Vertical cabinet type negative oxygen ion device
By designing a vertical cabinet negative oxygen ion device, the problem of poor applicability of the air purification device scene is solved, and high-concentration negative oxygen ions are efficiently constructed in various environments, expanding the application range.
Patent Information
- Application Number
- CN202421997994.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-16
- Publication Date
- 2025-07-18
- Estimated Expiration
- 2034-08-16
AI Technical Summary
The poor application of the air purification device in the scenarios limits its application scope.
A vertical cabinet-type negative oxygen ion device is designed, including a cabinet, a negative oxygen ion generator, a first fluid source device, a first pipeline, a second fluid source device and a second pipeline. Negative oxygen ions are generated and released through these components, which are suitable for scenes such as offices and living rooms.
The scenario applicability of the air purification device is improved, allowing it to effectively build high concentrations of negative oxygen ions in various environments, and expand the scope of application.
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Figure CN223121623U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of air purification, in particular to a floor-standing negative oxygen ion device. Background Art
[0002] Due to carrying negative charges, negative oxygen ions have adsorption ability. Common harmful substances in the air, such as dust, smoke, and dirt, usually carry positive charges. Therefore, negative oxygen ions can effectively adsorb such harmful substances in the air, causing them to quickly fall along with the negative ions and lose the ability to freely float in the air, thereby achieving air purification.
[0003] However, in the related art, the scene applicability of the air purification device is poor, resulting in limited application. Summary of the Utility Model
[0004] The technical problem to be solved by the embodiments of the utility model is the poor scene applicability of the air purification device.
[0005] To solve the above problems, the embodiments of the utility model provide a floor-standing negative oxygen ion device, including:
[0006] A cabinet body having a receiving cavity, and an outlet is provided on the cabinet body;
[0007] A negative oxygen ion generating device is arranged in the receiving cavity. The negative oxygen ion generating device is used to generate negative oxygen ions by the interaction of the flowing-in fluid and release the negative oxygen ions to the space to be purified through the outlet;
[0008] A first fluid source device is connected to the negative oxygen ion generating device. The first fluid source device is used to provide a first fluid containing oxygen to the negative oxygen ion generating device;
[0009] A first pipeline is connected between the first fluid source device and the negative oxygen ion generating device;
[0010] A second fluid source device is connected to the negative oxygen ion generating device. The second fluid source device is used to provide a second fluid containing electrons that can be released to the negative oxygen ion device;
[0011] A second pipeline is connected between the second fluid source device and the negative oxygen ion generating device.
[0012] In a possible embodiment, the first fluid source device includes:
[0013] An air circuit device is provided outside the cabinet body. The air circuit device has an oxygen air circuit. The first pipeline is connected between the oxygen air circuit and the negative oxygen ion generating device. The air circuit device supplies a first fluid containing oxygen to the negative oxygen ion generating device through the oxygen air circuit and the first pipeline.
[0014] In a possible embodiment, the first fluid source device includes a compressor disposed in the accommodation chamber, and the first pipeline is connected between the compressor and the negative oxygen ion generating device; and / or,
[0015] An oxygen generator is disposed in the accommodation chamber, and the first pipeline is connected between the oxygen generator and the negative oxygen ion generating device.
[0016] In a possible embodiment, the floor-standing negative oxygen ion device further includes:
[0017] A first switch is disposed in the first pipeline, and the first switch is used to control the on-off of the first pipeline.
[0018] In a possible embodiment, the second fluid source device includes:
[0019] A first container is disposed in the accommodation chamber. The second pipeline is connected between the first container and the negative oxygen ion generating device. The first container is used to store a second fluid containing releasable electrons;
[0020] A supply component is disposed in the second pipeline. The supply component includes a pump and / or a second switch. Among them, the second switch is used to control the on-off of the second pipeline.
[0021] In a possible embodiment, the floor-standing negative oxygen ion device includes:
[0022] A second container is disposed in the accommodation chamber. The second container is used to store the fluid discharged by the negative oxygen ion generating device;
[0023] A third pipeline is connected between the second container and the negative oxygen ion generating device;
[0024] A third switch is disposed in the third pipeline, and the third switch is used to control the on-off of the third pipeline.
[0025] In a possible embodiment, the floor-standing negative oxygen ion device further includes:
[0026] A controller is electrically connected to the first switch, the pump, the second switch, and the third switch respectively.
[0027] In a possible embodiment, the floor-standing negative oxygen ion device further includes:
[0028] A fourth pipeline, connected to the negative oxygen ion generating device;
[0029] A diffusion device, which includes a base and a nozzle. The base is arranged at the outlet, the nozzle is connected to the fourth pipeline, and the nozzle is movably arranged on the base. The nozzle is used to diffuse the negative oxygen ions released by the negative oxygen ion generating device into the space to be purified.
[0030] In a possible embodiment, the negative oxygen ion generating device includes:
[0031] A main body, having a generating chamber for generating the negative oxygen ions, a first inlet, a second inlet and an air outlet communicating with the generating chamber. Among them, the first inlet is connected to the first pipeline, the second inlet is connected to the second pipeline, and the air outlet is communicated with the outlet of the cabinet body;
[0032] An impact member, arranged in the generating chamber.
[0033] In a possible embodiment, the floor-standing negative oxygen ion device includes a plurality of the cabinet bodies, and each cabinet body is correspondingly configured with the negative oxygen ion generating device, the first fluid source device, the first pipeline, the second fluid source device and the second pipeline.
[0034] Compared with the prior art, the technical effects that can be achieved by the embodiments of the present utility model include:
[0035] According to the floor-standing negative oxygen ion device provided by the embodiments of the present application, the floor-standing negative oxygen ion device includes a cabinet body, a negative oxygen ion generating device, a first fluid source device, a first pipeline, a second fluid source device, and a second pipeline. The cabinet body has a receiving cavity, and the cabinet body is provided with an outlet. The negative oxygen ion generating device is arranged in the receiving cavity. The negative oxygen ion generating device is used to make the flowing fluids interact to generate negative oxygen ions, and release the negative oxygen ions to the space to be purified through the outlet. The first fluid source device is connected to the negative oxygen ion generating device. The first fluid source device is used to provide a first fluid containing oxygen to the negative oxygen ion generating device. The first pipeline is connected between the first fluid source device and the negative oxygen ion generating device. The second fluid source device is connected to the negative oxygen ion generating device. The second fluid source device is used to provide a second fluid containing electrons that can be released to the negative oxygen ion device. The second pipeline is connected between the second fluid source device and the negative oxygen ion generating device. The above cabinet body can be placed in any scenario with a placement space for the cabinet body, such as an office, a living room, an exhibition hall, etc. Then, negative oxygen ions are generated through the negative oxygen ion generating device, the first fluid source device, the first pipeline, the second fluid source device, and the second pipeline. The negative oxygen ions are released to the space to be purified through the outlet of the cabinet body, thereby helping to construct a high concentration of negative oxygen ions in a local area. It can be seen that the floor-standing negative oxygen ion device provided by the embodiments of the present application has good scenario applicability and makes its application more extensive. BRIEF DESCRIPTION OF THE DRAWINGS
[0036] The accompanying drawings herein are incorporated into the specification and form a part of the specification, showing embodiments consistent with the present invention and used together with the specification to explain the principles of the present invention.
[0037] In order to more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, for those of ordinary skill in the art, without paying creative labor, other drawings can also be obtained based on these drawings.
[0038] One or more embodiments are illustrated by way of example in the pictures in the corresponding accompanying drawings. These exemplary illustrations do not constitute a limitation on the embodiments. Elements with the same reference numerals in the drawings are represented as similar elements, unless otherwise stated, and the drawings in the drawings do not constitute a proportional limitation.
[0039] Figure 1 Fig. shows a schematic structural diagram of the floor-standing negative oxygen ion device provided by the embodiments of the present invention;
[0040] Figure 2 Fig. shows a schematic side view structural diagram of the floor-standing negative oxygen ion device provided by the embodiments of the present invention.
[0041] Reference numerals
[0042] 10 - Floor-standing negative oxygen ion device;
[0043] 100 - Cabinet;
[0044] 110 - Accommodation cavity;
[0045] 120 - Outlet;
[0046] 130 - Cabinet door;
[0047] 200 - Negative oxygen ion generating device;
[0048] 300 - First pipeline;
[0049] 400 - Second fluid source device;
[0050] 410 - First container;
[0051] 420 - Pump;
[0052] 430 - Second container;
[0053] 440 - Third pipeline;
[0054] 450 - Third switch;
[0055] 500 - Second pipeline;
[0056] 600 - First switch;
[0057] 700 - Fourth pipeline;
[0058] 800 - Diffusion device;
[0059] 900 - Sound insulation component. Detailed implementation manners
[0060] Next, the technical solutions in the embodiments will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Similar component numbers in the drawings represent similar components. Obviously, the embodiments to be described below are only a part of the embodiments of the present utility model, rather than all embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present utility model without creative efforts shall fall within the protection scope of the present utility model.
[0061] It should be understood that when used in this specification and the appended claims, the terms "comprising" and "including" indicate the presence of the described features, wholes, steps, operations, elements, and / or components, but do not exclude the presence or addition of one or more other features, wholes, steps, operations, elements, components, and / or their combinations.
[0062] It should also be understood that the terms used in the specification of the embodiments of the present utility model are only for the purpose of describing specific embodiments and are not intended to limit the embodiments of the present utility model. As used in the specification of the embodiments of the present utility model and the appended claims, unless the context clearly indicates otherwise, the singular forms "a", "an" and "the" are intended to include the plural forms.
[0063] Referring to Figure 1 and Figure 2 As shown, an embodiment of the present utility model provides a floor-standing negative oxygen ion device 10, which includes a cabinet 100, a negative oxygen ion generating device 200, a first fluid source device, a first pipeline 300, a second fluid source device 400 and a second pipeline 500. The cabinet 100 has a receiving cavity 110, and the cabinet 100 is provided with an outlet 120; the negative oxygen ion generating device 200 is arranged in the receiving cavity 110, and the negative oxygen ion generating device 200 is used to make the flowing fluids interact to generate negative oxygen ions, and release the negative oxygen ions to the space to be purified through the outlet 120; the first fluid source device is connected to the negative oxygen ion generating device 200, and the first fluid source device is used to provide a first fluid containing oxygen to the negative oxygen ion generating device 200; the first pipeline 300 is connected between the first fluid source device and the negative oxygen ion generating device 200; the second fluid source device 400 is connected to the negative oxygen ion generating device 200, and the second fluid source device 400 is used to provide a second fluid containing electrons that can be released to the negative oxygen ion device; the second pipeline 500 is connected between the second fluid source device 400 and the negative oxygen ion generating device 200.
[0064] For the floor-standing negative oxygen ion device 10 provided by the embodiment of the present utility model, its cabinet 100 can be placed in any scenario where the cabinet 100 can be placed, such as an office, a living room, an exhibition hall, etc. Then, negative oxygen ions are generated through the negative oxygen ion generating device 200, the first fluid source device, the first pipeline 300, the second fluid source device 400 and the second pipeline 500. The negative oxygen ions are released to the space to be purified through the outlet 120 of the cabinet 100, thereby helping to construct a high concentration of negative oxygen ions in a local area. It can be seen that the floor-standing negative oxygen ion device 10 provided by the embodiment of the present application has good scene applicability and makes its application more extensive.
[0065] In the embodiment of the present utility model, the material and shape of the cabinet 100 can be selected according to actual application requirements. Exemplarily, in order to facilitate the moving of the floor-standing negative oxygen ion device 10, it is necessary to reduce the weight of the cabinet 100. Therefore, the material of the cabinet 100 can be selected from any material that can reduce its weight. For example, the material of the cabinet 100 can be aluminum or its alloy, wood, etc. Further, in some examples, pulleys are installed at the bottom of the cabinet 100, which can facilitate the movement of the floor-standing negative oxygen ion device 10.
[0066] In addition, the shape of the cabinet body 100 can be a cuboid, a cube, an ellipse, a circle, etc. In some examples, the shape of the cabinet body 100 can be a cuboid, so that the top surface of the cuboid cabinet body 100 can be used to place decorations such as sculptures, trophies, and green plants, thereby enabling the floor-standing negative oxygen ion device 10 to be applicable to various scenarios such as offices, study rooms, commercial places, and homes to purify the air, and further improving its scene applicability.
[0067] In some embodiments, the cabinet body 100 includes a top plate, a bottom plate, and three side plates. The top plate, the bottom plate, and the three side plates enclose to form the cabinet body 100 having an accommodation cavity 110, and the cabinet body 100 also has an opening opposite to the side plates. Among them, the outlet 120 is opened at one end of a side plate close to the top plate. The setting of the opening can facilitate the integration of the various devices of the floor-standing negative oxygen ion device 10 into the cabinet body 100.
[0068] In the above embodiments, the cabinet body 100 further includes a cabinet door 130, and the cabinet door 130 is hingedly connected to the side plate and is used to control the opening and closing of the opening. The setting of the cabinet door 130 can help protect the various devices in the accommodation cavity 110.
[0069] In some embodiments, the first fluid source device includes a gas path device disposed outside the cabinet body 100. The gas path device has an oxygen gas path. The first pipeline 300 is connected between the oxygen gas path and the negative oxygen ion generating device 200. The gas path device supplies a first fluid containing oxygen to the negative oxygen ion generating device 200 through the oxygen gas path and the first pipeline 300. The gas path device can adopt any device well known in the art for transporting oxygen-containing fluid. The gas path device adopted in the present invention has an oxygen gas path, and through this oxygen gas path, the oxygen concentration in the space to be purified can be further increased.
[0070] In some other embodiments, the gas path device can also have an inert gas path, and an inert gas is transported to the negative oxygen ion generating device 200 through the inert gas path. This can help enhance the impact between the first fluid and the second fluid, and thus is conducive to releasing electrons, and the electrons are carried away by oxygen to form negative oxygen ions, which is conducive to the generation of negative oxygen ions.
[0071] In the above embodiments, the first fluid can be any fluid containing oxygen, and the present invention does not make any limitation here. As an example, the first fluid can be air or oxygen.
[0072] In some embodiments, the first fluid source device includes a compressor disposed in the accommodation chamber 110. The first pipeline 300 is connected between the compressor and the negative oxygen ion generating device 200. The arrangement of the compressor can quickly transport the oxygen-containing first fluid into the negative oxygen ion generating device 200 to improve the efficiency of the negative oxygen ion generating device 200 in generating negative oxygen ions. Moreover, the compressor is disposed in the accommodation chamber 110, which can also improve the utilization rate of the cabinet 100 and enhance the integration degree of the floor-standing negative oxygen ion device 10.
[0073] When the negative oxygen ion concentration in the space to be purified is high, it can not only improve the activity of oxygen for facilitating oxygen absorption, but also promote nerve excitement to relieve symptoms such as mental abnormality and excessive fatigue. Therefore, the floor-standing negative oxygen ion device 10 of the present utility model can also be provided with some devices to increase the negative oxygen ion concentration in the released gas.
[0074] In some embodiments, the floor-standing negative oxygen ion device 10 further includes an oxygen generator disposed in the accommodation chamber 110. The first pipeline 300 is connected between the oxygen generator and the negative oxygen ion generating device 200. Through this oxygen generator, the oxygen concentration in the negative oxygen ion generating device 200 can be increased to increase the generation amount of negative oxygen ions, which also helps to increase the negative oxygen ion concentration in the gas released by the floor-standing negative oxygen ion device 10.
[0075] In the floor-standing negative oxygen ion device 10 of the present utility model, the transportation of the first fluid and the second fluid can also be improved in terms of safety and automatic control degree by installing execution elements.
[0076] Please continue to refer to Figure 1 As shown, in some embodiments, the floor-standing negative oxygen ion device 10 further includes a first switch 600 disposed in the first pipeline 300. The first switch 600 is used to control the on-off of the first pipeline 300. The arrangement of the first switch 600 can control parameters such as the flow rate and flow volume of the fluid in the first pipeline 300, thereby improving the use safety and the degree of automatic control.
[0077] In one example, the first switch 600 may include an electromagnetic valve, through which the control accuracy and sensitivity can be improved.
[0078] Please continue to refer to Figure 1As shown, in some embodiments, the second fluid source device 400 includes a first container 410 and a supply assembly. The first container 410 is disposed in the accommodation cavity 110. A second pipeline 500 is connected between the first container 410 and the negative oxygen ion generating device 200. The first container 410 is used to store a second fluid containing releasable electrons. The supply assembly is disposed on the second pipeline 500. The supply assembly includes a pump 420 and / or a second switch. The second switch is used to control the on / off of the second pipeline 500. The first container 410, the second pipeline 500, and the supply assembly can realize the automatic supply of the second fluid source.
[0079] In the above embodiments, the second fluid can be a liquid containing releasable electrons. As an example, the second fluid is water. The way for the water to release electrons can be a well-known way in the art. For example, by simulating the scene of water flow impact at a waterfall in nature in the negative oxygen ion generating device 200, the water is sheared due to the violent impact to generate free electrons. The electrons combine with oxygen molecules in the first fluid to generate negative oxygen ions. The air outlet of the negative oxygen ion generating device 200 and the outlet 120 of the cabinet 100 are released into the space to be purified. By generating negative oxygen ions using the impact force, the ozone content in the generated negative oxygen ions will be relatively low, which helps to protect people's physical health. Moreover, there is no accompanying electron radiation, which can further protect people's physical health.
[0080] Please continue to refer to Figure 1 As shown, in some embodiments, the floor-standing negative oxygen ion device 10 includes a second container 430, a third pipeline 440, and a third switch 450. The second container 430 is disposed in the accommodation cavity 110. The second container 430 is used to store the fluid discharged from the negative oxygen ion generating device 200. The third pipeline 440 is connected between the second container 430 and the negative oxygen ion generating device 200. The third switch 450 is disposed on the third pipeline 440. The third switch 450 is used to control the on / off of the third pipeline 440. The above arrangements of the second container 430, the third pipeline 440, and the third switch 450 can help to realize the recycling of the fluid source and the cleaning of the negative oxygen ion generating device 200.
[0081] In the above embodiments, the materials and shapes of the first container 410 and the second container 430 can be selected according to application requirements. Exemplarily, the materials of the first container 410 and the second container 430 can be plastic materials. Specifically, the plastic material can be polyethylene terephthalate (PET), which can further reduce the weight of the floor-standing negative oxygen ion device 10 and facilitate its movement. The shapes of the first container 410 and the second container 430 can be rectangular parallelepipeds or cylinders. The third switch 450 can include an electromagnetic valve.
[0082] To further improve the degree of automatic control of the cabinet - type negative - oxygen - ion device 10, in some embodiments, the cabinet - type negative - oxygen - ion device 10 further includes a controller, which is electrically connected to the first switch 600, the pump 420, the second switch, and the third switch 450 respectively. By implementing the automatic control of the first switch 600, the pump 420, the second switch, and the third switch 450 through the above - mentioned controller, it is possible to automatically provide the first fluid source, the second fluid source, drain, and clean.
[0083] Please continue to refer to Figure 1 As shown, in some embodiments, the cabinet - type negative - oxygen - ion device 10 includes a fourth pipeline 700 and a diffusion device 800. The fourth pipeline 700 is connected to the negative - oxygen - ion generating device 200; the diffusion device 800 includes a base and a nozzle. The base is arranged at the outlet 120, the nozzle is connected to the fourth pipeline 700, and the nozzle is movably arranged on the base. The nozzle is used to diffuse the negative oxygen ions released by the negative - oxygen - ion generating device 200 into the space to be purified. Through the diffusion device 800, the diffusion direction of the negative oxygen ions can be adjusted so that they diffuse towards the designated area to be purified, quickly realizing air purification.
[0084] In one example, the above - mentioned nozzle can be driven by a motor to swing left and right or up and down to form a fan - shaped area of diffusion. In another example, the above - mentioned nozzle can be a rotating nozzle to form a circular area of diffusion.
[0085] In some embodiments, the negative - oxygen - ion generating device 200 includes a main body and an impact member. The main body has a generating chamber for generating negative oxygen ions, as well as a first inlet, a second inlet, and an air outlet communicating with the generating chamber. Among them, the first inlet is connected to the first pipeline 300, the second inlet is connected to the second pipeline 500, and the air outlet is communicated with the outlet 120 of the cabinet 100; the impact member is arranged in the generating chamber. The first fluid is shot towards the impact member through the first pipeline 300 and the first inlet. In this way, it can drive the second fluid in the generating chamber to continuously impact the impact member, and then can simulate the scene of water flow impact at a waterfall in nature. The water is sheared due to the violent impact to generate free electrons, and the electrons combine with oxygen molecules in the first fluid to generate negative oxygen ions. The air outlet of the negative - oxygen - ion generating device 200 and the outlet 120 of the cabinet 100 release the negative oxygen ions into the space to be purified. Therefore, in the process of generating negative oxygen ions by the above - mentioned negative - oxygen - ion generating device 200, there will be no hazards of radioactivity and high - energy radiation, thereby improving the safety of negative - oxygen - ion generation. In addition, the above - mentioned negative - oxygen - ion generating device 200 has a simple structure. By driving the second fluid to impact the impact member by the first fluid, negative oxygen ions can be generated, reducing the generation cost of negative oxygen ions.
[0086] In the above embodiments, the body can be made of a metal material, such as stainless steel or aluminum alloy, and formed by processes such as die-casting, cutting, or injection molding, so that the body has strong impact resistance. Further, to ensure the strength of the body, the body can be manufactured using an integral molding process, or several separately formed parts can be assembled by welding or screwing for convenient processing. The impact member can be formed of a material with a relatively high hardness, such as metal or ceramic, and its shape can be spherical, plate-shaped, columnar, etc. When the impact member and the body are made of the same material, the two can also be made using an integral molding process.
[0087] In some embodiments, the negative oxygen ion generating device 200 further includes a third container and a fifth pipeline, and the fifth pipeline is connected between the third container and the generating chamber of the body. The third container is used to store the humidifying liquid. When the negative oxygen ion generating device 200 operates, the humidifying liquid stored in the third container flows into the generating chamber through the fifth pipeline to humidify the oxygen.
[0088] In some embodiments, the negative oxygen ion generating device 200 further includes a liquid level gauge, which is disposed in the generating chamber and is used to detect the liquid level in the generating chamber.
[0089] The above liquid level gauge can also be electrically connected to the controller. When the liquid level gauge detects that the liquid level in the generating chamber is in a low water level state, the liquid level gauge sends an infusion instruction to the controller. At this time, the controller controls the second switch and / or the pump 420 to be turned on, and conveys the second fluid from the first container 410 to the generating chamber until the liquid level in the generating chamber reaches the normal liquid level or the operation time of the pump 420 reaches the preset time, and then the liquid level gauge sends a closing instruction to the controller, and the controller controls the second switch and the pump 420 to be turned off.
[0090] In some embodiments, the floor-standing negative oxygen ion device 10 further includes a disinfection device, which is disposed in the accommodating chamber 110 and is used to sterilize and disinfect the negative oxygen ion generating device 200.
[0091] In the above embodiments, the disinfection device can be any device with a sterilization and disinfection function, such as a disinfection lamp.
[0092] Please continue to refer to Figure 1 As shown, in some embodiments, the floor-standing negative oxygen ion device 10 further includes a sound insulation member 900, which is disposed between the negative oxygen ion generating device 200 and the inner wall of the accommodating chamber 110. By providing the sound insulation member 900, the amount of noise emitted by the negative oxygen ion generating device 200 during operation to the outside of the cabinet 100 can be reduced.
[0093] The material of the above sound insulation member 900 can be a material well-known in the art with sound insulation effect, such as sound insulation cotton.
[0094] In some embodiments, the floor-standing negative oxygen ion device 10 includes a plurality of cabinet bodies 100, and each cabinet body 100 is correspondingly configured with a negative oxygen ion generating device 200, a first fluid source device, a first pipeline 300, a second fluid source device 400, and a second pipeline 500. The above-mentioned plurality of cabinet bodies 100 can be arranged in a multi-point distributed manner in the space to be purified, so as to further make the environment in the space to be purified have a high concentration of negative oxygen ions.
[0095] As an example, the above-mentioned cabinet bodies 100 are respectively arranged in a one-to-one correspondence at the four corners of the office, and each cabinet body 100 is correspondingly configured with a negative oxygen ion generating device 200, a first fluid source device, a first pipeline 300, a second fluid source device 400, and a second pipeline 500, which can help to further make the office have a high concentration of negative oxygen ions, thus being beneficial to protecting the physical health of indoor personnel.
[0096] The following will describe in detail the use of the floor-standing negative oxygen ion device 10 of the present utility model.
[0097] After the floor-standing negative oxygen ion device 10 is started by the controller, the liquid level gauge in the negative oxygen ion generating device 200 starts to detect the liquid level. When the liquid level in the negative oxygen ion generating device 200 is in the low water level state, the controller controls the water pump 420 to start, pumps the water in the first container 410, and supplements it into the generation chamber of the negative oxygen ion generating device 200 through the second pipeline 500 until the liquid level in the generation chamber is at the normal liquid level or the water pump 420 works for 4 minutes, and the liquid level gauge sends a closing instruction to the controller, and the controller controls the pump 420 to close.
[0098] After the liquid level in the negative oxygen ion generating device 200 is at the normal liquid level state or the water pump 420 works for 4 minutes, the electromagnetic valve on the first pipeline 300 is opened to make the first pipeline 300 unblocked. At this time, the gas path device provides oxygen / air into the negative oxygen ion generating device 200 through the first pipeline 300 to generate negative oxygen ions, and the negative oxygen ions are then transported to the diffusion device 800 through the fourth pipeline 700 and further diffused into the space to be purified. The setting of the plurality of cabinet bodies 100 can make the environment in the space to be purified have a high concentration of negative oxygen ions. During the operation of the negative oxygen ion generating device 200, the liquid level gauge can monitor the liquid level in real time. When the liquid level is in the low water level state, the controller starts the pump 420 to replenish water until the liquid level is at the normal liquid level.
[0099] After the floor-standing negative oxygen ion device 10 operates for 7 days, the controller controls the solenoid valve on the third pipeline 440 to open. At this time, the third pipeline 440 is in communication, and the stored water in the negative oxygen ion generating device 200 is discharged into the second container 430 through the third pipeline 440; during the drainage process, the disinfection lamp is turned on to disinfect the negative oxygen ion generating device 200 until the stored water is completely drained, and then the disinfection lamp is turned off.
[0100] In the above embodiments, the descriptions of the various embodiments have their own emphases. For the parts not described in detail in a certain embodiment, reference may be made to the relevant descriptions of other embodiments.
[0101] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", etc. are based on the orientation or positional relationship shown in the drawings, and are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present invention.
[0102] In addition, the terms "first" and "second" are only used for descriptive purposes and should not be construed as indicating or implying relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features. In the description of the present invention, the meaning of "a plurality" is two or more, unless otherwise specifically defined.
[0103] In the present invention, unless otherwise clearly specified and limited, the terms "installation", "connection", "connection", "fixation", etc. should be understood in a broad sense. For example, it may be a connection, a detachable connection, or an integral body; it may be a mechanical connection or an electrical connection; it may be directly connected or indirectly connected through an intermediate medium, and it may be the communication inside two elements or the interaction relationship between two elements. For those of ordinary skill in the art, the specific meanings of the above terms in the present invention can be understood according to specific circumstances.
[0104] In the present utility model, unless otherwise clearly specified and defined, the first feature being "above" or "below" the second feature may include direct contact between the first and second features, or may include the first and second features not being in direct contact but in contact through additional features therebetween. Moreover, the first feature being "above", "over" and "on top of" the second feature includes the first feature being directly above and obliquely above the second feature, or merely indicating that the first feature has a higher horizontal height than the second feature. The first feature being "below", "under" and "beneath" the second feature includes the first feature being directly below and obliquely below the second feature, or merely indicating that the first feature has a lower horizontal height than the second feature.
[0105] In the description of this specification, the description with reference to terms such as "an embodiment", "some embodiments", "examples", "specific examples", or "some examples", etc. means that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present utility model. In this specification, the schematic representations of the above terms should not be understood as necessarily referring to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in a suitable manner in any one or more embodiments or examples. In addition, those skilled in the art can combine and combine the different embodiments or examples described in this specification.
[0106] Obviously, those skilled in the art can make various changes and modifications to the present utility model without departing from the spirit and scope of the present utility model. Thus, provided that these modifications and variations of the present utility model fall within the scope of the claims of the present utility model and their equivalent technologies, the present utility model also intends to include these changes and modifications therein.
[0107] As described above, the above is the specific implementation manner of the present utility model, but the protection scope of the present utility model is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present utility model can easily think of various equivalent modifications or substitutions, and these modifications or substitutions should all be covered within the protection scope of the present utility model. Therefore, the protection scope of the present utility model shall be subject to the protection scope of the claims.
Claims
1. A floor-standing negative oxygen ion device, characterized in that, Comprising: A cabinet body having a receiving cavity, and an outlet is provided on the cabinet body; A negative oxygen ion generating device is disposed in the receiving cavity. The negative oxygen ion generating device is used to cause the inflowing fluids to interact to generate negative oxygen ions, and release the negative oxygen ions to the space to be purified through the outlet; A first fluid source device is connected to the negative oxygen ion generating device. The first fluid source device is used to provide a first fluid containing oxygen to the negative oxygen ion generating device; A first pipeline is connected between the first fluid source device and the negative oxygen ion generating device; A second fluid source device is connected to the negative oxygen ion generating device. The second fluid source device is used to provide a second fluid containing electrons that can be released to the negative oxygen ion device; A second pipeline is connected between the second fluid source device and the negative oxygen ion generating device.
2. The floor-standing negative oxygen ion device according to claim 1, characterized in that, The first fluid source device includes: An air circuit device is disposed outside the cabinet body. The air circuit device has an oxygen air circuit. The first pipeline is connected between the oxygen air circuit and the negative oxygen ion generating device. The air circuit device provides a first fluid containing oxygen to the negative oxygen ion generating device through the oxygen air circuit and the first pipeline.
3. The floor-standing negative oxygen ion device according to claim 1, characterized in that, The first fluid source device includes a compressor disposed in the receiving cavity. The first pipeline is connected between the compressor and the negative oxygen ion generating device; And / or An oxygen generator disposed in the receiving cavity. The first pipeline is connected between the oxygen generator and the negative oxygen ion generating device.
4. The floor-standing negative oxygen ion device according to claim 1, characterized in that, The floor-standing negative oxygen ion device further includes: A first switch is disposed in the first pipeline. The first switch is used to control the on / off of the first pipeline.
5. The floor-standing negative oxygen ion device according to claim 4, wherein The second fluid source device includes: A first container is disposed in the receiving cavity. The second pipeline is connected between the first container and the negative oxygen ion generating device. The first container is used to store a second fluid containing electrons that can be released; A supply component is disposed in the second pipeline. The supply component includes a pump and / or a second switch. Among them, the second switch is used to control the on / off of the second pipeline.
6. The floor-standing negative oxygen ion device according to claim 5, characterized in that, The floor-standing negative oxygen ion device includes: A second container is disposed in the receiving cavity. The second container is used to store the fluid discharged by the negative oxygen ion generating device; A third pipeline is connected between the second container and the negative oxygen ion generating device; A third switch is disposed in the third pipeline. The third switch is used to control the on / off of the third pipeline.
7. The floor-standing negative oxygen ion device according to claim 6, wherein The floor-standing negative oxygen ion device further includes: A controller is electrically connected to the first switch, the pump, the second switch, and the third switch respectively.
8. The floor-standing negative oxygen ion device according to claim 1, characterized in that, The floor-standing negative oxygen ion device further includes: A fourth pipeline is connected to the negative oxygen ion generating device; A dispersion device. The dispersion device includes a base and a nozzle. The base is disposed at the outlet. The nozzle is connected to the fourth pipeline, and the nozzle is movably disposed on the base. The nozzle is used to disperse the negative oxygen ions released by the negative oxygen ion generating device into the space to be purified.
9. The floor-standing negative oxygen ion device according to claim 1, characterized in that, The negative oxygen ion generating device includes: The main body has a generation chamber for generating the negative oxygen ions, a first inlet, a second inlet and an air outlet communicating with the generation chamber. Among them, the first inlet is connected to the first pipeline, the second inlet is connected to the second pipeline, and the air outlet is communicated with the outlet of the cabinet body; The impact member is arranged in the generation chamber.
10. The floor-standing negative oxygen ion device according to claim 1, wherein The floor-standing negative oxygen ion device includes a plurality of the cabinet bodies, and each of the cabinet bodies is correspondingly configured with the negative oxygen ion generating device, the first fluid source device, the first pipeline, the second fluid source device and the second pipeline.