Ozone water generator

By installing a partition plate and a movable inlet in the ozone water generator, and controlling the position of the inlet with a drive cylinder, the problem of the existing equipment's inability to flexibly adjust the ozone water treatment volume is solved, achieving flexible adjustment and energy saving.

CN223866420UActive Publication Date: 2026-02-03PUJIANG COUNTY HUANYI BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202520368197.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-03-04
Publication Date
2026-02-03
Estimated Expiration
2035-03-04

AI Technical Summary

Technical Problem

Existing ozone water generators cannot flexibly adjust the ozone water treatment volume, resulting in energy waste.

Method used

A square housing with partitions is designed, with proton exchange membrane electrode assemblies on both sides of the partitions. The position of the water inlet is controlled by a movable water inlet and a drive cylinder to achieve ozone water production in independent or synchronous treatment chambers. Combined with battery power supply, the range of applications is expanded.

Benefits of technology

It enables flexible adjustment of ozone water treatment volume, reduces energy waste, and improves the flexibility and adaptability of equipment use.

✦ Generated by Eureka AI based on patent content.

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Abstract

The ozone water generator comprises a square shell (1), a movable water inlet (2) is formed in the upper end outside the square shell (1), water outlets (3) are formed in the two sides of the lower end outside the square shell (1), a partition plate (4) corresponding to the movable water inlet (2) is arranged in the middle inside the square shell (1), and proton membrane electrode sets (5) are arranged on the two sides of the partition plate (4). And the upper side of the square shell (1) is also provided with a battery pack (6) connected with the proton membrane electrode group (5). The ozone water treatment device has the characteristic that the ozone water treatment capacity can be flexibly adjusted.
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Description

Technical Field

[0001] This utility model relates to an ozone water manufacturing mechanism, and more particularly to an ozone water generator. Background Technology

[0002] An ozone water generator is a device used to produce ozone water (O3), widely used in water treatment, food processing, medical and health, agriculture, and other fields. Ozone is a strong oxidant with highly efficient bactericidal, disinfecting, deodorizing, and organic matter decomposition capabilities. The working principle of an ozone water generator is as follows: A 12V low-voltage DC current is connected to the positive and negative electrodes of a proton exchange membrane. Water is separated into hydrogen molecules and cations at the proton exchange interface. Hydrogen molecules are directly emitted from the cathode interface, while oxygen molecules are excited by electrons generated by a high-density current at the anode interface, gaining energy and polymerizing into ozone molecules. These form micro-nano bubbles that are evenly distributed in the water, creating ozone water. Hydroxyl radicals are also generated during electrolysis, contributing to the ozone water composition. However, existing ozone water generators have a fixed processing volume, making it impossible to flexibly adjust the processing capacity according to the actual amount of ozone water needed, leading to energy waste. Therefore, existing technology suffers from the problem of not being able to flexibly adjust the ozone water processing volume. Utility Model Content

[0003] The purpose of this invention is to provide an ozone water generator. This invention features the ability to flexibly adjust the ozone water treatment capacity.

[0004] The technical solution of this utility model is as follows: An ozone water generator includes a square shell, a movable water inlet at the upper end of the square shell, water outlets on both sides at the lower end of the square shell, a partition plate corresponding to the movable water inlet in the middle of the square shell, and proton membrane electrode assemblies on both sides of the partition plate; a battery pack connected to the proton membrane electrode assemblies is also provided on the upper side of the square shell.

[0005] In the aforementioned ozone water generator, a linear opening groove is provided at the middle position of the upper outer end of the square shell, and a partition plate is located at the middle position of the opening groove. Sliding grooves are provided on the front and rear sides of the opening groove, and a sealing sliding cover that cooperates with the opening groove is provided in the sliding groove. The sealing sliding cover is provided with a water inlet.

[0006] In the aforementioned ozone water generator, the square housing is provided with a drive cylinder located above one end of the sliding groove, and the output end of the drive cylinder is connected to a connecting seat located above the sealed sliding cover.

[0007] In the aforementioned ozone water generator, an ultraviolet disinfection lamp assembly is also provided at the top of the square housing.

[0008] In the aforementioned ozone water generator, both ends of the square housing are provided with removable sealing caps.

[0009] Compared with existing technologies, this invention divides the square housing into two independent processing chambers by setting a movable water inlet at the top of the housing, setting water outlets on both sides of the lower end of the housing, and setting a partition plate in the middle of the housing. Each processing chamber is equipped with a proton exchange membrane electrode assembly, allowing both processing chambers to independently produce ozone water. By moving the movable water inlet, the production of ozone water in different processing chambers can be adjusted, or both processing chambers can process simultaneously. This allows for flexible adjustment of the processing chambers according to the actual required amount of ozone water, thereby achieving flexible adjustment of the ozone water treatment volume. Moreover, by setting a battery pack on the housing, this application can operate for a certain period of time without an external power source, thus expanding the scope of application and reducing the impact of power supply factors. In summary, this invention has the characteristic of flexibly adjusting the ozone water treatment volume. Attached Figure Description

[0010] Figure 1 This is a schematic diagram of the structure of this utility model;

[0011] Figure 2 This is a side view of the movable water inlet.

[0012] The markings in the attached diagram are as follows: 1-square shell, 2-movable inlet, 3-outlet, 4-partition plate, 5-proton exchange membrane electrode assembly, 6-battery assembly, 7-open slot, 8-sliding part, 9-sealed sliding cover, 10-inlet, 11-drive cylinder, 12-connecting seat, 13-ultraviolet disinfection lamp assembly, 14-removable sealing cover. Detailed Implementation

[0013] The present invention will be further described below with reference to the accompanying drawings and embodiments, but this should not be construed as limiting the present invention.

[0014] Example. An ozone water generator, configured as follows: Figure 1-2 As shown, it includes a square shell 1, a movable water inlet 2 at the upper end of the square shell 1, water outlets 3 on both sides at the lower end of the square shell 1, a partition plate 4 corresponding to the movable water inlet 2 in the middle of the square shell 1, and proton membrane electrode groups 5 on both sides of the partition plate 4; a battery pack 6 connected to the proton membrane electrode groups 5 is also provided on the upper side of the square shell 1.

[0015] The square shell 1 has a linear opening groove 7 at the middle of its upper outer end, and the partition plate 4 is located in the middle of the opening groove 7. The opening groove 7 has sliding grooves 8 on both the front and rear sides, and the sliding grooves 8 have sealing sliding covers 9 that cooperate with the opening groove 7. The sealing sliding covers 9 have water inlets 10.

[0016] The square housing 1 is provided with a drive cylinder 11 located above one end of the sliding groove 8, and the output end of the drive cylinder 11 is connected to a connecting seat 12 located above the sealed sliding cover 9.

[0017] The top of the square housing 1 is also equipped with an ultraviolet disinfection lamp group 13.

[0018] Both ends of the square housing 1 are provided with detachable sealing caps 14.

[0019] The square shell has a guide line in the middle that corresponds to the position of the partition plate. When the position of the water inlet is manually adjusted, the position is adjusted accordingly based on the position of the guide line. When the water inlet is located to the side of the guide line, one of the treatment chambers is selected to produce ozone water. When the guide line is located in the middle of the water inlet, both treatment chambers can process and produce ozone water simultaneously.

[0020] When the water inlet is controlled by the drive cylinder, the extension and retraction of the drive cylinder can be controlled, which in turn can drive the sealed sliding cover to move accordingly along the slide groove to adjust the position of the water inlet.

[0021] By setting up ultraviolet disinfection lamps and periodically turning them on to irradiate the inside of the casing, the internal areas of the casing are disinfected, preventing bacterial growth and improving safety.

[0022] By installing removable sealing covers on both sides of the housing, it can be periodically opened to clean the area inside the housing.

[0023] The working process of this utility model is as follows: Based on the amount of ozone water to be processed, a suitable inlet position is selected (e.g., ozone water is produced in one of the processing chambers, or the inlet is located in the middle of the partition so that water is simultaneously introduced into both processing chambers to produce ozone water). Then, the proton membrane electrode assembly at the corresponding position is energized to start the process, and the water is treated. After ozone water is produced, it is discharged from the outlet.

Claims

1. An ozone water generator, characterized in that: The device includes a square shell (1), a movable water inlet (2) at the upper end of the square shell (1), water outlets (3) on both sides of the lower end of the square shell (1), a partition plate (4) corresponding to the movable water inlet (2) in the middle of the square shell (1), and a proton membrane electrode assembly (5) on both sides of the partition plate (4); a battery pack (6) connected to the proton membrane electrode assembly (5) is also provided on the upper side of the square shell (1).

2. An ozone water generator according to claim 1, characterized in that: The square shell (1) has a linear opening groove (7) at the middle of the upper part of the outer side, and the partition plate (4) is located in the middle of the opening groove (7). The opening groove (7) has sliding grooves (8) on the front and rear sides. The sliding grooves (8) have sealing sliding covers (9) that cooperate with the opening groove (7) inside. The sealing sliding covers (9) have water inlets (10).

3. An ozone water generator according to claim 2, characterized in that: The square housing (1) is provided with a drive cylinder (11) located above one end of the sliding groove (8), and the output end of the drive cylinder (11) is connected to a connecting seat (12) located above the sealed sliding cover (9).

4. An ozone water generator according to claim 1, characterized in that: The top of the square housing (1) is also equipped with an ultraviolet disinfection lamp assembly (13).

5. An ozone water generator according to claim 1, characterized in that: The square housing (1) is provided with detachable sealing caps (14) at both ends.