Water treatment device based on AOP high oxidation system
By introducing AOP high oxidation system and mixed reaction components into the water treatment device, the problem of inefficiency of a single ozone disinfection device is solved, efficient and fast water treatment effect is achieved, and the stability and operation convenience of the device are improved.
Patent Information
- Application Number
- CN202421122630.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-21
- Publication Date
- 2025-06-10
- Estimated Expiration
- 2034-05-21
AI Technical Summary
The existing water treatment equipment only uses a single ozone disinfection equipment, resulting in low treatment efficiency and inability to achieve efficient, rapid and energy-saving water treatment effect.
A water treatment device based on AOP high oxidation system is designed, combining a mixing reaction assembly and an AOP generation treatment assembly to improve the mixing efficiency of ozone and water through multiple mixing methods, and further oxidation and treatment is carried out using hydroxyl radicals.
The mixing efficiency of ozone and water is improved, the oxidation treatment capacity of organic substances and pollutants is enhanced, and the efficient and fast water treatment effect is achieved. The device has stable performance, easy operation and easy maintenance.
Smart Images

Figure CN222961228U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of water treatment devices, in particular to a water treatment device based on an AOP high-oxidation system. Background Technique
[0002] Most of the existing water treatment devices only use a single ozone disinfection device to treat water, and the efficiency is relatively low. Hydroxyl radical is an important active oxygen. From the molecular formula, it is formed by the hydroxyl group losing an electron. Hydroxyl radical has a very strong electron-gaining ability, that is, oxidation ability. Its oxidation potential is 2.8V, which is the second most powerful oxidant in nature after fluorine. Due to its extremely high oxidation potential, the super strong oxidation ability of hydroxyl radical can undergo a rapid chain reaction with most organic pollutants. Compared with the traditional methods used for water treatment, disinfection and organic matter decomposition, it is more efficient, faster, energy-saving, harmless, meets environmental protection requirements, and has no secondary pollution. Therefore, there is an urgent need to set up a water treatment device that can efficiently treat water based on the AOP high-oxidation system to meet the needs of the efficient and stable use of water treatment devices. Summary of the Utility Model
[0003] In order to overcome the problem that in the process of using a water treatment device, only a single ozone disinfection device is used to treat water, the efficiency is relatively low, and the efficient, fast and energy-saving use effect cannot be achieved.
[0004] The technical solution of the utility model is: a water treatment device based on an AOP high-oxidation system, which includes a water treatment box body, a mixing reaction component, and an AOP generation and treatment component; at one end inside the water treatment box body, there is a mixing reaction component for improving the mixing efficiency of ozone and water; on the side end of the mixing reaction component, there is an AOP generation and treatment component for further oxidizing and treating organic substances and pollutants in water.
[0005] Preferably, the mixing reaction component can improve the mixing efficiency of ozone and water, absorb water while inhaling air, then configure a strong mixing chamber, and repeatedly mix microbubbles reversely. Using multiple mixing methods instead of a single injector dosing can overcome the problems of unstable operation and large bubble churning of traditional devices. And using the AOP generation and treatment component, it can further oxidize and treat organic substances and pollutants in water. The output concentration of hydroxyl radicals is high, the mixing efficiency is high, and the sterilization effect is good. This water treatment device has high gas-liquid dissolution efficiency, is easy to install, has stable performance, is easy to operate and maintain.
[0006] As a preference, the water treatment box body includes a treatment box shell, a PLC control panel and a protective rear plate; inside the water treatment box body, there is a treatment box shell made of stainless steel; the outside of the treatment box shell is electrically connected to the PLC control panel; at the rear end of the treatment box shell, there is a protective rear plate with a water inlet, and the PLC control panel can achieve an integrated control effect.
[0007] Preferably, the mixing reaction assembly includes a high-efficiency steam-water multi-layer mixing tank, a powerful mixer, a corrosion-resistant water pump, a water pipe and a valve; a high-efficiency steam-water multi-layer mixing tank is installed on one side inside the water treatment box body; a powerful mixer for further enhancing the mixing efficiency of ozone and water is installed outside the high-efficiency steam-water multi-layer mixing tank. The high-efficiency steam-water multi-layer mixing tank and the powerful mixer can improve the mixing efficiency of ozone and water, suck water and inhale air at the same time, then configure a powerful mixing chamber, and the micro-bubbles are repeatedly mixed reversely. Using multiple mixing methods instead of a single injector dosing can overcome the problems of unstable operation and large bubble churning of traditional devices.
[0008] Preferably, a corrosion-resistant water pump for transporting water is installed at the bottom of the side end of the high-efficiency steam-water multi-layer mixing tank; a water pipe is installed at the water delivery end of the corrosion-resistant water pump; a valve for control is installed outside the water pipe. The corrosion-resistant water pump enables water to be transported and processed through the water pipe, and at the same time, the valve can control the flow rate.
[0009] Preferably, the AOP generation processing assembly includes a high-concentration ozone generator, a gas source treatment device, a condensation device, an AOP generation device, a booster pump, a residual tail gas treatment device and an anti-backflow device; a high-concentration ozone generator is installed inside the water treatment box body; a gas source treatment device is installed outside the high-concentration ozone generator, and the gas source treatment device can provide a pure and dry gas source.
[0010] Preferably, a condensation device is installed at the exhaust port of the high-concentration ozone generator; an AOP generation device for installation at the outlet of the mixed water is installed inside the water treatment box body; a booster pump is installed at the upper end of the AOP generation device. The AOP generation device can further oxidize and process organic substances and pollutants in water, with a high output concentration of hydroxyl radicals, high mixing efficiency and good sterilization effect.
[0011] Preferably, a residual tail gas treatment device for installing at the outlet of the system to treat and discharge residual ozone and other gases in the system is installed inside the water treatment box body; an anti-backflow device for installing at the water outlet of the system to prevent the treated water from flowing back into the inlet pipeline is installed inside the water treatment box body. The residual tail gas treatment device is used to treat and discharge residual ozone and other gases in the system, and the anti-backflow device can prevent the treated water from flowing back into the inlet pipeline. This water treatment device has high gas-liquid dissolution efficiency, is easy to install, has stable performance, is easy to operate and maintain.
[0012] The beneficial effects of the present utility model:
[0013] 1. The use of a hybrid reaction component can improve the mixing efficiency of ozone and water. It absorbs water while inhaling air, is equipped with a powerful mixing chamber, and has fine bubbles mixing reversely repeatedly. By adopting a multiple mixing method instead of a single injector dosing, it can overcome the problems of unstable operation and large bubble churning in traditional devices. The use of an AOP generation treatment component can further oxidize and treat organic substances and pollutants in water. It has a high output concentration of hydroxyl radicals, high mixing efficiency, and good sterilization effect. Compared with most existing water treatment devices that only use a single ozone disinfection device to treat water with relatively low efficiency, this water treatment device has high gas-liquid dissolution efficiency, is easy to install, has stable performance, is easy to operate and maintain, is convenient for overall installation, occupies a small area, and adopts an integrated mode;
[0014] 2. The use of an efficient multi-layer steam-water mixing tank and a powerful mixer can improve the mixing efficiency of ozone and water. It absorbs water while inhaling air, is equipped with a powerful mixing chamber, and has fine bubbles mixing reversely repeatedly. By adopting a multiple mixing method instead of a single injector dosing, it can overcome the problems of unstable operation and large bubble churning in traditional devices. The use of a corrosion-resistant water pump enables water to be transported and treated through a water pipe, and at the same time, the use of a valve can control the flow rate;
[0015] 3. The use of a gas source treatment device can provide a pure and dry gas source, and the use of an AOP generation device can further oxidize and treat organic substances and pollutants in water. It has a high output concentration of hydroxyl radicals, high mixing efficiency, and good sterilization effect. Finally, the use of a residual tail gas treatment device is used to treat and discharge the ozone and other gases remaining in the system, and the use of an anti-backflow device can prevent the treated water from flowing back into the inlet pipeline. This water treatment device has high gas-liquid dissolution efficiency, is easy to install, has stable performance, is easy to operate and maintain. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] Figure 1 Shown is a three-dimensional structural schematic diagram of the water treatment device of the present utility model;
[0017] Figure 2 Shown is a three-dimensional structural schematic diagram of the hybrid reaction component of the water treatment device of the present utility model;
[0018] Figure 3 Shown is a three-dimensional structural schematic diagram of the high-concentration ozone generator of the water treatment device of the present utility model;
[0019] Figure 4 Shown is a three-dimensional structural schematic diagram of the AOP generation device of the water treatment device of the present utility model.
[0020] Description of the reference numerals: 1. Water treatment box body; 2. Mixing reaction assembly; 3. AOP generation treatment assembly; 101. Treatment box housing; 102. PLC control panel; 103. Protective rear plate; 201. High-efficiency steam-water multi-layer mixing tank body; 202. Strong mixer; 203. Corrosion-resistant water pump; 204. Water pipe; 205. Valve; 301. High-concentration ozone generator; 302. Gas source treatment device; 303. Condensing device; 304. AOP generation device; 305. Booster pump; 306. Residual tail gas treatment device; 307. Backflow prevention device. Detailed implementation manners
[0021] The present utility model will be further described below in conjunction with the accompanying drawings and embodiments.
[0022] Please refer to Figure 1-2, the present utility model provides an embodiment: a water treatment device based on an AOP high oxidation system, including a water treatment box body 1, a mixing reaction component 2, and an AOP generation and treatment component 3; at one end inside the water treatment box body 1, there is arranged a mixing reaction component 2 for improving the mixing efficiency of ozone and water; at the side end of the mixing reaction component 2, there is installed an AOP generation and treatment component 3 for further oxidizing and treating organic substances and pollutants in water. By using the mixing reaction component 2, the mixing efficiency of ozone and water can be improved. It sucks water and inhales air at the same time, then is equipped with a strong mixing chamber, and fine bubbles are repeatedly mixed reversely. It adopts multiple mixing methods instead of a single injector dosing, which can overcome the problems of unstable operation and large bubble churning of traditional devices. By using the AOP generation and treatment component 3, the organic substances and pollutants in water can be further oxidized and treated. The output concentration of hydroxyl radicals is high, the mixing efficiency is high, and the sterilization effect is good. This water treatment device has high gas-liquid dissolution efficiency, is easy to install, has stable performance, is easy to operate and maintain. The water treatment box body 1 includes a treatment box outer shell 101, a PLC control panel 102, and a protective rear plate 103; inside the water treatment box body 1, there is arranged a treatment box outer shell 101 made of stainless steel; the outside of the treatment box outer shell 101 is electrically connected to a PLC control panel 102; at the rear end of the treatment box outer shell 101, there is fixedly connected a protective rear plate 103 with a water inlet. By using the PLC control panel 102, an integrated control effect can be achieved. The mixing reaction component 2 includes a high-efficiency steam-water multi-layer mixing tank body 201, a strong mixer 202, a corrosion-resistant water pump 203, a water pipe 204, and a valve 205; on one side inside the water treatment box body 1, there is installed a high-efficiency steam-water multi-layer mixing tank body 201; outside the high-efficiency steam-water multi-layer mixing tank body 201, there is installed a strong mixer 202 for further enhancing the mixing efficiency of ozone and water. By using the high-efficiency steam-water multi-layer mixing tank body 201 and the strong mixer 202, the mixing efficiency of ozone and water can be improved. It sucks water and inhales air at the same time, then is equipped with a strong mixing chamber, and fine bubbles are repeatedly mixed reversely. It adopts multiple mixing methods instead of a single injector dosing, which can overcome the problems of unstable operation and large bubble churning of traditional devices. At the bottom of the side end of the high-efficiency steam-water multi-layer mixing tank body 201, there is installed a corrosion-resistant water pump 203 for transporting water; the water delivery end of the corrosion-resistant water pump 203 is installed with a water pipe 204; outside the water pipe 204, there is installed a valve 205 for control. By using the corrosion-resistant water pump 203, water can be transported and treated through the water pipe 204, and at the same time, by using the valve 205, the effect of controlling the flow rate can be achieved.
[0023] Please refer to Figure 3-4, in this embodiment, the AOP generation processing component 3 includes a high-concentration ozone generator 301, a gas source treatment device 302, a condensation device 303, an AOP generation device 304, a booster pump 305, a residual tail gas treatment device 306, and a backflow prevention device 307; the high-concentration ozone generator 301 is installed inside the water treatment box 1; the gas source treatment device 302 is installed outside the high-concentration ozone generator 301, and the gas source treatment device 302 can provide a pure and dry gas source. The condensation device 303 is installed at the exhaust port of the high-concentration ozone generator 301; the AOP generation device 304 for installation at the outlet of the mixed water is installed inside the water treatment box 1; the booster pump 305 is installed at the upper end of the AOP generation device 304, and the AOP generation device 304 can further oxidize and treat organic substances and pollutants in water, with a high output concentration of hydroxyl radicals, high mixing efficiency, and good sterilization effect. The residual tail gas treatment device 306 for installation at the outlet of the system to treat and discharge the residual ozone and other gases in the system is installed inside the water treatment box 1; the backflow prevention device 307 for installation at the water outlet of the system to prevent the treated water from flowing back into the inlet pipeline is installed inside the water treatment box 1. The residual tail gas treatment device 306 is used to treat and discharge the residual ozone and other gases in the system, and the backflow prevention device 307 can prevent the treated water from flowing back into the inlet pipeline. This water treatment device has high gas-liquid dissolution efficiency, is easy to install, has stable performance, is easy to operate, and is easy to maintain.
[0024] When working, the use of the high-efficiency steam-water multi-layer mixing tank 201 and the powerful mixer 202 can improve the mixing efficiency of ozone and water, sucking water while inhaling air, then configuring a powerful mixing chamber, and repeatedly mixing microbubbles in the reverse direction. Using a multiple mixing method instead of a single injector dosing can overcome the problems of unstable operation and large bubble churning of traditional devices;
[0025] Then, the corrosion-resistant water pump 203 enables the water to be transported and treated through the water pipe 204, and at the same time, the valve 205 can control the flow rate;
[0026] Then, the gas source treatment device 302 can provide a pure and dry gas source, and the AOP generation device 304 can further oxidize and treat organic substances and pollutants in water, with a high output concentration of hydroxyl radicals, high mixing efficiency, and good sterilization effect;
[0027] Finally, the residual tail gas treatment device 306 is used to treat and discharge the residual ozone and other gases in the system, and the backflow prevention device 307 can prevent the treated water from flowing back into the inlet pipeline. This water treatment device has high gas-liquid dissolution efficiency, is easy to install, has stable performance, is easy to operate, and is easy to maintain.
[0028] Through the above steps, the set mixing reaction component 2 can improve the mixing efficiency of ozone and water, absorb water while inhaling air, then configure a strong mixing chamber, and repeatedly mix microbubbles reversely. By adopting multiple mixing methods instead of a single injector dosing, the problems of unstable operation and large bubble churning of traditional devices can be overcome. And by using the AOP generation treatment component 3, the organic substances and pollutants in water can be further oxidized and treated, with a high output concentration of hydroxyl radicals, high mixing efficiency, and good sterilization effect, so as to solve the problem that in the process of using a water treatment device, only a single ozone disinfection device is used to treat water, resulting in low efficiency and unable to achieve the effect of high-efficiency, fast and energy-saving use.
[0029] The above has described in detail the embodiments of the present invention in conjunction with the accompanying drawings. However, the present invention is not limited to the above embodiments. Within the scope of knowledge possessed by those skilled in the art, various changes can be made without departing from the gist of the present invention.
Claims
1. A water treatment device based on an AOP high oxidation system, comprising a water treatment box (1); characterized in that: The invention also comprises a mixing reaction component (2) and an AOP generation and treatment component (3); a mixing reaction component (2) for improving the mixing efficiency of ozone and water is arranged at one end of the water treatment box (1); an AOP generation and treatment component (3) for further oxidizing and treating organic matter and pollutants in water is installed at the side end of the mixing reaction component (2); the mixing reaction component (2) comprises a high-efficiency soda-water multi-layer mixing tank (201), a strong mixer (202), a corrosion-resistant water pump (203), a water pipe (204) and a valve (205); a high-efficiency soda-water multi-layer mixing tank (201) is installed at one side of the water treatment box (1); a strong mixer (202) for further enhancing the mixing efficiency of ozone and water is installed at the outside of the high-efficiency soda-water multi-layer mixing tank (201). The invention relates to a water treatment tank (202); a corrosion-resistant water pump (203) for conveying water is installed at the bottom of the side end of the high-efficiency soda-water multilayer mixing tank (201); a water pipe (204) is installed at the water conveying end of the corrosion-resistant water pump (203); a valve (205) for controlling is installed on the outside of the water pipe (204); the AOP generation and treatment component (3) comprises a high-concentration ozone generator (301), an air source treatment device (302), a condensing device (303), an AOP generation device (304), a booster pump (305), a residual tail gas treatment device (306) and a backflow prevention device (307); a high-concentration ozone generator (301) is installed inside the water treatment box (1); and an air source treatment device (302) is installed on the outside of the high-concentration ozone generator (301).
2. A water treatment device based on an AOP high oxidation system according to claim 1, characterized in that: The water treatment box (1) comprises a treatment box shell (101), a PLC control panel (102) and a protective rear plate (103); a treatment box shell (101) made of stainless steel is arranged inside the water treatment box (1); the outside of the treatment box shell (101) is electrically connected to the PLC control panel (102); and the rear end of the treatment box shell (101) is fixedly connected to the protective rear plate (103) with a water inlet.
3. A water treatment device based on an AOP high oxidation system according to claim 1, characterized in that; A condensing device (303) is installed at the exhaust port of the high-concentration ozone generator (301); an AOP generating device (304) for installation at the outlet of mixed water is installed inside the water treatment box (1); and a boosting pump (305) is installed at the upper end of the AOP generating device (304).
4. A water treatment device based on an AOP high oxidation system according to claim 1, characterized in that; A residual tail gas treatment device (306) is installed inside the water treatment box (1) and is used to be installed at the outlet of the system to treat and discharge the ozone and other gases remaining in the system; a backflow prevention device (307) is installed inside the water treatment box (1) and is used to be installed at the water outlet of the system to prevent the treated water from flowing back into the water inlet pipe.