Air purifier for triage workstation

By designing a multi-level purification air purifier in the triage workstation, using a fan-driven negative pressure system, multi-stage purification board, UV lamp tube and ozone generator, the problem of poor air quality in the triage workstation is solved and efficient air purification is achieved.

CN223020492UActive Publication Date: 2025-06-24SHENZHEN JIUTIANLONG LAB EQUIP CO LTD
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Patent Information

Application Number
CN202422061284.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-25
Publication Date
2025-06-24
Estimated Expiration
2034-08-25

AI Technical Summary

Technical Problem

In triage workstations, due to the large flow of people and poor air quality, the exhaust filtration mode of the existing air purifier leads to poor purification results.

Method used

An air purifier for triage workstations is designed, using a fan-driven negative pressure system, combining the photoelectrochemical reaction of multi-stage purification plates and UV lamps, and combining the ozone generator and activated carbon filter plate to achieve multi-layer purification of air.

Benefits of technology

It significantly improves the air purification effect, can effectively remove formaldehyde, toluene and bacteria in the air, and improves the air quality of the triage workstation.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223020492U_ABST
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Abstract

The utility model relates to the field of air purifiers, and discloses an air purifier for a triage workstation, which comprises a purifier shell, a machine cover is detachably arranged at the upper part of the purifier shell, an air inlet groove is arranged at the lower part of the front side of the purifier shell, and a dustproof piece is detachably arranged on the air inlet groove. Two partition plates are arranged in the purifier shell in parallel from top to bottom and divide the interior of the purifier shell into an upper bin, a middle bin and a lower bin, a purification part is arranged on the upper portion of the interior of the lower bin, the middle bin is provided with an air pipe and an ozone generator, the air pipe is communicated with the lower bin, a fan is arranged in the air pipe, and the ozone generator is arranged in the fan. A treatment part is arranged in the upper bin, the dustproof part comprises a dustproof frame detachably arranged on the air inlet groove, a set of installation grooves are formed in the dustproof frame in a front-back parallel mode, filter plates are detachably arranged on the installation grooves, and air in the triage workstation can be effectively purified.
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Description

Technical Field

[0001] The utility model relates to the technical field of air purifiers, in particular to an air purifier for a triage workstation. Background Art

[0002] A triage workstation is a set of stable and perfect digital hospital solutions provided to improve the management level of hospitals and provide more efficient and fast medical services for patients. After implementing this system, it will bring great convenience to hospital management and clinical doctors, improve the efficiency of patient treatment, and reduce the phenomenon of patients queuing and running back and forth between consulting rooms.

[0003] In a triage workstation, due to the large daily flow of people being examined, the air quality in the triage workstation is poor. Therefore, an air purifier is needed. Generally, an air purifier uses a mode of a blower sucking air through a filter block for air purification. This structural setting is likely to result in poor air purification effect. Therefore, we propose an air purifier for a triage workstation. Content of the Utility Model

[0004] Aiming at the deficiencies of the prior art, the utility model provides an air purifier for a triage workstation, which solves the problems mentioned in the above background.

[0005] The utility model provides the following technical solutions: The utility model discloses an air purifier for a triage workstation, which includes a purifier housing. An engine cover is detachably arranged on the upper part of the purifier housing. An air inlet groove is opened at the lower part of the front side of the purifier housing. A dust-proof member is detachably arranged on the air inlet groove. Inside the purifier housing, two partitions are arranged in parallel up and down. The two partitions divide the interior of the purifier housing into an upper chamber, a middle chamber and a lower chamber. A purification member is arranged above the interior of the lower chamber. The middle chamber is provided with an air duct and an ozone generator. The air duct is communicated with the lower chamber. A blower is arranged in the air duct. A treatment member is arranged in the upper chamber.

[0006] As a preferred scheme, the dust-proof member includes a dust-proof frame detachably arranged on the air inlet groove. A group of installation grooves are opened in parallel front and back on the dust-proof frame. A filter plate is detachably arranged on the installation grooves.

[0007] As a preferred scheme, the purification member includes a plurality of purification plates arranged in parallel up and down. A plurality of UV lamps are evenly arranged on the left and right sides of the lower chamber.

[0008] As a preferred scheme, the purification plate is a double-layer continuous bending structure. The upper side of the purification plate is a nano-photocatalyst layer. The lower side of the purification plate is an electrostatic adsorption layer. A plurality of filter holes are evenly opened on the purification plate. The UV lamps correspond to the nano-photocatalyst layer.

[0009] As a preferred solution, the processing component includes a pump and a medicine tank arranged in the upper bin. A drainage pipe is arranged at the inlet end of the pump, and the other end of the drainage pipe extends into the middle bin. The outlet end of the pump extends into the lower inner part of the medicine tank through a conduit. A cavity box is arranged at the end of the conduit, and a plurality of air holes are evenly formed in the cavity box.

[0010] As a preferred solution, a plurality of exhaust grooves are evenly formed in the machine cover, and the exhaust grooves are elliptical.

[0011] Compared with the prior art, the present utility model has the following beneficial effects:

[0012] In the present utility model, when the fan operates, negative pressure is generated in the lower bin through an air duct. The air outside the air purifier enters the lower bin through the dust-proof component. The filter plates in the dust-proof component are two pieces and are activated carbon plates, which perform dust suction treatment on the air entering the purifier housing.

[0013] The air is purified by the purification component. The purification component is provided with a plurality of purification plates arranged in parallel up and down, which perform multi-stage treatment on the air. The purification plates are of a double-layer continuous bending structure, so that the air contacts the purification plates to a great extent. The lower side of the purification plate is an electrostatic adsorption layer, which adsorbs the passing air again. The upper side of the purification plate is a nano-photocatalyst layer. In cooperation with the use of a UV lamp tube, the nano-photocatalyst filter layer is irradiated, so that a photoelectrochemical reaction occurs, decomposing formaldehyde and toluene in the air, and the UV lamp tube sterilizes bacteria in the air, thereby purifying the air. The air is introduced into the middle bin, and the ozone generator dissociates ozone molecules in the middle bin, and the bacteria in the air are sterilized through collision and polymerization.

[0014] The air in the middle bin is pumped into the cavity box by the pump, and is discharged through the plurality of air holes in the cavity box. The formed fine bubbles contact the liquid medicine in the medicine box, thereby further purifying the gas. BRIEF DESCRIPTION OF THE DRAWINGS

[0015] Figure 1 is a three-dimensional structure diagram of the present utility model;

[0016] Figure 2 is a partial sectional view of the present utility model;

[0017] Figure 3 is a partial sectional view of the purification component;

[0018] Figure 4 is Figure 3 an enlarged view of part A in

[0019] Figure 5 is a structural schematic diagram of the dust-proof component.

[0020] In the figure: 1. Purifier housing; 2. Machine cover; 3. Air intake slot; 4. Partition board; 5. Air duct; 6. Ozone generator; 7. Dust-proof rack; 8. Installation slot; 9. Filter plate; 10. Purification board; 11. UV lamp tube; 12. Nano-photocatalyst layer; 13. Electrostatic adsorption layer; 14. Filter hole; 15. Pump; 16. Medicine tank; 17. Chamber box; 18. Air hole; 19. Exhaust slot. Detailed implementation mode

[0021] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0022] Please refer to Figures 1-5 An air purifier for a triage workstation in this embodiment includes a purifier housing 1. A touch panel is provided on the purifier housing 1, and the touch panel is electrically connected to the electrical components in the device, facilitating the user to operate the air purifier. The upper part of the purifier housing 1 is detachably provided with a machine cover 2. The machine cover 2 is made of polyethylene material. By removing the machine cover 2, it is convenient for the user to add and place disinfectant in the medicine tank 16 to purify the air in the purifier housing 1. An air intake slot 3 is opened at the lower part of the front side of the purifier housing 1. A dust-proof component is detachably provided on the air intake slot 3 to perform preliminary purification on the air entering the purifier housing 1. Inside the purifier housing 1, two partition boards 4 are arranged in parallel from top to bottom. The two partition boards 4 divide the inside of the purifier housing 1 into an upper chamber, a middle chamber, and a lower chamber. A purification component is provided above the inside of the lower chamber to purify the air in the triage workstation. The middle chamber is provided with an air duct 5 and an ozone generator 6. The ozone generator 6 allows the passing air through. Free high-energy ions in the corona dissociate oxygen molecules, and after collision and polymerization, they form ozone molecules. The bacteria in the air are sterilized by ozone. The air duct 5 is communicated with the lower chamber, and a fan is arranged in the air duct 5. A processing component is arranged in the upper chamber.

[0023] As Figure 1 、 5 shown, the dust-proof component includes a dust-proof rack 7 detachably provided on the air intake slot 3. A group of installation slots 8 are opened in parallel from front to back on the dust-proof rack 7. A filter plate 9 is detachably provided on the installation slot 8. The filter plate 9 is an activated carbon plate to perform preliminary purification on the air entering the purifier housing 1.

[0024] As Figure 3 、 4As shown in the figure, the purification component includes a plurality of purification plates 10 arranged in parallel up and down. A plurality of UV lamps 11 are evenly arranged on the left and right sides of the lower chamber, effectively purifying and sterilizing the air in the lower chamber.

[0025] As Figure 3 shown in the figure, the purification plate 10 is a double-layer continuous bending structure, enabling the air to come into contact with the purification plate 10 to a greater extent. The upper side of the purification plate 10 is a nano-photocatalyst layer 12, and the lower side is an electrostatic adsorption layer 13. A plurality of filter holes 14 are evenly opened on the purification plate 10. The UV lamp 11 corresponds to the nano-photocatalyst layer 12. By using the UV lamp 11, the nano-photocatalyst filter layer is irradiated, thereby generating a photoelectrochemical reaction to decompose formaldehyde and toluene in the air, and the UV lamp 11 sterilizes the bacteria in the air, thereby purifying the air.

[0026] As Figure 2 shown in the figure, the treatment component includes a pump 15 and a medicine tank 16 arranged in the upper chamber. The inlet end of the pump 15 is provided with a drainage pipe, and the other end of the drainage pipe extends into the middle chamber. The outlet end of the pump 15 extends into the inner lower part of the medicine tank 16 through a conduit. The end of the conduit is provided with a cavity box 17, and a plurality of air holes 18 are evenly opened on the cavity box 17 to further purify the air.

[0027] As Figure 1 shown in the figure, a plurality of exhaust grooves 19 are evenly opened on the machine cover 2. The exhaust grooves 19 are elliptical in shape to discharge the purified air.

[0028] In the specific implementation of this embodiment, when the user uses the device, the air purifier is moved to the designated position of the triage workstation, and then an appropriate amount of disinfectant water is added to the medicine tank 16 so that the disinfectant water covers the cavity box 17. Then, the machine cover 2 is closed with the purifier housing 1. The user operates on the touch panel. At this time, the fan runs, generating negative pressure in the lower chamber through the air duct 5. The air outside the air purifier enters the lower chamber through the dust-proof component. The filter plates 9 in the dust-proof component are two and are activated carbon plates, which perform dust suction treatment on the air entering the purifier housing 1. The air is purified by the purification component. The purification component is provided with a plurality of purification plates 10 arranged in parallel up and down, performing multi-stage treatment on the air. The purification plate 10 is a double-layer continuous bending structure, enabling the air to come into contact with the purification plate 10 to a greater extent. The lower side of the purification plate 10 is an electrostatic adsorption layer 13, which adsorbs the passing air again. The upper side of the purification plate 10 is a nano-photocatalyst layer 12. In cooperation with the use of the UV lamp 11, the nano-photocatalyst filter layer is irradiated, thereby generating a photoelectrochemical reaction to decompose formaldehyde and toluene in the air, and the UV lamp 11 sterilizes the bacteria in the air, thereby purifying the air. Then, the air is introduced into the middle chamber. The ozone generator 6 dissociates ozone molecules in the middle chamber, and the bacteria in the air are sterilized through collision and polymerization. Then, the pump 15 pumps the air in the middle chamber into the cavity box 17 and discharges it through the plurality of air holes 18 on the cavity box 17. The formed fine bubbles come into contact with the liquid medicine in the medicine box, thereby further purifying the gas. Then, the purified air is discharged through the exhaust groove 19 on the machine cover 2.

[0029] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. An air purifier for a triage workstation, comprising a purifier housing (1), characterized in that: The upper part of the purifier housing (1) is provided with a detachable cover (2); the lower front part of the purifier housing (1) is provided with an air inlet groove (3); the air inlet groove (3) is provided with a detachable dustproof part; the interior of the purifier housing (1) is provided with two partitions (4) arranged in parallel from top to bottom; the two partitions (4) divide the interior of the purifier housing (1) into an upper compartment, a middle compartment and a lower compartment; a purifying part is arranged above the interior of the lower compartment; the middle compartment is provided with an air duct (5) and an ozone generator (6); the air duct (5) is connected to the lower compartment; a fan is arranged in the air duct (5); and a processing part is arranged in the upper compartment.

2. The air purifier for a triage workstation according to claim 1, characterized in that: The dustproof part comprises a dustproof frame (7) detachably arranged on the air inlet groove (3), a group of mounting grooves (8) are arranged in parallel in front and back on the dustproof frame (7), and a filter plate (9) is detachably arranged on the mounting groove (8).

3. The air purifier for a triage workstation according to claim 1, characterized in that: The purification component comprises a plurality of purification plates (10) arranged in parallel at the upper and lower sides, and a plurality of UV lamp tubes (11) are evenly arranged on the left and right sides of the lower bin.

4. The air purifier for a triage workstation according to claim 3, characterized in that: The purification plate (10) is a double-layered continuously bent structure, the upper side of the purification plate (10) is a nano photocatalyst layer (12), the lower side of the purification plate (10) is an electrostatic adsorption layer (13), a plurality of filter holes (14) are evenly arranged on the purification plate (10), and the UV lamp (11) corresponds to the nano photocatalyst layer (12).

5. The air purifier for a triage workstation according to claim 1, characterized in that: The processing unit comprises a pump (15) and a medicine trough (16) arranged in the upper bin, the inlet end of the pump (15) is provided with a drainage tube, the other end of the drainage tube is extended and placed in the middle bin, the outlet end of the pump (15) is extended and placed in the inner lower part of the medicine trough (16) through a conduit, the end of the conduit is provided with a cavity box (17), and a plurality of air holes (18) are evenly opened on the cavity box (17).

6. The air purifier for a triage workstation according to claim 1, characterized in that: A plurality of exhaust grooves (19) are evenly arranged on the machine cover (2), and the exhaust grooves (19) are elliptical.