Efficient ozone dissolving and spraying device
By incorporating a diversion pipe and a microbubble generator into the ozone high-efficiency dissolution spray device, combined with an ultrasonic generator and a cooling chamber, the problem of uneven dissolution in existing technologies has been solved, achieving a more efficient dissolution rate and oxidation efficiency.
Patent Information
- Application Number
- CN202520024288.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-07
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2035-01-07
AI Technical Summary
In existing ozone high-efficiency dissolution spray devices, the microbubble generators are set at the same horizontal position, which makes it difficult to uniformly and comprehensively improve the dissolution effect of ozone and water.
A diversion pipe and a microbubble generator are set on the outside of the air duct, combined with an ultrasonic generator and an ultrasonic transducer. By evenly distributing the microbubble generators on different horizontal planes, and setting a cooling chamber and a sealing cover inside the main body of the equipment, the sealing performance and cooling effect are improved.
It achieved uniform ozone mixing, improved dissolution rate and oxidation efficiency, enhanced the dissolution effect, and improved the dissolution effect, indicating its effectiveness in dissolution rate and oxidation efficiency.
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Figure CN223737778U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to ozone disinfection equipment technical field, concretely is a kind of ozone efficient dissolving injection device. BACKGROUND
[0002] Ozone's molecular formula is O3. It is sky blue pungent odor gas, liquid state is dark, solid state is blue-black. Ozone mainly exists in the ozone layer in the lower part of the isothermal layer 20 kilometers from the earth's surface. It absorbs, blocks and weakens the short-wave ultraviolet rays harmful to human body, prevents it from reaching the earth. And ozone disinfection refers to the water treatment technology with ozone as disinfectant. Ozone is a strong oxidizing agent, after dissolving in water, directly or using a large number of hydroxyl radicals and new ecological oxygen generated in the reaction to oxidize inorganic matter and organic matter in water, and into the cell of bacteria to oxidize intracellular organic matter, so as to achieve the purpose of sterilization and disinfection, purification of water quality. Compared with chlorine disinfection, ozone disinfectant is small, fast-acting and has better disinfection effect. Using ozone water, fruits and other fruits can be made into concentrated juice after cleaning. In the processing of aquatic products, before freezing and packaging, high-concentration ozone water is sprayed or immersed for sterilization, and the health indicators of aquatic products are perfectly controlled, avoiding the problem of excessive residual chlorine caused by the use of chlorides. In the production process of liquid food (such as beverages, fruit juice, etc.) and pharmaceutical factories, high-concentration ozone water can be used for pipe, production equipment and container immersion and flushing, so as to achieve high-efficiency sterilization. Bacteria and viruses on the surface of pipe, equipment and container are washed and killed, which is very simple and convenient. It not only avoids the emission and residue of harmful substances caused by the use of other chemical disinfectants, but also avoids the emission and residue of harmful substances caused by the use of other chemical disinfectants. Ozone has no residue and secondary pollution. It can be widely used in hotels, hotels, government canteens for tableware, fruits and vegetables sterilization and disinfection; And children's toys, object surface sterilization and disinfection.
[0003] The prior art has the following disadvantages: the prior art discloses an ozone efficient dissolving and spraying device with the following structure: a high-pressure oxygen cylinder and an oxygen connecting pipe, the outlet of the high-pressure oxygen cylinder is fixedly connected with the oxygen connecting pipe, the end of the oxygen connecting pipe away from the high-pressure oxygen cylinder is fixedly connected with a gas flow rate controller, the end of the gas flow rate controller away from the oxygen connecting pipe is fixedly connected with a first connecting pipe, the end of the first connecting pipe away from the gas flow rate controller is fixedly connected with an ozone generator, the outlet of the ozone generator is fixedly connected with a gas pressurizing pump in communication, the outlet of the gas pressurizing pump is fixedly connected with a second connecting pipe in communication, the end of the second connecting pipe away from the gas pressurizing pump is provided with an ozone dissolving tank, and the end of the second connecting pipe away from the gas pressurizing pump is fixedly connected with the ozone dissolving tank through the ozone dissolving tank, the top center of the ozone dissolving tank is provided with a water injection pipe, the end of the water injection pipe close to the ozone dissolving tank is provided with a water injection valve, the side of the ozone dissolving tank away from the second connecting pipe is fixedly connected with a water outlet pipe below, the end of the water outlet pipe away from the ozone dissolving tank is fixedly connected with a pressurized water pump in communication, the water outlet of the pressurized water pump is fixedly connected with a connecting hose in communication, the end of the connecting hose away from the connecting hose is fixedly connected with a sprayer, the end of the sprayer away from the connecting hose is provided with a high-pressure nozzle, the end of the sprayer close to the connecting hose is provided with a spraying switch valve, the end of the second connecting pipe away from the gas pressurizing pump is fixedly connected with a gas distribution disc through the ozone dissolving tank, the outer side of the gas distribution disc is fixedly connected with three gas distribution pipes in equal parts, the end of each of the three gas distribution pipes away from the gas distribution disc is fixedly connected with a micro-bubble generator, and the center of the lower side of the gas distribution disc is fixedly connected with a supporting column.
[0004] The above device can improve the dissolving effect of ozone by arranging the micro-bubble generator, but the micro-bubble generator is arranged at the same horizontal position, and it is difficult to more evenly and comprehensively improve the dissolving effect with the internal water, and it is inconvenient to better work. Practical new type content
[0005] In view of the deficiencies of the prior art, the ozone efficient dissolving and spraying device is provided to solve the problems in the above background art.
[0006] In order to achieve the above object, the utility model provides the following technical scheme: an ozone high -efficient dissolving injection device, including equipment main part, the top of equipment main part is provided with sealing cover, one side of equipment main part is provided with ozone gas inlet, equipment main part inside is provided with gas guide pipe, the bottom of equipment main part is fixedly installed with ultrasonic generator, the top of ultrasonic generator is provided with ultrasonic transducer, one side of equipment main part is provided with drain pipe, be provided with control valve on drain pipe, one end of drain pipe is fixedly connected with pressurizing pump, the one side of pressurizing pump is fixedly connected with water guide pipe, one end of water guide pipe is fixedly connected with high pressure injector, the inner wall of equipment main part is provided with cooling cavity.
[0007] As a preferred technical scheme of the utility model, the sealing cover comprises a sealing plug, a slot, a sealing plate, a storage cavity and a through hole, the bottom of the sealing cover is provided with a sealing plug, the bottom of the sealing cover is provided with a slot, the top of the sealing cover is provided with a sealing plate, the inside of the sealing cover is provided with a storage cavity, the inner wall of the storage cavity is provided with a through hole, the outer diameter of the sealing plug is matched with the inner diameter of the equipment main body, and the sealing cover is movably connected with the equipment main body through the sealing plug.
[0008] As a preferred technical scheme of the utility model, the slot is connected with the cooling cavity, the through hole is provided with a plurality of through holes, and the through hole is connected with the slot.
[0009] As a preferred technical scheme of the utility model, the gas guide pipe comprises a shunt pipe and a microbubble generator, the outer side of the gas guide pipe is provided with a shunt pipe, one end of the shunt pipe is fixedly installed with a microbubble generator, and the gas guide pipe is connected with the ozone gas inlet.
[0010] As a preferred technical scheme of the utility model, the shunt pipe is provided with a plurality of shunt pipes, and the shunt pipes are uniformly and symmetrically distributed on the outer wall of the gas guide pipe.
[0011] As a preferred technical scheme of the utility model, the ultrasonic generator is electrically connected with the external power supply through a wire, the ultrasonic transducer is provided with a plurality of ultrasonic transducers, and the ultrasonic transducers are symmetrically distributed between the ultrasonic generator and the equipment main body.
[0012] As a preferred technical scheme of the utility model, the pressurizing pump is electrically connected with the external power supply through a wire, and the pressurizing pump is connected with the high pressure injector through the water guide pipe.
[0013] Compared with the prior art, the utility model provides an ozone high -efficient dissolving injection device, which has the following beneficial effects:
[0014] 1. This ozone high-efficiency dissolution injection device uses an ozone inlet, a gas guide pipe, a diversion pipe, and a microbubble generator in combination. By setting the gas guide pipe and microbubble generator at different horizontal levels outside the gas guide pipe, the injected ozone can be more thoroughly and evenly mixed and dissolved with the internal cleaning water, improving the mixing and dissolution effect and the dissolution rate. By using an ultrasonic generator and an ultrasonic transducer in combination, the bubbles are more evenly dispersed in the liquid, further improving the ozone dissolution rate and oxidation efficiency, thereby enhancing the ozone oxidation effect and improving the overall disinfection and purification effect.
[0015] 2. This ozone high-efficiency dissolving spray device features a sealing cap on the top of the main body, with a sealing plug at the bottom to enhance the sealing between the cap and the main body, preventing ozone leakage and thus affecting its dissolution effect with water. The sealing cap incorporates a slot, storage chamber, and through-hole, while a cooling chamber is located on the inner wall of the main body. Dry ice can be stored in the storage chamber, and the through-hole and slot allow cold air from the dry ice to be injected into the cooling chamber, cooling the cleaning fluid inside the main body. At low temperatures, the movement of liquid molecules slows down, making it less likely for bubbles to dissolve, and ozone is more easily retained in the water, further increasing its solubility. Attached Figure Description
[0016] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0017] Figure 2 This is a schematic diagram of the bottom structure of the sealing cap of this utility model;
[0018] Figure 3 This is a schematic diagram of the internal structure of the sealing cap of this utility model;
[0019] Figure 4 This is a schematic cross-sectional view of the main body of the device of this utility model;
[0020] Figure 5 This is a schematic diagram of the ultrasonic generator structure of this utility model.
[0021] In the diagram: 1. Main body of the equipment; 2. Sealing cover; 201. Sealing plug; 202. Groove; 203. Sealing plate; 204. Storage cavity; 205. Through hole; 3. Ozone inlet; 4. Air guide pipe; 401. Diverter pipe; 402. Microbubble generator; 5. Ultrasonic generator; 6. Ultrasonic transducer; 7. Drain pipe; 8. Control valve; 9. Pressurization pump; 10. Water guide pipe; 11. High-pressure injector; 12. Cooling cavity. Detailed Implementation
[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0023] Please see Figures 1-5 In this embodiment: an ozone high-efficiency dissolution spray device includes a main body 1, a sealing cover 2 on the top of the main body 1, an ozone inlet 3 on one side of the main body 1, a gas guide pipe 4 inside the main body 1, an ultrasonic generator 5 fixedly installed at the bottom of the main body 1, an ultrasonic transducer 6 on the top of the ultrasonic generator 5, a drain pipe 7 on one side of the main body 1, a control valve 8 on the drain pipe 7, a pressure pump 9 fixedly connected to one end of the drain pipe 7, a water guide pipe 10 fixedly connected to one side of the pressure pump 9, a high-pressure injector 11 fixedly connected to one end of the water guide pipe 10, and a cooling chamber 12 on the inner wall of the main body 1.
[0024] Reference Figure 1 , Figure 2 and Figure 3 The sealing cover 2 includes a sealing plug 201, a slot 202, a sealing plate 203, a storage cavity 204, and a through hole 205. The sealing cover 2 has a sealing plug 201 and a slot 202 at its bottom, and a sealing plate 203 at its top. The sealing cover 2 has a storage cavity 204 inside, and a through hole 205 on its inner wall. The outer diameter of the sealing plug 201 is adapted to the inner diameter of the equipment body 1. The sealing cover 2 is movably inserted into the equipment body 1 through the sealing plug 201. The slot 202 is connected to the cooling cavity 12. Several through holes 205 are provided, and the through holes 205 are connected to the slot 202.
[0025] Specifically: it can improve the sealing between the main body 1 and the equipment to prevent ozone from leaking easily. At the same time, the storage cavity 204 stores dry ice, and the dry ice cold air can be transmitted to the cooling cavity 12 through the through hole 205 and the slot 202 to facilitate the cooling of the water.
[0026] Reference Figure 4 The air duct 4 includes a diverter 401 and a microbubble generator 402. The diverter 401 is provided on the outside of the air duct 4. The microbubble generator 402 is fixedly installed at one end of the diverter 401. The air duct 4 is connected to the ozone inlet 3. Several diverters 401 are provided and are evenly and symmetrically distributed on the outer wall of the air duct 4.
[0027] Specifically, it allows ozone to be evenly dispersed inside the main body 1 of the equipment, thereby improving the dissolution rate and effect with water.
[0028] Reference Figure 1 and Figure 5 The ultrasonic generator 5 is electrically connected to an external power source via a wire. Multiple ultrasonic transducers 6 are provided and symmetrically distributed between the ultrasonic generator 5 and the main body 1 of the equipment.
[0029] Specifically, it facilitates the control of the ultrasonic generator 5, allowing for more uniform dispersion of bubbles in the liquid, thereby further improving the ozone dissolution rate and oxidation efficiency.
[0030] Reference Figure 1 The pressurizing pump 9 is electrically connected to an external power source via a wire, and the pressurizing pump 9 is connected to the high-pressure injector 11 via a water pipe 10.
[0031] Specifically: It facilitates the control of the pressurization pump 9, makes it easy to export the cleaning water containing dissolved ozone, and facilitates the cleaning process.
[0032] The working principle and usage process of this utility model are as follows: The operator can inject cleaning water into the equipment body 1 by opening the sealing cover 2, and then seal the equipment body 1 with the sealing cover 2. Ozone can then be injected through the ozone inlet 3. The ozone can be discharged through the gas guide pipe 4, the diversion pipe 401 and the microbubble generator 402, which facilitates rapid mixing and dissolution with the cleaning water. At the same time, the ultrasonic generator 5 can be controlled to work. Ultrasonic waves can be transmitted into the equipment body 1 through the ultrasonic transducer 6, which can further accelerate the ozone dissolution speed and effect. Then, the control valve 8 can be opened to control the pressurization pump 9 to work, and the ozone-dissolved cleaning water can be sprayed out from the high-pressure jet 11 through the drain pipe 7 and the water guide pipe 10, which is convenient for cleaning objects.
[0033] Finally, it should be noted that the above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Although the utility model has been described in detail with reference to the foregoing embodiments, those skilled in the art can still modify the technical solutions described in the foregoing embodiments or make equivalent substitutions for some of the technical features. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.
Claims
1. An ozone high-efficiency dissolving and spraying device comprising a device body (1), characterized in that: The device body (1) top is provided with sealing cover (2), the device body (1) one side is provided with ozone inlet (3), the device body (1) inside is provided with gas guide pipe (4), the device body (1) bottom is fixedly installed with ultrasonic generator (5), the ultrasonic generator (5) top is provided with ultrasonic transducer (6), the device body (1) one side is provided with drain pipe (7), the drain pipe (7) is provided with control valve (8), the drain pipe (7) one end is fixedly connected with pressurizing pump (9), the pressurizing pump (9) one side is fixedly connected with water guide pipe (10), the water guide pipe (10) one end is fixedly connected with high pressure injector (11), the device body (1) inner wall is provided with cooling cavity (12).
2. The ozone-efficient dissolving and spraying device according to claim 1, characterized in that: The sealing cover (2) includes sealing plug (201), slot (202), sealing plate (203), storage cavity (204) and through-hole (205), the sealing cover (2) bottom is provided with sealing plug (201), the sealing cover (2) bottom is provided with slot (202), the sealing cover (2) top is provided with sealing plate (203), the sealing cover (2) inside is provided with storage cavity (204), the storage cavity (204) inner wall is provided with through-hole (205), the sealing plug (201) outer diameter size is compatible with the inner diameter size of the device body (1), the sealing cover (2) is movably inserted with the device body (1) through the sealing plug (201).
3. The ozone-efficient dissolving and spraying device according to claim 2, characterized in that: The slot (202) is connected with the cooling cavity (12), the through-hole (205) is provided with a plurality of, and the through-hole (205) is connected with the slot (202).
4. The ozone-efficient dissolving and spraying device according to claim 1, characterized in that: The gas guide pipe (4) includes shunt pipe (401) and microbubble generator (402), the gas guide pipe (4) outside is provided with shunt pipe (401), the shunt pipe (401) one end is fixedly installed with microbubble generator (402), the gas guide pipe (4) is connected with the ozone inlet (3).
5. The ozone-efficient dissolving and spraying device according to claim 4, characterized in that: The shunt pipe (401) is provided with a plurality of, and is uniformly and symmetrically distributed on the outer wall of the gas guide pipe (4).
6. The ozone-efficient dissolving and spraying device according to claim 1, wherein: The ultrasonic generator (5) is electrically connected with external power supply through wire, the ultrasonic transducer (6) is provided with a plurality of, and is symmetrically distributed between the ultrasonic generator (5) and the device body (1).
7. The ozone-efficient dissolving and spraying device according to claim 1, wherein: The pressurizing pump (9) is electrically connected with external power supply through wire, the pressurizing pump (9) is connected with the high pressure injector (11) through the water guide pipe (10).
Citation Information
Patent Citations
Efficient ozone dissolving and spraying device
CN211802662U