside the power supply container, and automatic liquid filling is realized by closing the power swi...
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