Hydrogen-rich water electrolytic bath
An electrolytic cell and hydrogen-rich water technology, applied in the field of electrolyzed water, can solve problems such as poor water quality and low efficiency of the electrolytic cell, and achieve the effect of enhancing electrolysis efficiency and increasing the contact area
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Embodiment 1
[0021] Such as figure 1 as shown, figure 1 It is an overall structural diagram of a hydrogen-rich water electrolyzer disclosed in the present invention;
[0022] The electrolytic cell is a cuboid structure, and the length, width and height of the structure are 150mm*117mm*70mm
[0023] The electrolytic water tank is composed of an anode chamber and a cathode chamber. The anode chamber and the cathode chamber are formed inside the anode casing 02 and the cathode casing 01 fixed by a plurality of screws 09. The anode chamber is connected with the anode water inlet 04 and the anode water outlet 07. The anode The water inlet 04 and the anode water outlet 07 are arranged on the anode casing 02, the cathode chamber is connected with the cathode water inlet 03 and the cathode water outlet 08, the cathode water inlet 03 and the cathode water outlet 08 are arranged on the cathode casing 01, and the anode water inlet 04 and the cathode water inlet 03 are respectively arranged on the o...
Embodiment 2
[0026] The same technical features as those in the first embodiment will not be repeated in the second embodiment.
[0027] Such as figure 2 as shown, figure 2 It is an exploded view of the structure of a hydrogen-rich water electrolyzer disclosed in the present invention; the cathode shell 01 of the electrolyzed water tank is provided with a plurality of screws 09, and the anode shell 01 is provided with a plurality of corresponding screw holes 15 for fixing the multiple screws of the cathode shell 01 The electrolytic water tank is composed of an anode chamber and a cathode chamber. The anode chamber and the cathode chamber are formed inside the anode casing 02 and the cathode casing 01 fixed by screws 09. The anode chamber is connected with the anode water inlet 04 and the anode water outlet 07. The cathode chamber It is connected with the cathode water inlet 03 and the cathode water outlet 08. The anode chamber and the cathode chamber are respectively provided with an an...
Embodiment 3
[0031] Such as image 3 as shown, image 3 It is a cross-sectional view of a hydrogen-rich water electrolyzer disclosed in the present invention; when starting to work, first turn on the power supply, water supplies water to the narrow channels of the anode chamber and the cathode chamber respectively through the anode water inlet 04 and the anode water outlet 07, and the water passes through Contact the anode electrode plate 14 and the cathode electrode plate 10 for electrolysis, pass through the cation exchange membrane 11 of the anode chamber and the cathode chamber, the cation exchange membrane 11 only allows cations to pass through, the water in the cathode chamber is in a weakly alkaline state, and the cathode chamber passes through the cathode water outlet 03 flows out of hydrogen-rich water, and the anode chamber flows out of oxygen-rich water through the anode water outlet 07. In all electrolysis processes, the water in the anode chamber circulates in multiple paralle...
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