Ozone liquid mixer
By designing an ozone liquid mixer, the automatic addition and switching of ozone water and ozone oil was realized, solving the problem of cumbersome disassembly required in the existing technology, and providing simple, visualized quantitative control and highly reliable liquid mixing operation.
Patent Information
- Application Number
- CN202520157041.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-01-23
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2035-01-23
AI Technical Summary
Existing medical ozone generators on the market cannot directly produce ozone water or ozone oil. Users need a cumbersome disassembly process to achieve quantitative filling and output of the liquid.
An ozone liquid mixer was designed, comprising a shell, a back cover, an automatic liquid filling component, a gas switching component, a control component, and an exhaust gas treatment component. It achieves automatic filling and switching of ozone water and ozone oil through a solenoid valve and a vacuum pump, and is equipped with a liquid level sensor and a touch screen for visual operation and quantitative control.
It enables the free switching between the production of ozone water and ozone oil without disassembling the gas washing bottle, with automatic quantitative dispensing, precise control of output, reduced waste, simple operation, visualization and time recording of the mixing process, and high system reliability.
Smart Images

Figure CN223774654U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of medical device technology, specifically to an ozone liquid mixer. Background Technology
[0002] Ozone, due to its extremely strong oxidizing properties, is recognized worldwide as a broad-spectrum and highly effective disinfectant. Ozone dissolves in water to form ozonated water, a disinfectant with a powerful killing effect on various pathogenic microorganisms. Washing fruits, vegetables, clothing, and utensils with ozonated water can remove residual pesticides and odors, and extend the shelf life of food. Ozone is considered a green and environmentally friendly element because during sterilization and disinfection, it can spontaneously revert to oxygen and water, leaving no residue or secondary pollution—a feat unmatched by any other chemical disinfectant.
[0003] Existing medical ozone generators on the market cannot directly produce ozone water or ozone oil. The ozone liquid mixer is compatible with medical ozone generators on the market. Users only need to connect the ozone gas output from the device to the ozone liquid mixer. Utility Model Content
[0004] The purpose of this invention is to provide an ozone liquid mixer to address the shortcomings of existing technologies.
[0005] To achieve the above objectives, this utility model provides the following technical solution: an ozone liquid mixer, comprising a shell, a rear cover, and an ozone inlet, wherein the shell and the rear cover are fitted together, and an automatic liquid filling component is provided inside the shell. The automatic liquid filling component includes an ozone water filling system and an ozone oil filling system, one end of which is connected to a gas switching component. One end of the gas switching component is connected to the ozone inlet via a conversion tee. The gas switching component is located inside the shell, and a control component is provided on one side inside the shell. The control component is located on one side of the automatic liquid filling component and is connected to the automatic liquid filling component. An exhaust gas treatment component is provided in the middle of the automatic liquid filling component and is connected to the exhaust gas treatment component. The exhaust gas treatment component is located inside the shell, and a conversion tee is provided at the lower end of the ozone inlet.
[0006] As described above, the gas switching component of the ozone liquid mixer includes a two-way solenoid valve one and a two-way solenoid valve two. The two ends below the three-way valve one are respectively connected to the two-way solenoid valve one and the two-way solenoid valve two. The solenoid valve one is connected to the ozone water filling system, and the two-way solenoid valve two is connected to the ozone oil filling system.
[0007] As described above, the ozone liquid mixer includes an ozone water filling system comprising an ozone water tank, an ozone water bottle, a three-way solenoid valve, and a clean water inlet pipe interface. The ozone water tank is connected to a two-way solenoid valve and the clean water inlet pipe interface via the three-way solenoid valve. The clean water inlet pipe interface is connected to the ozone water tank via a clean water inlet pipe. The ozone water bottle contains an ozone water bottle outlet pipe, which is connected to an ozone water bottle outlet pipe interface. The ozone water bottle outlet pipe interface is connected to a three-way solenoid valve. One end of the three-way solenoid valve is connected to a conversion three-way valve. A three-way solenoid valve is provided on one side of the three-way solenoid valve, along with a three-way solenoid valve. Both the three-way solenoid valve is connected to the conversion three-way valve. A vacuum pump is provided on one side of the ozone water bottle, and both the three-way solenoid valve is connected to the vacuum pump.
[0008] As described above, the ozone liquid mixer includes an ozone oil filling system comprising an ozone oil tank, an ozone oil bottle, a three-way solenoid valve (V), and an oil inlet pipe interface. The ozone oil tank is connected to a two-way solenoid valve (V) and the oil inlet pipe interface via the three-way solenoid valve (V), and the oil inlet pipe interface is connected to the ozone oil tank via an oil inlet pipe. The ozone oil bottle contains an ozone oil bottle outlet pipe, which is connected to an ozone oil bottle outlet pipe interface. The ozone oil bottle outlet pipe interface is connected to a three-way solenoid valve (V), which is connected to a three-way converter (V), and a three-way solenoid valve (V), which is connected to a three-way converter (V), on one side of the three-way solenoid valve (V), which is connected to a three-way converter (V), which is connected to a vacuum pump ...
[0009] As described above, the control component of the ozone liquid mixer includes an ozone water level gauge, an ozone oil level gauge, and an alarm component. The ozone water level gauge is installed inside the ozone water bottle, and the ozone oil level gauge is installed inside the ozone oil bottle. Both the ozone water level gauge and the ozone oil level gauge are electrically connected to the alarm component.
[0010] As described above, the ozone liquid mixer includes a decomposition tank, an exhaust gas outlet 1, an exhaust gas outlet 2, a three-way solenoid valve 4, a three-way solenoid valve 6, both of which are connected to the decomposition tank, and exhaust gas outlet 1 and exhaust gas outlet 2 are both connected to the decomposition tank.
[0011] As described above, the ozone liquid mixer includes an alarm component comprising a control unit and a touch screen. The ozone water level gauge, the ozone oil level gauge, and the touch screen are all electrically connected to the control unit.
[0012] Compared with the prior art, the beneficial effects of this utility model are: this instrument can freely switch between ozone water production and ozone oil production, can realize automatic quantitative liquid dispensing without a cumbersome disassembly process, can realize quantitative liquid output, accurately control the amount required by the user to avoid waste, and features visual operation, with all operations being possible through a touch screen. Upon completion of the mixing process, a prompt is issued to the user, and the time taken for the process is recorded for user convenience. After the mixing process is completed, the user can set the desired liquid output volume, and after clicking the output button, the system will output the liquid volume set by the user.
[0013] The automatic liquid filling component adds a predetermined amount of water or oil without disassembling the gas washing bottle. To improve system reliability, the system is equipped with a liquid level sensor. During the filling process, the system can sense the amount of liquid being added. When the amount of liquid added is equal to or exceeds the limit, the system automatically stops the filling operation. The system will calculate the mixing time required based on the amount of liquid added. After the mixing operation is completed, the system will issue a prompt indicating that the mixing operation is complete. Attached Figure Description
[0014] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0015] Figure 1 This is a schematic diagram of the overall structure of this utility model;
[0016] Figure 2 for Figure 1 Top view;
[0017] Figure 3 for Figure 1 Front view of the internal structure;
[0018] Figure 4 for Figure 3 Top view.
[0019] Attached reference numerals: 1-Outer shell, 2-Rear cover, 3-Gas switching assembly, 31-Two-way solenoid valve one, 32-Two-way solenoid valve two, 4-Automatic liquid filling assembly, 5-Control assembly, 51-Ozone water level gauge, 52-Ozone oil level gauge, 53-Alarm assembly, 531-Control unit, 532-Touch screen, 6-Exhaust gas treatment assembly, 61-Decomposition tank, 62-Exhaust gas outlet one, 63-Exhaust gas outlet two, 7-Ozone water filling system, 71-Ozone water tank, 72-Ozone water bottle, 73-Three-way solenoid valve one, 74-Clean water inlet pipe, 75-Clean water inlet pipe interface, 76-Ozone water bottle outlet pipe Interface, 77-Ozone water bottle outlet pipe, 78-Three-way solenoid valve four, 79-Converter tee two, 710-Three-way solenoid valve three, 711-Vacuum pump one, 712-Three-way solenoid valve two, 8-Ozone oil filling system, 81-Ozone oil tank, 82-Ozone oil bottle, 83-Three-way solenoid valve five, 84-Oil inlet pipe interface, 85-Oil inlet pipe, 86-Ozone oil bottle outlet pipe, 87-Ozone oil bottle outlet pipe interface, 88-Three-way solenoid valve six, 89-Converter tee three, 810-Three-way solenoid valve seven, 811-Vacuum pump two, 812-Three-way solenoid valve eight, 9-Ozone inlet, 10-Converter tee one. Detailed Implementation
[0020] 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.
[0021] like Figures 1 to 3As shown, the ozone liquid mixer disclosed in this embodiment includes a housing 1, a rear cover 2, and an ozone inlet 9. The housing 1 and the rear cover 2 are fitted together. An automatic liquid filling assembly 4 is installed inside the housing 1. The automatic liquid filling assembly 4 includes an ozone water filling system 7 and an ozone oil filling system 8. The ozone water filling system 7 includes an ozone water tank 71, an ozone water bottle 72, a three-way solenoid valve 73, and a clean water inlet pipe interface 75. The ozone water tank 71 is connected to a two-way solenoid valve 31 and a clean water inlet pipe interface 75 through the three-way solenoid valve 73. The clean water inlet pipe interface 75 is connected to the ozone water tank 71 through a clean water inlet pipe 74. The ozone water bottle 72 is equipped with an ozone water bottle outlet pipe 77. The ozone bottle outlet pipe 77 is connected to the ozone bottle outlet pipe interface 76. The ozone bottle outlet pipe interface 76 is connected to the common terminal A of the three-way solenoid valve 4 78. The C terminal of the three-way solenoid valve 4 78 is connected to the B terminal of the conversion three-way valve 2 79. The C terminal of the conversion three-way valve 2 79 is connected to the B terminal of the three-way solenoid valve 3 710. The A terminal of the conversion three-way valve 2 79 is connected to the C terminal of the three-way solenoid valve 2 712. The A terminal of the three-way solenoid valve 3 710 is connected to the air inlet of the vacuum pump 1 711. The C terminal of the three-way solenoid valve 3 710 is open and not connected to anything. The A terminal of the three-way solenoid valve 2 712 is connected to the air outlet of the vacuum pump 1 711. The B terminal of the three-way solenoid valve 2 712 is open and not connected to anything.
[0022] The ozone oil filling system 8 includes an ozone oil tank 81, an ozone oil bottle 82, a three-way solenoid valve 83, and an oil inlet pipe interface 84. The ozone oil tank 81 is connected to a two-way solenoid valve 32 and an oil inlet pipe interface 84 via the three-way solenoid valve 83. The oil inlet pipe interface 84 is connected to the ozone oil tank 81 via an oil inlet pipe 85. The ozone oil bottle 82 contains an ozone oil bottle outlet pipe 86, which is connected to an ozone oil bottle outlet pipe interface 87. The ozone oil bottle outlet pipe interface 87 is connected to the common port of the three-way solenoid valve 88. Terminal A; Terminal C of three-way solenoid valve 688 is connected to terminal B of converter three-way valve 389; Terminal C of converter three-way valve 389 is connected to terminal B of three-way solenoid valve 7810, and Terminal A of converter three-way valve 389 is connected to terminal C of three-way solenoid valve 812; Terminal A of three-way solenoid valve 7410 is connected to the air inlet of vacuum pump 2811, and Terminal C of three-way solenoid valve 7810 is open and not connected to anything; Terminal A of three-way solenoid valve 8812 is connected to the air outlet of vacuum pump 2811, and Terminal B of three-way solenoid valve 8812 is open and not connected to anything.
[0023] The ozone water filling system 7 and the ozone oil filling system 8 allow for the addition of a predetermined amount of water or oil without disassembling the gas washing bottle. To improve system reliability, the system is equipped with a liquid level sensor. During the filling process, the system can sense the amount of liquid being added. When the amount of liquid added is equal to or exceeds the limit, the system automatically stops the filling operation. The system will calculate the mixing time based on the amount of liquid added. Once the mixing operation is complete, the system will issue a prompt indicating that the mixing operation is finished.
[0024] Both the ozone water filling system 7 and the ozone oil filling system 8 are connected to a gas switching component 3 at one end. The gas switching component 3 includes a two-way solenoid valve 31 and a two-way solenoid valve 32. The two ends below the conversion three-way valve 10 are respectively connected to the two-way solenoid valve 31 and the two-way solenoid valve 32. The solenoid valve 31 is connected to the ozone water filling system 7, and the two-way solenoid valve 32 is connected to the ozone oil filling system 8. The input ozone gas can be freely switched between ozone water production and ozone oil production through the two-way solenoid valve 31 and the two-way solenoid valve 32.
[0025] One end of the gas switching component 3 is connected to the ozone inlet 9 via a conversion tee 10. The gas switching component 3 is located inside the housing 1. A control component 5 is installed on one side inside the housing 1. The control component 5 is located on one side of the automatic liquid filling component 4 and is connected to the automatic liquid filling component 4. The control component 5 includes an ozone water level gauge 51, an ozone oil level gauge 52, and an alarm component 53. The ozone water level gauge 51 is installed inside the ozone water bottle 72, and the ozone oil level gauge 52 is installed inside the ozone oil bottle 82. Both the ozone water level gauge 51 and the ozone oil level gauge 52 are electrically connected to the alarm component 53. The liquid level can be collected through the ozone water level gauge 51 and the ozone oil level gauge 52, which is convenient for staff to check.
[0026] The alarm component 53 includes a control unit 531 and a touch screen 532. The ozone water level gauge 51, the ozone oil level gauge 52, and the touch screen 532 are all electrically connected to the control unit 531. The touch screen 532 sends commands to the control unit 531, and the control unit 531 can directly control the operation of the solenoid valve and the vacuum pump. The control unit 531 collects the liquid level through the connected ozone water level gauge 51 and ozone oil level gauge 52, which can be viewed intuitively through the touch screen 532.
[0027] The liquid automatic dispensing component 4 has an exhaust gas treatment component 6 in the middle and is connected to the exhaust gas treatment component 6. The exhaust gas treatment component 6 is set inside the outer shell 1. The lower end of the ozone inlet 9 is provided with a conversion three-way valve 10. The exhaust gas treatment component 6 includes a decomposition tank 61, an exhaust gas outlet 1 62, and an exhaust gas outlet 2 63. The B end of the three-way solenoid valve 4 78 and the B end of the three-way solenoid valve 6 88 are both connected to the decomposition tank 61. The exhaust gas outlet 1 62 and the exhaust gas outlet 2 63 are both connected to the decomposition tank 61. The exhaust gas enters the decomposition tank 61 for decomposition and is discharged through the exhaust gas outlet 1 62 and the exhaust gas outlet 2 63.
[0028] Working principle:
[0029] Water enters the ozone water bottle:
[0030] Ozone water tank 31 contains water to be treated. Control unit 531 controls three-way solenoid valve 1 73 to operate, at which point terminals A and C of three-way solenoid valve 1 73 are connected. Control unit 531 also controls three-way solenoid valve 4 78 to operate, with terminals A and C of three-way solenoid valve 4 78 connected. Three-way solenoid valve 3 710 is not operating, with terminals A and B connected. Three-way solenoid valve 2 712 is not operating, with terminals A and B connected. The amount of water entering ozone water bottle 72 is set via touch screen 532, and after clicking start, the control... The control unit controls the vacuum pump 711 to work. At this time, the vacuum pump 711 draws air out of the ozone water bottle 72. The drawn air is discharged through the B end of the three-way solenoid valve 712. After the air in the ozone water bottle 72 is evacuated, a negative pressure is formed. Since the air inlet of the ozone water bottle 72 is connected to the water to be treated, the water will flow into the ozone water bottle 72 due to the negative pressure. The ozone water level gauge 51 in the ozone water bottle 72 will record the liquid level in real time. When the liquid level reaches the set liquid level, the control unit 531 will control the vacuum pump 711 to stop working.
[0031] Ozone water production process:
[0032] Description: Once the ozone water level gauge 51 in the ozone water bottle 72 detects that there is enough water, ozone water can be produced. The control unit 531 will calculate the time required for ozone water production based on the amount of water in the ozone water bottle 72. The user only needs to select the ozone water production mode through the touch screen 532 and click start. After the ozone water production is completed, the device will automatically stop and cut off the ozone input.
[0033] Steps: Control unit 531 controls two-way solenoid valve 17 to work and two-way solenoid valve 18 to stop working. Control unit 531 also controls three-way solenoid valve 73 to stop working, with terminals A and B of three-way solenoid valve 73 connected. At this time, ozone flows from terminal A to terminal C of three-way valve 10, passing through terminals A and B of two-way solenoid valve 17 and three-way solenoid valve 73, and then enters ozone water bottle 72. Control unit 531 controls three-way solenoid valve 710 to stop working, with terminals A and B of three-way solenoid valve 710 connected. Ozone that cannot be absorbed flows from terminals A and B of three-way solenoid valve 710 to decomposition tank 61. After decomposition, ozone is converted into oxygen and can be directly discharged. After the ozone water is finished, control unit 531 controls two-way solenoid valve 17 to stop working, cutting off the ozone input.
[0034] Ozone water extraction process:
[0035] Description: After the ozone water is prepared, the user can set the amount of ozone water to be extracted via the touch screen 532. After setting the extraction amount, the user can click to start. Once the extracted ozone water reaches the set value, the device will automatically stop the extraction process.
[0036] step:
[0037] Control unit 531 controls three-way solenoid valve 1 73 to work, with terminal A and terminal C of three-way solenoid valve 1 73 connected. At this time, ozone water bottle 72 is connected to ozone water tank 71. Control unit 531 controls three-way solenoid valve 3 710 to work, with terminal A and terminal C of three-way solenoid valve 3 710 connected. Control unit 531 controls three-way solenoid valve 3 710 to work, with terminal A and terminal C of three-way solenoid valve 3 710 connected. Control unit 531 controls three-way solenoid valve 2 712 to work, with terminal A and terminal C of three-way solenoid valve 2 712 connected.
[0038] Control unit 531 controls vacuum pump 711 to work. At this time, vacuum pump 711 draws air from the outside through the C end of three-way solenoid valve 710. The drawn air flows from the A and C ends of three-way solenoid valve 712 to the conversion three-way valve 79. The drawn air then flows from the A and B ends of conversion three-way valve 79 to three-way solenoid valve 78. Finally, the drawn air enters the ozone water bottle 72 through the A and C ends of three-way solenoid valve 78. As more air enters the ozone water bottle 72, the pressure inside the ozone water bottle 72 will increase. When the pressure increases to a certain level, the ozone water in the ozone water bottle 72 will flow from the clean water inlet pipe 74 to the ozone water tank 71. The ozone water level gauge 51 in the ozone water bottle 72 will record the liquid level in real time. When the liquid level reaches the set extraction volume, control unit 531 will control vacuum pump 711 to stop working.
[0039] Note: The principles described for oil entering ozone oil bottle 82, the ozone oil production process, and the ozone oil extraction process are the same as those described for water entering ozone water bottle 72, the ozone water production process, and the ozone water extraction process, so they will not be repeated here.
[0040] The control unit 531 can be implemented using a controller from existing technology, such as a Siemens S7-200CN controller. Figure 1 As shown, 75-1, 51-1, 76-1, 84-1, 52-1, and 87-1 represent the mounting positions of the corresponding 75, 51, 76, 84, 52, and 87 on the outer casing 1.
[0041] It should be noted that the above embodiments are only specific and clear descriptions of the technical solutions and features of this application. Solutions or features that are prior art or common knowledge to those skilled in the art will not be described in detail in the above embodiments.
[0042] Furthermore, the technical solutions of this application are not limited to the above embodiments. 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 implementation methods that can be understood by those skilled in the art.
Claims
1. An ozone liquid mixer, characterized in that: Includes an outer shell (1), a rear cover (2), and an ozone inlet (9). The outer shell (1) and the rear cover (2) are fitted together. An automatic liquid filling assembly (4) is installed inside the outer shell (1). The automatic liquid filling assembly (4) includes an ozone water filling system (7) and an ozone oil filling system (8). One end of both the ozone water filling system (7) and the ozone oil filling system (8) is connected to a gas switching assembly (3). One end of the gas switching assembly (3) is connected to the ozone inlet (9) via a conversion three-way valve (10). The gas switching component (3) is located inside the housing (1). A control component (5) is set on one side inside the housing (1). The control component (5) is located on one side of the automatic liquid filling component (4) and is connected to the automatic liquid filling component (4). The automatic liquid filling component (4) is provided with a tail gas treatment component (6) in the middle and is connected to the tail gas treatment component (6). The tail gas treatment component (6) is set inside the housing (1). A conversion three-way valve (10) is set at the lower end of the ozone inlet (9).
2. The ozone liquid mixer according to claim 1, characterized in that: The gas switching assembly (3) includes a two-way solenoid valve one (31) and a two-way solenoid valve two (32). The two ends below the three-way valve one (10) are respectively connected to the two-way solenoid valve one (31) and the two-way solenoid valve two (32). The solenoid valve one (31) is connected to the ozone water filling system (7), and the two-way solenoid valve two (32) is connected to the ozone oil filling system (8).
3. The ozone liquid mixer according to claim 1, characterized in that: The ozone water filling system (7) includes an ozone water tank (71), an ozone water bottle (72), a three-way solenoid valve (73), and a clean water inlet pipe interface (75). The ozone water tank (71) is connected to the two-way solenoid valve (31) and the clean water inlet pipe interface (75) through the three-way solenoid valve (73). The clean water inlet pipe interface (75) is connected to the ozone water tank (71) through a clean water inlet pipe (74). The ozone water bottle (72) is equipped with an ozone water bottle outlet pipe (77), which is connected to the ozone water bottle outlet pipe interface (76). The outlet pipe interface (76) of the ozone water bottle is connected to the three-way solenoid valve four (78). One end of the three-way solenoid valve four (78) is connected to the conversion three-way valve two (79). Three-way solenoid valve three (710) and three-way solenoid valve two (712) are provided on one side of the three-way solenoid valve four (78). Both three-way solenoid valve three (710) and three-way solenoid valve two (712) are connected to the conversion three-way valve two (79). Vacuum pump one (711) is provided on one side of the ozone water bottle (72). Both three-way solenoid valve three (710) and three-way solenoid valve two (712) are connected to vacuum pump one (711).
4. The ozone liquid mixer according to claim 1, characterized in that: The ozone oil filling system (8) includes an ozone oil tank (81), an ozone oil bottle (82), a three-way solenoid valve (83), and an oil inlet pipe interface (84). The ozone oil tank (81) is connected to the two-way solenoid valve (32) and the oil inlet pipe interface (84) through the three-way solenoid valve (83). The oil inlet pipe interface (84) is connected to the ozone oil tank (81) through the oil inlet pipe (85). The ozone oil bottle (82) is equipped with an ozone oil bottle outlet pipe (86), which is connected to the ozone oil bottle outlet pipe interface (87). The ozone oil bottle outlet pipe interface (87) is connected to the three-way solenoid valve six (88); the three-way solenoid valve six (88) is connected to the conversion three-way valve three (89); the three-way solenoid valve six (88) is provided with a three-way solenoid valve seven (810) and a three-way solenoid valve eight (812) on one side, and both the three-way solenoid valve seven (810) and the three-way solenoid valve eight (812) are connected to the conversion three-way valve three (89); the ozone oil bottle (82) is provided with a vacuum pump two (811) on one side, and both the three-way solenoid valve seven (810) and the three-way solenoid valve eight (812) are connected to the vacuum pump two (811).
5. The ozone liquid mixer according to claim 1, characterized in that: The control component (5) includes an ozone water level gauge (51), an ozone oil level gauge (52), and an alarm component (53). The ozone water level gauge (51) is installed inside the ozone water bottle (72), and the ozone oil level gauge (52) is installed inside the ozone oil bottle (82). Both the ozone water level gauge (51) and the ozone oil level gauge (52) are electrically connected to the alarm component (53).
6. The ozone liquid mixer according to claim 1, characterized in that: The exhaust gas treatment component (6) includes a decomposition tank (61), exhaust gas outlet one (62), exhaust gas outlet two (63), three-way solenoid valve four (78) and three-way solenoid valve six (88) are all connected to the decomposition tank (61), and exhaust gas outlet one (62) and exhaust gas outlet two (63) are both connected to the decomposition tank (61).
7. The ozone liquid mixer according to claim 5, characterized in that: The alarm component (53) includes a control unit (531) and a touch screen (532). The ozone water level gauge (51), the ozone oil level gauge (52), and the touch screen (532) are all electrically connected to the control unit (531).