Large-range air deodorization equipment

By designing a large-scale air deodorization equipment, the cleaning of particles on the surface of the filter plate is achieved by using the coordination of the removal block and the positioning block, the problem of particles adhering between the sliding ports in the existing equipment is solved, and the maintenance convenience of the equipment is improved.

CN222969441UActive Publication Date: 2025-06-13ZIBO RUIGUANGZHENGXIN BIOLOGICAL TECH CO LTD
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Patent Information

Application Number
CN202421989919.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-16
Publication Date
2025-06-13
Estimated Expiration
2034-08-16

AI Technical Summary

Technical Problem

During the air deodorization process of existing large-scale air deodorization equipment, particulate matter is easily attached to the surface of activated carbon, which causes residues to remain inside the filter box when the filter plate is pulled out, causing inconvenient cleaning.

Method used

A large-scale air deodorization equipment is designed to absorb particulate matter through the filter plate. After the filter plate absorbs a certain particulate matter, it is pulled out from the sliding port. The oblique cutting surface of the scrapped block is used to clean the particles on the surface and collect them into the collection tank. At the same time, the removal and cleaning of the collection tank is achieved through the coordination of the positioning block and the pulling block.

Benefits of technology

The preliminary cleaning of particles on the surface of the filter plate is achieved, and the particulate matter is avoided from adhering to the sliding ports, simplifying the cleaning process of the filter plate and improving the maintenance convenience of the equipment.

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Abstract

The utility model belongs to the technical field of air deodorization, and particularly relates to large-range air deodorization equipment. The problems that in the prior art, particles are prone to being attached to the surface of activated carbon during air deodorization, residues are left in a filter box when a filter plate is pulled out, and cleaning is inconvenient are solved. Comprising a filter box, a sliding opening is formed outside the filter box, and a filter plate is slidably connected into the sliding opening. The filter plate is pulled out from the sliding opening, particles on the surface of the filter plate can be cleaned through the diagonal plane of the shoveling block, the cleaned particles are collected into the collecting groove, and after the filter plate is taken out, the pulling block can be moved to drive the positioning block to slide, so that the collecting groove is taken out from the interior of the filter box; the effect of preliminarily cleaning particles on the surface of the filter plate is achieved, and the problem that in the prior art, a single filter plate is arranged in a sliding opening, and particles are prone to being attached between the sliding openings when the filter plate is pulled out is solved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of air deodorization, and specifically relates to a large-range air deodorization device. Background Technique

[0002] Air deodorization refers to the process of removing or reducing unpleasant odors in indoor or industrial environments through certain technologies or methods. Generally, the application scope in the industrial field is relatively wide. There may also be toxic substances in some smelly air, and professional equipment is required for physical or chemical deodorization.

[0003] The existing large-range air deodorization device uses a box body equipped with an activated carbon filter plate, and an electrolysis device is installed on the side in the air outlet direction. The activated carbon adsorbs particulate matter, and the remaining odor gas is treated by electrolysis. However, when using this method for air deodorization, particulate matter is easily attached to the surface of the activated carbon, resulting in residues remaining inside the filter box when the filter plate is pulled out, causing problems of inconvenient cleaning. Content of the Utility Model

[0004] To solve the problem in the prior art that particulate matter is easily attached to the surface of the activated carbon during air deodorization, resulting in residues remaining inside the filter box when the filter plate is pulled out, causing inconvenient cleaning, the utility model provides a large-range air deodorization device. The particulate matter is adsorbed by the filter plate. After the filter plate adsorbs a certain amount of particulate matter, the filter plate is pulled out from the sliding opening, and the particulate matter on the surface of the filter plate will be cleaned off through the inclined plane of the scraping block. The cleaned particulate matter is collected and enters the inside of the collection tank. After the filter plate is taken out, the pulling block can be moved to drive the positioning block to slide, so as to take out the collection tank from inside the filter box, achieving the effect of preliminary cleaning of the particulate matter on the surface of the filter plate, and solving the problem that when using a single filter plate inside the sliding opening in the past, pulling out the filter plate easily causes particulate matter to adhere between the sliding openings.

[0005] To achieve the above purpose, the specific technical solutions are as follows:

[0006] A large-range air deodorization device includes a filter box. A sliding opening is provided on the outside of the filter box, and a filter plate is slidably connected inside the sliding opening. One end of the filter plate away from the filter box is fixedly connected with a handle. The two sides of the filter plate are slidably connected near the top and bottom positions with limiting plates, and the limiting plates are fixedly connected inside the filter box;

[0007] One side of the sliding opening abuts against a scraping block. A collection tank is provided on the side of the scraping block close to the filter plate. One end of the scraping block close to the filter plate is provided with an inclined plane. One end of the scraping block away from the inclined plane abuts against a positioning plate, and the positioning plate is fixedly connected inside the filter box.

[0008] Further, the positioning plate is arranged in an "L" shape. A pulling groove is formed on the side of the scraping block away from the collection groove, and the pulling groove is arranged in an "L" shape. A positioning component is arranged on the side of the scraping block away from the filter plate.

[0009] Further, the positioning component includes a positioning block. The positioning block is slidably connected to the outside of the filter box. An expansion box is slidably connected to the outside of the positioning block, and the expansion box is fixedly connected to the outside of the filter box.

[0010] Further, a spring is fixedly connected to the side of the positioning block close to the expansion box. One end of the spring away from the positioning block is fixedly connected to the inside of the expansion box. There are multiple groups of springs arranged in a linear array inside the expansion box.

[0011] Further, a pulling block is fixedly connected to the side of the positioning block away from the filter box. The pulling block is slidably connected to the outside of the expansion box, and the pulling block is arranged in an "L" shape.

[0012] Further, an air duct is arranged on the outside of the filter box. There are two groups of air ducts fixedly connected to both ends of the filter box symmetrically, and the air duct is arranged in a quadrangular pyramid shape.

[0013] Further, an electrolysis module is fixedly connected to the outside of the filter box. The electrolysis module is arranged at a position on the outside of the filter box away from the filter plate. There are three groups of electrolysis modules arranged in a linear array on the outside of the filter box.

[0014] Compared with the prior art, the beneficial effects of the present utility model are at least as follows:

[0015] The particulate matter is adsorbed by the filter plate. After the filter plate adsorbs a certain amount of particulate matter, the filter plate is pulled out from the sliding opening. The particulate matter on the surface of the filter plate will be cleaned off through the inclined plane of the scraping block, and the cleaned particulate matter is collected and enters the collection groove. After the filter plate is taken out, the pulling block can be moved to drive the positioning block to slide, so as to take out the collection groove from the inside of the filter box, realizing the effect of initially cleaning the particulate matter on the surface of the filter plate, and solving the problem that when a single filter plate is used inside the sliding opening in the past, pulling out the filter plate easily causes the particulate matter to adhere between the sliding openings. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 is a three-dimensional structural schematic diagram of the present utility model;

[0017] Figure 2 is a cross-sectional structural schematic diagram of the filter box of the present utility model;

[0018] Figure 3 is the present utility model Figure 2 magnified structural schematic diagram at A in;

[0019] Figure 4It is a schematic three-dimensional sectional structure diagram of the utility model;

[0020] Figure 5 is the utility model Figure 4 The enlarged structure diagram at position B in

[0021] As shown in the figure: 1. Filter box; 2. Sliding opening; 3. Limiting plate; 4. Filter plate; 5. Scraping block; 6. Collection groove; 7. Positioning plate; 8. Pulling groove; 9. Positioning block; 10. Telescopic box; 11. Pulling block; 12. Spring; 13. Electrolysis module; 14. Air duct; 15. Handle. Specific embodiments

[0022] The following will describe the present utility model in detail in conjunction with the specific embodiments shown in the drawings. However, these embodiments do not limit the present utility model, and any structural, method, or functional transformation made by those of ordinary skill in the art based on these embodiments is included in the protection scope of the present utility model.

[0023] As Figures 1-5 shown, the present utility model aims to provide a large-range air deodorization device to solve the problem that particles are easily attached to the surface of activated carbon during air deodorization, resulting in residues remaining inside the filter box when the filter plate is pulled out, which is inconvenient to clean. Based on the above functions, the whole device includes a filter box 1, characterized in that: a sliding opening 2 is opened outside the filter box 1, a filter plate 4 is slidably connected inside the sliding opening 2, a handle 15 is fixedly connected to one end of the filter plate 4 away from the filter box 1, the two sides of the filter plate 4 are slidably connected near the top and bottom positions with limiting plates 3, and the limiting plates 3 are fixedly connected inside the filter box 1;

[0024] One side of the sliding opening 2 abuts against a scraping block 5, a collection groove 6 is opened on one side of the scraping block 5 close to the filter plate 4, one end of the scraping block 5 close to the filter plate 4 is provided with an inclined section, and one end of the scraping block 5 away from the inclined section abuts against a positioning plate 7, and the positioning plate 7 is fixedly connected inside the filter box 1.

[0025] When using the filter box 1, the particles in the air can be adsorbed through the filter plate 4. After the filter plate 4 adsorbs a certain amount of particles, there will be certain attachments on the surface of the filter plate 4. The filter plate 4 is pulled out through the handle 15, and the attached particles slide along the inclined section of the scraping block 5, and the particles are collected inside the collection groove 6. At this time, it is ensured that the particles attached to the surface of the pulled-out filter plate 4 will not remain between the sliding openings 2. When the filter plate 4 is removed, the scraping block 5 can be taken out from the positioning plate 7 position, so as to clean the scraping block 5, solving the problem that the single filter plate 4 structure in the past is likely to cause particle residues between the sliding openings 2, resulting in blockage.

[0026] As Figures 4-5As shown, the positioning plate 7 is arranged in an "L" shape. A pulling groove 8 is formed on the side of the scraping block 5 away from the collection tank 6, and the pulling groove 8 is arranged in an "L" shape. A positioning component is arranged on the side of the scraping block 5 away from the filter plate 4. The positioning component includes a positioning block 9. The positioning block 9 is slidably connected to the outside of the filter box 1. An expansion box 10 is slidably connected to the outside of the positioning block 9. The expansion box 10 is fixedly connected to the outside of the filter box 1. A spring 12 is fixedly connected to the side of the positioning block 9 close to the expansion box 10. One end of the spring 12 away from the positioning block 9 is fixedly connected to the inside of the expansion box 10. There are multiple groups of springs 12 arranged in a linear array inside the expansion box 10.

[0027] When installing the scraping block 5, insert the scraping block 5 along the inclined plane of the positioning block 9. At this time, the positioning block 9 will be squeezed and contract into the inside of the expansion box 10, and the positioning block 9 will squeeze the spring 12. When the scraping block 5 abuts against one side of the positioning plate 7, the spring 12 will push the positioning block 9 to seal the scraping block 5. At this time, the subsequent removal and use of the filter plate 4 can be carried out. During installation, it is necessary to first insert the filter plate 4 into the sliding port 2 for fixation, and then insert the scraping block 5, which is convenient for more stable installation of the scraping block 5, achieving the effect of quickly installing the scraping block 5, solving the problem of unstable fixation of a single inserted scraping block 5, and improving the stability of the fixation of the scraping block 5.

[0028] As Figures 2-5 shown, a pulling block 11 is fixedly connected to the side of the positioning block 9 away from the filter box 1. The pulling block 11 is slidably connected to the outside of the expansion box 10. The pulling block 11 is arranged in an "L" shape. There are two air duct pipes 14 arranged on the outside of the filter box 1, which are symmetrically fixedly connected to both ends of the filter box 1. The air duct pipes 14 are arranged in a quadrangular pyramid shape. An electrolysis module 13 is fixedly connected to the outside of the filter box 1. The electrolysis module 13 is arranged at a position on the outside of the filter box 1 away from the filter plate 4. There are three groups of electrolysis modules 13 arranged in a linear array on the outside of the filter box 1.

[0029] When disassembling the scraping block 5, it is necessary to move the positioning block 9. At this time, the positioning block 9 can be controlled to move through the pulling block 11, so that the positioning block 9 contracts into the inside of the expansion box 10. At this time, the scraping block 5 can be taken out of the filter box 1 through the pulling groove 8, achieving the effect of making it more convenient to move the positioning block 9 and take out the scraping block 5, solving the problem of inconvenient installation and disassembly of the scraping block 5 caused by only using a single positioning block 9 for opening and closing, and improving the convenience of disassembling and installing the scraping block 5

[0030] It should be understood that although this specification is described according to embodiments, not every embodiment only contains an independent technical solution. This narrative way of the specification is only for clarity. Those skilled in the art should regard the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other implementation manners that can be understood by those skilled in the art.

[0031] The series of detailed descriptions listed above are only specific descriptions of the feasible implementation modes of the present utility model, and they are not intended to limit the protection scope of the present utility model. Any equivalent implementation modes or changes made without departing from the technical spirit of the present utility model shall be included within the protection scope of the present utility model.

Claims

1. A large-scale air deodorization device, comprising a filter box (1), characterized in that: The filter box (1) is provided with a sliding opening (2) on the outside, a filter plate (4) is slidably connected inside the sliding opening (2), a handle (15) is fixedly connected to one end of the filter plate (4) away from the filter box (1), and limit plates (3) are slidably connected to both sides of the filter plate (4) near the top and bottom, and the limit plates (3) are fixedly connected inside the filter box (1); A scraping block (5) is abutted on one side of the sliding opening (2); a collecting groove (6) is provided on the side of the scraping block (5) close to the filter plate (4); an end of the scraping block (5) close to the filter plate (4) is provided with an oblique surface; an end of the scraping block (5) away from the oblique surface is abutted against a positioning plate (7); and the positioning plate (7) is fixedly connected to the inside of the filter box (1).

2. A large-scale air deodorization device according to claim 1, characterized in that: The positioning plate (7) is arranged in an "L" shape, a groove (8) is provided on the side of the scraping block (5) away from the collecting trough (6), the groove (8) is arranged in an "L" shape, and a positioning component is provided on the side of the scraping block (5) away from the filter plate (4).

3. A large-scale air deodorization device according to claim 2, characterized in that: The positioning assembly comprises a positioning block (9), the positioning block (9) is slidably connected to the outside of the filter box (1), the outside of the positioning block (9) is slidably connected to a telescopic box (10), and the telescopic box (10) is fixedly connected to the outside of the filter box (1).

4. A large-scale air deodorization device according to claim 3, characterized in that: A spring (12) is fixedly connected to one side of the positioning block (9) close to the telescopic box (10); one end of the spring (12) away from the positioning block (9) is fixedly connected to the inside of the telescopic box (10); and there are a total of multiple groups of springs (12) arranged in a linear array inside the telescopic box (10).

5. A large-scale air deodorization device according to claim 4, characterized in that: A pulling block (11) is fixedly connected to the side of the positioning block (9) away from the filter box (1); the pulling block (11) is slidably connected to the outside of the telescopic box (10); and the pulling block (11) is arranged in an "L" shape.

6. A large-scale air deodorization device according to claim 5, characterized in that: An air duct (14) is arranged outside the filter box (1), and there are two groups of the air ducts (14) which are symmetrically fixedly connected to the two ends of the filter box (1), and the air ducts (14) are arranged in the shape of a quadrangular pyramid.

7. A large-scale air deodorization device according to claim 6, characterized in that: The outside of the filter box (1) is fixedly connected to an electrolysis module (13), and the electrolysis module (13) is arranged outside the filter box (1) at a position away from the filter plate (4). There are three groups of electrolysis modules (13) in a linear array outside the filter box (1).