Odor treatment reaction equipment
By designing a convenient filter plate replacement mechanism in the odor treatment reaction equipment, the complex replacement process in the existing equipment is solved, and the replacement efficiency and stability of the odor treatment reaction are improved.
Patent Information
- Application Number
- CN202421699196.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-07-17
- Publication Date
- 2025-06-03
- Estimated Expiration
- 2034-07-17
AI Technical Summary
In existing odor treatment reaction equipment, the replacement process of filter components is complicated and cumbersome, resulting in low replacement efficiency and affecting the progress and effect of odor treatment reaction.
A odor treatment reaction equipment is designed. By setting a card slot and installation slot in the reaction tank, and setting connecting blocks, limit blocks and unlocking components on the filter plate, the limit blocks are pushed by the rotating rod and arc plate to achieve convenient filter plate replacement.
It improves the replacement efficiency of the filter plate, reduces the operation complexity during the replacement process, and ensures the continuity and stability of the odor treatment reaction.
Smart Images

Figure CN222930510U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of odor treatment, in particular to an odor treatment reaction device. Background Art
[0002] In the fields of tobacco, electronic chemicals, spraying and printing, etc., a large amount of dust and harmful gases are generated in the production workshop during the production process. In order to ensure that the harmful gases generated in the above production can be smoothly discharged into the air, an odor treatment reaction device is required to complete the work of purifying and removing the odor.
[0003] In the use of existing odor treatment reaction devices, most use different filter components to complete the functions of adsorbing and purifying harmful gases in the odor. However, in the use of filter components, since the adsorption effect of the filter components on the odor is limited, after the filter components are used for a long time, the filter components need to be replaced regularly to prevent the reduction of the subsequent odor treatment reaction effect due to long-term use. However, the installation of existing filter components in the odor treatment reaction device is mostly complex and cumbersome, and it is not convenient to operate when the filter components need to be replaced. When the existing filter components cannot be operated more conveniently during installation and replacement, the replacement efficiency of the multi-filter components will be reduced at this time, and then the progress of the odor treatment reaction after installation will be delayed, thereby reducing the use effect of the overall device during the odor treatment process. Summary of the Invention
[0004] The purpose of the utility model is to solve at least one of the technical problems existing in the prior art, and can solve the problem that the filter components cannot be operated more conveniently during installation and replacement, which will reduce the replacement efficiency of the multi-filter components and then delay the progress of the odor treatment reaction after installation.
[0005] To achieve the above purpose, the utility model adopts the following technical scheme:
[0006] An odor treatment reaction device includes a reaction tank. A door opening is provided at the rear side of the reaction tank, and a door is arranged on the door opening. A clamping groove is provided on the front wall inside the reaction tank, and an installation groove is provided at the rear side of the reaction tank. It also includes a filter plate, and the filter plate is detachably connected to the reaction tank through the clamping groove and the installation groove. A connecting block is fixedly connected to the front side of the filter plate, and the front side of the connecting block is in a "V" shape, and the shape of the connecting block matches that of the clamping groove. The connecting block is slidably connected in the clamping groove, and limiting grooves are provided at both the top and bottom of the connecting block, and grooves are provided on both the top wall and the bottom wall of the clamping groove. A sliding rod is fixedly connected inside the groove, and a limiting block is slidably sleeved on the surface of the sliding rod. The shape of the limiting block is fan-shaped, and a spring is movably sleeved on the surface of the sliding rod. The upper end of the spring abuts against the lower end of the limiting block. The filter plate is locked by the limiting block being snapped into the limiting groove. An unlocking component is also provided on the filter plate, and through the unlocking component, the limiting block is disengaged from the limiting groove to achieve unlocking.
[0007] Optionally, the filter plate includes a first filter plate, a second filter plate, and a third filter plate. The main filtering material of the first filter plate is activated carbon; the main filtering material of the second filter plate is diatom mud; the main filtering material of the third filter plate is bioenzyme. A first filter plate layer, a second filter plate layer, and a third filter plate layer are sequentially arranged from top to bottom inside the reaction tank.
[0008] Optionally, a through groove is provided at the rear side of the filter plate, and the front side of the through groove extends into the inside of the connecting block. The through groove is communicated with the two limiting grooves, and a rotating rod is rotatably connected in the through groove.
[0009] Optionally, two arc plates are fixedly connected to the surface of the rotating rod. The shape of the arc plates is semi-circular and an inclined surface is provided on the front side, and the two arc plates are rotatably connected inside the two limiting grooves.
[0010] Optionally, a torsion spring is movably sleeved on the surface of the rotating rod. The two ends of the torsion spring are respectively fixedly connected between the rotating rod and the through groove, and the rear side of the rotating rod extends to the rear side of the through groove.
[0011] Optionally, the filter plate is in a long strip plate structure. A plurality of the first filter plates are arranged in parallel to form the first filter plate layer; a plurality of the second filter plates are arranged in parallel to form the second filter plate layer; a plurality of the third filter plates are arranged in parallel to form the third filter plate layer.
[0012] Compared with the prior art, the beneficial effects of the present utility model are:
[0013] 1. The odor treatment reaction device can more conveniently complete the pushing work of the arc plate on the limit block by rotating the rotating rod, so that the limit block can be more smoothly separated from the limit groove, and finally the replacement work of the first filter plate or the second filter plate and the third filter plate can be effectively completed. This prevents the inconvenience of replacement due to the long-term use of the first filter plate, the second filter plate, and the third filter plate, which reduces the subsequent odor treatment reaction efficiency. The stability of the odor treatment reaction effect of the overall device after long-term use is effectively improved through convenient replacement.
[0014] 2. Since the arc plate is semicircular in shape and has an inclined surface on the front side, when the arc plate rotates with the rotating rod, it can more smoothly push the limit block to move, improving the convenience and smoothness of the arc plate pushing the limit block to move, and enhancing the use effect of the overall device when replacing the first filter plate.
[0015] 3. By pushing the first filter plate forward, the connecting block can be smoothly driven into the inside of the card slot, and finally the mutual blocking between the limit block and the limit groove can be completed. The first filter plate can be smoothly installed inside the reaction tank, effectively improving the installation efficiency of the first filter plate in the reaction tank. Moreover, it is more convenient for the reaction tank to more smoothly complete the odor treatment reaction effect after the installation of the first filter plate, the second filter plate, and the third filter plate. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the drawings required for description in the embodiments will be briefly introduced below.
[0017] Figure 1 It is a schematic structural diagram of an odor treatment reaction device of the present invention;
[0018] Figure 2 It is a cross-sectional view of the inside of the reaction tank of the present invention;
[0019] Figure 3 It is a schematic diagram of the arc plate of the present invention;
[0020] Figure 4 For the present invention Figure 2 An enlarged schematic diagram of part A in the present invention.
[0021] Reference numerals: 1, reaction tank; 2, door opening; 3, door; 4, first filter plate; 5, installation groove; 6, second filter plate; 7, third filter plate; 8, through groove; 9, rotating rod; 10, card slot; 11, connecting block; 12, limit groove; 13, arc plate; 14, torsion spring; 15, groove; 16, sliding rod; 17, limit block; 18, spring. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0022] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.
[0023] In the description of the present invention, it should be noted that the orientation or positional relationship indicated by the terms "inner", "front", "rear", "left", "right", etc. is based on the orientation or positional relationship shown in the drawings or the orientation or positional relationship in which the product of the present invention is usually placed during use. It is 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 thus should not be construed as a limitation to the present invention.
[0024] In the description of the present invention, it should also be noted that unless otherwise clearly defined and limited, the terms "set" and "connect" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside 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 situations.
[0025] Please refer to Figures 1-4 , the present invention provides a technical solution: an odor treatment reaction device, including a reaction tank 1. The transverse cross-section of the inner cavity of the reaction tank 1 can be a rectangular structure. A door opening 2 is provided at the rear side thereof, and a door 3 is provided on the door opening 2. By providing the door 3, the door opening 2 can be effectively blocked. A plurality of card slots 10 are provided on the front wall inside the reaction tank 1, and the specific number is determined according to the actual situation. A plurality of installation slots 5 are provided at the rear side of the reaction tank 1, and the number of the plurality of installation slots 5 is the same as the number of the card slots 10. A filter plate is slidably connected inside the reaction tank 1 and inside the installation slots 5. In this embodiment, the filter plate includes a first filter plate 4, a second filter plate 6, and a third filter plate 7, and the structures on the first filter plate 4, the second filter plate 6, and the third filter plate 7 are all the same. In some embodiments, a first filter plate layer, a second filter plate layer, and a third filter plate layer are sequentially arranged in the reaction tank from top to bottom. The filter plate can be arranged in a long strip plate structure. A plurality of the first filter plates are arranged in parallel to form the first filter plate layer; a plurality of second filter plates are arranged in parallel to form the second filter plate layer; a plurality of third filter plates are arranged in parallel to form the third filter plate layer. And in some embodiments, the first filter plate layer or the second filter plate layer or the third filter plate layer can be composed of only one whole filter plate.
[0026] A connecting block 11 is fixedly connected to the front side of the first filter plate 4. The front side of the connecting block 11 is in a "V" shape. The shape of the connecting block 11 matches the shape of the card slot 10. The connecting block 11 is slidably connected in the card slot 10. The connecting block 11 slides back and forth in the card slot 10. Limiting grooves 12 are provided at both the top and bottom of the connecting block 11. Grooves 15 are provided on both the top wall and the bottom wall of the card slot 10. The structures in the two grooves 15 are the same. A sliding rod 16 is fixedly connected to the inside of the groove 15. A limiting block 17 is slidably sleeved on the surface of the sliding rod 16. The shape of the limiting block 17 is fan-shaped. A spring 18 is movably sleeved on the surface of the sliding rod 16. The two ends of the spring 18 are fixedly connected between the limiting block 17 and the groove 15 respectively.
[0027] Since the front side of the connecting block 11 is in a "V" shape and the shape of the connecting block 11 matches the shape of the card slot 10, when the connecting block 11 enters the card slot 10, it can be more smooth and convenient, improving the fluency of the overall device during movement.
[0028] The main material in the first filter plate 4 is activated carbon. By setting activated carbon in the first filter plate 4, the absorption and treatment of odors can be completed more effectively, enabling the overall device to more effectively complete the odor treatment reaction effect.
[0029] The main material of the second filter plate 6 is diatom mud. By setting diatom mud in the second filter plate 6, the odor after passing through the first filter plate 4 can be purified and absorbed more efficiently, making it more convenient for the overall device to complete the odor treatment work.
[0030] The main material of the third filter plate 7 is bioenzyme. By setting bioenzyme in the third filter plate 7, the purification effect of the odor after passing through the first filter plate 4 and the second filter plate 6 is further enhanced.
[0031] In the initial state, under the elastic force of the spring 18, the limit block 17 protrudes from the inside of the groove 15. When odor treatment work is required, the first filter plate 4, the second filter plate 6, and the third filter plate 7 need to be installed at this time. Align the connecting block 11 on the first filter plate 4 with the card slot 10, and then move the first filter plate 4 forward. The first filter plate 4 drives the connecting block 11 to first pass through the installation slot 5 and then pass through the reaction tank 1, and finally move the connecting block 11 into the inside of the card slot 10. At this time, when the connecting block 11 enters the card slot 10, it first pushes the arc surface of the limit block 17. Since the shape of the limit block 17 is fan-shaped, the limit block 17 starts to move into the groove 15 after being pushed by the connecting block 11, making it more smooth and convenient for the limit block 17 to enter the inside of the groove 15 under the push of the connecting block 11. At the same time, the limit block 17 moves into the groove 15 and starts to compress the spring 18. After the connecting block 11 fully moves into the card slot 10, the limit block 17 and the limit slot 12 are in the same straight line. At this time, the limit block 17 is no longer blocked. Under the elastic force of the spring 18, the limit block 17 moves back to its original position and enters the inside of the limit slot 12. At this time, the limit block 17 completes the mutual blocking with the limit slot 12, and the installation work of the first filter plate 4 is completed. At the same time, the installation principles of the second filter plate 6 and the third filter plate 7 are the same as that of the first filter plate 4.
[0032] By pushing the first filter plate 4 forward, the connecting block 11 can be smoothly driven into the inside of the card slot 10, and finally the mutual blocking between the limit block 17 and the limit slot 12 is completed. The first filter plate 4 can be smoothly installed inside the reaction tank 1, thereby effectively improving the installation efficiency of the first filter plate 4 inside the reaction tank 1, and making it more convenient for the reaction tank 1 to more smoothly complete the odor treatment reaction effect after the installation of the first filter plate 4, the second filter plate 6, and the third filter plate 7.
[0033] A through groove 8 is opened at the rear side of the first filter plate 4. The front side of the through groove 8 extends into the inside of the connecting block 11. The through groove 8 is communicated with the two limit slots 12. A rotating rod 9 is rotatably connected inside the through groove 8. Two arc plates 13 are fixedly connected to the surface of the rotating rod 9. The shape of the arc plates 13 is semi-circular and there is an inclined surface on the front side. The two arc plates 13 are rotatably connected inside the two limit slots 12. A torsion spring 14 is movably sleeved on the surface of the rotating rod 9. The two ends of the torsion spring 14 are respectively fixedly connected between the rotating rod 9 and the through groove 8. The rear side of the rotating rod 9 extends to the rear side of the through groove 8.
[0034] In the initial state, under the elastic force of the torsion spring 14, the arc plate 13 does not exert a force on the limit block 17. When the first filter plate 4, the second filter plate 6, and the third filter plate 7 need to be replaced, the door 3 is opened. Then, the rotating rod 9 is rotated. The rotation of the rotating rod 9 drives the torsion spring 14 to rotate and deform. The rotation of the rotating rod 9 drives the two arc plates 13 to rotate. At this time, the rotation of the arc plate 13 can smoothly push the limit block 17 to move into the groove 15. The movement of the limit block 17 into the groove 15 no longer blocks the limit groove 12. At this time, the first filter plate 4 can be moved backward and drive the connecting block 11 to move backward, thereby more smoothly completing the removal of the first filter plate 4 from the reaction tank 1, and facilitating the replacement work of the first filter plate 4. At the same time, the replacement work of the second filter plate 6 and the third filter plate 7 is the same as that of the first filter plate 4.
[0035] By rotating the rotating rod 9, it is more convenient to complete the pushing work of the arc plate 13 on the limit block 17, so that the limit block 17 can more smoothly disengage from the limit groove 12. Finally, the replacement work of the first filter plate 4 or the second filter plate 6 and the third filter plate 7 can be effectively completed, preventing the inconvenience of replacement due to the long-term use of the first filter plate 4, the second filter plate 6, and the third filter plate 7, which reduces the reaction efficiency of the subsequent odor treatment. By facilitating the replacement, the stability of the odor treatment reaction effect of the overall device after long-term use is effectively improved.
[0036] Since the shape of the arc plate 13 is semi-circular and there is an inclined surface on the front side, when the arc plate 13 rotates following the rotating rod 9, it can more smoothly push the limit block 17 to move, improving the convenience and smoothness of the arc plate 13 pushing the limit block 17 to move, and enhancing the use effect of the overall device when replacing the first filter plate 4.
[0037] Working principle: In the initial state, under the elastic force of the torsion spring 14, the arc plate 13 does not exert a force on the limit block 17. When the first filter plate 4, the second filter plate 6, and the third filter plate 7 need to be replaced, the door 3 is opened. Then, the rotating rod 9 is rotated. The rotation of the rotating rod 9 drives the torsion spring 14 to rotate and deform. The rotation of the rotating rod 9 drives the two arc plates 13 to rotate. At this time, the rotation of the arc plate 13 can smoothly push the limit block 17 to move into the groove 15. The movement of the limit block 17 into the groove 15 no longer blocks the limit groove 12. At this time, the first filter plate 4 can be moved backward and drive the connecting block 11 to move backward, thereby more smoothly completing the removal of the first filter plate 4 from the reaction tank 1, and facilitating the replacement work of the first filter plate 4. At the same time, the replacement work of the second filter plate 6 and the third filter plate 7 is the same as that of the first filter plate 4.
Claims
1. A peculiar smell treatment reaction equipment, characterized in that: The invention comprises a reaction tank (1), wherein a door opening (2) is provided at the rear side of the reaction tank (1), a door (3) is arranged on the door opening (2), a card slot (10) is provided on the front wall inside the reaction tank (1), and a mounting slot (5) is provided at the rear side of the reaction tank (1); and further comprises a filter plate, wherein the filter plate is detachably connected to the reaction tank (1) via the card slot (10) and the mounting slot (5); a connecting block (11) is fixedly connected to the front side of the filter plate, the front side of the connecting block (11) is in a "V" shape, and the shape of the connecting block (11) matches that of the card slot (10); the connecting block (11) is slidably connected in the card slot (10), and the top and bottom of the connecting block (11) are connected to each other. The filter plate (10) is provided with a limit groove (12), and the top wall and the bottom wall of the card slot (10) are provided with a groove (15); the interior of the groove (15) is fixedly connected with a slide rod (16), the surface of the slide rod (16) can be slidably sleeved with a limit block (17) up and down, the limit block (17) is in the shape of a fan, and the surface of the slide rod (16) is movably sleeved with a spring (18), and the upper end of the spring (18) presses against the lower end of the limit block (17); the filter plate is locked by the limit block (17) being inserted into the limit groove (12); the filter plate is also provided with an unlocking component, and the limit block (17) is unlocked by the unlocking component.
2. The odor treatment reaction equipment according to claim 1, characterized in that: The filter plate comprises a first filter plate (4), a second filter plate (6) and a third filter plate (7); the main filter material of the first filter plate (4) is activated carbon; the main filter material of the second filter plate (6) is diatom mud; the main filter material of the third filter plate (7) is biological enzyme; the first filter plate layer, the second filter plate layer and the third filter plate layer are arranged in sequence from top to bottom in the reaction tank (1).
3. The odor treatment reaction equipment according to claim 1, characterized in that: A through slot (8) is provided on the rear side of the filter plate, the front side of the through slot (8) extends to the interior of the connecting block (11), the through slot (8) is connected to the two limiting slots (12), and a rotating rod (9) is rotatably connected in the through slot (8).
4. The odor treatment reaction equipment according to claim 3, characterized in that: Two arc plates (13) are fixedly connected to the surface of the rotating rod (9); the arc plates (13) are semicircular in shape and have an inclined surface on the front side; the two arc plates (13) are rotatably connected inside the two limiting grooves (12).
5. The odor treatment reaction equipment according to claim 4, characterized in that: The surface of the rotating rod (9) is movably sleeved with a torsion spring (14), the two ends of the torsion spring (14) are respectively fixedly connected between the rotating rod (9) and the through slot (8), and the rear side of the rotating rod (9) extends to the rear side of the through slot (8).
6. The odor treatment reaction equipment according to claim 2, characterized in that: The filter plate is in the form of a long strip of plate structure; a plurality of the first filter plates (4) are arranged in parallel to form the first filter plate layer; a plurality of the second filter plates (6) are arranged in parallel to form the second filter plate layer; and a plurality of the third filter plates (7) are arranged in parallel to form the third filter plate layer.