Low-carbon-emission fresh air device for building

By introducing a multi-layer filtration and temperature regulation structure into the fresh air device, the problem of the existing device being unable to adjust the temperature is solved, air purification and energy efficiency are improved, the temperature and humidity of the indoor environment are optimized, and living comfort is improved.

CN223360802UActive Publication Date: 2025-09-19NORTH CHINA UNIVERSITY OF SCIENCE AND TECHNOLOGY
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Patent Information

Application Number
CN202422822441.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-19
Publication Date
2025-09-19
Estimated Expiration
2034-11-19

AI Technical Summary

Technical Problem

Existing low-carbon emission fresh air devices in buildings cannot adjust the temperature according to needs, resulting in increased energy consumption, failure to optimize indoor temperature and humidity, and reduced living comfort.

Method used

A fresh air device was designed, which includes a supporting and shaping outer box, an assembled filter component and a low-carbon emission component. It uses a multi-layer filter structure and a temperature regulation mechanism to purify the air and regulate the air temperature and humidity through multi-layer filtration, thereby reducing energy consumption and carbon emissions.

Benefits of technology

It achieves multi-layer filtration of air and stable temperature regulation, ensuring fresh indoor air, providing sufficient oxygen, improving energy efficiency, reducing energy consumption and carbon emissions, optimizing indoor temperature and humidity, and improving living comfort.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the field of fresh air discharging devices, in particular to a building low-carbon-emission fresh air device which comprises a supporting shaping outer box, an assembling filtering assembly used for filtering air and a low-carbon-emission assembly used for conducting low-carbon-emission on the air, and the assembling filtering assembly is assembled in the supporting shaping outer box in a clamped mode. A low-carbon emission assembly is arranged at the side end part of the assembled filtering assembly, and the assembled filtering assembly comprises an air inlet groove hole, an air outlet groove hole, a protective frame, a suction fan, a welding placement frame, a water tank, an assembled replacement box, a lifting handle, a first assembling frame, curved filter paper and a second assembling frame; an air inlet groove hole is formed in the bottom end part in the supporting and shaping outer box; the air multi-layer filtering structure is utilized, outdoor fresh air is introduced, multi-layer filtering is carried out on the air, pollutants in the air are removed, the air is purified, enough oxygen is provided, and heat of exhausted air preheats or precools the entering fresh air through the temperature stability adjusting mechanism.
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Description

Technical Field

[0001] The utility model relates to the field of fresh air emission devices, in particular to a low-carbon fresh air emission device for buildings. Background Art

[0002] A low-carbon emission fresh air device for buildings is an environmentally friendly device used for indoor air circulation. It aims to improve indoor air quality while reducing energy consumption and carbon emissions. It is crucial to improving indoor air quality, enhancing living comfort and reducing energy consumption, and helps achieve sustainable development goals.

[0003] However, most of the existing low-carbon emission fresh air devices in buildings only have a structure for filtering the air during use, and cannot stably adjust the temperature according to needs, resulting in increased energy consumption, failure to optimize indoor temperature and humidity, and reduced living comfort.

[0004] Therefore, in view of the fact that the above-mentioned low-carbon emission fresh air device for buildings cannot stably adjust the temperature as needed, a low-carbon emission fresh air device for buildings can be designed, which uses a temperature adjustment structure to optimize indoor temperature and humidity and improve living comfort. Utility Model Content

[0005] In order to overcome the problem that the building's low-carbon emission fresh air device cannot stably adjust the temperature according to needs, resulting in increased energy consumption, failure to optimize indoor temperature and humidity, and reduced living comfort.

[0006] The technical solution of the utility model is: a low-carbon emission fresh air device for a building, comprising a supporting and shaping outer box, an assembled filter component for filtering the air and a low-carbon emission component for low-carbon emission of the air, the assembled filter component is assembled and snap-fitted inside the supporting and shaping outer box; the low-carbon emission component is provided at the side end of the assembled filter component, the assembled filter component comprises an air inlet slot, an air outlet slot, a protective frame, an exhaust fan, a welding placement frame, a water tank, an assembly replacement box, a handle, a first assembly rack, a curved filter paper, and a second assembly rack; the bottom end inside the supporting and shaping outer box is provided with an air inlet slot.

[0007] Preferably, a multi-layer air filtration structure is used to introduce fresh outdoor air, perform multi-layer filtration on the air, remove pollutants in the air, purify the air, ensure fresh indoor air, provide sufficient oxygen, and use a temperature stabilization and regulation mechanism to preheat or precool the incoming fresh air with the heat of the exhaust air, thereby improving energy efficiency, reducing energy consumption and carbon emissions, better regulating indoor temperature and humidity, and improving the comfort of the living environment.

[0008] Preferably, an air outlet slot is provided at the bottom end of the inner side of the supporting and shaping outer box; a protective frame is mounted on the inner side of the supporting and shaping outer box; and an air suction fan is provided inside the protective frame.

[0009] Preferably, a welding placement frame is positioned and welded at the lower end of the support-shaped outer box; a water tank is placed at a limited position inside the welding placement frame; an assembly replacement box is placed at a limited position inside the support-shaped outer box; and a handle is provided at the upper end of the assembly replacement box.

[0010] Preferably, a first assembly rack is fixedly installed inside the assembly replacement box; curved filter paper is arranged inside the first assembly rack; and a second assembly rack is fixedly installed inside the assembly replacement box.

[0011] Preferably, the low-carbon emission component includes a fine filter plate, an activated carbon filter plate, a deodorizing plate, a negative ion filter plate, an anti-static plate, an assembly plate, an anti-backflow pipe, a guide box, an ultraviolet disinfection lamp, and a grille; a fine filter plate is snap-fitted and installed inside the second assembly rack.

[0012] Preferably, an activated carbon filter plate is mounted inside the second assembly rack; a deodorizing plate is mounted inside the second assembly rack; a negative ion filter plate is mounted inside the second assembly rack; and an antistatic plate is mounted inside the second assembly rack.

[0013] Preferably, an assembly plate is snap-fitted into the bottom end of the assembly replacement box; an anti-backflow pipe is provided inside the assembly plate; a guide box is provided inside the supporting shaping outer box; an ultraviolet disinfection lamp is fixedly connected inside the guide box; and a grille is snap-fitted into the supporting shaping outer box.

[0014] Beneficial effects of the utility model:

[0015] 1. This new model uses a multi-layer air filtration structure to introduce fresh air from outside, performs multi-layer filtration on the air, removes pollutants in the air, purifies the air, ensures fresh indoor air, provides sufficient oxygen, and uses a temperature stabilization and adjustment mechanism to preheat or precool the incoming fresh air with the heat of the exhaust air, thereby improving energy efficiency, reducing energy consumption and carbon emissions, better regulating indoor temperature and humidity, and improving the comfort of the living environment. BRIEF DESCRIPTION OF THE DRAWINGS

[0016] Figure 1 What is shown is a schematic diagram of the overall structure of the utility model;

[0017] Figure 2 Shown is a schematic diagram of the suction fan structure of the present utility model;

[0018] Figure 3 Shown is a schematic diagram of the curved filter paper structure of the present utility model;

[0019] Figure 4Shown is a schematic diagram of the low-carbon emission component structure of the present utility model.

[0020] Explanation of the reference numerals: 1. Support and shaping outer box; 201. Air inlet slot; 202. Air outlet slot; 203. Protective frame; 204. Suction fan; 205. Welding placement frame; 206. Water tank; 207. Assembly and replacement box; 208. Handle; 209. First assembly rack; 210. Curved filter paper; 211. Second assembly rack; 401. Fine filter plate; 402. Activated carbon filter plate; 403. Deodorizing plate; 404. Negative ion filter plate; 405. Anti-static plate; 406. Assembly plate; 407. Anti-backflow pipe; 408. Diversion box; 409. Ultraviolet disinfection lamp; 410. Grille. DETAILED DESCRIPTION

[0021] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0022] See also Figures 1-4 The utility model provides an embodiment: a low-carbon emission fresh air device for a building, comprising a supporting and shaping outer box 1, an assembled filter component for filtering air and a low-carbon emission component for low-carbon emission of the air, the supporting and shaping outer box 1 is internally assembled with an assembled filter component; a low-carbon emission component is provided at the side end of the assembled filter component, the assembled filter component comprises an air inlet slot 201, an air outlet slot 202, a protective frame 203, an air suction fan 204, a welding placement frame 205, a water tank 206, an assembled replacement box 207, and a handle 208 , a first assembly rack 209, a curved filter paper 210, and a second assembly rack 211; an air inlet slot 201 is provided at the bottom end of the inner supporting shaping outer box 1, and an air multi-layer filtration structure is used to introduce fresh air from outdoors, perform multi-layer filtration on the air, remove pollutants in the air, purify the air, ensure fresh indoor air, provide sufficient oxygen, and utilize a temperature stabilization regulating mechanism to preheat or precool the incoming fresh air with the heat of the exhaust air, thereby improving energy efficiency, reducing energy consumption and carbon emissions, better regulating indoor temperature and humidity, and improving the comfort of the living environment.

[0023] See also Figure 2-Figure 3In this embodiment, an air outlet slot 202 is provided at the bottom end of the supporting and shaping outer box 1; a protective frame 203 is mounted on the inside of the supporting and shaping outer box 1; a suction fan 204 is provided inside the protective frame 203; a welding placement frame 205 is positioned and welded at the lower end of the supporting and shaping outer box 1; a water tank 206 is placed in a limited position inside the welding placement frame 205; an assembly replacement box 207 is placed in a limited position inside the supporting and shaping outer box 1; a handle 208 is provided on the upper end of the assembly replacement box 207, and a first assembly rack 209 is fixedly installed inside the assembly replacement box 207; a curved filter paper 210 is provided inside the first assembly rack 209; A second assembly rack 211 is fixedly installed inside the assembly replacement box 207. The suction fan 204 in the protective frame 203 is started to introduce external air, allowing the air to enter the curved filter paper 210 in the first assembly rack 209 in the assembly replacement box 207, thereby increasing the contact area between the air and the filter paper and filtering impurities in the air. The gas then passes through the fine filter plate 401, activated carbon filter plate 402, deodorizing plate 403, negative ion filter plate 404 and anti-static plate 405 in the second assembly rack 211 in turn, thereby performing multiple filtrations on the air and purifying the air to ensure fresh indoor air and provide sufficient oxygen.

[0024] See also Figure 4 In this embodiment, the low carbon emission components include a fine filter plate 401, an activated carbon filter plate 402, a deodorizing plate 403, a negative ion filter plate 404, an anti-static plate 405, an assembly plate 406, an anti-backflow pipe 407, a guide box 408, an ultraviolet disinfection lamp 409, and a grille 410; the fine filter plate 401 is mounted on the inside of the second assembly rack 211, and the activated carbon filter plate 402 is mounted on the inside of the second assembly rack 211; the deodorizing plate 403 is mounted on the inside of the second assembly rack 211; the negative ion filter plate 404 is mounted on the inside of the second assembly rack 211; the anti-static plate 405 is mounted on the inside of the second assembly rack 211, and the assembly replacement box 207 is assembled. An assembly plate 406 is snap-fitted on the inner bottom end portion; an anti-backflow pipe 407 is provided inside the assembly plate 406; a guide box 408 is provided inside the support shaping outer box 1; an ultraviolet disinfection lamp 409 is fixedly connected inside the guide box 408; a grille 410 is snap-fitted on the inner portion of the support shaping outer box 1, so that the gas enters the water tank 206 from the anti-backflow pipe 407 in the assembly plate 406, which can preheat or precool the incoming fresh air with the heat of the exhaust air, thereby improving energy efficiency. The air enters the guide box 408, where it is disinfected by the ultraviolet disinfection lamp 409, thereby reducing energy consumption and carbon emissions, better regulating indoor temperature and humidity, and improving the comfort of the living environment.

[0025] During operation, the suction fan 204 in the protective frame 203 is started to introduce external air, so that the air enters the curved filter paper 210 in the first assembly rack 209 in the assembly replacement box 207, increases the contact area between the air and the filter paper, and filters the impurities in the air. Then the gas passes through the fine filter plate 401, activated carbon filter plate 402, deodorizing plate 403, negative ion filter plate 404 and anti-static plate 405 in the second assembly rack 211 in turn, which can perform multiple filtrations on the air and purify the air to ensure fresh indoor air and provide sufficient oxygen. The gas enters the water tank 206 from the anti-backflow pipe 407 in the assembly plate 406, which can preheat or precool the incoming fresh air with the heat of the exhaust air, thereby improving energy efficiency. The air enters the guide box 408, where it is disinfected by the ultraviolet disinfection lamp 409, reducing energy consumption and carbon emissions, better regulating indoor temperature and humidity, and improving the comfort of the living environment.

[0026] Through the above steps, the air multi-layer filtration structure is used to introduce fresh air from outside, and the air is filtered in multiple layers to remove pollutants in the air and purify the air to ensure fresh indoor air and provide sufficient oxygen. The temperature stabilization and regulation mechanism is used to preheat or precool the incoming fresh air with the heat of the exhaust air, thereby improving energy efficiency, reducing energy consumption and carbon emissions, better regulating indoor temperature and humidity, and improving the comfort of the living environment.

Claims

1. A low-carbon fresh air emission device for a building, comprising a supporting and shaping outer box (1); characterized in that: The invention also includes an assembled filter component for filtering air and a low-carbon emission component for low-carbon emission of air. The assembled filter component is assembled and engaged inside the supporting and shaping outer box (1); the low-carbon emission component is provided at the side end of the assembled filter component. The assembled filter component includes an air inlet slot (201), an air outlet slot (202), a protective frame (203), a suction fan (204), a welding placement frame (205), a water tank (206), an assembled replacement box (207), a handle (208), a first assembly rack (209), a curved filter paper (210), and a second assembly rack (211); and the bottom end of the supporting and shaping outer box (1) is provided with an air inlet slot (201).

2. A low-carbon fresh air emission device for buildings according to claim 1, characterized in that: An air outlet slot (202) is provided at the bottom end of the supporting and shaping outer box (1); a protective frame (203) is mounted in the supporting and shaping outer box (1); and a suction fan (204) is provided in the protective frame (203).

3. A low-carbon fresh air emission device for buildings according to claim 2, characterized in that: A welding placement frame (205) is positioned and welded at the lower end of the support-shaped outer box (1); a water tank (206) is positioned and placed inside the welding placement frame (205); an assembly replacement box (207) is positioned and placed inside the support-shaped outer box (1); and a handle (208) is provided at the upper end of the assembly replacement box (207).

4. A low-carbon fresh air emission device for buildings according to claim 3, characterized in that: A first assembly rack (209) is fixedly installed inside the assembly replacement box (207); curved filter paper (210) is provided inside the first assembly rack (209); and a second assembly rack (211) is fixedly installed inside the assembly replacement box (207).

5. The low-carbon fresh air emission device for buildings according to claim 4, characterized in that: The low-carbon emission component comprises a fine filter plate (401), an activated carbon filter plate (402), a deodorizing plate (403), a negative ion filter plate (404), an anti-static plate (405), an assembly plate (406), an anti-backflow pipe (407), a flow guide box (408), an ultraviolet disinfection lamp (409), and a grille (410); the fine filter plate (401) is mounted inside the second assembly rack (211).

6. The low-carbon fresh air emission device for buildings according to claim 1, characterized in that: An activated carbon filter plate (402) is mounted in the interior of the second assembly rack (211); a deodorizing plate (403) is mounted in the interior of the second assembly rack (211); a negative ion filter plate (404) is mounted in the interior of the second assembly rack (211); and an antistatic plate (405) is mounted in the interior of the second assembly rack (211).

7. The low-carbon fresh air emission device for buildings according to claim 6, characterized in that: An assembly plate (406) is snap-fitted and installed at the bottom end of the assembly replacement box (207); an anti-backflow pipe (407) is provided inside the assembly plate (406); a flow guide box (408) is provided inside the support and shaping outer box (1); an ultraviolet disinfection lamp (409) is fixedly connected inside the flow guide box (408); and a grille (410) is snap-fitted and installed inside the support and shaping outer box (1).