Integrated negative oxygen waterfall ion desk

By integrating the negative ion nozzle, negative ion generator, and nasal oxygen inhalation device into the desk, the problem of large device size and space occupation is solved, achieving efficient improvement of indoor air quality and oxygen supply, and enhancing the convenience and comfort of use.

CN224140390UActive Publication Date: 2026-04-21HUNAN TECHRAY MEDICAL
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
HUNAN TECHRAY MEDICAL
Filing Date
2024-12-23
Publication Date
2026-04-21

AI Technical Summary

Technical Problem

Existing negative ion generators and oxygen supply equipment are bulky and take up a lot of space, making them unsuitable for home or office environments.

Method used

The negative ion nozzle, negative ion generator, nasal oxygen inhalation device, and water bottle are integrated into the same desk. It adopts a compact structural design and uses a compressor and oxygen generator to provide oxygen. The negative ion nozzle and nasal oxygen inhalation device provide a high concentration of negative ions and oxygen.

Benefits of technology

It saves space, provides a localized high-concentration negative oxygen ion environment and a high-concentration oxygen supply, improves indoor air quality, and enhances work efficiency and comfort.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to an integrated negative oxygen waterfall ion desk. The desk comprises a desk body, wherein the desk body is provided with a mounting hole and a first opening; the negative oxygen ion nozzles are arranged in the mounting holes; the negative oxygen ion generating device is arranged on the table body, an air inlet of the negative oxygen ion generating device is connected with a first air source, and an air outlet of the negative oxygen ion generating device is connected with the negative oxygen ion nozzle through a first pipeline; a water outlet of the water replenishing bottle is connected with a water inlet of the negative oxygen ion generating device; the nasal oxygen inhalation device is arranged on the table body, and an air inlet of the nasal oxygen inhalation device is connected with the second air source; and an air outlet of the nasal oxygen inhalation device corresponds to the first opening. Through combination of the negative oxygen ion sprayer, the negative oxygen ion generating device and the nasal oxygen inhalation device, space is saved, use is convenient, an oxygen dispersion device does not need to be additionally arranged, and supply of negative oxygen ions and oxygen can be achieved at the same time, so that the desk can provide a local high-concentration negative oxygen ion environment; and high-concentration oxygen supply can be provided for a local area through the nasal oxygen inhalation device.
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Description

Technical Field

[0001] This application relates to the field of office desk technology, and more particularly to an integrated negative oxygen waterfall ion desk. Background Technology

[0002] With the fast pace of modern life and the increasing severity of indoor air quality problems, people are paying more and more attention to improving indoor air quality. Negative oxygen ions, as a substance beneficial to human health, can purify the air, increase air humidity, and promote human well-being. Therefore, negative oxygen ion generators are widely used in homes, offices, and oxygen chambers. However, existing negative oxygen ion generators and oxygen supply equipment are usually bulky, especially when used with desks, requiring a large amount of space and making installation very inconvenient, unsuitable for home or office environments. Furthermore, in recent years, with technological advancements, miniaturized and integrated negative oxygen ion generators have gradually become a research hotspot. Utility Model Content

[0003] This application provides an integrated negative oxygen waterfall ion desk that saves space and is easy to use.

[0004] Therefore, this application provides an integrated negative oxygen waterfall ion desk, comprising:

[0005] The table body has mounting holes and a first opening;

[0006] A negative ion nozzle, wherein the negative ion nozzle is disposed in the mounting hole;

[0007] A negative oxygen ion generator is provided on the table. The air inlet of the negative oxygen ion generator is connected to a first air source, and the air outlet of the negative oxygen ion generator is connected to the negative oxygen ion nozzle through a first pipeline.

[0008] A water replenishment bottle, the outlet of which is connected to the inlet of the negative oxygen ion generator;

[0009] A nasal oxygen inhalation device is provided on the table, with its air inlet connected to a second air source and its air outlet corresponding to the first opening.

[0010] In one embodiment, the table body includes:

[0011] The support assembly includes a mounting chamber and support legs, the mounting chamber and support legs being spaced apart; the mounting chamber has a mounting cavity and a first opening connected to the mounting cavity; the first opening is located on the side wall of the mounting chamber; the negative oxygen ion generator, the nasal oxygen inhalation device and the water replenishment bottle are located inside the mounting cavity; the air outlet of the nasal oxygen inhalation device is arranged corresponding to the first opening;

[0012] The desktop is connected to the upper end of the mounting compartment and the support leg; the desktop is provided with a plurality of mounting holes.

[0013] In one embodiment, there are two first openings located on opposite sidewalls of the mounting compartment.

[0014] In one embodiment, the nasal oxygen inhalation device includes:

[0015] Two jet connectors are respectively provided corresponding to the two first openings;

[0016] The second pipeline connects the air inlet of the jet connector to the second air source.

[0017] In one embodiment, the installation compartment has a second opening on the side wall near the support leg, and the second opening corresponds to the water replenishment bottle.

[0018] In one embodiment, a wastewater bottle is also included, which is disposed within the mounting cavity; the inlet of the wastewater bottle is connected to the outlet of the negative oxygen ion generator.

[0019] In one embodiment, a compressor is also included, which is disposed within the mounting cavity, and the air outlet of the compressor is connected to the air inlet of the negative oxygen ion generator.

[0020] In one embodiment, the device further includes an oxygen generator disposed within the mounting cavity, the oxygen generator's outlet being connected to the air inlet of the nasal oxygen inhalation device and the air inlet of the negative oxygen ion generator, respectively.

[0021] In one embodiment, the negative oxygen ion generator is equipped with a level gauge for detecting the liquid level;

[0022] And / or, the negative oxygen ion generator is equipped with a disinfection lamp for sterilization and disinfection.

[0023] In one embodiment, an environmental monitoring box located on the back of the desktop is also included for monitoring environmental data.

[0024] The beneficial effects of this application are:

[0025] This desk integrates a negative ion nozzle, a negative ion generator, and a nasal oxygen inhalation device into a single compact design, saving space and offering ease of use. Furthermore, the combination of these components eliminates the need for a separate diffused oxygen device, providing a localized high-concentration negative ion environment and a high-concentration oxygen supply, improving indoor air quality, and enhancing work efficiency and comfort. Attached Figure Description

[0026] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, for those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0027] Figure 1 A schematic diagram of the external structure of an integrated negative oxygen waterfall ion desk provided for this utility model;

[0028] Figure 2 A schematic diagram of the internal structure of an integrated negative oxygen waterfall ion desk provided for this utility model;

[0029] Figure 3 The present invention provides a component connection diagram for an integrated negative oxygen waterfall ion desk.

[0030] Explanation of reference numerals in the attached figures:

[0031] 1. Negative ion nozzle; 2. Environmental monitoring box; 3. Nasal oxygen inhalation device; 4. Negative ion generator; 5. Desktop; 6. Wastewater bottle; 7. Support legs; 8. Water replenishment bottle. Detailed Implementation

[0032] To make the objectives, technical solutions, and advantages of the embodiments of this application clearer, the technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0033] The following disclosure provides numerous different embodiments or examples for implementing various structures of this application. To simplify the disclosure, specific examples of components and arrangements are described below. These are merely examples and are not intended to limit the scope of this application. Furthermore, reference numerals and / or letters may be repeated in different examples. Such repetition is for simplification and clarity and does not in itself indicate a relationship between the various embodiments and / or arrangements discussed.

[0034] It's important to note that negative oxygen ions are oxygen ions that gain some electrons and become negatively charged (the electrons carry a negative charge). These are often referred to as waterfall negative oxygen ions. The Lenard effect refers to the phenomenon where electrons and positive charges separate under specific conditions, commonly observed in meteorology, particularly in the charge distribution during raindrop falling. During raindrop falling, the water droplets break apart, becoming positively charged while the air becomes negatively charged; this phenomenon is known as the Lenard effect.

[0035] like Figures 1 to 3 As shown, this application embodiment provides an integrated negative oxygen waterfall ion desk, including a desk body, a negative oxygen ion nozzle 1, a negative oxygen ion generator 4, a water replenishment bottle 8, and a nasal oxygen inhalation device 3; the desk body has a mounting hole and a first opening; the negative oxygen ion nozzle 1 is disposed in the mounting hole; wherein, after installation, the direction of the negative oxygen ion nozzle 1 cannot be adjusted, so that when it sprays negative oxygen ions, it creates a local area with a high concentration of negative oxygen ions, avoiding uneven effects caused by changes in direction; the negative oxygen ion generator 4 is disposed on the desk body, the air inlet of the negative oxygen ion generator 4 is connected to a first air source, and the air outlet of the negative oxygen ion generator 4 is connected to a first pipe. The path is connected to the negative oxygen ion nozzle; wherein, the first air source can be oxygen obtained through a compressor, or high-concentration oxygen obtained through an oxygen generator, or oxygen supplied by both a compressor and an oxygen generator, or the required oxygen obtained through an external air source; the water outlet of the water bottle 8 is connected to the water inlet of the negative oxygen ion generator 4; the nasal oxygen inhalation device 3 is located on the table, and the air inlet of the nasal oxygen inhalation device 3 is connected to the second air source; the air outlet of the nasal oxygen inhalation device 3 is set corresponding to the first opening; wherein, the second air source is mainly high-concentration oxygen obtained through an oxygen generator, or oxygen can be obtained through an external oxygen source.

[0036] Furthermore, the table body includes a support assembly comprising a mounting chamber and support legs 7, the mounting chamber and support legs 7 being spaced apart; the mounting chamber has a mounting cavity and a first opening connected to the mounting cavity; the first opening is located on the side wall of the mounting chamber; the negative ion generator 4, the nasal oxygen inhalation device 3, and the water replenishment bottle 8 are located within the mounting cavity; the air outlet of the nasal oxygen inhalation device 3 is positioned corresponding to the first opening; wherein, the spaced arrangement of the mounting chamber and support legs 7 together supports the entire table body, ensuring the stability and load-bearing capacity of the table body. The mounting chamber integrates a negative ion generator 4, a nasal oxygen inhalation device 3, and a hydration bottle 8, achieving multi-functional integration. This makes the overall device structure more compact and allows for flexible arrangement to suit different scenarios, such as oxygen chambers or smaller spaces like studies. A desktop 5 is connected to the upper end of the mounting chamber and the support leg 7. The desktop has multiple mounting holes. The desktop 5 is firmly connected to the upper end of the mounting chamber and the support leg 7, forming a stable structure and enhancing the overall stability. The desktop 5 can also have multiple mounting holes, allowing for the installation of other devices such as lamps and sockets according to user needs, increasing its practicality.

[0037] Furthermore, there are two first openings, located on opposite side walls of the mounting compartment. That is, the first opening of the nasal oxygen device 3 is located on the side of the table, allowing the user convenient access and use without moving or adjusting the table's position. Preferably, a nasal cannula can be connected through the first opening, allowing the user to directly obtain a high concentration of oxygen, improving the oxygenation effect, especially suitable for users requiring high concentrations. Alternatively, the obtained oxygen can be directly diffused into a localized area, rapidly increasing the oxygen concentration in that area and improving the user's breathing environment, particularly in poor air quality conditions. Whether through a nasal cannula or local diffusion, the nasal oxygen device 3 can meet the user's oxygen supply needs, providing immediate oxygen support.

[0038] Furthermore, the nasal oxygen inhalation device 3 includes: two jet connectors, each corresponding to one of the two first openings; and a second conduit connecting the air inlet of the jet connectors to the second air source. A flow regulating valve can be added to the jet connectors, allowing the user to adjust the oxygen flow rate as needed. A safety valve can also be added to the second conduit to prevent danger caused by excessive air pressure. Preferably, both the jet connectors and the second conduit can be made of lightweight materials to reduce the overall weight of the device, resulting in a lightweight and flexible installation.

[0039] Furthermore, the installation compartment is provided with a second opening on the side wall near the support leg 7. The second opening is provided corresponding to the water replenishment bottle 8, which facilitates the placement or removal of the water replenishment bottle 8 into or out of the installation compartment. The water replenishment bottle 8 can be replaced or cleaned regularly to ensure the hygiene and normal operation of the device. It also makes the overall device more compact, reduces the space occupied, and facilitates flexible arrangement to suit different scenarios.

[0040] Furthermore, it also includes a wastewater bottle 6, which is disposed within the mounting cavity; the inlet of the wastewater bottle 6 is connected to the outlet of the negative ion generator 4. The wastewater bottle 6 is used to collect the wastewater discharged from the negative ion generator 4, preventing wastewater overflow and keeping the inside of the device clean. Preferably, the negative ion generator 4 will activate its cleaning function after 7 days of power-on. At this time, the water stored in the negative ion generator 4 is discharged to the wastewater bottle 6 through a pipeline. During the discharge of the stored water, a disinfection lamp is simultaneously activated to sterilize and disinfect the inside of the device, ensuring its hygiene and safety.

[0041] Furthermore, the device also includes a compressor housed within the mounting cavity. The compressor's outlet is connected to the inlet of the negative ion generator 4. The negative ion generator 4 can generate negative ions using the oxygen provided by the compressor, thereby effectively improving indoor air quality. Integrating the compressor and the negative ion generator 4 into the same mounting cavity reduces the device's size and complexity.

[0042] Furthermore, the device also includes an oxygen generator, which is located within the mounting cavity. The oxygen generator's outlet is connected to the inlet of the nasal oxygen inhalation device 3 and the inlet of the negative ion generator 4, respectively. The oxygen generator can separate high-concentration oxygen from the air, providing purer oxygen to the nasal oxygen inhalation device 3. The nasal oxygen inhalation device 3 can then directly provide the high-concentration oxygen to the user via a nasal cannula or diffuse it directly to a specific area. The oxygen generator can simultaneously provide high-concentration oxygen to the negative ion generator 4. This high-concentration oxygen generates more negative ions, ensuring the stable operation of the negative ion generator 4. In particular, integrating the oxygen generator, nasal oxygen inhalation device 3, and negative ion generator 4 into the same mounting cavity reduces the device's size and complexity, making its arrangement more flexible and convenient.

[0043] Furthermore, the negative ion generator 4 is equipped with a level gauge for detecting the liquid level; preferably, the level gauge can be installed at the bottom or side of the negative ion generator 4 to monitor the liquid level inside the negative ion generator 4 in real time, ensuring that the device operates within a safe range and avoiding equipment failure due to excessively high or low liquid levels.

[0044] When the level gauge detects that the liquid level in the negative ion generator 4 is low, the water pump starts and draws pure water from the water replenishment bottle 8 to replenish the negative ion generator 4 until the liquid level is at the normal level or the water pump has been working for four minutes; when the level gauge detects that the liquid level in the negative ion generator 4 is high, the water in the negative ion generator 4 will be drawn into the wastewater bottle 6 until the liquid level is at the normal level.

[0045] And / or, the negative ion generator 4 is equipped with a disinfection lamp for sterilization and disinfection. Preferably, the disinfection lamp can be installed on the top or side of the negative ion generator 4 to ensure that the light covers the entire interior of the device. The disinfection lamp can be an ultraviolet lamp or other high-efficiency germicidal lamp to periodically sterilize and disinfect the interior of the negative ion generator 4, further improving the quality of the air environment.

[0046] Furthermore, it also includes an environmental monitoring box 2 located on the back of the desktop 5, used to monitor environmental data, such as the oxygen content of the surrounding environment, and the temperature and humidity in the air. Specifically, the environmental monitoring box 2 is equipped with a data cable, which provides stable power supply and data transmission; at the same time, the data cable uses split connections, allowing it to be connected to different devices or power sources, ensuring the independence and stability of power supply and data transmission. Additionally, a power socket is provided under the desktop for daily use.

[0047] When this application is used:

[0048] The liquid level gauge inside the negative ion generator 4 detects the liquid level. When the liquid level inside the negative ion generator 4 is low, the water pump starts, drawing purified water from the water replenishment bottle 8 and adding it to the negative ion generator 4 until the liquid level is at the normal level or the water pump has been running for four minutes, at which point the water replenishment stops.

[0049] When the liquid level is at the normal level or the water pump has been working for four minutes, the first air source is introduced into the negative oxygen ion generator 4. The negative oxygen ion generator 4 uses the "Renard effect" to generate negative oxygen ions, which are then transported to the negative oxygen ion nozzle 1 through the first pipeline and then directly diffused into the environment to create a local area with a high concentration of negative oxygen ions.

[0050] During operation, the level gauge inside the negative ion generator 4 monitors the liquid level in real time. When the liquid level is low, the water pump is activated to replenish water until the liquid level returns to normal. When the liquid level is high, water from the negative ion generator 4 is drawn into the wastewater bottle 6 until the liquid level drops to normal.

[0051] Regular cleaning: The device will automatically activate the "cleaning" function after 7 days of power-on. At this time, the water stored in the negative ion generator 4 will be discharged to the wastewater bottle 6 through the pipeline. During this process, the disinfection lamp integrated in the negative ion generator 4 will turn on to sterilize and disinfect the inside of the device, ensuring its cleanliness and hygiene.

[0052] The above description describes specific embodiments of this application, but the scope of protection of this application is not limited thereto. Any person skilled in the art can easily conceive of various equivalent modifications or substitutions within the technical scope disclosed in this application, and these modifications or substitutions should all be covered within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.

Claims

1. An integrated negative oxygen waterfall ion desk, characterized in that, include: The table body has mounting holes and a first opening; the table body includes: The support assembly includes an installation compartment and a support leg (7), wherein the installation compartment and the support leg (7) are spaced apart; the installation compartment is provided with an installation cavity and a first opening connected to the installation cavity; the first opening is located on the side wall of the installation compartment; Desktop (5), the desktop (5) is connected to the upper end of the mounting compartment and the support leg (7); the desktop (5) is provided with a plurality of mounting holes; Negative oxygen ion nozzle (1), wherein the negative oxygen ion nozzle (1) is disposed in the mounting hole; A negative oxygen ion generator (4) is installed on the table body and located in the mounting cavity; the air inlet of the negative oxygen ion generator (4) is connected to a first air source, and the air outlet of the negative oxygen ion generator (4) is connected to the negative oxygen ion nozzle (1) through a first pipeline; a level gauge for detecting liquid level is provided inside the negative oxygen ion generator (4); and / or, a disinfection lamp for sterilization and disinfection is provided inside the negative oxygen ion generator (4); A water replenishment bottle (8) is located inside the mounting cavity, and the outlet of the water replenishment bottle (8) is connected to the inlet of the negative oxygen ion generator (4). A nasal oxygen inhalation device (3) is disposed on the table and located within the mounting cavity; the air inlet of the nasal oxygen inhalation device (3) is connected to a second air source, and the air outlet of the nasal oxygen inhalation device (3) is provided corresponding to the first opening; the nasal oxygen inhalation device (3) includes: Two jet connectors are respectively provided corresponding to the two first openings; The second pipeline connects the air inlet of the jet connector to the second air source. It also includes a wastewater bottle (6), which is located in the installation cavity; the inlet of the wastewater bottle (6) is connected to the outlet of the negative oxygen ion generator (4).

2. The integrated negative oxygen waterfall ion desk according to claim 1, wherein, There are two first openings, located on opposite sidewalls of the installation compartment.

3. The integrated negative oxygen waterfall ion desk according to claim 1, wherein, The installation compartment has a second opening on the side wall near the support leg (7), and the second opening is provided corresponding to the water replenishment bottle (8).

4. The integrated negative oxygen waterfall ion desk of claim 1, wherein, It also includes a compressor, which is located in the mounting cavity, and the air outlet of the compressor is connected to the air inlet of the negative oxygen ion generator (4).

5. The integrated negative oxygen waterfall ion desk of claim 1, wherein, It also includes an oxygen generator, which is located in the installation cavity. The outlet of the oxygen generator is connected to the inlet of the nasal oxygen inhalation device (3) and the inlet of the negative oxygen ion generator (4), respectively.

6. The integrated negative oxygen waterfall ion desk according to any one of claims 1 to 5, characterized in that, It also includes an environmental monitoring box located on the back of the desktop (5) for monitoring environmental data.