Waste gas treatment equipment for environmental engineering
By using a multi-structured waste gas treatment device, which employs components such as activated carbon adsorption plates and dispersion mesh plates for multiple purification processes, the problem of poor treatment effect of traditional equipment is solved, achieving rapid and thorough waste gas purification and convenient maintenance.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-12
- Publication Date
- 2026-03-10
AI Technical Summary
Traditional waste gas treatment equipment has a simple structure, resulting in poor waste gas treatment effect and affecting the user experience.
The waste gas treatment equipment adopts a multi-structure combination, including a first limiting installation pipe, a limiting partition plate, a first purification mechanism and a second purification mechanism. It uses activated carbon adsorption plates, filter screens and purification liquid in the storage tank for multiple purifications, and combines a dispersion screen plate and a porous dispersion plate to disperse and purify the waste gas.
It achieves rapid and thorough purification of waste gas, improves treatment efficiency and user experience, and facilitates maintenance.
Smart Images

Figure CN121623489A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of waste gas treatment technology, and specifically relates to a waste gas treatment device for environmental engineering. Background Technology
[0002] Waste gas refers to toxic and harmful gases emitted by humans during production and daily life, especially by chemical plants, coking plants, and oil refineries. The waste gas emitted has a strong odor, seriously pollutes the environment and affects human health. In environmental engineering, corresponding waste gas treatment equipment is used to treat waste gas. Traditional exhaust gas treatment equipment includes a fixed frame, handle, fixed shaft, clamping plate, first slider, first insert post, second fixed frame, second filter screen, second slider, sleeve, third fixed frame, first filter screen, third slider and second insert post, etc. The advantage of this exhaust gas treatment equipment is that it can perform multiple filtrations on exhaust gas. However, traditional waste gas treatment equipment has a relatively simple processing structure, which means that it can only perform simple filtration and adsorption of waste gas. This results in poor treatment effect of the waste gas treatment equipment, affecting the user experience. Improvement is urgently needed. Summary of the Invention
[0003] The purpose of this invention is to provide a waste gas treatment device for environmental engineering to solve the problems mentioned in the background art.
[0004] To achieve the above objectives, the present invention provides the following technical solution: a waste gas treatment device for environmental engineering, comprising a first limiting installation pipe, wherein a plurality of handles are provided on the upper surface of the first limiting installation pipe, a limiting partition plate is provided at one end of the first limiting installation pipe, the limiting partition plate is fixedly connected to the first limiting installation pipe, a plurality of first purification mechanisms are provided at intervals at one end of the first limiting installation pipe near the limiting partition plate, a second purification mechanism is provided at the other end of the first limiting installation pipe, the second purification mechanism includes a second limiting installation pipe, the second limiting installation pipe is sealed and slidably connected to the first limiting installation pipe, an activated carbon adsorption plate is provided inside the second limiting installation pipe, a plurality of third limiting plates are provided on the inner wall of the second limiting installation pipe for fixing the activated carbon adsorption plate, a first filter screen is provided at one end of the second limiting installation pipe near the limiting partition plate, and a second filter screen is provided at one end of the second limiting installation pipe away from the limiting partition plate.
[0005] As a further aspect of the present invention: the first purification mechanism includes a liquid storage tank, an air inlet pipe is provided at the air inlet end of the liquid storage tank, the air inlet pipe is located on the top side of the liquid storage tank and is fixedly connected to the liquid storage tank, an exhaust port is provided at the exhaust end of the liquid storage tank, the exhaust port is located on the top side of the liquid storage tank, and a purification liquid is provided inside the liquid storage tank.
[0006] As a further embodiment of the present invention: the bottom of the liquid storage tank is provided with a number of slag discharge pipes, which are arranged through the bottom wall of the liquid storage tank and are fixedly connected to the liquid storage tank. The bottom of the liquid storage tank is provided with a number of detachable sealing plugs for sealing the bottom opening of the slag discharge pipes, and the detachable sealing plugs are detachably connected to the slag discharge pipes.
[0007] As a further embodiment of the present invention: the interior of the liquid storage tank is provided with a first dispersing mesh plate that is slidably connected to the air inlet pipe. A height adjustment component is provided above the first dispersing mesh plate. A mounting bracket for fixing the height adjustment component is provided at the top of the liquid storage tank. A first limiting plate is provided at the bottom of the height adjustment component. Several elastic buffer components for vibrating the first dispersing mesh plate are provided at both ends of the lower surface of the first limiting plate.
[0008] As a further embodiment of the present invention: a plurality of second limiting plates corresponding to the first limiting plate are provided at both ends of the upper surface of the first dispersing mesh plate, the second limiting plates are slidably connected to the first limiting plate, and the second limiting plates are fixedly connected to the first dispersing mesh plate.
[0009] As a further embodiment of the present invention: the upper surface of the first dispersing mesh plate is connected to a plurality of hollow floats by springs, and the upper surface of the hollow floats is provided with a second dispersing mesh plate for dispersing the exhaust gas, and the second dispersing mesh plate is fixedly connected to the hollow floats.
[0010] As a further embodiment of the present invention: a plurality of porous dispersion plates for dispersing exhaust gas are provided at intervals below the first dispersion mesh plate, and a plurality of elastic connectors corresponding to the porous dispersion plates are provided on the lower surface of the first dispersion mesh plate. One end of the elastic connector is fixedly connected to the first dispersion mesh plate, and the other end of the elastic connector is fixedly connected to the porous dispersion plate.
[0011] Compared with the prior art, the beneficial effects of the present invention are: the present invention has a simple structure and is easy to use. During use, the multiple structures work together to purify the exhaust gas in multiple ways, thereby achieving rapid and thorough purification of the exhaust gas, making the exhaust gas treatment equipment more effective and improving the user experience. Furthermore, the present invention is easy to maintain and is worth promoting and using. Attached Figure Description
[0012] Figure 1 This is a structural schematic diagram of a waste gas treatment device for environmental engineering. Figure 2 This is a schematic diagram of the first purification mechanism in an environmental engineering waste gas treatment device. Figure 3 This is a schematic diagram of the structure of the first dispersion screen plate in an environmental engineering waste gas treatment device; Figure 4 This is a schematic diagram of the structure of a hollow floating block in an environmental engineering waste gas treatment device. Figure 5 This is a schematic diagram of the structure of the second purification mechanism in an environmental engineering waste gas treatment device; In the diagram: 1-First limiting installation pipe, 2-Limiting partition plate, 3-First purification mechanism, 4-Handle, 5-Second purification mechanism, 30-Removable sealing plug, 31-Slag discharge pipe, 32-Liquid storage tank, 33-Air inlet pipe, 34-First dispersion mesh plate, 35-Porous dispersion plate, 36-Elastic connector, 37-Elastic buffer, 38-First limiting plate, 391-Height adjustment component, 392-Second limiting plate, 393-Hollow float, 394-Second dispersion mesh plate, 395-Exhaust vent, 396-Mounting bracket, 397-Purified liquid, 50-Third limiting plate, 51-Second limiting installation pipe, 52-First filter screen, 53-Second filter screen, 54-Activated carbon adsorption plate. Detailed Implementation
[0013] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0014] In the description of this application, it should be noted that, unless otherwise expressly specified and limited, the terms "installation", "connection", "linking", and "setting" should be interpreted broadly. For example, they can refer to fixed connection or setting, detachable connection or setting, or integral connection or setting.
[0015] Those skilled in the art can understand the specific meaning of the above terms in this application according to the specific circumstances.
[0016] Please see Figures 1-5 This embodiment provides an environmental engineering waste gas treatment device, including a first limiting installation pipe 1. The upper surface of the first limiting installation pipe 1 is provided with a plurality of handles 4. One end of the first limiting installation pipe 1 is provided with a limiting partition plate 2, which is fixedly connected to the first limiting installation pipe 1. One end of the first limiting installation pipe 1 near the limiting partition plate 2 is provided with a plurality of first purification mechanisms 3 at intervals, and the other end of the first limiting installation pipe 1 is provided with a second purification mechanism 5.
[0017] Please see Figure 1 and Figure 5In one embodiment, to make the use of the second purification mechanism 5 more reliable, the second purification mechanism 5 preferably includes a second limiting installation tube 51, which is sealed and slidably connected to the first limiting installation tube 1. An activated carbon adsorption plate 54 is provided inside the second limiting installation tube 51, and a plurality of third limiting plates 50 are provided on the inner wall of the second limiting installation tube 51 for fixing the activated carbon adsorption plate 54. A first filter screen 52 is provided at one end of the second limiting installation tube 51 near the limiting partition plate 2, and a second filter screen 53 is provided at the other end of the second limiting installation tube 51 away from the limiting partition plate 2. Both the first filter screen 52 and the second filter screen 53 are fixedly connected to the second limiting installation tube 51 by screws.
[0018] In another embodiment, the second purification mechanism 5 includes a second limiting installation tube 51, which is sealed and slidably connected to the first limiting installation tube 1. An activated carbon adsorption plate 54 is disposed inside the second limiting installation tube 51. A plurality of third limiting plates 50 are disposed on the inner wall of the second limiting installation tube 51 for fixing the activated carbon adsorption plate 54. A first filter screen 52 is disposed at one end of the second limiting installation tube 51 near the limiting partition plate 2, and a second filter screen 53 is disposed at one end of the second limiting installation tube 51 away from the limiting partition plate 2. Both the first filter screen 52 and the second filter screen 53 are connected to the second limiting installation tube 51 by snap-fit.
[0019] Please see Figure 1 , Figure 2 , Figure 3 and Figure 4In one embodiment, to make the use of the first purification mechanism 3 more reliable, preferably, the first purification mechanism 3 includes a liquid storage tank 32. An air inlet pipe 33 is provided at the air inlet end of the liquid storage tank 32, and the air inlet pipe 33 is located on the top side of the liquid storage tank 32 and is fixedly connected to the liquid storage tank 32. An exhaust port 395 is provided at the exhaust end of the liquid storage tank 32, and the exhaust port 395 is located on the top side of the liquid storage tank 32. A purification liquid 397, which is water, is provided inside the liquid storage tank 32. Several slag discharge pipes 31 are provided at the bottom of the liquid storage tank 32, penetrating the bottom wall of the liquid storage tank 32 and fixedly connected to the liquid storage tank 32. A slag discharge pipe is provided below the liquid storage tank 32. There are several detachable sealing plugs 30 used to seal the bottom opening of the slag discharge pipe 31. The detachable sealing plugs 30 are detachably connected to the slag discharge pipe 31. The inside of the liquid storage tank 32 is provided with a first dispersing mesh plate 34 that is slidably connected to the air inlet pipe 33. A height adjustment component 391 is provided above the first dispersing mesh plate 34. The height adjustment component 391 is an electric telescopic rod. The top of the liquid storage tank 32 is provided with a mounting bracket 396 for fixing the height adjustment component 391. A first limiting plate 38 is provided at the bottom of the height adjustment component 391. Several elastic buffers 37, which are springs, are provided at both ends of the lower surface of the first limiting plate 38 for vibrating the first dispersing mesh plate 34. Please see Figure 2 , Figure 3 and Figure 4 In one embodiment, to enrich the functions of the first purification mechanism 3, preferably, the upper surface of the first dispersing mesh plate 34 is provided with several second limiting plates 392 corresponding to the first limiting plate 38 at both ends. The second limiting plates 392 are slidably connected to the first limiting plate 38 and fixedly connected to the first dispersing mesh plate 34. The upper surface of the first dispersing mesh plate 34 is connected with several hollow floats 393 by springs. The upper surface of the hollow floats 393 is provided with a function for dispersing exhaust gas. The second dispersing mesh plate 394 is fixedly connected to the hollow float 393. Several porous dispersing plates 35 for dispersing waste gas are arranged at intervals below the first dispersing mesh plate 34. Several elastic connecting members 36 corresponding to the porous dispersing plates 35 are arranged on the lower surface of the first dispersing mesh plate 34. The elastic connecting members 36 are springs. One end of the elastic connecting member 36 is fixedly connected to the first dispersing mesh plate 34, and the other end of the elastic connecting member 36 is fixedly connected to the porous dispersing plate 35.
[0020] In another embodiment, the first purification mechanism 3 includes a liquid storage tank 32. An air inlet pipe 33 is provided at the air inlet end of the liquid storage tank 32, located on the top side of the liquid storage tank 32 and fixedly connected to it. An exhaust port 395 is provided at the exhaust end of the liquid storage tank 32, located on the top side of the liquid storage tank 32. A purification liquid 397, which is water, is provided inside the liquid storage tank 32. Several slag discharge pipes 31 are provided at the bottom of the liquid storage tank 32, penetrating the bottom wall of the liquid storage tank 32 and fixedly connected to it. Several bottom supports for the slag discharge pipes 31 are provided below the liquid storage tank 32. A detachable sealing plug 30 is provided at the opening end of the liquid storage tank 32 to block the opening. The detachable sealing plug 30 is detachably connected to the slag discharge pipe 31. The liquid storage tank 32 is provided with a first dispersing mesh plate 34 that is slidably connected to the air inlet pipe 33. A height adjustment component 391 is provided above the first dispersing mesh plate 34. The height adjustment component 391 is a hydraulic cylinder. A mounting bracket 396 is provided at the top of the liquid storage tank 32 to fix the height adjustment component 391. A first limiting plate 38 is provided at the bottom of the height adjustment component 391. Several elastic buffers 37 are provided at both ends of the lower surface of the first limiting plate 38 to vibrate the first dispersing mesh plate 34. The elastic buffers 37 are metal springs. In another embodiment, to enrich the functions of the first purification mechanism 3, preferably, the upper surface of the first dispersing mesh plate 34 is provided with several second limiting plates 392 corresponding to the first limiting plate 38 at both ends. The second limiting plates 392 are slidably connected to the first limiting plate 38 and fixedly connected to the first dispersing mesh plate 34. The upper surface of the first dispersing mesh plate 34 is connected with several hollow floats 393 by springs. The upper surface of the hollow floats 393 is provided with a function to disperse the exhaust gas. The second dispersing mesh plate 394 is fixedly connected to the hollow float 393. Several porous dispersing plates 35 for dispersing waste gas are arranged at intervals below the first dispersing mesh plate 34. Several elastic connecting members 36 corresponding to the porous dispersing plates 35 are arranged on the lower surface of the first dispersing mesh plate 34. The elastic connecting members 36 are metal springs. One end of the elastic connecting member 36 is fixedly connected to the first dispersing mesh plate 34, and the other end of the elastic connecting member 36 is fixedly connected to the porous dispersing plate 35.
[0021] The working principle and usage process of this invention are as follows: When in use, the exhaust gas enters the interior of the liquid storage tank 32 through the air inlet pipe 33. At this time, the exhaust gas is purified and cooled by the purification liquid 397. The purified exhaust gas is discharged from the exhaust port 395. The discharged exhaust gas enters another liquid storage tank 32 through the rear air inlet pipe 33. At this time, the exhaust gas is purified multiple times by the cooperation of multiple liquid storage tanks 32. The purified exhaust gas is discharged to the outside after being adsorbed by the first filter screen 52, the activated carbon adsorption plate 54 and the second filter screen 53 in sequence. When the exhaust gas is purified by the purification liquid 397, the height adjustment component 391 is continuously extended and contracted. At this time, the first dispersion screen 34, the second dispersion screen 394 and the porous dispersion plate 35 all disperse the exhaust gas. Through the cooperation of multiple dispersion methods, the exhaust gas is fully dispersed, the contact effect between the exhaust gas and the purification liquid 397 is improved, and the purification effect of the purification liquid 397 on the exhaust gas is better. By combining multiple structures to perform multiple purification processes on the exhaust gas, the exhaust gas can be purified quickly and thoroughly, resulting in better treatment effect of the exhaust gas treatment equipment and improved user experience. Furthermore, the invention is easy to maintain, has a simple structure, and is convenient to use, making it worthy of promotion and application.
[0022] It will be apparent to those skilled in the art that the present invention is not limited to the details of the exemplary embodiments described above, and that the invention can be implemented in other specific forms without departing from its spirit or essential characteristics. Therefore, the embodiments should be considered in all respects as exemplary and non-limiting, and the scope of the invention is defined by the appended claims rather than the foregoing description. Thus, all variations falling within the meaning and scope of equivalents of the claims are intended to be included within the present invention. No reference numerals in the claims should be construed as limiting the scope of the claims.
[0023] Furthermore, it should be understood that although this specification describes embodiments, not every embodiment contains only one independent technical solution. This narrative style is merely for clarity. Those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that can be understood by those skilled in the art.
Claims
1. An exhaust gas treatment apparatus for environmental engineering, comprising a first positionally installed pipe, characterized in that: The upper surface of the first limiting installation pipe is provided with a plurality of handles, one end of the first limiting installation pipe is provided with a limiting partition plate, the limiting partition plate is fixedly connected with the first limiting installation pipe, a plurality of first purification mechanisms are arranged at intervals at the end of the first limiting installation pipe close to the limiting partition plate, the other end of the first limiting installation pipe is provided with a second purification mechanism, the second purification mechanism comprises a second limiting installation pipe, the second limiting installation pipe is sealingly and slidably connected with the first limiting installation pipe, the inside of the second limiting installation pipe is provided with an activated carbon adsorption plate, a plurality of third limiting plates for fixing the activated carbon adsorption plate are arranged on the inner wall of the second limiting installation pipe, a first filter screen is arranged at the end of the second limiting installation pipe close to the limiting partition plate, and a second filter screen is arranged at the end of the second limiting installation pipe away from the limiting partition plate.
2. The exhaust gas treatment apparatus for environmental engineering according to claim 1, characterized by: The first purification mechanism comprises a liquid storage tank, the gas inlet end of the liquid storage tank is provided with a gas inlet pipe, the gas inlet pipe is arranged at the top of the side of the liquid storage tank, the gas inlet pipe is fixedly connected with the liquid storage tank, the gas outlet end of the liquid storage tank is provided with a gas outlet hole, the gas outlet hole is arranged at the top of the side of the liquid storage tank, and the inside of the liquid storage tank is provided with purification liquid.
3. The exhaust treatment device for environmental engineering according to claim 2, characterized in that: The bottom of the liquid storage tank is provided with a plurality of deslagging pipes, the deslagging pipes penetrate through the bottom wall of the liquid storage tank, the deslagging pipes are fixedly connected with the liquid storage tank, the lower portion of the liquid storage tank is provided with a plurality of detachable plugging plugs for plugging the bottom opening end of the deslagging pipes, and the detachable plugging plugs are detachably connected with the deslagging pipes.
4. The exhaust treatment device for environmental engineering according to claim 3, characterized by: The inside of the liquid storage tank is provided with a first dispersion mesh plate in sliding connection with the gas inlet pipe, the upper portion of the first dispersion mesh plate is provided with a height adjusting piece, the top of the liquid storage tank is provided with a mounting bracket for fixing the height adjusting piece, the bottom of the height adjusting piece is provided with a first limiting plate, and the lower surface of the first limiting plate is provided with a plurality of elastic buffers for vibrating the first dispersion mesh plate.
5. The exhaust treatment device for environmental engineering according to claim 4, characterized in that: The upper surface of the first dispersion mesh plate is provided with a plurality of second limiting plates corresponding to the first limiting plate in sliding connection, and the second limiting plates are fixedly connected with the first dispersion mesh plate.
6. The exhaust treatment device for environmental engineering according to claim 5, characterized in that: The upper surface of the first dispersion mesh plate is connected with a plurality of hollow floating blocks through springs, the upper surface of the hollow floating block is provided with a second dispersion mesh plate for dispersing waste gas, and the second dispersion mesh plate is fixedly connected with the hollow floating block.
7. The exhaust treatment device for environmental engineering according to claim 6, characterized in that: The lower portion of the first dispersion mesh plate is provided with a plurality of porous dispersion plates for dispersing waste gas, the lower surface of the first dispersion mesh plate is provided with a plurality of elastic connecting pieces corresponding to the porous dispersion plates, one end of the elastic connecting piece is fixedly connected with the first dispersion mesh plate, and the other end of the elastic connecting piece is fixedly connected with the porous dispersion plate.