CN214181269U - Sterilization device for medical nursing - Google Patents

Sterilization device for medical nursing Download PDF

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Publication number
CN214181269U
CN214181269U CN202022828265.4U CN202022828265U CN214181269U CN 214181269 U CN214181269 U CN 214181269U CN 202022828265 U CN202022828265 U CN 202022828265U CN 214181269 U CN214181269 U CN 214181269U
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China
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sterilization
air inlet
plate
box
box body
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Expired - Fee Related
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CN202022828265.4U
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Chinese (zh)
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卞景梅
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Individual
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Individual
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  • Disinfection, Sterilisation Or Deodorisation Of Air (AREA)
  • Apparatus For Disinfection Or Sterilisation (AREA)

Abstract

The utility model relates to a medical nursing sterilization device, including the sterilization box, the sterilization box extends in the box has inlet channel, inlet channel installs inlet fan in the air inlet, install first sterilamp in the inlet channel, inlet channel's the other end is connected with the four walls of sterilization box through the flaring board, the flaring board is hollow four-arris terrace, the gas outlet is connected with the four walls of sterilization box through the throat board that is symmetrical with the flaring board, the necking board encloses with the sterilization box and establishes and form the sterilization chamber, the bottom surface in sterilization chamber is fixed with the feed tank, the sterilization chamber sets up the atomizing bed near the flaring board, the bottom of atomizing bed soaks the feed tank, the sterilization box sets up the liquid reserve tank in the inlet fan lower part, the liquid reserve tank stores the antiseptic solution, the liquid reserve tank passes through the flow pump and is connected with the feed tank; the sterilizing cavity is provided with a microwave ultraviolet generator and a catalytic carrier near the necking plate. The utility model discloses have good disinfection and isolation effect to the air, satisfy the air disinfection demand in the hospital.

Description

Sterilization device for medical nursing
Technical Field
The utility model relates to the technical field of medical equipment, concretely relates to medical science nursing is with sterilization apparatus.
Background
Particulate matters, pathogenic microorganisms and volatile organic compounds exist in the air of hospital inpatient wards, and particularly the smell of urine, juice, vomit and excrement is mixed in the air of child ward, respiratory department ward and digestive department ward, so that the health of a patient, accompanying personnel and medical personnel is harmed.
The frequent trips of doctors and patients in medical rooms and wards cause the number of bacteria in the air to rapidly rise, so that the bacteria are easy to infect, and the effective air disinfection is implemented and is an important means for reducing the bacteria infection in hospitals caused by air pollution. The means of sterilization using ultraviolet rays has been widely used for air sterilization. However, the existing ultraviolet direct irradiation disinfection is usually suitable for indoor air disinfection under an unmanned condition, the disinfection effect has considerable limitation, under a working environment in the daytime, ultraviolet irradiation is stopped, medical workers reciprocate in each ward to make contact with various patients, pathogenic bacteria pollution is easily caused, the phenomenon of patient cross infection is easily triggered, and potential safety hazards are brought to health medical treatment in hospitals.
Therefore, it is necessary to design an air sterilization device suitable for hospital use.
SUMMERY OF THE UTILITY MODEL
The utility model provides a not enough to prior art, the utility model provides a sterilization apparatus is used in medical science nursing can realize blowing off specific usage space through the air current with gas or fog and carry out the space diffusion disinfection, also can disinfect the disinfection and eliminate the peculiar smell to hospital air circumstance, and is efficient, realizes the dual disinfection effect to air and space.
The utility model discloses a realize through following technical scheme:
the utility model provides an air sterilization device for medical nursing, which comprises a sterilization box body, one side wall of the sterilization box body is provided with an air inlet, the other side wall opposite to the side wall is provided with an air outlet, an air inlet channel connected with the air inlet extends inwards from the air inlet in the sterilization box body, the air inlet channel is provided with an air inlet fan connected with a power line at the air inlet, a first ultraviolet germicidal lamp is arranged in the air inlet channel along the length direction, the other end of the air inlet channel far away from the air inlet is connected with the four walls of the sterilization box body through an expanding plate, the expanding plate is in a hollow quadrangular frustum shape, the air outlet is connected with the four walls of the sterilization box body in the sterilization box body through a reducing plate symmetrical to the expanding plate, the reducing plate and the sterilization box body are enclosed to form a sterilization cavity, a liquid supply box is fixed at the bottom surface of the sterilization cavity, and an atomizing bed opposite to the air inlet channel is arranged at the position of the sterilization cavity close to the expanding plate, the bottom of the atomizing bed is immersed into the liquid supply tank, the sterilizing tank body is provided with a liquid storage tank at the lower part of the air inlet fan, disinfectant is stored in the liquid storage tank, and the liquid storage tank is connected with the liquid supply tank through a flow pump; the sterilization cavity is provided with a microwave ultraviolet generator and a catalytic carrier loaded with a photocatalyst, wherein the microwave ultraviolet generator is fixed between the bottom surface and the top surface of the sterilization cavity and is close to the necking plate.
According to the scheme, air containing bacteria and viruses is sucked into the sterilization box body through the air inlet fan, the preliminary sterilization effect is achieved by matching ultraviolet irradiation of the first ultraviolet lamp in the air inlet channel, bacteria-containing gas is forcedly atomized into gas or mist through hypochlorous acid disinfectant on the atomizing bed after entering the sterilization cavity, the bacteria-containing air is blown to modified titanium dioxide of the catalytic carrier along with the hypochlorous acid disinfectant mist, and the modified titanium dioxide catalyzes water in atomized liquid drops to generate OH, H and OH under the irradiation of the first ultraviolet sterilization lamp2O2And. O2The air containing bacteria is sterilized by high active substances, and then the gas or mist is blown out of a specific use space by airflow, the space is sterilized by using the hypochlorous acid mist diffusion space, the hypochlorous acid disinfectant solution is not directly contacted with the object to be sterilized to realize dry sterilization, and the air realizes double sterilization effects of air and space in the flowing process.
Further, the microwave ultraviolet generator comprises a microwave generator and a second ultraviolet lamp, and the microwave generator is arranged outside the sterilization box body and is electrically connected with the second ultraviolet lamp.
Furthermore, the catalysis carrier is fixed in the sterilization cavity through a connecting piece, the catalysis carrier is a foaming body, the catalysis carrier is arranged in a needle shape, the number of the catalysis carrier is multiple, and one end of each catalysis carrier is fixedly arranged on the connecting piece.
The catalytic carriers are arranged in a needle shape, so that the photocatalyst on each catalytic carrier can fully receive the ultraviolet irradiation of the second ultraviolet lamp, bacteria and toxic pollutants in atomized liquid drops and air carrying bacteria and viruses are fully contacted with the modified titanium dioxide in the catalytic carriers, the bacteria and the toxic pollutants are fully subjected to photodecomposition reaction, and the sterilization and disinfection effects are enhanced.
Further, install level sensor in the liquid reserve tank, the feed liquor pipe is connected at the liquid reserve tank top, and the feed liquor pipe runs through sterilization box lateral wall and connects the feed pipe, installs the solenoid valve on the feed pipe.
The liquid reserve tank passes through feed liquor union coupling feed pipe, can monitor the liquid level in the liquid reserve tank through level sensor, and when the liquid level was less than and sets for the liquid level, the accessible was opened the solenoid valve and is utilized the feed pipe to carry out the fluid infusion to the liquid reserve tank.
Furthermore, the atomizing bed comprises a bottom plate and a top plate, capillary tubes are uniformly inserted between the top plate and the bottom plate, the bottom plate is immersed in hypochlorous acid disinfectant in the liquid supply box, fine holes are formed in the capillary tubes, fiber bundles are arranged in the capillary tubes, and the top plate, the bottom plate and the capillary tubes are wrapped with ventilated non-woven fabrics.
During capillary inserted soaks liquid, can promote the hypochlorous acid antiseptic solution through the capillary of capillary action, the lateral wall of capillary is provided with porosely, can be atomized the hypochlorous acid antiseptic solution by force through the air inlet of air inlet, and through setting up the tow, the promotion effect is more strengthened, and both combined action, promotion hypochlorous acid antiseptic solution that can show. The non-woven fabrics can let the wind normally ventilate, can also play the filtering action, also can support whole atomizing bed.
Further, the centers of the air inlet and the air outlet are positioned on the same straight line.
The air inlet and the air outlet are positioned on the same straight line, so that airflow entering the sterilization box body can stably run, enters from one side of the sterilization box body and is discharged from the other side, and the gas turbulence in the box body is reduced.
The utility model has the advantages that:
the operation is simple, the use is convenient, the safety and the non-toxicity are realized, the dual disinfection of space and air can be realized, and the air disinfection device is suitable for air disinfection in a hospital ward; the disinfectant used by the device has long shelf life, can be used for a long time, does not need to be replaced from time to time, is energy-saving and environment-friendly, and has good disinfection and sterilization effects.
Drawings
Fig. 1 is a schematic structural view of the present invention;
fig. 2 is a schematic structural view of the middle atomizing bed of the present invention.
Shown in the figure:
1. the device comprises a sterilization box body, 2, an air inlet, 3, an air outlet, 4, an air inlet channel, 5, a first ultraviolet sterilization lamp, 6, an air inlet fan, 7, a flaring plate, 8, a sterilization cavity, 9, an atomization bed, 10, a microwave generator, 11, a necking plate, 12, a second ultraviolet sterilization lamp, 13, a liquid supply tank, 14, a catalytic carrier, 15, a flow pump, 16, a liquid storage tank, 17, a liquid inlet pipe, 18, an electromagnetic valve, 19, a top plate, 20, a bottom plate, 21, a capillary tube, 22, a fiber bundle, 23 and non-woven fabrics.
Detailed Description
In order to clearly illustrate the technical features of the present solution, the present solution is explained below by way of specific embodiments.
The utility model provides a medical care is with sterilization apparatus, includes sterilization box 1, and one side wall of sterilization box 1 sets up air inlet 2 and sets up gas outlet 3 at another lateral wall just to this lateral wall, and the center of air inlet 2 and gas outlet 3 is located collinear.
An air inlet channel 4 connected with the air inlet 2 extends inwards from the air inlet 2 in the sterilization box body 1, an air inlet fan 6 connected with a power line is arranged at the position of the air inlet 2 of the air inlet channel 4, a first ultraviolet sterilization lamp 5 is arranged in the air inlet channel 4 along the length direction, the other end of the air inlet channel 4 far away from the air inlet 2 is connected with the four walls of the sterilization box body 1 through an opening expanding plate 7, the opening expanding plate 7 is in a hollow quadrangular frustum shape, the air outlet 3 is connected with the four walls of the sterilization box body 1 through a closing plate 11 symmetrical to the opening expanding plate 7 in the sterilization box body 1, the opening expanding plate 7, the closing plate 11 and the sterilization box body 1 are enclosed to form a sterilization cavity 8, the opening expanding plate 7 can diffuse air flow and make the air flow fully contact with a atomization bed 9, a catalytic carrier 14 and the like, the closing plate 11 can guide the air flow and collect the air flow to the air flow out of the sterilization box body 1, the opening expanding plate 7 and the closing plate 11 can guide the air flow, the contact area of the gas flow with the atomizing bed 9 and the catalytic carrier 14 is increased.
A liquid supply box 13 is fixed on the bottom surface of a sterilization cavity 8 of the sterilization box body 1, an atomizing bed 9 opposite to the air inlet channel 4 is arranged at the position, close to the flaring plate 7, of the sterilization cavity 8, and the bottom of the atomizing bed 9 is immersed in the liquid supply box 13.
The atomizing bed 9 comprises a bottom plate 20 and a top plate 19, capillary tubes 21 are uniformly inserted between the top plate 19 and the bottom plate 20, the bottom plate 20 is immersed in hypochlorous acid disinfectant in the liquid supply tank 13, fine holes are formed in the capillary tubes 21, fiber bundles 22 are arranged inside the capillary tubes 21, and air-permeable non-woven fabrics 23 are wrapped outside the top plate 19, the bottom plate 20 and the capillary tubes 21.
The sterilization box body 1 is provided with a liquid storage tank 16 at the lower part of the air inlet fan 6, disinfectant is stored in the liquid storage tank 16, the liquid storage tank 16 is connected with a liquid supply tank 13 through a flow pump 15, a liquid level sensor is installed in the liquid storage tank 16, a liquid inlet pipe 17 is connected to the top of the liquid storage tank 16, the liquid inlet pipe 17 penetrates through the side wall of the sterilization box body 1 to be connected with a liquid supply pipe, and an electromagnetic valve 18 is installed on the liquid supply pipe.
The sterilization cavity 8 is provided with a microwave ultraviolet generator and a catalytic carrier 14 loaded with modified titanium dioxide, wherein the microwave ultraviolet generator is fixed between the bottom surface and the top surface of the sterilization cavity 8 and is close to the necking plate 11. The microwave ultraviolet generator comprises a microwave generator 10 and a second ultraviolet lamp 12, wherein the microwave generator 10 is arranged outside the sterilization box body 1 and is electrically connected with the second ultraviolet sterilization lamp 12.
The catalytic carriers 14 are fixed in the sterilization cavity 8 through connecting pieces, the catalytic carriers 14 are foaming bodies, the catalytic carriers 14 are arranged in a needle shape, the number of the catalytic carriers is multiple, and one end of each catalytic carrier 14 is fixedly arranged on the connecting pieces. The carrier connecting piece can be a fiber rope, a column or other objects as long as the function of fixing the catalytic carrier can be achieved. The catalytic carriers 14 carrying the solid catalyst are designed into a needle shape, so that each carrier connecting piece and the catalytic carriers arranged on the outer wall of each carrier connecting piece form a test tube brush shape, the modified titanium dioxide on each catalytic carrier can fully receive the irradiation of ultraviolet rays of a second ultraviolet lamp, and the bacteria and toxic pollutants in fog drops and air are fully contacted with the modified titanium dioxide in the catalytic carriers, so that the bacteria and the toxic pollutants are fully subjected to photodecomposition reaction, and the sterilization and disinfection effects are enhanced.
The utility model discloses a working process:
when in use, the air inlet fan 6, the first ultraviolet germicidal lamp 5, the second ultraviolet germicidal lamp 12 and the microwave generator 10 are started, the flow pump 15 is started, hypochlorous acid disinfectant in the liquid storage tank 16 is pumped into the liquid supply tank 13, the disinfectant in the liquid supply tank 13 moves upwards to the atomizing bed 9, the hypochlorous acid disinfectant on the atomizing bed 9 is atomized into mist by force, the air inlet fan 6 sucks external air from the air inlet, the air is primarily sterilized by the first ultraviolet germicidal lamp 5 in the air inlet channel 4, enters the sterilizing cavity 8 and is combined with mist drops of the disinfectant generated by the atomizing bed 9 when passing through the atomizing bed 9, the flowing air flow blows the mist out of a specific using space outside the sterilizing box body 1 for spatial diffusion, so that dry sterilizing is realized, and meanwhile, after passing through the atomizing bed 9, the air flow is irradiated by the second ultraviolet germicidal lamp 12 and is contacted with modified titanium dioxide on the catalytic carrier 14, the modified titanium dioxide catalyzes water in airflow drops to generate OH and H under the light of a catalytic light source2O2And. O2The highly active substances can decompose organic pollutants carried by the gas flow and kill bacteria and viruses. Modified titania is a surface modification of titania solids and is conventional and will be apparent to those skilled in the art.
Of course, the above description is not limited to the above examples, and technical features of the present invention that are not described in the present application may be implemented by or using the prior art, and are not described herein again; the above embodiments and drawings are only used for illustrating the technical solutions of the present invention and are not intended to limit the present invention, and the present invention has been described in detail with reference to the preferred embodiments, and those skilled in the art should understand that changes, modifications, additions or substitutions made by those skilled in the art within the spirit of the present invention should also belong to the protection scope of the claims of the present invention.

Claims (6)

1. The utility model provides a sterilization apparatus for medical care, includes the sterilization box, a lateral wall of sterilization box sets up the air inlet and sets up the gas outlet at another lateral wall just right with this lateral wall, its characterized in that: an air inlet channel connected with the air inlet extends inwards from the air inlet in the sterilizing box body, an air inlet fan connected with a power line is arranged at the air inlet of the air inlet channel, a first ultraviolet sterilizing lamp is arranged in the air inlet channel along the length direction, the other end of the air inlet channel far away from the air inlet is connected with the four walls of the sterilizing box body through an expanding plate, the expanding plate is in a hollow quadrangular frustum shape, an air outlet is connected with the four walls of the sterilizing box body in the sterilizing box body through a necking plate symmetrical to the expanding plate, and the expanding plate, the necking plate and the sterilization box body are arranged in a surrounding mode to form a sterilization cavity, a liquid supply box is fixed to the bottom surface of the sterilization cavity, an atomizing bed opposite to the air inlet channel is arranged at the position, close to the necking plate, of the sterilization cavity, the bottom of the atomizing bed is immersed into the liquid supply box, a liquid storage box is arranged on the lower portion of the air inlet fan of the sterilization box body, disinfectant is stored in the liquid storage box, and the liquid storage box is connected with the liquid supply box through a flow pump; the sterilization cavity is provided with a microwave ultraviolet generator and a catalytic carrier loaded with a photocatalyst, wherein the microwave ultraviolet generator is fixed between the bottom surface and the top surface of the sterilization cavity and is close to the necking plate.
2. The medical-care sterilization apparatus according to claim 1, wherein: the microwave ultraviolet generator comprises a microwave generator and a second ultraviolet lamp, and the microwave generator is arranged outside the sterilization box body and is electrically connected with the second ultraviolet lamp.
3. The medical-care sterilization apparatus according to claim 1, wherein: the catalytic carriers are fixed in the sterilization cavity through connecting pieces, the catalytic carriers are foaming bodies, the catalytic carriers are arranged in a needle shape, the number of the catalytic carriers is multiple, and one end of each catalytic carrier is fixedly arranged on the connecting pieces.
4. The medical-care sterilization apparatus according to claim 1, wherein: install level sensor in the liquid reserve tank, the feed liquor pipe is connected at the liquid reserve tank top, and the feed liquor pipe runs through sterilization box lateral wall and connects the feed pipe, installs the solenoid valve on the feed pipe.
5. The medical-care sterilization apparatus according to claim 1, wherein: the atomizing bed comprises a bottom plate and a top plate, capillary tubes are uniformly inserted between the top plate and the bottom plate, the bottom plate is immersed in hypochlorous acid disinfectant in the liquid supply box, fine holes are formed in the capillary tubes, fiber bundles are arranged in the capillary tubes, and the top plate, the bottom plate and the capillary tubes are wrapped by ventilated non-woven fabrics.
6. The medical-care sterilization apparatus according to claim 1, wherein: the centers of the air inlet and the air outlet are positioned on the same straight line.
CN202022828265.4U 2020-12-01 2020-12-01 Sterilization device for medical nursing Expired - Fee Related CN214181269U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202022828265.4U CN214181269U (en) 2020-12-01 2020-12-01 Sterilization device for medical nursing

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202022828265.4U CN214181269U (en) 2020-12-01 2020-12-01 Sterilization device for medical nursing

Publications (1)

Publication Number Publication Date
CN214181269U true CN214181269U (en) 2021-09-14

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CN202022828265.4U Expired - Fee Related CN214181269U (en) 2020-12-01 2020-12-01 Sterilization device for medical nursing

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CN (1) CN214181269U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115364250A (en) * 2022-07-25 2022-11-22 福寿堂制药有限公司 Far-infrared sterilization equipment and sterilization process for ginseng and pilose antler tonic paste preparation

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115364250A (en) * 2022-07-25 2022-11-22 福寿堂制药有限公司 Far-infrared sterilization equipment and sterilization process for ginseng and pilose antler tonic paste preparation
CN115364250B (en) * 2022-07-25 2023-09-05 福寿堂制药有限公司 Far infrared sterilization equipment and sterilization process for ginseng and antler tonic paste preparation

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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20210914

CF01 Termination of patent right due to non-payment of annual fee