Oxygenation pump capable of generating ozone
By combining an ozone generator with an oxygenation pump, the synergistic operation of ozone generation and oxygenation functions is achieved, solving the problems of single function and safety of existing oxygenation pumps, meeting the diversified needs of water purification and disease prevention, and improving the stability and economy of the equipment.
Patent Information
- Application Number
- CN202520286497.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-21
- Publication Date
- 2026-01-20
- Estimated Expiration
- 2035-02-21
AI Technical Summary
Existing aerators have limited functionality and cannot effectively treat harmful microorganisms, organic matter, and odors in water. They also have limited ozone concentration regulation capabilities, complex structures, high costs, and leakage risks, making it difficult to meet the comprehensive requirements of multifunctionality, safety, reliability, and economy.
By combining an ozone generator with an oxygenation pump, an independent ozone concentration and gas volume regulation system is designed. A symmetrical dual-air drum assembly and an ozone chamber sealing structure are adopted to achieve coordinated operation of ozone generation and oxygenation functions. The modular design simplifies assembly and reduces maintenance costs.
It achieves multi-functional water purification and disease prevention, expands the applicability of the equipment, improves the stability and service life of the equipment, reduces manufacturing and maintenance costs, and improves energy utilization efficiency.
Smart Images

Figure CN223814162U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the technical field of oxygenation pump, specifically relates to an oxygenation pump capable of generating ozone. BACKGROUND
[0002] The existing oxygenation pump is mainly applied to the fields of aquaculture, aquarium and sewage treatment, and its core function is to inject oxygen into water body through mechanical structure to improve water body oxygen content, however, the function of the traditional oxygenation pump is relatively single, only oxygenation effect can be realized, harmful microorganisms, organic matter and peculiar smell in water body cannot be effectively treated, although part of equipment tries to introduce ozone sterilization technology, but the ozone concentration regulation ability is limited, cannot be flexibly controlled according to different scene requirements, leading to limited applicability, in addition, the structural design of the existing equipment is complex, the integration degree is low, the oxygenation and ozone generation module synergy is poor, leading to large volume, high manufacturing cost, and difficult to realize efficient sealing, there is ozone leakage risk, these problems limit the application of traditional equipment in fine water quality management, especially in occasions needing to consider oxygenation and disinfection, it is difficult to meet the comprehensive needs of users to multifunction, safety and reliability and economy. SUMMARY
[0003] (1) Technical problem to be solved
[0004] The utility model provides an oxygenation pump capable of generating ozone, aims at solving the problem of being unable to generate and adjust and control ozone.
[0005] (2) Technical scheme
[0006] The utility model provides an oxygenation pump capable of generating ozone, including the casing, be equipped with the gas drum subassembly in the casing, drive the drive subassembly of gas drum subassembly generates gas, and the power component of power supply drive subassembly, its characterized in that, the power component includes battery, circuit board and control panel, the circuit board is connected with battery, drive subassembly and control panel electricity respectively,
[0007] Among them, the casing is equipped with ozone cavity, the ozone generator is equipped in the ozone cavity, the ozone cavity is communicated with the gas inlet end of gas drum subassembly.
[0008] Further, the casing includes upper shell and lower shell, the upper shell is equipped with upper cavity wall, the lower shell is equipped with lower cavity wall, the upper cavity wall and the lower cavity wall are closed up and down and form the circumferential wall of the ozone cavity.
[0009] Further, the fitting surface between the upper cavity wall and the lower cavity wall is provided with a small gap allowing air to enter.
[0010] Further, a sealing structure for preventing air flow is arranged between at least part of the upper cavity wall and the lower cavity wall, the sealing structure comprising a protrusion arranged on either of the upper cavity wall and the lower cavity wall, and a groove arranged on the other.
[0011] Further, the ozone cavity comprises a main cavity and a side cavity arranged on one side of the main cavity and in communication with the main cavity, and at least part of the air drum assembly is tightly connected in the side cavity.
[0012] Further, the number of the driving assembly and the air drum assembly is two and they are symmetrically arranged on two sides of the ozone generator, and the side cavity is provided with two and arranged one-to-one corresponding to the two air drum assemblies.
[0013] Further, at least one group of "V" shaped fixing grooves 74 is arranged in the ozone cavity 7 for fixing the ozone generator 6.
[0014] Further, the pressing rod 33 extends to the driving assembly 4 and is provided with a magnet 331 at the end, and the driving assembly 4 is an electromagnet.
[0015] Further, the air drum assembly 3 is provided with an air inlet hole 321 and an air outlet nozzle 322, and an air flow channel 34 in communication with the air inlet hole 321 and the air outlet nozzle 322 respectively, and the air flow channel 34 is provided with two one-way valves 35.
[0016] Compared with the prior art, the ozone generator and the oxygen increasing pump are combined for the first time, which can efficiently increase oxygen and generate ozone for sterilization and disinfection, breaks through the limitation of single function of traditional equipment, meets the diversified needs of water quality purification, disease prevention and pollutant degradation, and expands the applicability of the equipment.
[0017] The ozone concentration and air volume independent adjustment system can be flexibly controlled by the user according to different scenes (such as aquaculture and sewage treatment), which expands the applicability of the equipment; the symmetric double air drum assembly design reduces the manufacturing cost, the sealing structure and the gap air pressure balance mechanism of the ozone cavity prevent leakage while ensuring oxygen supply, which improves the stability and service life of the equipment; the modular design simplifies the assembly process and reduces the maintenance cost, the ozone generation and oxygen increasing functions are cooperatively operated, and the energy utilization efficiency is significantly improved. BRIEF DESCRIPTION OF DRAWINGS
[0018] Figure 1 The structure of the utility model is shown Figure 1 .
[0019] Figure 2 The utility model is shown in the explosion diagram.
[0020] Figure 3 The utility model is shown in the cross section Figure 1.
[0021] Figure 4 Structure diagram of the utility model Figure 2 .
[0022] Figure 5 Structure diagram of the utility model Figure 2 .
[0023] Figure 6 Structure diagram of the utility model Figure 3 .
[0024] Figure 7 Part one of the utility model
[0025] Figure 8 Part two of the utility model
[0026] Figure 9 Structure diagram of the utility model Figure 3 .
[0027] Figure 10 Structure diagram of the utility model Figure 3 .
[0028] Figure 11 Structure diagram of the utility model Figure 4 .
[0029] Reference signs: 1 - upper shell, 11 - upper cavity wall, 111 - convex strip, 2 - lower shell, 21 - lower cavity wall, 211 - recess, 3 - air drum assembly, 31 - elastic air paddle, 32 - base, 321 - air inlet hole, 322 - air outlet nozzle, 33 - pressing rod, 331 - magnet, 34 - air flow channel, 35 - one-way valve, 4 - driving assembly, 5 - power assembly, 51 - battery compartment, 52 - battery, 53 - circuit board, 54 - control board, 6 - ozone generator, 7 - ozone cavity, 71 - main cavity, 72 - side cavity, 73 - gap, 74 - fixing groove, 75 - top plate, 8 - shell. DETAILED DESCRIPTION
[0030] The technical solutions in the embodiments of the utility model will be clearly and completely described below with reference to the drawings in the embodiments of the utility model.
[0031] As Figures 1-3As shown, the utility model provides an oxygen -increasing pump that can produce ozone, including casing 8, casing 8 includes upper shell 1 and lower shell 2, upper shell 1 and lower shell 2 are rectangular and form rectangular cavity, in the cavity is equipped with air drum subassembly 3, drive the drive subassembly 4 that air drum subassembly 3 produces gas (such as oxygen or ozone), and the power component 5 of the drive subassembly 4 power, the power component 5 includes battery compartment 51, two batteries 52 are placed in battery compartment 51, the circuit board 53 that is electrically connected with battery 52, drive subassembly 4 is equipped above battery compartment 51, the control panel 54 is further equipped above the circuit board 53, the control panel 54 includes a display screen, shows how much electric quantity and the circulation or charging state of the described, and three adjustment buttons are used to adjust switch, gas volume and single or double way.
[0032] Among them, the ozone cavity 7 is arranged in the casing, the ozone cavity 7 is communicated with the air inlet end of the air drum subassembly 3, the ozone generator 6 is arranged in the ozone cavity 7, the ozone generator 6 is electrically connected with the circuit board 53, the ozone generator 6 ionizes oxygen by using electric field, recombines to generate ozone, and then discharges the ozone through the air drum subassembly 3, so that the effect of generating ozone is achieved, generally, the ozone generator preferentially selects low-voltage electrolytic type, and the ozone generator 6 is provided with a concentration adjusting function and an ozone concentration detector, so that nitrogen oxides generated by high-voltage discharge can be effectively avoided, most of the oxygen -increasing pumps on the market can only simply generate oxygen, and the ozone generator can generate ozone compared with the ordinary oxygen -increasing pump, so that bacteria and viruses in water can be killed, and organic matter can be decomposed, in addition, the adjusting function of the ozone generator 6 can further expand the use scene by adjusting the ozone concentration, in the aspect of aquaculture, fish diseases can be prevented, and water quality can be improved, in the aspect of fish tank or aquarium, algae can be controlled, and odors can be eliminated, in the aspect of sewage treatment, pollutants can be assisted to be oxidized and degraded, and it is worth noting that the adjusting function system of the ozone generator 6 and the system of the control panel 54 are two independent control systems, that is, after the control panel 54 is turned on, the adjusting system of the ozone generator 6 will not be started synchronously, and ozone will not be generated, and the adjusting system switch of the ozone generator 6 needs to be operated separately to generate ozone.
[0033] Specifically, as shown in the utility model, Figure 4 In an example of the utility model, the number of the drive subassembly 4 and the air drum subassembly 3 is two groups and is placed symmetrically, one drive subassembly 4 drives one air drum subassembly 3 to transport gas, the ozone generator 6 is arranged between two air drum subassemblies 3 and is connected with both simultaneously, and this structural design makes the ozone generator 6 generate ozone and simultaneously make two air drum subassemblies 3 transport ozone, so that the manufacturing cost is reduced, and the production efficiency is improved.
[0034] Specifically, as shown in the utility model,Figure 4 As shown in the utility model of an example, the air drum assembly 3 includes elastic air slap 31, the appearance of elastic air slap 31 is pot cover, material is elastic rubber, the elastic air slap 31 is equipped with base 32, one end of base 32 and the pot cover of elastic air slap 31 form closed space, the other end forms closed space in the interior, and the top of elastic air slap 31 is equipped with fixedly connected pressure rod 33, pressure rod 33 is metal material, one end and middle position of which are fixedly connected with the top of elastic air slap 31 by gluing and bolt, and the other end is equipped with fixedly connected magnet 331.
[0035] Specifically, as Figures 4-5 As shown in the utility model of an example, the pressure rod 33 with the magnet 331 one end extends to the drive assembly 4, the magnet 331 of the end does not directly contact the drive assembly 4, and does not directly contact the drive assembly 4 position, but in the oblique upper side or oblique lower side of drive assembly 4, and the drive assembly 4 generates magnetism when energized, and is attracted to the magnet 331 magnetism, drives the pressure rod 33 to move to the direction of elastic air slap 31 and base 32, and because the elastic air slap 31 is elastic material, the base 32 is fixed on the lower shell 2, the pressure rod 33 generates extrusion to the elastic air slap 31 when moving, at this time, the closed space formed by the elastic air slap 31 and the base 32 changes due to extrusion.
[0036] Specifically, as Figure 5 As shown in the utility model of an example, the base 32 two ends are respectively equipped with air inlet hole 321 and air outlet nozzle 322, the base 32 and the elastic air slap 31 are equipped with airflow channel 34 shuttling between the two, the airflow channel 34 is connected to the air inlet hole 321 and air outlet nozzle 322, the airflow enters the inside of base 32 from the air inlet hole 321, along the airflow channel 34 enters the closed space in the elastic air slap 31, and returns to the inside of base 32 from the closed space, and finally discharges airflow from the air outlet nozzle 322, so as to achieve the effect of generating oxygen ozone.
[0037] Further, as Figure 6As shown, in the airflow channel 34, a one-way valve 35 is provided at the connection between the base 32 and the elastic air blower 31. There are two one-way valves 35, one for air intake and the other for air outlet. This structural design ensures that the airflow in the airflow channel always enters the elastic air blower 31 from the base 32, then returns to the base 32, and finally exits from the air outlet 322. When the pressure rod 33 squeezes the elastic air blower 31, the air pressure in the enclosed space formed with the base 32 increases, and the internal airflow... Under the action of air pressure difference, the one-way valve 35 responsible for air outlet opens, and airflow enters the base 32 from the enclosed space and is discharged from the air outlet 322. When the pressure rod 33 resets, the elastic air flap 31 also resets under the action of elasticity, and the air pressure in the enclosed space decreases. Under the action of air pressure difference, the one-way valve 35 responsible for air inlet opens, and airflow enters the base 32 from the air inlet 321 and then enters the enclosed space inside the elastic air flap 31 through the one-way valve 35, completing one cycle of air inlet and outlet.
[0038] Specifically, such as Figures 7-9 As shown, in one embodiment of this utility model, the upper shell 1 is provided with an upper cavity wall 11, and the lower shell 2 is provided with a lower cavity wall 21. The upper cavity wall 11 and the lower cavity wall 21 are closed to form the peripheral wall of the ozone chamber 7. The ozone chamber 7 includes a main cavity 71 and side cavities 72 arranged symmetrically on both sides of the main cavity 71. The ozone generator 6 is placed in the main cavity 71. A portion of the base 32 is snapped into the two side cavities 72, so that the bottom of the air inlet 321 of the base 32 faces the main cavity 71, and the side cavities 72 are connected to the main cavity 71, so that the ozone generated by the ozone generator 6 can enter the side cavities 72 from the main cavity 71, enter the air inlet 321 of the base 32, enter the circulation, and then be discharged.
[0039] Furthermore, such as Figure 10 As shown, since ozone is a toxic gas, the ozone chamber 7 is designed as a closed space to prevent ozone leakage. However, a small gap 73 is provided between the mating surfaces of the upper chamber wall 11 and the lower chamber wall 21 to allow air to enter. Under normal conditions, the ozone inside will not leak out through the gap 73. However, in the working state, the ozone generator 7 converts the oxygen in the ozone chamber 7 into ozone, which is then continuously discharged through the air inlet 321 into the air drum assembly 3. At this time, the oxygen inside the ozone chamber 7 continuously decreases, that is, the air pressure continuously increases, forming a pressure difference with the outside of the ozone chamber 7. Under the action of the pressure difference, air also continuously enters from the outside into the inside, delivering oxygen into the ozone chamber 7. In summary, the gap 73 acts as a one-way valve.
[0040] Furthermore, such asFigures 7-11 As shown, the upper cavity wall 11 and the lower cavity wall 21 between the air outlet nozzle 322 are provided with a sealing structure for preventing air flow, which comprises a convex strip 111 provided on the upper cavity wall 11 and a groove 211 provided on the lower cavity wall 21, which are combined to form a sealing structure, and at least one group of "V"-shaped fixing grooves 74 for fixing the ozone generator 6 are arranged in the ozone cavity 7, the fixing grooves 74 are arranged in the upper cavity wall 11, and a top plate 75 corresponding to the fixing grooves 74 is arranged in the lower cavity wall 21, and the fixing grooves 74 and the top plate 75 are combined to fix the ozone generator 6 in the ozone cavity 7.
[0041] The working principle of the utility model is described in detail as follows:
[0042] The ozone generator 6 converts oxygen into ozone in the ozone cavity 7, and the ozone enters the air drum assembly 3, the driving assembly 4 and the air drum assembly 3 cooperate to realize gas delivery, the driving assembly 4 generates magnetism after being electrified, attracts the magnet 331 in the air drum assembly 3, drives the pressing rod 33 to periodically extrude the elastic air beat 31, causes the closed space formed by the elastic air beat 31 and the base 32 to change in air pressure, and in the extrusion process, ozone enters the base 32 from the air inlet hole 321, enters the inside of the elastic air beat 31 through the airflow channel 34, and is discharged through the air outlet nozzle 322, the ozone generator 6 is electrically connected with the circuit board 53, oxygen is ionized to generate ozone by using low-voltage electrolysis technology, the ozone enters the side cavity 72 through the main cavity 71 of the ozone cavity 7 and communicates with the airflow channel 34 of the air drum assembly 3, and finally is discharged with airflow, the one-way valve 35 is designed to ensure that the airflow flows in one direction and avoids backflow, and the gap 73 structure of the ozone cavity 7 balances the oxygen supply inside and outside under the action of air pressure difference and prevents leakage.
[0043] The utility model discloses the innovation lies in: the ozone generator and the oxygenation pump are combined for the first time, which can efficiently oxygenate and generate ozone for sterilization and disinfection, breaks through the limitation of single function of traditional equipment, meets the diversified needs of water purification, disease prevention and pollutant degradation, the ozone concentration and the gas volume are independently adjusted, the user can flexibly control the ozone output according to different scenes (such as aquaculture and sewage treatment), which expands the applicability of the equipment, the symmetric double air drum assembly design reduces the manufacturing cost, the sealing structure of the ozone cavity and the gap air pressure balance mechanism prevent leakage and ensure oxygen supply, improve the stability and service life of the equipment, the modular design simplifies the assembly process and reduces the maintenance cost, the ozone generation and oxygenation functions operate cooperatively, and the energy utilization efficiency is significantly improved.
[0044] In addition, it should be understood that although the present specification is described in terms of embodiments, not every embodiment contains only one independent technical solution, and the present specification is described in this way only for the sake of clarity, and those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that those skilled in the art can understand.
[0045] It is obvious to those skilled in the art that the present application is not limited to the details of the above exemplary embodiments, and can be implemented in other specific forms without departing from the spirit or essential characteristics of the present application. Therefore, from any point of view, the embodiments should be considered as exemplary and non-limiting, and the scope of the present application is defined by the appended claims rather than the above description, and therefore all changes falling within the meaning and scope of the equivalent elements of the claims are intended to be included in the present application. Any reference signs in the claims should not be considered as limiting the claims involved.
Claims
1. An oxygenation pump capable of generating ozone, comprising a casing (8), a gas drum assembly (3) arranged in the casing (8), a driving assembly (4) for driving the gas drum assembly (3) to generate gas, and a power assembly (5) for supplying power to the driving assembly (4), characterized in that, The power assembly (5) comprises a battery (52), a circuit board (53) and a control board (54), and the circuit board (53) is electrically connected with the battery (52), the driving assembly (4) and the control board (54) respectively. The shell is internally provided with an ozone cavity (7), the ozone cavity (7) is internally provided with an ozone generator (6), and the ozone cavity (7) is in communication with the air inlet end of the air drum assembly (3).
2. The ozone-generating oxygen booster pump according to claim 1, wherein The shell (8) comprises an upper shell (1) and a lower shell (2), the upper shell (1) is provided with an upper cavity wall (11), the lower shell (2) is provided with a lower cavity wall (21), and the upper cavity wall (11) and the lower cavity wall (21) are closed in a top-to-bottom manner to form a peripheral wall of the ozone cavity (7).
3. The ozone-generating oxygen booster pump according to claim 2, wherein A small gap (73) allowing air to enter is arranged between the abutting surfaces of the upper cavity wall (11) and the lower cavity wall (21).
4. The ozone-generating oxygen booster pump according to claim 3, wherein A sealing structure preventing air circulation is arranged between at least part of the upper cavity wall (11) and the lower cavity wall (21), and the sealing structure comprises a convex strip (111) arranged on either the upper cavity wall (11) or the lower cavity wall (21) and a recess (211) arranged on the other.
5. The ozone-generating oxygen booster pump according to claim 1, wherein The ozone cavity (7) comprises a main cavity (71) and a side cavity (72) arranged on one side of the main cavity (71) and in communication with the main cavity (71), and at least part of the air drum assembly (3) is tightly connected in the side cavity (72).
6. The ozone-generating oxygen booster pump according to claim 5, wherein The driving assembly (4) and the air drum assembly (3) are two groups and are symmetrically arranged on both sides of the ozone generator (6), and the side cavity (72) is provided with two and is arranged in one-to-one correspondence with the two air drum assemblies (3).
7. The ozone-generating oxygen booster pump of claim 1, wherein, The ozone cavity (7) is internally provided with at least one group of "V"-shaped fixing grooves (74) for fixing the ozone generator (6).
8. The ozone-generating oxygen booster pump of claim 1, wherein, The air drum assembly (3) comprises an elastic air pat (31), a base (32) sleeved on one end of the elastic air pat (31) and forming a closed space, and a pressing rod (33) fixedly connected to the other end.
9. The ozone-generating oxygen booster pump according to claim 8, wherein The pressing rod (33) extends to the driving assembly (4) and is provided with a magnet (331) at the end, and the driving assembly (4) is an electromagnet.
10. The ozone-generating oxygen booster pump of claim 1, wherein, The air drum assembly (3) is provided with an air inlet hole (321) and an air outlet nozzle (322), and an air flow channel (34) in communication with the air inlet hole (321) and the air outlet nozzle (322) respectively, and the air flow channel (34) is internally provided with two one-way valves (35).