Air uniformizing device for organic waste gas treatment
By designing air balancing components and filter components, the problem of uneven exhaust gas distribution is solved, stable and uniform exhaust gas distribution and consistency of treatment effect are achieved, equipment life is extended, and operating and maintenance costs are reduced.
Patent Information
- Application Number
- CN202422968422.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-03
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2034-12-03
AI Technical Summary
The uneven distribution of waste gas in traditional organic waste gas treatment systems leads to over- or under-treatment in some areas, affecting the overall treatment effect and equipment life.
The air distribution component and the filter component are used. The air distribution component realizes the uniform distribution of the exhaust gas through the processing plate and the air duct design. The filter component filters the particulate matter through the filter plate to ensure that the exhaust gas enters the treatment system stably.
It achieves stable and uniform distribution of exhaust gas, improves the consistency of treatment effect, extends equipment life, and reduces operating and maintenance costs.
Smart Images

Figure CN223439424U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to organic waste gas treatment equipment technical field especially relates to a kind of wind uniformizing device for organic waste gas treatment. BACKGROUND
[0002] In modern industrial production and human activities, a large amount of organic waste gas is discharged into the atmosphere. These organic waste gas mainly comes from chemical industry, pharmaceutical, printing, painting, electronics and other industries. On the one hand, harmful substances in organic waste gas can cause damage to the respiratory system, nervous system, immune system and other systems of human body, and cause various diseases. On the other hand, organic waste gas is also one of the important reasons for causing air pollution, photochemical smog, ozone layer destruction and other environmental problems. In the process of organic waste gas treatment, it is very important to ensure the uniform distribution of waste gas to improve the treatment efficiency and effect. In the traditional waste gas treatment system, the entry of waste gas is often uneven, which may lead to over-treatment in some areas and under-treatment in other areas, thereby affecting the overall treatment performance. SUMMARY
[0003] In view of the deficiencies of the prior art, the utility model provides a kind of wind uniformizing device for organic waste gas treatment to solve the technical problem that waste gas distribution unevenly affects the treatment effect proposed in the above background.
[0004] To solve the above technical problems, the utility model provides the following technical scheme: a kind of wind uniformizing device for organic waste gas treatment, including outer plate, the outer plate is provided with the wind uniformizing component for treating waste gas, the outer plate is provided with the filter component for filtering waste gas;
[0005] The wind uniformizing component includes a treatment plate with an inner cavity fixedly installed on the outer plate, the treatment plate is connected with an air inlet, the treatment plate is provided with a horizontal air outlet symmetrically along the length of both ends, the treatment plate is provided with a vertical air outlet symmetrically along the width of both ends, and the treatment plate is fixedly connected with an air duct connected with the horizontal air outlet and the vertical air outlet.
[0006] Preferably, the horizontal air outlet includes a first area and a second area arranged and distributed in sequence along the length direction thereof, and a third area, the first area and the second area, and the third area are uniformly distributed with a plurality of first air outlets in horizontal and vertical directions.
[0007] Preferably, the vertical air outlet includes a plurality of second air outlets arranged along the length direction thereof.
[0008] Preferably, the air duct comprises a main channel fixedly installed in the treatment plate and communicated with the air inlet, the first air outlet and the second air outlet symmetrically arranged in Z shape are communicated and installed on the main channel, the third air outlet in 1 shape is communicated and installed on the main channel, the first connecting block in trapezoidal cross section is fixedly connected at the end of the first air outlet, the second air outlet and the third air outlet, and the first connecting block is located at the center of the first connecting block.
[0009] Preferably, the first connecting block is communicated with the first region, the second region and the third region respectively, the first connecting block is matched with the total size of the first air outlet, and the height of the second air outlet is smaller than that of the first air outlet.
[0010] Preferably, the fourth air outlet in Z shape is communicated and installed on the first air outlet, the second connecting block in trapezoidal cross section is fixedly connected at the end of the main channel and the fourth air outlet, the second connecting block is matched with the size of the second air outlet, and the end of the fourth air outlet is located at the center of the second connecting block.
[0011] Preferably, the filter assembly comprises an installation shell detachably installed on the air inlet, a first filter plate is fixedly installed in the installation shell, a plurality of first filter holes are uniformly distributed on the first filter plate in horizontal and vertical directions, a second filter plate is fixedly installed on one side of the first filter plate in the installation shell, and a plurality of second filter holes are uniformly distributed on the second filter plate in horizontal and vertical directions.
[0012] Preferably, the installation shell is located at the front end of the air inlet, and the diameter of the second filter hole is smaller than that of the first filter hole.
[0013] Compared with the prior art, the beneficial effects of the utility model are:
[0014] 1、The air equalizing assembly can treat the organic waste gas to make it enter the treatment system stably and uniformly, avoid the fluctuation of treatment effect, and ensure the consistency of treatment effect.
[0015] 2, the utility model discloses a filter assembly can be filtered to organic waste gas, make filter equipment reduce the damage of particulate matter to the air distribution assembly in the long -term operation, protect the structural integrity and performance of air distribution assembly. Avoid affecting its guiding effect to the airflow. The filtered waste gas can avoid taking the impurity into the treatment equipment, prevent the blockage, guarantee the stable operation of treatment equipment. Reduce the damage of particulate matter to the whole treatment system equipment, thereby prolong the maintenance cycle of equipment. Reduce the repair cost. BRIEF DESCRIPTION OF DRAWINGS
[0016] The drawings described herein are used to provide further understanding of the present application, and form a part of the present application. The illustrative embodiments of the present application and their descriptions are used to explain the present application, and do not constitute improper limitations on the present application. In the drawings:
[0017] Figure 1 It is the structure schematic view of air distribution device for organic waste gas treatment of the utility model;
[0018] Figure 2 It is the structure schematic view of air distribution assembly of the utility model;
[0019] Figure 3 It is the section view of processing plate of the utility model;
[0020] Figure 4 It is the structure schematic view of filter assembly of the utility model.
[0021] In the drawing: 1, outer plate;
[0022] 2, air distribution assembly; 21, processing plate; 22, air inlet; 23, horizontal air outlet; 231, first area; 232, second area; 233, third area; 234, first air outlet hole; 24, vertical air outlet; 241, second air outlet hole; 25, air duct; 251, main channel; 252, first air outlet; 253, second air outlet; 254, third air outlet; 255, first connecting block; 256, fourth air outlet; 257, second connecting block;
[0023] 3, filter assembly; 31, installation shell; 32, first filter plate; 33, first filter hole; 34, second filter plate; 35, second filter hole. DETAILED DESCRIPTION
[0024] The technical solutions in the embodiments of the utility model will be described clearly and completely in combination with the drawings in the embodiments of the utility model. Obviously, the described embodiments are only part of the embodiments of the utility model, not all the embodiments. Based on the embodiments in the utility model, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the utility model.
[0025] In order to solve the problem that uneven distribution of waste gas affects the treatment effect, please refer to Figures 1-4 The organic waste gas treatment air equalization device provided by the embodiment can treat organic waste gas so that it can enter the treatment system stably and uniformly, avoid treatment effect fluctuation, and ensure the consistency of treatment effect. The device comprises an outer plate 1 located in a treatment processing area, the outer plate 1 is provided with an air equalization assembly 2 for treating waste gas, and the outer plate 1 is provided with a filtering assembly 3 for filtering waste gas. Before treating the waste gas, the filtering assembly 3 is installed on the air equalization assembly 2 to filter and treat the organic waste gas, reduce the damage of particulate matter to the air equalization assembly 2, and protect the structural integrity and performance of the air equalization assembly 2. Avoid affecting its guiding effect on the airflow. Then connect the air equalization assembly 2 to the source of organic waste gas, treat the organic waste gas so that it can enter the treatment system stably and uniformly, avoid treatment effect fluctuation, and ensure the consistency of treatment effect. Air equalization treatment can disperse airflow, make each part of the equipment bear relatively uniform load, reduce local excessive wear and tear, and prevent equipment damage caused by local overheating or corrosion.
[0026] In the traditional waste gas treatment system, the entry of waste gas is often uneven, which may lead to over-treatment in some areas and under-treatment in other areas, affecting the overall treatment performance. Therefore, it is necessary to evenly distribute the organic waste gas. The uniform wind assembly 2 includes a treatment plate 21 fixedly installed on the outer plate 1 with an inner cavity, and a wind inlet 22 is installed in communication on the treatment plate 21, which is used to introduce waste gas into the air duct 25. The treatment plate 21 is symmetrically provided with a transverse air outlet 23 at both ends along the length, which includes a first area 231 and a second area 232 arranged in sequence along the length direction, and a third area 233, and a plurality of first air outlets 234 are uniformly distributed in the first area 231, the second area 232, and the third area 233. The treatment plate 21 is symmetrically provided with a vertical air outlet 24 at both ends along the width, which includes a plurality of second air outlets 241 arranged along the length direction. The treatment plate 21 is fixedly connected with the air duct 25 which is in communication with the transverse air outlet 23 and the vertical air outlet 24, and the air duct 25 is used for guiding the gas. The air duct 25 includes a main channel 251 fixedly installed in the treatment plate 21 and in communication with the wind inlet 22, which is used to further guide the organic waste gas. The main channel 251 is provided with a first air duct 252 symmetrically arranged in Z shape, which is used to guide the wind of the first area 231. And a second air duct 253 symmetrically arranged in Z shape, which is used to guide the wind of the second area 232. The main channel 251 is provided with a third air duct 254 in the shape of 1, which is used to guide the wind of the third area 233. The end of the first air duct 252, the second air duct 253, and the third air duct 254 is fixedly connected with the first connecting block 255 which is in the shape of trapezoidal in cross section, and the end of the first air duct 252, the second air duct 253, and the third air duct 254 is located at the center of the first connecting block 255. The first connecting block 255 is used to further guide the wind guided by the first air duct 252, the second air duct 253, and the third air duct 254. The first connecting block 255 is in communication with the first area 231, the second area 232, and the third area 233, respectively, to ensure accurate guidance of the waste gas. The total size of the first connecting block 255 and the first air outlet 234 is matched to ensure that the organic waste gas after guidance can accurately enter the first air outlet 234. The height of the second air duct 253 is less than that of the first air duct 252, which ensures that the organic waste gas can be dispersed when passing through the main channel 251. The pressure in the second area 232 and the first area 231 is similar. Before treating the organic waste gas, connect the wind inlet 22 to the source of the organic waste gas to make it enter the air duct 25 through the wind inlet 22 for wind guidance. The treatment plate 21 is in communication with the waste gas treatment equipment. Then install the filter assembly 3 between the wind inlet 22 and the source of the organic waste gas.The organic waste gas is filtered by the filtering assembly 3, then enters the air duct 25 through the air inlet 22, and is guided into the main channel 251 by the guidance of the air duct 25. The waste gas is guided through the main channel 251, and then passes through the first area 231 and the second area 232, and the third area 233, and the vertical air outlet 24. The organic waste gas is guided by the first air outlet 252 and the second air outlet 253, and the third air outlet 254 and the fourth air outlet 256. The organic waste gas is affected by the flow guide, changes the flow direction and speed, and gradually realizes uniform distribution. After the organic waste gas enters the first connecting block 255 and the second connecting block 257, it is discharged from the first air outlet 234 and the second air outlet 241. Thus, the organic waste gas is treated to enable it to enter the treatment system stably and uniformly, avoid fluctuations in treatment effect, and ensure the consistency of the treatment effect. The air distribution treatment uniformly distributes the waste gas, ensures the stable operation of the treatment equipment, continuously and effectively treats the organic waste gas, enables the discharged waste gas to stably meet the environmental protection standard requirements, and avoids enterprises from facing environmental protection penalties due to excessive emissions. The air distribution treatment can disperse the airflow, enable each part of the equipment to bear a relatively uniform load, reduce local excessive wear and tear, and prevent equipment damage caused by local overheating or corrosion. Thus, the service life of the equipment is prolonged, the frequency of equipment maintenance and replacement is reduced, and the operating cost of the enterprise is reduced.
[0027] It is considered that the organic waste gas often contains a certain amount of particulate matter, such as dust, metal chips, fibers, and the like. If these particulate matters directly enter the air duct 25, they may damage the air distribution assembly 2 and the waste gas treatment equipment. Therefore, the organic waste gas needs to be filtered, as described in the filtering assembly 3. Figures 1-4The filtering assembly 3 comprises a mounting shell 31 detachably mounted on the air inlet 22, and a first filter plate 32 fixedly installed in the mounting shell 31, which is used for filtering the organic waste gas for the first time. The first filter plate 32 is uniformly provided with a plurality of first filter holes 33 in the horizontal and vertical directions, and a second filter plate 34 fixedly installed in the mounting shell 31 is arranged on one side of the first filter plate 32, and the second filter plate 34 is uniformly provided with a plurality of second filter holes 35 in the horizontal and vertical directions. The second filter plate 34 is used for filtering the organic waste gas for the second time. The first filter plate 32 and the second filter plate 34 can be selected according to different requirements. The mounting shell 31 is located at the front end of the air inlet 22, so as to ensure that the organic waste gas can be filtered through the first filter plate 32 and the second filter plate 34. The diameter of the second filter hole 35 is smaller than that of the first filter hole 33, so as to ensure that the air filtered by the first filter plate 32 can be further filtered. Before the organic waste gas is treated, the mounting shell 31 is mounted on the air inlet 22, and at this time, the mounting shell 31 is located between the air inlet 22 and the source of the organic waste gas. When the organic waste gas enters the air inlet 22, it enters the mounting shell 31, and is filtered for the first time by the first filter plate 32 in the mounting shell 31, so that larger particles and other impurities cannot enter the air inlet 22. Then, after the air filtered by the first filter plate 32 is filtered for the second time by the second filter plate 34, the air enters the air inlet 22. Thus, the organic waste gas is filtered and treated, so that the damage of particulate matters to the uniform air distribution assembly 2 is reduced during the long-term operation of the filtering equipment, and the structural integrity and performance of the uniform air distribution assembly 2 are protected. The effect of guiding the air flow is avoided. The filtered waste gas can avoid bringing impurities into the treatment equipment, prevent clogging, and ensure stable operation of the treatment equipment. The damage of particulate matters to the entire treatment system equipment is reduced, so that the maintenance period of the equipment is prolonged, and the maintenance cost is reduced.
[0028] It is apparent for a person skilled in the art that the present application is not limited to the details of the above-described exemplary embodiments, but can be implemented in other concrete forms without departing from the spirit or essential characteristics of the present application. Therefore, the embodiments should be considered in all respects as illustrative and not restrictive, the scope of the present application being defined by the appended claims rather than the above description, and all changes coming within the meaning and range of equivalents of the claims are intended to be embraced therein. Any reference signs in the claims should not be construed as limiting the claims concerned.
Claims
1. An air distribution device for treating organic waste gas, comprising an outer plate (1), characterized in that: The outer plate (1) is provided with an air distribution component (2) for treating the exhaust gas, and the outer plate (1) is provided with a filter component (3) for filtering the exhaust gas; The air distribution component (2) comprises a processing plate (21) fixedly mounted on the outer plate (1) and having an inner cavity; an air inlet (22) is connected and mounted on the processing plate (21); transverse air outlets (23) are symmetrically arranged at both ends of the length of the processing plate (21); vertical air outlets (24) are symmetrically arranged at both ends of the width of the processing plate (21); and an air duct (25) is fixedly connected inside the processing plate (21) and is connected to the transverse air outlet (23) and the vertical air outlet (24).
2. The air equalizing device for treating organic waste gas according to claim 1, characterized in that: The transverse air outlet (23) comprises a first area (231), a second area (232), and a third area (233) arranged and distributed in sequence along its length direction, wherein a plurality of first air outlet holes (234) are evenly distributed in the transverse and longitudinal directions within the first area (231), the second area (232), and the third area (233).
3. The air equalization device for treating organic waste gas according to claim 1, characterized in that: The vertical air outlet (24) comprises a plurality of second air outlet holes (241) arranged along its length direction.
4. The air equalizing device for treating organic waste gas according to claim 1, characterized in that: The air duct (25) comprises a main channel (251) fixedly installed in the processing plate (21) and connected to the air inlet (22); a first air outlet duct (252) symmetrically arranged in a Z shape and a second air outlet duct (253) symmetrically arranged in a Z shape are connected and installed on the main channel (251); a third air outlet duct (254) in the shape of a letter "1" is connected and installed on the main channel (251); the ends of the first air outlet duct (252), the second air outlet duct (253), and the third air outlet duct (254) are all fixedly connected to a first connecting block (255) with a trapezoidal cross section, and the ends of the first air outlet duct (252), the second air outlet duct (253), and the third air outlet duct (254) are located at the center of the first connecting block (255).
5. The air equalizing device for treating organic waste gas according to claim 4, characterized in that: The first connecting block (255) is respectively connected to the first area (231), the second area (232), and the third area (233); the first connecting block (255) is adapted to the overall size of the first air outlet (234); and the height of the second air outlet (253) is smaller than that of the first air outlet (252).
6. The air equalizing device for treating organic waste gas according to claim 4, characterized in that: A fourth air outlet duct (256) in a Z shape is connected and installed on the first air outlet duct (252); the ends of the main channel (251) and the fourth air outlet duct (256) are fixedly connected to a second connecting block (257) with a trapezoidal cross section; the second connecting block (257) is adapted to the size of the second air outlet hole (241); and the end of the fourth air outlet duct (256) is located at the center of the second connecting block (257).
7. The air equalizing device for treating organic waste gas according to claim 1, characterized in that: The filter assembly (3) comprises a mounting shell (31) detachably mounted on the air inlet (22); a first filter plate (32) is fixedly mounted in the mounting shell (31); a plurality of first filter holes (33) are evenly distributed in the horizontal and vertical directions on the first filter plate (32); a second filter plate (34) is fixedly mounted in the mounting shell (31) on one side of the first filter plate (32); a plurality of second filter holes (35) are evenly distributed in the horizontal and vertical directions on the second filter plate (34).
8. The air equalizing device for treating organic waste gas according to claim 7, characterized in that: The mounting shell (31) is located at the front end of the air inlet (22), and the diameter of the second filter hole (35) is smaller than that of the first filter hole (33).