CN213049987U - Air processor - Google Patents
Air processor Download PDFInfo
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- CN213049987U CN213049987U CN202021777709.XU CN202021777709U CN213049987U CN 213049987 U CN213049987 U CN 213049987U CN 202021777709 U CN202021777709 U CN 202021777709U CN 213049987 U CN213049987 U CN 213049987U
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- dust collecting
- collecting plate
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- air
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Abstract
The utility model relates to an air treatment, air purification field especially relate to an air processor. The structure is exquisite and can effectively purify air. Comprises a casing; the dust collector is characterized in that the inner cavity of the machine shell is divided into a left partition and a right partition by a partition, wherein the bottoms of the left partition and the right partition are communicated and used as a dust collecting bin. The left subarea is sequentially provided with an air inlet machine, a first electrostatic dust collecting plate and a second electrostatic dust collecting plate from top to bottom. The right subarea is sequentially provided with a draught fan, a filtering area II, a sterilizing area and a filtering area I from top to bottom.
Description
Technical Field
The utility model relates to an air treatment, air purification field especially relate to an air processor.
Background
There are a large number of contaminants in the air: carbon monoxide, sulfur dioxide, nitrogen dioxide, PM10, PM2.5 particulate matter contamination (also known as particulate matter). Has effects on respiratory system, and is liable to cause asthma, decrease lung function and cause lung diseases. In addition, the long-term effects of pollutants can impair respiratory defense functions, which can induce various respiratory diseases. Therefore, the air processor is urgently needed to appear, is suitable for both household and commercial use, avoids the harm to life caused by air pollution, and reduces the danger.
Disclosure of Invention
Aiming at the defects in the prior art, the invention provides the air processor which is exquisite in structure and can effectively purify air.
In order to achieve the purpose, the invention adopts the following technical scheme that the device comprises a shell; the dust collector is characterized in that the inner cavity of the machine shell is divided into a left partition and a right partition by a partition, wherein the bottoms of the left partition and the right partition are communicated and used as a dust collecting bin.
The left subarea is sequentially provided with an air inlet machine, a first electrostatic dust collecting plate (electrostatic dust collecting filter screen) and a second electrostatic dust collecting plate from top to bottom;
the right subarea is sequentially provided with a draught fan, a filtering area II, a sterilizing area and a filtering area I from top to bottom.
Further, the casing top is provided with solar panel, is provided with the battery that links to each other with solar panel in the casing, the battery links to each other with air inlet machine and draught fan as stand-by power supply.
Furthermore, an air inlet is formed in the side wall of the left partition corresponding to the air inlet fan; an air outlet is formed in the side wall of the right partition corresponding to the induced draft fan; and the air inlet machine and the induced draft fan are connected with an external power supply.
Furthermore, the filter pore diameter of the first electrostatic dust collecting plate is larger than that of the second electrostatic dust collecting plate, the first electrostatic dust collecting plate is obliquely arranged in the left subarea, and the second electrostatic dust collecting plate is obliquely arranged in the left subarea.
Furthermore, the head end of the first electrostatic dust collecting plate is connected with the side wall of the machine shell, and the tail end of the first electrostatic dust collecting plate is a free end; and the head end is higher than the tail end; the first electrostatic dust collecting plate forms a certain angle with the side wall of the housing.
Furthermore, the head end of the second electrostatic dust collecting plate is connected with the partition plate, and the tail end of the second electrostatic dust collecting plate is a free end; and the head end is higher than the tail end; the second electrostatic dust collecting plate and the partition plate form a certain included angle; the free end of the first electrostatic precipitator plate is not in contact with the second electrostatic precipitator plate.
Furthermore, the filtering area I comprises a coarse mechanical filter screen and a fine mechanical filter screen which are arranged from bottom to top in sequence; the diameter of the meshes of the coarse mechanical filter screen is larger than that of the meshes of the fine mechanical filter screen.
Further, the sterilization zone comprises an ultraviolet sterilization chamber.
Furthermore, the sterilization area comprises an electrostatic sterilization plate and an ultraviolet sterilization bin (ultraviolet sterilization lamp) which are arranged from bottom to top in sequence.
Furthermore, the filtering area two comprises a sodium hydroxide layer, a first melt-blown composite filter material layer, an activated carbon filtering layer and a second melt-blown composite filter material layer which are sequentially arranged from bottom to top.
Compared with the prior art, the invention has the beneficial effects.
The utility model discloses in the structure, through inside the air intake machine inputs the air into air handler. Firstly, the static dust collecting device is used for carrying out preliminary collection, then the multilayer filter element is used for carrying out further filtration and sterilization, and finally the good air is sent out through the air outlet machine. Can achieve good air purification effect.
Drawings
The invention is further described with reference to the following figures and detailed description. The scope of the invention is not limited to the following expressions.
Fig. 1 is a schematic view of the overall structure of the present invention.
Detailed Description
As shown in fig. 1, the present invention includes a housing; the dust collector is characterized in that the inner cavity of the machine shell is divided into a left partition and a right partition by a partition, wherein the bottoms of the left partition and the right partition are communicated and used as a dust collecting bin.
The left subarea is sequentially provided with an air inlet machine 3, a first electrostatic dust collecting plate 5 (electrostatic dust collecting filter screen) and a second electrostatic dust collecting plate 6 from top to bottom.
The right subarea is sequentially provided with a draught fan 16, a filtering area II, a sterilizing area and a filtering area I from top to bottom.
The casing top is provided with solar panel 1, is provided with the battery 2 that links to each other with solar panel 1 in the casing, battery 2 links to each other with air inlet machine 3 and draught fan 16 as stand-by power supply.
An air inlet 4 is formed in the side wall of the left partition corresponding to the air inlet fan 3; an air outlet 15 is formed in the position, corresponding to the induced draft fan 16, of the side wall of the right partition; and the air inlet fan 3 and the induced draft fan 16 are connected with an external power supply 17.
The filter aperture of the first electrostatic dust collecting plate 5 is larger than that of the second electrostatic dust collecting plate 6, the first electrostatic dust collecting plate 5 is obliquely arranged in the left partition, and the second electrostatic dust collecting plate 6 is obliquely arranged in the left partition.
The head end of the first electrostatic dust collecting plate 5 is connected with the side wall of the machine shell, and the tail end of the first electrostatic dust collecting plate 5 is a free end; and the head end is higher than the tail end; the first electrostatic dust collecting plate 5 forms a certain angle with the side wall of the housing.
The head end of the second electrostatic dust collecting plate 6 is connected with the partition plate, and the tail end of the second electrostatic dust collecting plate 6 is a free end; and the head end is higher than the tail end; the second electrostatic dust collecting plate 6 and the partition plate form a certain included angle; the free end of the first electrostatic precipitator plate 5 is not in contact with the second electrostatic precipitator plate 6. Thus, wind enters the left subarea from the air inlet 4 and passes through the first electrostatic dust collecting plate 5 and the second electrostatic dust collecting plate 6 in sequence, so that the wind speed is reduced except for primary dust removal; is more beneficial to subsequent dust falling and subsequent full filtration.
The filtering area comprises a coarse mechanical filter screen 7 and a fine mechanical filter screen 8 which are arranged from bottom to top in sequence; the mesh diameter of the coarse mechanical filter screen 7 is larger than that of the fine mechanical filter screen 8. The lateral wall of right subregion is provided with the border, and mechanical filter screen places on the border of lateral wall can.
The sterilization zone includes an ultraviolet sterilization chamber 10.
The sterilization area comprises an electrostatic sterilization plate 9 and an ultraviolet sterilization chamber 10 which are arranged from bottom to top in sequence.
The electrostatic sterilizing plate 9 adopts an electrostatic dust removing and sterilizing device with the patent application number of CN201520118362.0 or other commercial electrostatic dust removing equipment. Here, the description is omitted for the prior art.
The second filtering area comprises a calcium hydroxide layer 11, a first melt-blown composite filter material layer 12, an activated carbon filtering layer 13 and a second melt-blown composite filter material layer 14 which are sequentially arranged from bottom to top.
Specifically, the air inlet fan 3 and the induced draft fan 16 are essential accessories at the core of the air treatment device, and mainly function to control the air to circulate. The air with pollutants is sucked in and then filtered, and then clean air is blown out.
The aim of purifying air is achieved, the aimed pollution sources are different, and the filtering principle is different. Wherein, the first filtering area is used for filtering particles and comprises a coarse mechanical filter screen 7 and a fine mechanical filter screen 8, so that the secondary filtering of the particles is realized. The filter screen can directly intercept larger particles, fibers and other pollutants with the particle size of more than 10 microns. While the remaining filtration constitutes an organic filtration. In electrostatic dust collection: the gas is ionized by a high-voltage electrostatic field, so that the smaller dust particles of about 5 microns are electrically adsorbed on the electrode for collection. Can filter dust, smoke and bacteria with a ratio of less than 2.5 microns. Electrostatic sterilization: can instantly and completely kill bacteria and viruses attached to dust. Ultraviolet disinfection: an independent disinfection cabin is separately opened up in the machine for disinfection and sterilization by using an ultraviolet lamp, and the harm of the human body receiving ultraviolet radiation for a long time is avoided. Filtering with activated carbon: the activated carbon is subjected to chemical treatment and the microporous structure of the activated carbon adsorbs the macromolecular pollutants. So that the adsorbed gas reacts with the chemical components to achieve the adsorption effect.
It should be understood that the detailed description of the present invention is only for illustrating the present invention and is not limited by the technical solutions described in the embodiments of the present invention, and those skilled in the art should understand that the present invention can be modified or substituted equally to achieve the same technical effects; as long as the use requirements are met, the method is within the protection scope of the invention.
Claims (10)
1. An air handler including a housing; the dust collector is characterized in that the inner cavity of the machine shell is divided into a left subarea and a right subarea by a partition plate, wherein the bottoms of the left subarea and the right subarea are communicated and used as dust collecting bins;
the left subarea is sequentially provided with an air inlet machine, a first electrostatic dust collecting plate and a second electrostatic dust collecting plate from top to bottom;
the right subarea is sequentially provided with a draught fan, a filtering area II, a sterilizing area and a filtering area I from top to bottom.
2. The air handler of claim 1, wherein: the casing top is provided with solar panel, is provided with the battery that links to each other with solar panel in the casing, the battery links to each other with air inlet machine and draught fan as stand-by power supply.
3. The air handler of claim 1, wherein: an air inlet is formed in the side wall of the left partition and corresponds to the air inlet fan; an air outlet is formed in the side wall of the right partition corresponding to the induced draft fan; and the air inlet machine and the induced draft fan are connected with an external power supply.
4. The air handler of claim 1, wherein: the filter aperture of the first electrostatic dust collecting plate is larger than that of the second electrostatic dust collecting plate, the first electrostatic dust collecting plate is obliquely arranged in the left subarea, and the second electrostatic dust collecting plate is obliquely arranged in the left subarea.
5. The air handler of claim 4, wherein: the head end of the first electrostatic dust collecting plate is connected with the side wall of the shell, and the tail end of the first electrostatic dust collecting plate is a free end; and the head end is higher than the tail end; the first electrostatic dust collecting plate forms a certain angle with the side wall of the housing.
6. The air handler of claim 4, wherein: the head end of the second electrostatic dust collecting plate is connected with the partition plate, and the tail end of the second electrostatic dust collecting plate is a free end; and the head end is higher than the tail end; the second electrostatic dust collecting plate and the partition plate form a certain included angle; the free end of the first electrostatic precipitator plate is not in contact with the second electrostatic precipitator plate.
7. The air handler of claim 1, wherein: the filtering area comprises a thick mechanical filter screen and a thin mechanical filter screen which are arranged from bottom to top in sequence; the diameter of the meshes of the coarse mechanical filter screen is larger than that of the meshes of the fine mechanical filter screen.
8. The air handler of claim 1, wherein: the sterilization area comprises an ultraviolet sterilization bin.
9. The air handler of claim 1, wherein: the sterilization area comprises an electrostatic sterilization plate and an ultraviolet sterilization bin which are sequentially arranged from bottom to top.
10. The air handler of claim 1, wherein: and the filtering area II comprises a sodium hydroxide layer, a first melt-blown composite filter material layer, an activated carbon filtering layer and a second melt-blown composite filter material layer which are sequentially arranged from bottom to top.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202021777709.XU CN213049987U (en) | 2020-08-24 | 2020-08-24 | Air processor |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202021777709.XU CN213049987U (en) | 2020-08-24 | 2020-08-24 | Air processor |
Publications (1)
Publication Number | Publication Date |
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CN213049987U true CN213049987U (en) | 2021-04-27 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202021777709.XU Active CN213049987U (en) | 2020-08-24 | 2020-08-24 | Air processor |
Country Status (1)
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CN (1) | CN213049987U (en) |
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2020
- 2020-08-24 CN CN202021777709.XU patent/CN213049987U/en active Active
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