Ozone water treatment device
By designing a combination of cylindrical structure and circulating water pump heater, the problem of fish removal and ozone emission in existing ozone water treatment devices has been solved, realizing ozone disinfection and harmless emission in the presence of fish.
Patent Information
- Application Number
- CN202520517350.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-24
- Publication Date
- 2026-02-24
- Estimated Expiration
- 2035-03-24
AI Technical Summary
Existing ozone water treatment devices require the fish to be removed before treatment, and there is a problem of direct ozone emission.
An ozone water treatment device was designed, comprising a cylinder, an exhaust pipe, an air inlet pipe, and a circulating water pipe. The device uses an ozone generator to produce ozone and disperses it into bubbles through an aeration head for disinfection. At the same time, a circulating water pump promotes water flow and a heater converts undissolved ozone into oxygen, avoiding direct discharge.
This technology enables ozone disinfection in the presence of fish, improving the ease of processing and avoiding direct ozone emissions, thus ensuring the safety of the fish.
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Figure CN223936324U_ABST
Abstract
Description
Technical Field
[0001] This utility model belongs to the field of aquarium water treatment technology, specifically relating to an ozone water treatment device. Background Technology
[0002] Aquarium ozone disinfection devices are equipment that utilize the strong oxidizing properties of ozone for sterilization and disinfection. They are widely used in aquariums, aquaculture, and other fields, and can quickly kill various pathogens and effectively prevent aquatic animal diseases.
[0003] Ozone has strong oxidizing properties and can oxidize and decompose the glucose oxidase and dehydrogenase of bacteria, disrupting the redox process in bacterial metabolism, thereby killing bacteria, viruses, fungi and other microorganisms, while decomposing pollutants such as organic matter, ammonia nitrogen and nitrite in water.
[0004] However, ozone is harmful to both humans and fish. At certain concentrations and for extended periods, it can cause bronchitis in humans; if ozone levels in water exceed the fish's tolerance, it can irritate their gills, causing illness and even death. Current treatment methods require removing the fish before treating the water, and this process involves the direct release of ozone. Utility Model Content
[0005] The purpose of this invention is to provide an ozone water treatment device to solve the problems in the prior art.
[0006] This utility model is achieved through the following technical solution: an ozone water treatment device, characterized in that: it includes a cylinder with an opening at the bottom, and an exhaust pipe, an air inlet pipe, and a circulating water pipe are arranged through the top of the cylinder; the exhaust pipe is connected to the cylinder through a pipe joint, and a heater and a heat insulation layer are arranged outside the exhaust pipe; the upper end of the air inlet pipe is connected to an ozone generator, and an ozone aeration head is arranged at the lower part; the circulating water pipe is connected to a circulating water pump.
[0007] Furthermore: the ozone generator includes an ionization chamber, in which an ozone discharge tube is disposed. Inside the ozone discharge tube is a first electrode, and outside the ozone discharge tube is a second electrode. The first electrode and the second electrode are respectively connected to the positive and negative terminals of the control power supply.
[0008] The lower part of the ionization chamber is connected to the air pump via a vent pipe, and the upper part is connected to the air inlet pipe of the cylinder.
[0009] Furthermore, a support plate is provided on the side of the cylinder, and the circulating water pump is connected to the support plate through a shock-absorbing pad.
[0010] Furthermore, a fixing plate extends outward from one side of the cylinder, and a suction cup that cooperates with the cylinder is provided on the fixing plate.
[0011] The beneficial effects of this utility model are:
[0012] 1. The structure of this utility model allows for processing without removing the fish, thus improving the convenience of processing.
[0013] 2. The structure of this utility model avoids the direct emission of ozone.
[0014] 3. The structure of this utility model has rapid ozone dissolution and good effect. Attached Figure Description
[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0016] Figure 2 This is a top view of the structure of this utility model;
[0017] Figure 3 This is a schematic diagram of the main structure of an ozone generator;
[0018] Figure 4 This is a side view of an ozone generator.
[0019] Explanation of the serial numbers in the diagram:
[0020] 1. Cylinder; 2. Heater; 3. Exhaust pipe; 4. Insulation layer; 5. Pipe joint; 6. Water surface; 7. Support plate; 8. Ozone aerator head; 9. Air inlet pipe; 10. Circulating water pipe; 11. Suction cup; 12. Circulating water pump; 13. Ozone generator; 14. Ozone discharge tube; 15. Control power supply; 16. Discharge electrode; 17. Air pump; 18. Ventilation pipe. Detailed Implementation
[0021] See attached document Figure 1-4 This utility model discloses an ozone water treatment device, including a cylindrical body 1, which is rectangular with an opening at the bottom. An exhaust pipe 3, an air inlet pipe 9, and a circulating water pipe 10 are installed through the top of the cylindrical body 1. The exhaust pipe 3 is connected to the cylindrical body 1 through a pipe joint 5, and a heater 2 and a heat insulation layer 4 are installed outside the exhaust pipe 3. The upper end of the air inlet pipe 9 extends outside the cylindrical body and is connected to an ozone generator 13, and an ozone aeration head 8 is installed at the bottom. The circulating water pipe 10 is connected to a circulating water pump 12.
[0022] Preferably, the ozone generator 13 includes an ionization chamber, within which an ozone discharge tube 14 is disposed. A first electrode is disposed inside the ozone discharge tube 14, and a second electrode is disposed outside the ozone discharge tube 14. The first and second electrodes constitute a discharge electrode 16, which is connected to the positive and negative terminals of a control power supply 15, respectively. The lower part of the ionization chamber is connected to an air pump 17 via a vent pipe 18, and the upper part is connected to an air inlet pipe 9 of the cylinder 1. A suction cup is disposed below the air pump 17 for fixation and shock absorption.
[0023] Preferably, a support plate 7 is provided on the side of the cylinder 1, and the circulating water pump 12 is connected to the support plate through a shock-absorbing pad.
[0024] Preferably, a fixing plate extends outward from one side of the cylinder 1, and a suction cup 11 that cooperates with the cylinder is provided on the fixing plate.
[0025] Preferably, a spiral fin is provided on the outer side of the portion of the air intake pipe 9 located below the water surface 6, and the spiral fin is mesh-like.
[0026] Preferably, one or more layers of metal mesh are welded inside the exhaust pipe at a position corresponding to the heater. The metal mesh provides better heat conduction without affecting gas emissions, resulting in better ozone removal.
[0027] The usage process of this utility model is as follows:
[0028] Place the cylinder into the aquarium and use suction cups to fix it to the side wall of the aquarium. The suction cup body is glued or clipped to the cylinder, and the cup body is adsorbed onto the side wall. When ozone disinfection is required, start the air pump and ozone generator, control the power supply to generate high voltage, discharge through discharge electrode 16, ionize oxygen in the air to generate ozone, and under the drive of the air pump, deliver the ozone to the air inlet pipe, and disperse it into bubbles through the ozone aerator head to disinfect the water.
[0029] The circulating water pump draws water from outside the tank into the tank body, promoting water flow and circulating the disinfected water (which has dissolved some ozone) back into the aquarium. Increased water flow also facilitates better ozone dissolution. Heating the remaining ozone to above 270℃ completely converts it into oxygen, which is harmless to humans. Operating the pump for half an hour to an hour every other day ensures disinfection while controlling the ozone concentration, making it harmless to most fish that are not highly sensitive to ozone. This allows for water treatment even when fish are present.
[0030] The spiral fins have multiple small holes, making them resemble a mesh. This not only allows water and air to pass through but also increases water agitation, improving the uniformity of dissolution and disinfection.
[0031] The exhaust pipe is equipped with a heater that can heat to over 270 degrees Celsius, thereby removing the small amount of undissolved ozone through high temperature and generating oxygen, achieving harmless emission.
[0032] In this solution, disinfection can be performed as needed. Typically, running the device for half an hour to an hour every other day is sufficient. For fish that are not sensitive to ozone, disinfection will not cause harm. This device consists of a water treatment unit, a water pump, and an ozone generator. The water treatment unit is cylindrical, with a water inlet, ozone gas inlet and outlet at the top, and an outlet at the bottom.
[0033] In this design, the exhaust pipe is made of corrosion-resistant titanium, the circulating water pipe is a rubber hose, the cylinder is made of acrylic, and the main body of the air inlet pipe is made of acrylic with rubber hoses for connection. All parts can be connected and fixed using welding or bonding. A high-temperature resistant insulation layer (such as mica) is placed between the exhaust pipe and the cylinder. The heater can be installed on the upper outer side of the exhaust pipe to prevent heat from affecting the cylinder. The circulating water pipe can be directly connected to the circulating water pump or to the outlet of the filtration system to receive filtered water. After filling with water, the dissolved ozone is saturated and flows out from the bottom of the cylinder, diluting the concentration. This effectively treats the water in the aquarium when fish are present.
Claims
1. An ozone water treatment device, characterized in that: It includes a cylinder (1), an opening at the bottom of the cylinder (1), and an exhaust pipe (3), an air inlet pipe (9), and a circulating water pipe (10) that are installed through the top of the cylinder (1). The exhaust pipe (3) is connected to the cylinder (1) through a pipe joint (5), and a heater (2) and a heat insulation layer (4) are provided on the outside of the exhaust pipe (3). The upper end of the air inlet pipe (9) is connected to the ozone generator (13), and the lower part is provided with an ozone aeration head (8). The circulating water pipe (10) is connected to the circulating water pump (12).
2. The ozone water treatment device according to claim 1, characterized in that: The ozone generator (13) includes an ionization chamber (), an ozone discharge tube (14) is provided in the ionization chamber (), a first electrode is provided inside the ozone discharge tube (14), a second electrode is provided outside the ozone discharge tube (14), and the first electrode and the second electrode are respectively connected to the positive and negative poles of the control power supply (15). The lower part of the ionization chamber is connected to the air pump (17) through the air pipe (18), and the upper part is connected to the air inlet pipe (9) of the cylinder (1).
3. The ozone water treatment device according to claim 1, characterized in that: A support plate is provided on the side of the cylinder (1), and the circulating water pump (12) is connected to the support plate through a shock-absorbing pad.
4. The ozone water treatment device according to claim 1, characterized in that: A fixing plate extends outward from one side of the cylinder (1), and a suction cup (11) that cooperates with the cylinder is provided on the fixing plate.