A high-pressure disinfection unit, structure and device and use method
Through the design of the high-pressure disinfection column of the high-pressure disinfection unit, the high-energy particle beam layer bombards bacteria and viruses in the air, solving the problem that existing air disinfection devices are difficult to efficiently sterilize, achieving efficient sterilization and disinfection effect while preventing ozone.
Patent Information
- Application Number
- CN202110775560.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-07-08
- Publication Date
- 2025-09-02
- Estimated Expiration
- 2041-07-08
AI Technical Summary
Existing air disinfection devices are difficult to achieve efficient sterilization and disinfection, especially in indoor environments, especially in special environments such as hospital wards and operating rooms, air disinfection devices cannot effectively kill bacteria and viruses.
High-pressure disinfection unit is adopted, including a disinfection cylinder and a high-pressure disinfection column. The outer diameter of the high-pressure disinfection column gradually decreases from the bottom end to the top, and is connected to a high-voltage power supply. The top end is lower than the top end of the disinfection cylinder. It is designed as a needle tip structure. It releases high-energy particle beams through the high-voltage power supply to form a multi-layer particle beam layer to bombard bacteria and viruses in the air.
It has achieved efficient sterilization and disinfection, with a simple structure and does not occupy too much space. It is suitable for air purification devices and air conditioners and other equipment. It can kill bacteria and viruses in all aspects and prevent ozone from being produced.
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Figure CN113368292B_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the field of air disinfection technology, and specifically to a high-pressure disinfection unit, structure, device and use method for sterilizing and disinfecting using a high-voltage power supply. Background Art
[0002] With the development of society and the rapid growth of economy, it is inevitable that certain harm will be caused to the environment. However, the quality of the environment is related to people's health. Human food, clothing, housing and transportation are inseparable from air and water, especially air. We need to inhale oxygen indirectly by breathing air every moment to maintain vital signs. Therefore, air quality is particularly important. Polluted air is full of various bacteria, fungi and other harmful substances. Many diseases can be transmitted through the respiratory tract, which is always a threat to human health.
[0003] We know that many viruses are difficult to be completely killed by the natural environment in daily human living environment, so external forces must be used for sterilization and disinfection. Indoors, although a ventilation system can be installed to continuously input fresh air into the room, more than 50% of the indoor air is still recycled. Therefore, once the indoor air is contaminated, it is difficult to achieve sterilization and disinfection through ventilation. Therefore, indoor sterilization and disinfection systems are very necessary, especially in special environments such as hospital wards and operating rooms, which must always be kept sterile to ensure the safety of patients and medical staff.
[0004] However, so far, most of the air disinfection devices on the market remove microorganisms, particulate matter and gaseous pollutants in the air through filtering, adsorption and other devices, and cannot achieve the purpose of efficient sterilization and disinfection. Therefore, air disinfection devices that can efficiently sterilize and disinfect are urgently needed by the market. Summary of the Invention
[0005] The purpose of this application is to provide a high-pressure disinfection unit, structure, device and method of use that are simple in structure, highly applicable and capable of efficient sterilization and disinfection.
[0006] The purpose of the present application is achieved through the following technical solution: a high-pressure disinfection unit, which includes a disinfection cylinder, wherein at least one high-pressure disinfection column is provided inside the disinfection cylinder, and at least one high-pressure disinfection column is evenly spaced inside the disinfection cylinder. The outer diameter of the high-pressure disinfection column gradually decreases from the bottom to the top, the bottom end of the high-pressure disinfection column is connected to a high-voltage power supply, and the plane at the top end of the high-pressure disinfection column is lower than the plane at the top end of the disinfection cylinder.
[0007] Preferably,
[0008] The height of the sterilizing cylinder is 1-100 cm, and the diameter of the sterilizing cylinder is 1-100 cm.
[0009] Preferably,
[0010] The length of the high-pressure disinfection column is 0.3-99 cm.
[0011] A high-pressure disinfection structure based on a high-pressure disinfection unit includes a mounting plate, a plurality of mounting holes are evenly spaced on the mounting plate, the disinfection cylinder is fixedly installed in the mounting holes, at least one high-pressure disinfection column is provided inside the disinfection cylinder, the at least one high-pressure disinfection column is evenly spaced inside the disinfection cylinder, the outer diameter of the high-pressure disinfection column gradually decreases from the bottom end to the top end, the bottom end of the high-pressure disinfection column is connected to a high-voltage power supply, and the plane where the top end of the high-pressure disinfection column is located is lower than the plane where the top end of the disinfection cylinder is located.
[0012] Preferably,
[0013] A high-pressure disinfection column is provided inside the disinfection cylinder. The bottom end of the high-pressure disinfection column is connected to a high-voltage power supply through a circuit board. The high-pressure disinfection column is fixed at the center of the disinfection cylinder through a high-pressure disinfection column support frame.
[0014] Preferably,
[0015] The top of the high-pressure disinfection column is a needle tip structure, and the top of the high-pressure disinfection column passes through the high-pressure disinfection column support frame.
[0016] Preferably,
[0017] The surface of the circuit board is covered with insulating material.
[0018] Preferably,
[0019] The high-pressure disinfection column support frame consists of a support head and at least two support rods of the same length. One end of the at least two support rods is connected to the support head, and the other end is connected to the inner wall of the disinfection cylinder. The angle formed between any support rod and the disinfection cylinder is consistent, and the spatial angle formed between any support rods is consistent. The support rods fix the support head at the center of the disinfection cylinder, and the top of the high-pressure disinfection column passes through the center of the support head.
[0020] A high-pressure disinfection device based on a high-pressure disinfection structure, wherein the high-pressure disinfection device is composed of at least two high-pressure disinfection structures spliced together.
[0021] A method for using a high-pressure disinfection device comprises the following steps:
[0022] 1. The high-pressure disinfection device is composed of two high-pressure disinfection structures spliced together. The two high-pressure disinfection structures are connected by the protrusion and depression on one side of the mounting plate connected to the circuit board to achieve splicing between the two. When in use, air enters the high-pressure disinfection device through the disinfection cylinder of one of the high-pressure disinfection structures near the disinfection cylinder port at the top of the high-pressure disinfection column;
[0023] 2. Connect the bottom ends of the two high-pressure disinfection columns of the high-pressure disinfection structure to the high-voltage power supply through the circuit board;
[0024] 3. After the high-voltage power supply is turned on, the top of the high-pressure disinfection column emits a high-energy particle beam, which is received by the inner wall of the disinfection cylinder, thereby forming multiple layers of high-energy particle beams inside the disinfection cylinder, killing all bacteria, fungi, and viruses that enter the high-pressure disinfection device;
[0025] 4. Finally, the air is output from the high-pressure disinfection device after completing the secondary disinfection and sterilization from the disinfection cylinder of another high-pressure disinfection structure close to the disinfection cylinder mouth at the top of the high-pressure disinfection column, completing the sterilization process.
[0026] Compared with the prior art, this application has at least the following obvious advantages and effects:
[0027] 1. A high-pressure disinfection unit, comprising a disinfection barrel, wherein at least one high-pressure disinfection column is provided inside the disinfection barrel, and the at least one high-pressure disinfection column is evenly spaced inside the disinfection barrel, and the outer diameter of the high-pressure disinfection column gradually decreases from the bottom end to the top end, the bottom end of the high-pressure disinfection column is connected to a high-voltage power supply, and the plane where the top end of the high-pressure disinfection column is located is lower than the plane where the top end of the disinfection barrel is located. After the bottom end of the high-pressure disinfection column is connected to the high-voltage power supply, the high-voltage power supply releases a high-energy particle beam through the top end of the high-pressure disinfection column, and the high-energy particle beam is received by the inner wall of the disinfection barrel, thereby forming multiple layers of high-energy particle beam layers in the disinfection barrel. When air enters the disinfection barrel, harmful substances such as bacteria, fungi, and viruses in the air are bombarded by the high-energy particle beam, thereby achieving a sterilization and disinfection effect. In addition, the high-pressure disinfection unit has a simple structure, does not take up too much space, and can be used in various air purification devices, air conditioners and other equipment. Therefore, the high-pressure disinfection unit of the present application has the advantages of simple structure, strong applicability and high efficiency in sterilization and disinfection.
[0028] 2. A high-pressure disinfection structure, comprising a mounting plate having a plurality of mounting holes evenly spaced thereon, wherein the disinfection cartridges are fixedly mounted in the mounting holes. The mounting plate enables the plurality of disinfection cartridges to work together, thereby increasing the air contact surface for high-pressure disinfection;
[0029] 3. A high-pressure disinfection structure, wherein a high-pressure disinfection column is installed inside the disinfection cylinder. The top of the high-pressure disinfection column is a needle-tip structure. The high-pressure disinfection column is fixed to the center of the disinfection cylinder by a high-pressure disinfection column support frame. This ensures that the high-energy particle beams emitted from the top of the high-pressure disinfection column at the same level are of the same length, thereby preventing the generation of ozone;
[0030] 4. A high-pressure disinfection device, which is composed of at least two high-pressure disinfection structures spliced together. The two high-pressure disinfection structures are connected by the protrusions and depressions on one side of the circuit board through their mounting plates to achieve splicing of the two. Air enters the high-pressure disinfection device from the disinfection cylinder of one of the high-pressure disinfection structures near the disinfection cylinder mouth at the top of the high-pressure disinfection column. The bottom end of the high-pressure disinfection column is connected to a high-voltage power supply through a circuit board. The top of the high-pressure disinfection column emits a high-energy particle beam, which is received by the inner wall of the disinfection cylinder, thereby forming multiple layers of high-energy particle beams in the disinfection cylinder, which kill all harmful substances such as bacteria, fungi, viruses, etc. entering the high-pressure disinfection device. Then, the air is output from the high-pressure disinfection device after completing secondary disinfection and sterilization from the disinfection cylinder of another high-pressure disinfection structure near the disinfection cylinder mouth at the top of the high-pressure disinfection column, thereby completing the sterilization process. BRIEF DESCRIPTION OF THE DRAWINGS
[0031] Figure 1 This is the overall structural layout diagram of the air disinfection unit of this application.
[0032] Figure 2 It is a schematic diagram of the overall structure of a preferred embodiment of the air disinfection structure of the present application.
[0033] Figure 3 This is a schematic diagram of the circuit board position of the air disinfection structure of this application.
[0034] Figure 4 It is a top view of a preferred embodiment of the air disinfection structure of the present application.
[0035] Figure 5 It is a side view of a preferred embodiment of the air disinfection structure of the present application.
[0036] Figure 6 It is a top view of a preferred embodiment of the air disinfection device of the present application.
[0037] Figure 7 It is a side view of another preferred embodiment of the air disinfection device of the present application.
[0038] Figure 8 It is a side view of another preferred embodiment of the air disinfection device of the present application.
[0039] List of parts in this application
[0040]
[0041] DETAILED DESCRIPTION
[0042] Specific embodiments of the present application are described in conjunction with the accompanying drawings and the following description to teach those skilled in the art how to make and use the best mode of the present application. In order to teach the principles of the application, some conventional aspects have been simplified or omitted. Those skilled in the art should understand that variations from these embodiments fall within the scope of the present application. Those skilled in the art should understand that the following features can be combined in various ways to form multiple variations of the present application. Terms such as "upper", "lower", "left", "right", "middle" and "one" cited in this application are only for the convenience of description and are not intended to limit the scope of the invention. Changes or adjustments to their relative relationships should also be regarded as the scope of the invention without substantial changes in the technical content. Therefore, the present application is not limited to the specific embodiments described below, but is only limited by the claims and their equivalents.
[0043] Figure 1 The figure shows a specific embodiment of the air disinfection unit of the present application. The high-pressure disinfection unit of the present application includes a disinfection cylinder 1, and at least one high-pressure disinfection column 2 is provided inside the disinfection cylinder 1. At least one high-pressure disinfection column 2 is evenly spaced inside the disinfection cylinder 1. The outer diameter of the high-pressure disinfection column 2 gradually decreases from the bottom to the top. The bottom end of the high-pressure disinfection column 2 is connected to a high-voltage power supply. The plane at the top of the high-pressure disinfection column 2 is lower than the plane at the top of the disinfection cylinder 1. The disinfection cylinder 1 and the high-pressure disinfection column 2 are made of metal material. After the high-pressure disinfection column 2 inside the disinfection cylinder 1 is connected to the high-voltage power supply, the high-voltage power supply is released through the top of the high-pressure disinfection column 2. The high-energy particle beam released from the top of the high-pressure disinfection column 2 is received by the inner wall of the disinfection cylinder 1, thereby forming multiple layers of high-energy particle beam layers in the disinfection cylinder 1. When air enters the disinfection cylinder 1, harmful substances such as bacteria, fungi, viruses, etc. in the air are bombarded by the high-energy particle beam, thereby achieving a sterilization and disinfection effect. The structure of the high-pressure disinfection unit is simple, does not take up too much space, and can be used for various air purification devices, air conditioners and other equipment. Therefore, the high-pressure disinfection unit of the present application has the advantages of simple structure, strong applicability and efficient sterilization and disinfection.
[0044] like Figure 1 As shown, in the embodiment of the present application, the disinfection cylinder 1 of the high-pressure disinfection unit is cylindrical in shape, and a high-pressure disinfection column 2 is provided inside the disinfection cylinder 1. The height of the disinfection cylinder 1 is 10 cm, the diameter of the disinfection cylinder 1 is 8 cm, the length of the high-pressure disinfection column 2 is 6 cm, and the top of the high-pressure disinfection column 2 is located inside the disinfection cylinder 1. When the bottom end of the high-pressure disinfection column 2 is connected to a high-voltage power supply, the top of the high-pressure disinfection column 2 emits a high-energy particle beam, which will kill all harmful substances such as bacteria, fungi, viruses, etc. that enter the disinfection cylinder 1, thereby achieving the effect of efficient sterilization and disinfection.
[0045] Specifically, if Figure 2 、 4As shown in Figure 5, a specific embodiment of the air disinfection structure of the present application is a high-pressure disinfection structure based on a high-pressure disinfection unit, which includes a mounting plate 3, a plurality of mounting holes 31 are evenly spaced on the mounting plate 3, and the disinfection cylinder 1 is fixedly installed in the mounting hole 31. Moreover, multiple disinfection cylinders 1 are evenly spaced and integrated, and the intervals between adjacent disinfection cylinders 1 match the intervals between adjacent mounting holes 31, ensuring that multiple disinfection cylinders 1 can be installed one-to-one with multiple mounting holes 31. Therefore, multiple disinfection cylinders 1 do not need to be installed one by one in the mounting holes 31. This structure is simple, easy to operate, can save installation time, and improve production efficiency. Since at least one high-pressure disinfection column 2 is provided inside the disinfection cylinder 1, at least one high-pressure disinfection column 2 is evenly spaced inside the disinfection cylinder 1, and the outer diameter of the high-pressure disinfection column 2 gradually decreases from the bottom to the top, the bottom end of the high-pressure disinfection column 2 is connected to a high-voltage power supply, and the plane where the top end of the high-pressure disinfection column 2 is located is lower than the plane where the top end of the disinfection cylinder 1 is located. When the bottom end of the high-pressure disinfection column 2 is connected to the high-voltage power supply, the top end of the high-pressure disinfection column 2 emits a high-energy particle beam, and the high-energy particle beam is received by the inner wall of the disinfection cylinder 1 to form a multi-layer high-energy particle beam layer. The high-energy particle beam will kill all harmful substances such as bacteria, fungi, viruses, etc. that enter the disinfection cylinder 1, thereby achieving the effect of efficient sterilization and disinfection.
[0046] It should be noted that if Figures 3 to 5 As shown, in an embodiment of the present application, a high-pressure disinfection structure based on a high-pressure disinfection unit includes a mounting plate 3, a plurality of mounting holes 31 are evenly spaced on the mounting plate 3, the disinfection cylinder 1 is fixedly mounted in the mounting hole 31, a high-pressure disinfection column 2 is provided inside the disinfection cylinder 1, the outer diameter of the high-pressure disinfection column 2 gradually decreases from the bottom end to the top end, the plane where the top end of the high-pressure disinfection column 2 is located is lower than the plane where the top end of the disinfection cylinder 1 is located, the bottom end of the high-pressure disinfection column 2 is connected to a high-voltage power supply through a circuit board 4, in order to prevent the circuit board 4 from being interfered with by high-voltage electromagnetic interference, the surface of the circuit board 4 is covered with an insulating material made of epoxy potting glue, and the high-pressure disinfection column 2 is connected to a high-voltage power supply through a circuit board 4. The column support frame 5 is fixed at the center position of the disinfection cylinder 1. When the bottom end of the high-pressure disinfection column 2 is connected to a high-voltage power supply of about 6000 volts, since the high-pressure disinfection column 2 is fixed at the center position of the disinfection cylinder 1, after the high-voltage power supply is turned on, the top of the high-pressure disinfection column 2 is ensured to be consistent with the inner wall of the disinfection cylinder 1 in the horizontal direction. Therefore, the length of the high-energy particle beam at the same level emitted from the top of the high-pressure disinfection column 2 is ensured to be consistent, preventing the spacing deviation of the electrodes from causing local creepage or spark discharge to generate excessive ozone. Therefore, this structure can not only prevent the generation of ozone, but also kill all harmful substances such as bacteria, fungi, viruses, etc. that enter the disinfection cylinder 1 in all directions, thereby achieving the effect of efficient sterilization and disinfection.
[0047] It should be noted that if Figure 4As shown in an embodiment of the present application, a high-pressure disinfection structure based on a high-pressure disinfection unit is provided, wherein a high-pressure disinfection column 2 is provided inside the disinfection cylinder 1, and the outer diameter of the high-pressure disinfection column 2 gradually decreases from the bottom to the top, and the top of the high-pressure disinfection column 2 is a needle-tip structure. The top of the high-pressure disinfection column 2 passes through the high-pressure disinfection column support frame 5 and is fixed to the center position of the disinfection cylinder 1 through the high-pressure disinfection column support frame 5, ensuring that the top of the high-pressure disinfection column 2 is at the same distance from the inner wall of the disinfection cylinder 1 in the horizontal direction. When the bottom end of the high-pressure disinfection column 2 is connected to a high-voltage power supply of about 6000 volts, the length of the high-energy particle beam at the same level emitted from the top of the high-pressure disinfection column 2 can be ensured to be consistent, preventing the spacing deviation of the electrodes from causing excessive ozone generated by local creepage or spark discharge. Therefore, this structure can not only prevent the generation of ozone, but also kill all harmful substances such as bacteria, fungi, viruses, etc. that enter the disinfection cylinder 1 in all directions, thereby achieving the effect of efficient sterilization and disinfection.
[0048] Further explanation is needed, such as Figure 4 and 5 As shown in the embodiment of the present application,
[0049] The top of the high-pressure disinfection column 2 passes through the center of the support head 51, and the other end is connected to the inner wall of the disinfection cylinder 1. The angles formed between the three support rods 52 and the disinfection cylinder 1 are consistent, and the spatial angles formed between the three support rods 52 are consistent, ensuring that the support rods 52 fix the support head 51 in the center of the disinfection cylinder 1. The top of the high-pressure disinfection column 2 passes through the center of the support head 51, further ensuring that the high-pressure disinfection column 2 is located in the center of the disinfection cylinder 1, and thus ensuring that the high-energy particle beams emitted from the top of the high-pressure disinfection column 2 at the same level are consistent in length, which can not only prevent the generation of ozone, but also kill all harmful substances such as bacteria, fungi, viruses, etc. that enter the disinfection cylinder 1 in all directions, thereby achieving the effect of efficient sterilization and disinfection.
[0050] In addition, the three support rods 52 of the same length of the high-pressure disinfection column support frame 5 divide the disinfection cylinder 1 into three air inlets. The three support rods 52 are not vertically connected to the inner wall of the disinfection cylinder 1. When using this high-pressure disinfection structure, the air does not enter the disinfection cylinder 1 in a straight line. Under the action of the high-pressure disinfection column support frame 5, the air forms a wind vortex effect, which increases the residence time of the air in the disinfection cylinder 1, thereby enhancing the sterilization effect.
[0051] It also needs to be explained, such as Figure 6As shown, in an embodiment of the present application, a high-pressure disinfection device based on a high-pressure disinfection structure is provided. The high-pressure disinfection device is composed of two high-pressure disinfection structures spliced together. The two high-pressure disinfection structures are connected by protrusions and depressions on their sides to achieve splicing between the two, thereby increasing the air contact surface of the high-pressure disinfection device and improving the sterilization efficiency.
[0052] It should be explained that Figure 7As shown in the embodiment of the present application, a high-pressure disinfection device is composed of two high-pressure disinfection structures spliced together, and 18 mounting holes 31 are evenly spaced on the mounting plates 3 of the two high-pressure disinfection structures. A disinfection cylinder 1 is installed in each mounting hole 31, and the 18 disinfection cylinders 1 in each mounting plate 3 are evenly spaced and integrated. The intervals between adjacent disinfection cylinders 1 match the intervals between adjacent mounting holes 31, ensuring that the 18 disinfection cylinders 1 of the two mounting plates 3 can be installed one-to-one with their corresponding 18 mounting holes 31. The disinfection cylinder 1 does not need to be installed one by one into the installation hole 31. Each disinfection cylinder 1 is provided with a high-pressure disinfection column 2. The high-pressure disinfection column 2 is a needle-tip structure. The bottom end of the high-pressure disinfection column 2 is connected to the high-voltage power supply through the circuit board 4. The surface of the circuit board 4 is covered with an insulating material made of epoxy potting glue. The high-pressure disinfection column 2 is fixed to the center of the disinfection cylinder 1 through the high-pressure disinfection column support frame 5. The high-pressure disinfection column support frame 5 consists of a support head 51 and three support rods 52 of the same length. One end of the support rod 52 is connected to the support head 51, and the other end is connected to the inner wall of the disinfection cylinder 1. The angles formed between the three support rods 52 and the disinfection cylinder 1 are consistent, and the spatial angles formed between the three support rods 52 are consistent, ensuring that the support rods 52 fix the support head 51 in the center position of the disinfection cylinder 1, and the top of the high-pressure disinfection column 2 passes through the center of the support head 51, and the high-pressure disinfection column support frame 5 further fixes the high-pressure disinfection column 2 in the center position of the disinfection cylinder 1. In this embodiment, the height of each disinfection cylinder 1 is 10 cm, the diameter of each disinfection cylinder 1 is 10 cm, the length of each high-pressure disinfection column 2 is 10 cm, and the height difference between the plane where the top of each high-pressure disinfection column 2 is located and the plane where the tube mouth closest to the disinfection cylinder 1 where it is located is 1 cm. The two high-pressure disinfection structures are connected by the protrusions and recesses on one side of the circuit board 4 through their mounting plate 3 to achieve splicing of the two. The disinfection cylinders 1 of the two high-pressure disinfection structures correspond to each other one by one. When in use, air enters the high-pressure disinfection device from the disinfection cylinder 1 of one of the high-pressure disinfection structures near the disinfection cylinder mouth of the top of the high-pressure disinfection column 2, and the bottom ends of the high-pressure disinfection columns 2 of the two high-pressure disinfection structures are connected to about 6000 through the circuit board 4. The circuit board 4 is covered with an insulating material made of epoxy potting glue to prevent it from being affected by electromagnetic interference. After the high-voltage power supply is turned on, the top of the high-pressure disinfection column 2 emits a high-energy particle beam, which is received by the inner wall of the disinfection cylinder 1. Since the distance between the top of the high-pressure disinfection column 2 and the mouth of the disinfection cylinder 1 is only 1 cm, the high-energy particle beam formed by the top of the high-pressure disinfection column 2 and the inner wall of the disinfection cylinder 1 is 5.099 cm at the longest and 5 cm at the shortest, with a length difference of 0.0.99cm, which prevents excessive ozone generation from localized creepage or spark discharges caused by electrode spacing deviations. Furthermore, after connecting to a high-voltage power source, the high-energy particle beam layer formed within sterilization tube 1 kills all bacteria, fungi, and viruses that enter the high-pressure disinfection device. Finally, the air is discharged from the high-pressure disinfection device after completing secondary disinfection and sterilization through the sterilization tube port near the top of the high-pressure disinfection column 2 in another high-pressure disinfection structure, sterilization tube 1, completing the sterilization process.
[0053] The high-pressure disinfection device of this embodiment was placed in a 30 m2 closed space and tested using ordinary nutrient agar culture medium.
[0054] The test temperature is 25-28℃;
[0055] Humidity is 60-65% RH;
[0056] A sampling point was set in the center of the confined space and sampling was performed using a six-stage sieve air impact sampler with a sampling flow rate of 28.3 L / min. The sampling time was 5 minutes before disinfection and 10 minutes after disinfection. The sampling point was 1.0 m above the ground.
[0057] After 60 minutes of disinfection with the high-pressure disinfection device of this embodiment, the experimental results of the elimination rate of natural bacteria in the air were 99.80%, >99.81%, and >99.80% respectively, and the average ozone concentration in the air was 0.009 mg / m 3 .
[0058] It should also be noted that in an embodiment of the present application, a high-pressure disinfection device based on a high-pressure disinfection structure is composed of at least two high-pressure disinfection structures spliced together. The side edges and upper and lower bottom surfaces of the mounting plate 3 of the high-pressure disinfection structure are provided with protrusions and depressions, thereby realizing multi-angle splicing of multiple high-pressure disinfection structures and improving its applicability.
[0059] It should be further explained that Figure 6 As shown in the embodiment of the present application, the method of using the high-pressure disinfection device is as follows:
[0060] 1. The high-pressure disinfection device is composed of two high-pressure disinfection structures spliced together. The two high-pressure disinfection structures are connected by the protrusion and depression on one side of the mounting plate connected to the circuit board to achieve splicing between the two. When in use, air enters the high-pressure disinfection device through the disinfection cylinder of one of the high-pressure disinfection structures near the disinfection cylinder port at the top of the high-pressure disinfection column;
[0061] 2. Connect the bottom ends of the two high-pressure disinfection columns of the high-pressure disinfection structure to a high-voltage power supply through the circuit board (4);
[0062] 3. After the high-voltage power supply is turned on, the top of the high-pressure disinfection column emits a 360-degree high-energy particle beam, which is received by the inner wall of the disinfection cylinder, thereby forming multiple layers of high-energy particle beams inside the disinfection cylinder, killing all bacteria, fungi, and viruses that enter the high-pressure disinfection device;
[0063] 4. Finally, the air is output from the high-pressure disinfection device after completing the secondary disinfection and sterilization from the disinfection cylinder of another high-pressure disinfection structure close to the disinfection cylinder mouth at the top of the high-pressure disinfection column, completing the sterilization process.
[0064] It should also be noted that in the embodiment of the present application, the disinfection barrel 1 of the high-pressure disinfection unit of the present application is cylindrical in shape, and a high-pressure disinfection column 2 is provided inside the disinfection barrel 1. The high-pressure disinfection column 2 is a carbon brush head. The carbon brush head of this embodiment adopts a carbon brush head made of Huayu brand carbon fiber. The brush head of the carbon brush head is located inside the disinfection barrel 1. When the bottom end of the carbon brush head is connected to a high-voltage power supply, the brush head of the carbon brush head emits a 360° high-energy particle beam, which will kill all harmful substances such as bacteria, fungi, viruses, etc. that enter the disinfection barrel 1, thereby achieving the effect of efficient sterilization and disinfection.
[0065] If necessary, Figure 8 As shown, in an embodiment of the present application, the high-pressure disinfection device is composed of two high-pressure disinfection structures spliced together, and air enters the high-pressure disinfection device from the disinfection cylinder 1 of one of the high-pressure disinfection structures away from the disinfection cylinder mouth at the top of the high-pressure disinfection column 2. After the two high-pressure disinfection structures are connected to the high-voltage power supply, the tops of the two high-pressure disinfection columns 2 emit 360° high-energy particle beams, thereby forming multiple layers of high-energy particle beam layers in the two disinfection cylinders 1, which kill all harmful substances such as bacteria, fungi, viruses, etc. that enter the high-pressure disinfection device. Finally, the air is output from the high-pressure disinfection device from the disinfection cylinder 1 of the other high-pressure disinfection structure away from the disinfection cylinder mouth at the top of the high-pressure disinfection column 2, completing the sterilization process.
[0066] Since those skilled in the art can easily think of it, any modifications, equivalent substitutions, improvements, etc. made within the concept and principle of the application should be included in the scope of the claims of this application.
Claims
1. A method for using a high-pressure disinfection device, characterized in that: The following steps are involved: 1) The high-pressure disinfection device is composed of two high-pressure disinfection structures spliced together. The two high-pressure disinfection structures are connected by the protrusion and depression on one side of the mounting plate (3) connected to the circuit board (4) to achieve splicing of the two. When in use, air enters the high-pressure disinfection device through the disinfection cylinder (1) of one of the high-pressure disinfection structures near the disinfection cylinder port at the top of the high-pressure disinfection column (2); 2) Connecting the bottom ends of the two high-pressure disinfection columns (2) of the high-pressure disinfection structure to a high-voltage power supply through the circuit board (4); 3) After the high-voltage power supply is turned on, the top of the high-pressure disinfection column (2) emits a high-energy particle beam, which is received by the inner wall of the disinfection cylinder (1), thereby forming multiple layers of high-energy particle beams in the disinfection cylinder (1), killing all bacteria, fungi, and viruses that enter the high-pressure disinfection device; 4) Finally, the air is output from the high-pressure disinfection device after completing secondary disinfection and sterilization from the disinfection cylinder (1) of another high-pressure disinfection structure near the disinfection cylinder port at the top of the high-pressure disinfection column (2), thus completing the sterilization process.
2. The method for using the high-pressure disinfection device according to claim 1, characterized in that: The high-pressure disinfection device is composed of two upper and lower high-pressure disinfection structures connected in the middle; The high-pressure disinfection structure comprises at least one disinfection cylinder (1); at least one high-pressure disinfection column (2) is evenly spaced and arranged in the disinfection cylinder (1); the outer diameter of the high-pressure disinfection column (2) gradually decreases from the bottom end to the top end; the bottom end of the high-pressure disinfection column (2) is connected to a high-voltage power supply; and the plane where the top end of the high-pressure disinfection column (2) is located is lower than the plane where the top end of the disinfection cylinder (1) is located; The upper and lower disinfection cylinders (1) of the high-pressure disinfection structure are arranged opposite to each other, and both ends of the disinfection cylinder (1) are provided with openings.
3. The method for using the high-pressure disinfection device according to claim 2, characterized in that: The top ends of the high-pressure disinfection columns (2) in the upper and lower disinfection cylinders (1) are arranged in opposite directions.
4. The method for using the high-pressure disinfection device according to claim 2, characterized in that: The high-pressure disinfection device further comprises a mounting plate (3), wherein a plurality of mounting holes (31) are evenly spaced apart on the mounting plate (3), a disinfection cylinder (1) is mounted in each mounting hole (31), and the plurality of disinfection cylinders (1) in each mounting plate (3) are evenly spaced apart and integrally connected, and the spacing between adjacent disinfection cylinders (1) matches the spacing between adjacent mounting holes (31).
5. The method for using the high-pressure disinfection device according to claim 4, characterized in that: The bottom end of the high-pressure disinfection column (2) is connected to a high-voltage power supply through a circuit board (4). The high-pressure disinfection column (2) is fixed at the center of the disinfection cylinder (1) through a high-pressure disinfection column support frame (5). The high-pressure disinfection column support frame (5) is composed of a support head (51) and a plurality of support rods (52) of the same length. One end of the support rod (52) is connected to the support head (51), and the other end is connected to the inner wall of the disinfection cylinder (1). The angles formed between the plurality of support rods (52) and the disinfection cylinder (1) are consistent, and the spatial angles formed between the plurality of support rods (52) are consistent, ensuring that the support rods (52) fix the support head (51) at the center of the disinfection cylinder (1). The top end of the high-pressure disinfection column (2) passes through the center of the support head (51).
6. The method for using the high-pressure disinfection device according to claim 4, characterized in that: The two high-pressure disinfection structures are respectively connected to the upper and lower sides of the circuit board (4) via the mounting plate (3), and the disinfection cylinders (1) of the two high-pressure disinfection structures correspond to each other one by one.
7. The method for using the high-pressure disinfection device according to claim 5, characterized in that: The surface of the circuit board (4) is covered with an insulating material made of epoxy potting glue.
8. The method for using the high-pressure disinfection device according to claim 2, characterized in that: The height of each sterilizing cylinder (1) is 10 cm, the diameter of each sterilizing cylinder (1) is 10 cm, the length of each high-pressure sterilizing column (2) is 10 cm, and the height difference between the plane where the top of each high-pressure sterilizing column (2) is located and the plane where the mouth of the sterilizing cylinder (1) is closest to it is 1 cm.
Citation Information
Patent Citations
Electric purification equipment, air purifier and purification method
CN110449264A
High-pressure disinfection unit, structure and device
CN216496731U