High-temperature odor treatment equipment with filtering effect
By designing a filter device in a high-temperature odor treatment equipment, the primary and secondary filtration of odor is achieved, and the problem that particulate impurities and debris in the odor affect the equipment's effect is solved, ensuring the high-temperature sterilization and deodorization effect of the equipment and the long-term stability of the equipment's use.
Patent Information
- Application Number
- CN202421356527.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-06-14
- Publication Date
- 2025-05-27
- Estimated Expiration
- 2034-06-14
AI Technical Summary
During the use of existing high-temperature odor treatment equipment, due to the presence of particulate impurities and debris in the odor, these impurities precipitate or adhere to the inner wall of the equipment at high temperature, affecting the high-temperature sterilization and deodorization effect of the equipment.
A high-temperature odor treatment equipment with filtering effect was designed, and a filter device was adopted, including a filter box, a filter vertical plate and a filter cross plate. The odor was filtered through these structures first and second stages to prevent particulate impurities and debris from entering the high-temperature deodorizing core.
Effectively filter out particulate impurities and debris in the odor, prevent them from sticking to the inner wall of the equipment at high temperature, maintaining the high-temperature sterilization and deodorization effect of the equipment, and the filtered large particulate impurities can be cleaned regularly.
Smart Images

Figure CN222900539U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of odor treatment, in particular to a high-temperature odor treatment device with a filtering effect. Background Art
[0002] With the improvement of people's living standards, people's requirements for living and working environments are also getting higher and higher. The air will contain and breed various odors, bacteria, etc. due to environmental influences. In daily life, air purifiers are generally used. However, there are various structures of air purifiers on the market, and after a certain period of use, parts need to be replaced or cleaned, which causes trouble in use. Some use the principle of ion decomposition for deodorization and sterilization, but the decomposition effect is limited, the deodorization and sterilization effect is not good, and other components need to be used in combination to achieve the effect.
[0003] Therefore, a high-temperature odor treatment device with a simple structure and good sterilization and deodorization effects has emerged. For example, Chinese Patent, Application No.: 202122638946.9 discloses a high-temperature odor treatment device. This patent is the applicant's prior application. Although it has a simple structure and good sterilization and deodorization effects, there are still areas that need to be improved and enhanced during the use of this device. For example, the odor directly enters the high-temperature deodorization core through a connecting pipe for high-temperature sterilization and deodorization. However, there are particulate impurities and sundries in the odor. In this way, the odor impurities will precipitate in the induction core body, and some will even adhere to the inner walls of the induction core body and the upper connecting pipe due to high temperature. After long-term use, it will affect the high-temperature sterilization and deodorization of the device. Therefore, further improvements are made. Summary of the Invention
[0004] The purpose of the utility model is to solve the problems raised in the above background art and provide a high-temperature odor treatment device with a filtering effect.
[0005] To solve the above technical problems, the technical solution of the present utility model is as follows: A high-temperature odor treatment device with a filtering effect, including a control host, a high-temperature deodorizer, and a cooling pool. The high-temperature deodorizer includes a casing and a high-temperature deodorizing core disposed inside the casing. The high-temperature deodorizing core is respectively connected to the control host and the cooling pool through circuits and pipelines; it also includes a filtering device, which includes a filtering box, a filtering vertical plate, and a filtering horizontal plate. One side of the filtering box is connected and communicated with a circulation fan, and at the same time, the upper side of the filtering box is connected and communicated with the high-temperature deodorizing core inside the casing. Three side ends of the filtering vertical plate are fixedly connected to the side wall of the filtering box, respectively forming a primary filtering chamber and a secondary filtering chamber. Three side ends of the filtering horizontal plate are fixedly connected to the side wall of the filtering box. The filtering horizontal plate is located above the filtering vertical plate and completely blocks the upper part of the primary filtering chamber. A horizontal ventilation gap and a vertical ventilation gap are respectively formed between the filtering horizontal plate and the upper part of the filtering vertical plate and the side wall of the filtering box. The primary filtering chamber and the secondary filtering chamber are communicated through the horizontal ventilation gap, and the secondary filtering chamber is communicated with the space above the filtering horizontal plate through the vertical ventilation gap.
[0006] In the above-mentioned high-temperature odor treatment with a filtering effect, an air inlet is provided on the side surface of the filtering box. The air inlet is correspondingly communicated with the primary filtering chamber and is also connected and communicated with the circulation fan. The air inlet corresponds to the filtering vertical plate and is located below the filtering horizontal plate.
[0007] In the above-mentioned high-temperature odor treatment with a filtering effect, the central axis of the air inlet is perpendicularly arranged with respect to the filtering vertical plate.
[0008] In the above-mentioned high-temperature odor treatment with a filtering effect, the filtering vertical plate and the filtering horizontal plate are arranged in a spatially perpendicular layout.
[0009] In the above-mentioned high-temperature odor treatment with a filtering effect, an upper induction coil and a lower induction coil are provided on the high-temperature deodorizing core. The upper induction coil and the lower induction coil are connected to the control host through induction connectors on them for coil circuits, and the upper induction coil and the lower induction coil are also connected to form a circulating cooling water path with the cooling pool through the induction connectors on them. The induction connectors are fixed on the rear side of the casing.
[0010] In the above-mentioned high-temperature odor treatment with a filtering effect, a mounting plate is provided inside the casing, and temperature sensors corresponding to the upper induction coil and the lower induction coil are respectively provided on the mounting plate. The temperature sensors are electrically connected to the control host.
[0011] The present utility model has the following beneficial effects:
[0012] The utility model can filter the odor entering the high-temperature deodorizer through a filtering device. The design of the filtering vertical plate and the filtering horizontal plate in the filtering device changes the passing path of the odor after entering the filtering box. At the same time, the filtering vertical plate and the filtering horizontal plate cooperate to block and filter the passing odor, so as to filter out the particulate impurities, sundries, etc. in the odor, avoid the problem that impurities and sundries adhere to the inner wall due to high temperature in the high-temperature deodorizing core, and avoid affecting the effect of later high-temperature sterilization and deodorization. The filtered large particulate impurities, sundries, etc. will fall into the filtering box and can be cleaned regularly. BRIEF DESCRIPTION OF THE DRAWINGS
[0013] Figure 1 is the structural diagram of the utility model;
[0014] Figure 2 is the structural diagram of the high-temperature deodorizer in the utility model;
[0015] Figure 3 is the structural diagram of the filtering device 6 in the utility model. DETAILED DESCRIPTION OF THE EMBODIMENTS
[0016] The utility model will be further described in conjunction with the accompanying drawings.
[0017] Please refer to Figures 1 to 3 , the utility model provides a high-temperature odor treatment device with a filtering effect, including a control host 1, a high-temperature deodorizer 2, a cooling pool 3, and a filtering device 6. The high-temperature deodorizer 2 includes a housing 4 and a high-temperature deodorizing core 5 arranged in the housing 4. The high-temperature deodorizing core 5 is respectively connected to the control host 1 and the cooling pool 3 through lines and pipelines. The high-temperature deodorizer 2 is fixed above the filtering device 6.
[0018] The filtering device 6 includes a filtering box 7, a filtering vertical plate 8, and a filtering horizontal plate 9. One side of the filtering box 7 is connected and communicated with a circulation fan. At the same time, the upper side of the filtering box 7 is connected and communicated with the high-temperature deodorizing core 5 in the housing 4. Three side ends of the filtering vertical plate 8 are fixedly connected to the side wall of the filtering box 7, respectively forming a primary filtering chamber 10 and a secondary filtering chamber 11. Three side ends of the filtering horizontal plate 9 are fixedly connected to the side wall of the filtering box 7. The filtering horizontal plate 9 is located above the filtering vertical plate 8 and completely blocks the upper part of the primary filtering chamber 10. Transverse ventilation gaps 12 and vertical ventilation gaps 13 are respectively formed between the filtering horizontal plate 9 and the upper part of the filtering vertical plate 8 and the side wall of the filtering box 7. The primary filtering chamber 10 and the secondary filtering chamber 11 are communicated through the transverse ventilation gap 12, and the secondary filtering chamber 11 is communicated with the space above the filtering horizontal plate 9 through the vertical ventilation gap 13.
[0019] An air inlet 14 is provided on the side of the filtering box 7. The air inlet 14 is correspondingly communicated with the primary filtering chamber 10 and is also connected and communicated with the circulation fan. The air inlet 14 corresponds to the filtering vertical plate 8 and is located below the filtering horizontal plate 9.
[0020] The malodorous gas enters the primary filtration chamber 10 through the air inlet 14. Under the blocking and filtration of the filter vertical plate 8, it will pass upward, and then enter the secondary filtration chamber 11 through the horizontal ventilation gap 12 under the blocking and filtration of the filter horizontal plate 9. Finally, it enters the high-temperature deodorization core 5 through the vertical ventilation gap 13 and the space above the filter horizontal plate 9 for high-temperature sterilization and deodorization. The malodorous gas is blocked and filtered by the filter vertical plate 8 and the filter horizontal plate 9 in the filter box 7, filtering out particulate impurities and sundries in the malodorous gas, avoiding the problem that impurities and sundries adhere to the inner wall due to high temperature in the high-temperature deodorization core, and avoiding affecting the later high-temperature sterilization and deodorization effect. The filtered large particulate impurities and sundries will fall into the filter box and can be cleaned regularly.
[0021] Further, in order to better improve the blocking and filtration effect of the filter vertical plate 8 and the filter horizontal plate 9, the central axis of the air inlet 14 is vertically arranged with respect to the filter vertical plate 8, and the filter vertical plate 8 and the filter horizontal plate 9 are arranged in a space-vertical layout.
[0022] The high-temperature deodorization core 5 is provided with an upper induction coil 15 and a lower induction coil 16. The upper induction coil 15 and the lower induction coil 16 are connected to the control host 1 through the induction connectors 17 on them for coil circuit connection. The induction connectors 17 on the upper induction coil 15 and the lower induction coil 16 respectively have a connection port one 20, a water inlet connection port 21, and a water return connection port 22. The control host 1 is provided with an induction load connector 23, and the induction load connector 23 is provided with a connection port two 24; the upper and lower induction coils are connected to the control host 1 through the connection port one 20 on the induction connector 17 and the connection port two 24 on the induction load connector 23 for circuit connection. The control host 1 controls the operation of the upper and lower induction coils. According to the required working temperature, the temperature of the upper and lower induction coils can reach between 1000 and 1200 degrees;
[0023] The upper induction coil 15 and the lower induction coil 16 are simultaneously connected to the cooling pool 3 through the induction connectors 17 on them to form a circulating cooling water circuit connection. The induction connectors 17 are fixed on the rear side of the machine shell 4. A circulating water pump 25 is arranged in the cooling pool 3. The circulating water pump 25 is connected to the water inlet connection port 21 of the induction connector 17 in the upper induction coil 15 and the lower induction coil 16 through a water distributor 26 for pipeline connection. The water return connection port 22 on the induction connector 17 is connected to the cooling pool 3 through a pipeline; thus, the upper and lower induction coils are connected to the cooling pool 3 through the water inlet connection port 21 and the water return connection port 22 on their respective induction connectors 17 to form a circulating cooling water circuit connection. When the upper and lower induction coils are working, the cooling pool 3 is simultaneously started to cool the upper and lower induction coils by water. The induction load connector 23 of the control host 1 has a heat dissipation water circuit interface 27, and the heat dissipation water circuit interface 27 is connected to the cooling pool 3 through a pipeline, thereby ensuring the heat dissipation work of the control host 1.
[0024] Further, an installation plate 18 is provided inside the casing 4. Temperature sensors 19 corresponding to the upper induction coil 15 and the lower induction coil 16 are respectively provided on the installation plate 18, and the temperature sensors 19 are electrically connected to the control host 1.
[0025] By providing the upper induction coil 15 and the lower induction coil 16 on the high-temperature deodorization core 5, the high-temperature deodorization and sterilization effect of the high-temperature deodorization core 5 can be better guaranteed. At the same time, the provided temperature sensors 19 can monitor the working temperature in real time and adjust it as needed, thus further facilitating the use.
[0026] The above has introduced in detail a high-temperature odor treatment device with a filtering effect provided by an embodiment of the present invention. Specific examples are used in this article to elaborate on the principle and implementation manner of the present invention. The description of the above embodiments is only used to help understand the technical solution disclosed by the present invention; at the same time, for those of ordinary skill in the art, according to the idea of the present invention, there will be changes in the specific implementation manner and application scope. In summary, the content of this specification should not be construed as a limitation of the present invention.
Claims
1. A high-temperature odor treatment device with a filtering effect, comprising a control host (1), a high-temperature deodorizer (2), and a cooling pool (3); the high-temperature deodorizer (2) comprises a housing (4) and a high-temperature deodorizer core (5) disposed in the housing (4); the high-temperature deodorizer core (5) is connected to the control host (1) and the cooling pool (3) through lines and pipelines, respectively; characterized in that: The filter device (6) further comprises a filter box (7), a filter vertical plate (8), and a filter horizontal plate (9). One side of the filter box (7) is connected to the circulating fan, and the upper side of the filter box (7) is connected to the high-temperature deodorizing core (5) in the housing (4). The three side ends of the filter vertical plate (8) are fixedly connected to the side wall of the filter box (7) to form a primary filter cavity (10) and a secondary filter cavity (11), respectively. The three side ends of the filter horizontal plate (9) are fixedly connected to the side wall of the filter box (7). The filter transverse plate (9) is located above the filter vertical plate (8) and completely blocks the first filter cavity (10). A transverse ventilation gap (12) and a vertical ventilation gap (13) are formed between the filter transverse plate (9) and the filter vertical plate (8) and the side wall of the filter box (7). The first filter cavity (10) and the second filter cavity (11) are connected via the transverse ventilation gap (12). The second filter cavity (11) is connected to the space above the filter transverse plate (9) via the vertical ventilation gap (13).
2. The high-temperature odor treatment equipment with filtering effect according to claim 1, characterized in that: The filter box (7) is provided with an air inlet (14) on the side thereof. The air inlet (14) is in communication with the primary filter chamber (10) and is also connected to the circulating fan. The air inlet (14) corresponds to the filter vertical plate (8) and is located below the filter horizontal plate (9).
3. The high-temperature odor treatment equipment with filtering effect according to claim 2, characterized in that: The central axis of the air inlet (14) is arranged perpendicular to the filter vertical plate (8).
4. The high-temperature odor treatment equipment with filtering effect according to claim 2, characterized in that: The vertical filtering plate (8) and the horizontal filtering plate (9) are arranged in a spatial vertical layout.
5. The high-temperature odor treatment equipment with filtering effect according to claim 2, characterized in that: The high-temperature deodorizing core (5) is provided with an upper induction coil (15) and a lower induction coil (16). The upper induction coil (15) and the lower induction coil (16) are connected to the control host (1) through respective induction connectors (17). The upper induction coil (15) and the lower induction coil (16) are also connected to the cooling pool (3) through the induction connectors (17) thereon to form a circulating cooling water circuit. The induction connectors (17) are fixed to the rear side of the housing (4).
6. The high-temperature odor treatment equipment with filtering effect according to claim 5, characterized in that: A mounting plate (18) is provided in the housing (4), and temperature sensors (19) corresponding to the upper induction coil (15) and the lower induction coil (16) are provided on the mounting plate (18), respectively. The temperature sensors (19) are connected to the control host (1) circuit.
Citation Information
Patent Citations
High-temperature odor treatment equipment
CN216295674U