Simple high-efficiency electrolysis method and device capable of preparing electrolytic water from pure water
An electrolysis method and technology of electrolysis of water, applied in the direction of electrolysis process, electrolysis components, water/sewage treatment, etc., can solve the problems of inability to generate electrolysis current, impossible functional water or negative potential reduction water, low conductivity, etc.
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Embodiment 1
[0046] The basic technical scheme of the present invention is applied to the design of the water container, such as figure 1 As shown, it includes a water container 14 and its cover 13. The controllable electrolysis power supply 12 is installed in the cover 13, and the electrolysis plate assembly 18 extending downward into the electrolytic container is installed on the 13. This assembly is composed of 3 electrodes. As a result, soak in the water in the container when working. The electrolytic plate assembly is wrapped by the electrode stainless steel cylindrical cathode 1, the top of the 1 is open, and the bottom of the plane has a mesh garden hole 15, so as to facilitate the flow of water inside and outside the 1, 1 is connected to the negative pole 15 of one of the power supplies output by the wire 4 and 12; 1. A honeycomb-shaped activated carbon cake electrode 2 with a diameter matching that of 1 is installed horizontally on the inner middle or on the upper part. There is a...
Embodiment 2
[0059] The structure of this embodiment is as figure 2As shown, it is another embodiment of applying the basic technical solution of the present invention to electrolyze flowing water into reduced water with negative potential. It includes a section of tubular passage 25, a controllable electrolysis power supply 12, and an electrolysis plate assembly 18 installed in the passage 25. This assembly is the same as the electrolysis plate assembly described in Embodiment 1 of the present invention, the only difference being: the length of the 22 gap M times longer than 22 in embodiment 1; water is allowed to flow in and flow through 18 from the water inlet port 26 of 25, through electrolytic electrode gaps 7, 8, 9, especially through repeated electrolytic treatment in N 22 gaps, and water is discharged from 25 Port 27 flows out, through the controllable power supply output 16, 17, 15 different voltage combinations to form control modes 1, 2, 3, which can control the electrode assem...
Embodiment 3
[0064] The structure of this embodiment is as image 3 As shown, the function is similar to that of Example 2, and it is another implementation of applying the basic technical solution of the present invention to electrolyze flowing water into reduced water with negative potential. It includes a section of tubular passage 25, a controllable electrolysis power source 12, and an electrolysis plate assembly 18 installed in the passage 25. The assembly is composed of three electrodes and is immersed in water in the container during operation. The electrode 1 of the electrolytic plate assembly is in the shape of a U-tube, with an open top, and a mesh-like garden hole 15 at the bottom of the plane, which facilitates the flow of water in the electrode 1, and the electrode 1 is connected to the output port 15 of the electrode 12 through the wire 4; the structure of the electrode 2 is N levels Inverted E-shaped side by side close to the shape, the structure of the electrode 3 is N E-sh...
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Abstract
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