Waste gas pollutant adsorption treatment system

By introducing pretreatment components and cleaning devices into the exhaust gas treatment system, the problems of low particulate matter removal efficiency and difficulty in cleaning exhaust pipes have been solved, achieving more efficient exhaust gas treatment and equipment maintenance.

CN223668910UActive Publication Date: 2025-12-16ZHEJIANG JIUHUAN ENVIRONMENTAL PROTECTION TECH CO LTD
View PDF 1 Cites 0 Cited by

Patent Information

Application Number
CN202422923753.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-29
Publication Date
2025-12-16
Estimated Expiration
2034-11-29

AI Technical Summary

Technical Problem

Existing waste gas treatment systems lack pretreatment devices, making it difficult to remove particulate matter from waste gas, reducing the treatment efficiency of adsorption devices and increasing the wear and tear of activated carbon filter elements, while also making it difficult to clean exhaust pipes.

Method used

Pretreatment components, including a water treatment tank, an agitator motor, and a drain motor, are introduced into the exhaust gas treatment system. The water treatment tank contacts the exhaust gas to remove particulate matter, and the drain motor cleans the exhaust pipe, thereby improving the particulate matter removal efficiency and the cleanliness of the device.

Benefits of technology

It effectively removes particulate matter from exhaust gas, reduces filter element wear of the adsorption device, improves treatment efficiency, and simplifies the cleaning process of exhaust pipes.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223668910U_ABST
    Figure CN223668910U_ABST
Patent Text Reader

Abstract

The utility model discloses a waste gas pollutant adsorption treatment system, and belongs to the field of waste gas treatment. Comprising a waste gas collecting cover, the upper end of the waste gas collecting cover communicates with a collecting pipeline, the lower portion of the right end of the collecting pipeline communicates with a catalytic combustion furnace, the right side of the catalytic combustion furnace communicates with a pretreatment assembly, a spraying assembly is arranged on the right side of the pretreatment assembly, and a water inlet pipe is arranged on the front side of the upper end of the spraying assembly. According to the present invention, before the waste gas is subjected to adsorption treatment, the waste gas enters the water treatment tank along the flow dividing pipe and the hollow pipe to contact with the water flow so as to strip the particulate matter from the waste gas, and when the particulate matter is in contact with the water, the stirring motor drives the water stirring rod to rotate so as to stir the internal water flow to produce the internal rotation, such that the waste gas is subjected to adsorption treatment; and particles in the waste gas are gathered towards the interior of the vortex, so that the particles can be rapidly stripped from the waste gas, the stripping efficiency of the particles is improved, and meanwhile, the loss of a filter element in a subsequent adsorption device is reduced.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application relates to the field of waste gas treatment, in particular, relates to a waste gas pollutant adsorption treatment system. BACKGROUND

[0002] With the rapid development of modernization today, the generation and treatment of waste gas emission problem is increasingly serious, which has brought great threat to our living environment. How to effectively treat waste gas without causing harm to the environment has become the key to the problem to be solved.

[0003] The structure of the product can refer to the activated carbon waste gas treatment system disclosed in Chinese patent document CN221982016U. Although the biological filler, filter screen and activated carbon adsorption screen plate are arranged, the waste gas can pass through the biological filler to deodorize and continue to rise, then enter the inside of the final stage filter box, the activated carbon filter element and filter screen inside the final stage filter box can adsorb and purify the waste gas again, and then discharge through the gas outlet. This can purify the waste gas in multiple stages, greatly improving the purification effect of the waste gas.

[0004] In the above structure, the activated carbon waste gas treatment system lacks a pretreatment device, and the waste gas generally contains a lot of particulate matter. Only the internal water spray of the spray head can not completely strip the particulate matter in the waste gas, which can easily allow the particulate matter to enter the adsorption device along with the gas, reducing the treatment efficiency of the adsorption device on the waste gas, and also causing high wear of the internal activated carbon filter element. Secondly, the discharge device of the existing waste gas treatment system generally relies on a fan and an exhaust pipe. Due to the integrated structure of the exhaust pipe, it is difficult to clean the internal residues in the later stage.

[0005] There is no waste gas pollutant adsorption treatment system that can strip the particulate matter in the waste gas in advance before waste gas adsorption treatment. CONTENT OF THE INVENTION

[0006] The content part of the present application is used to introduce the concept in a simple form, which will be described in detail in the specific embodiment part. The content part of the present application is not intended to identify the key features or essential features of the claimed technical solution, nor is it intended to limit the scope of the claimed technical solution.

[0007] In order to solve the technical problems mentioned in the above background section, some embodiments of the present application provide a waste gas pollutant adsorption treatment system, comprising a waste gas collecting hood (1); the upper end of the waste gas collecting hood (1) is communicated with a collecting pipeline (2), the lower end of the right end of the collecting pipeline (2) is communicated with a catalytic combustion furnace (3), the right side of the catalytic combustion furnace (3) is communicated with a pretreatment assembly (4), the right side of the pretreatment assembly (4) is provided with a spraying assembly (5), the front side of the upper end of the spraying assembly (5) is provided with a water inlet pipe (6), the upper end of the spraying assembly (5) is communicated with a transmission pipe (7) in the middle, the right end of the transmission pipe (7) is communicated with an adsorption assembly (8), the right side of the adsorption assembly (8) is provided with a fan (9), the middle of the upper end of the fan (9) is provided with a discharge assembly (10), the lower end of the fan (9) is provided with a support (11), and the left end of the fan (9) is communicated with a filter cartridge (12).

[0008] During the working process or the installation process, due to the structure of the pretreatment assembly (4), the particulate matters in the waste gas can be stripped in advance before the waste gas is adsorbed and treated.

[0009] Further, the pretreatment assembly (4) comprises a water treatment box (401), a sealing cover (402), a shunt pipe (403), a hollow pipe (404), an adjuster (405), an agitation motor (406), a water stirring rod (407), a blowdown motor (408) and a blowdown roller (409), the upper end of the water treatment box (401) is provided with the sealing cover (402), the sealing cover (402) is laid with the shunt pipe (403) below, the inner side of the lower end of the shunt pipe (403) is threadedly installed with the hollow pipe (404), the left and right sides of the outer end of the water treatment box (401) are provided with the adjuster (405), the left side of the outer end of the water treatment box (401) is provided with the agitation motor (406) below, the transmission end of the agitation motor (406) is butt-joint installed with the water stirring rod (407), the right side of the outer end of the water treatment box (401) is provided with the blowdown motor (408) below, and the transmission end of the blowdown motor (408) is butt-joint installed with the blowdown roller (409).

[0010] Further, the spraying assembly (5) comprises a spraying tower (501), a top cover (502), a threaded pipe (503), a spiral pipe (504), an observation window (505) and a reinforcing member (506), the upper end of the spraying tower (501) is bolted with the top cover (502), the front side of the lower end of the top cover (502) is butt-joint installed with the threaded pipe (503), the lower end of the threaded pipe (503) is communicated with the spiral pipe (504), the front side of the outer end of the spraying tower (501) is longitudinally provided with the observation window (505), and the right side of the outer end of the spraying tower (501) is bolted with the reinforcing member (506).

[0011] Further, the adsorption assembly (8) comprises an adsorption box (801), a sealing plate (802), a mounting groove (803), an adsorption plate (804) and a partition plate (805), the front side of the outer end of the adsorption box (801) is provided with a sealing plate (802), the left and right sides behind the sealing plate (802) are provided with mounting grooves (803), the inside of the mounting groove (803) is slidably provided with an adsorption plate (804), and the inside of the adsorption box (801) is provided with a partition plate (805).

[0012] Further, the exhaust assembly (10) comprises an exhaust pipe (1001), an exhaust port (1002), a cleaning motor (1003), a central shaft (1004), a mesh brush (1005) and a pipe brush (1006), the outer side of the upper end of the exhaust pipe (1001) is provided with an exhaust port (1002), the top end of the exhaust pipe (1001) is bolted with a cleaning motor (1003), the lower end of the cleaning motor (1003) is provided with a central shaft (1004), the upper end of the central shaft (1004) is provided with a mesh brush (1005), and the lower end of the mesh brush (1005) is provided with a pipe brush (1006).

[0013] Further, the front end of the collecting pipeline (2) is sleeved and mounted with a lifting ring, the collecting pipeline (2) is in an integrated structure communicated by two pipes with different diameters, and the length can be freely added according to the installation requirement, the catalytic combustion furnace (3) and the pretreatment assembly (4) are communicated through a U-shaped pipeline, the spraying assembly (5) and the pretreatment assembly (4) are communicated through a Z-shaped pipeline, and the transmission pipe (7) and the spraying assembly (5) are reinforced by four cross bars.

[0014] Further, the contact end of the sealing cover (402) and the water treatment box (401) is provided with a sealing ring, the bottom of the shunt pipe (403) is U-shaped and distributed in the inside of the water treatment box (401), the hollow pipe (404) is longitudinally distributed in five rows, and each row is distributed with two pipes, the two regulators (405) are symmetrically distributed, the regulator (405) is composed of an adjusting motor and a threaded rod, and the adjusting motor and the threaded rod are fixed as an integrated structure, the outer end of the water stirring rod (407) is sleeved and mounted with a fan blade, and the fan blade is reinforced with the water stirring rod (407) by a screw.

[0015] Further, the front side of the lower end of the spray tower (501) is communicated with a blowdown valve, the contact end of the top cover (502) and the spray tower (501) is provided with a sealing ring, and the top cover (502) and the spray tower (501) are reinforced by bolts, and the lower end and the inside of the spiral pipe (504) are provided with a spray head.

[0016] Further, the inside of the adsorption box (801) is provided with three layers of cavities from top to bottom, the sealing plates (802) are symmetrically distributed, the adsorption plates (804) are symmetrically distributed, and the partition plates (805) are symmetrically distributed laterally.

[0017] Further, the cleaning motor (1003) and the middle shaft (1004) are sleeved and installed together and are fastened by screws, and the inner tube brushes (1006) are longitudinally distributed.

[0018] The application has the beneficial effect that a waste gas pollutant adsorption treatment system is provided, which can strip particulate matters in waste gas in advance before waste gas adsorption treatment.

[0019] By arranging the water treatment box, the particulate matters can be stripped from the waste gas by contacting the water flow in the water treatment box through the shunt pipe and the hollow pipe before the waste gas is subjected to adsorption treatment. When the particulate matters contact the water, the agitating motor also starts to work to drive the water stirring rod to rotate, agitate the internal water flow to generate internal rotation, and gather the particulate matters in the waste gas to the inside of the vortex, so that the particulate matters can be quickly stripped from the waste gas, the stripping efficiency of the particulate matters is improved, and the filter core loss in the subsequent adsorption device is reduced.

[0020] By arranging the pollution discharge motor, the particulate matters in the water can be precipitated after the water flow is stationary after the waste gas treatment is completed. Then, the waste water is discharged, and then the pollution discharge motor is started to drive the pollution discharge roller to rotate to discharge the precipitate on the bottom of the water treatment box. In addition, when the shunt pipe and the hollow pipe need to be cleaned, the adjuster is started to work to drive the threaded rod at the front end of the adjuster to lift the sealing cover upward to drive the internal shunt pipe and the hollow pipe to separate from the water treatment box, so that the surface of the shunt pipe and the hollow pipe can be cleaned.

[0021] By arranging the cleaning motor, when the exhaust pipe and the exhaust port need to be cleaned, the bottom of the exhaust pipe is opened, the baffle is put into the exhaust pipe, and then the cleaning motor drives the lower middle shaft to rotate. Since the middle shaft, the mesh brush and the inner tube brush are fixed together, the mesh brush and the inner tube brush can also rotate to clean the inner wall of the exhaust pipe and the exhaust port, so that the internal impurities fall onto the bottom baffle. Then, the fallen impurities are cleaned to complete the cleaning work of the exhaust assembly. BRIEF DESCRIPTION OF DRAWINGS

[0022] The accompanying drawings, which form a part of this application, are included to provide a further understanding of the application and are incorporated in and constitute a part of this application. The drawings illustrate embodiments of the present application and, together with the description, serve to explain the principles of the present application.

[0023] Additionally, and throughout the drawings, identical or similar reference numbers designate identical or similar elements. It will be understood that the drawings are diagrammatic and schematic representations of exemplary embodiments of the present disclosure, and that elements and / or features depicted in the drawings are not necessarily shown to scale.

[0024] In the drawings:

[0025] Figure 1 Schematic diagram of the three-dimensional structure of the exhaust gas pollutant adsorption treatment system;

[0026] Figure 2 Schematic diagram of the cross-sectional structure of the pretreatment assembly of the exhaust gas pollutant adsorption treatment system;

[0027] Figure 3 Schematic diagram of the three-dimensional exploded structure of the spray assembly of the exhaust gas pollutant adsorption treatment system;

[0028] Figure 4 Schematic diagram of the top view cross-sectional structure of the adsorption assembly of the exhaust gas pollutant adsorption treatment system;

[0029] Figure 5 Schematic diagram of the three-dimensional exploded structure of the exhaust gas pollutant adsorption treatment system.

[0030] Reference numerals:

[0031] 1, exhaust gas collection cover; 2, collection pipeline; 3, catalytic combustion furnace; 4, pretreatment assembly; 5, spray assembly; 6, water inlet pipe; 7, transmission pipe; 8, adsorption assembly; 9, fan; 10, exhaust assembly; 11, support; 12, filter cartridge; 401, water treatment box; 402, sealing cover; 403, shunt pipe; 404, hollow pipe; 405, regulator; 406, stirring motor; 407, water stirring rod; 408, pollution discharge motor; 409, pollution discharge roller; 501, spray tower; 502, top cover; 503, threaded pipe; 504, spiral pipe; 505, observation window; 506, reinforcing member; 801, adsorption box; 802, sealing plate; 803, mounting groove; 804, adsorption plate; 805, partition plate; 1001, exhaust pipe; 1002, exhaust port; 1003, cleaning motor; 1004, central shaft; 1005, mesh brush; 1006, in-pipe brush. DETAILED DESCRIPTION

[0032] Embodiments of the present disclosure will be described in more detail with reference to the drawings. While certain embodiments of the present disclosure will be shown in the drawings, it is understood that the present disclosure can be embodied in various forms and should not be construed as being limited to the embodiments set forth herein. Rather, these embodiments are provided so that the present disclosure will be thoroughly and completely understood. It should be understood that the drawings of the present disclosure are for illustrative purposes only and are not intended to limit the scope of the present disclosure.

[0033] In addition, it needs to be noted that only parts related to the present application are shown in the drawings for the convenience of description.

[0034] It should be noted that the terms "first", "second" and the like in the present disclosure are used only to distinguish different devices, modules or units, and do not imply the order or interdependence of the functions performed by these devices, modules or units.

[0035] It should be noted that the terms "one", "multiple" in the present disclosure are illustrative and not restrictive, and those skilled in the art should understand that "one" or "multiple" should be understood as "one or more" unless otherwise explicitly indicated in the context.

[0036] The present disclosure will be described in detail below with reference to the drawings and in conjunction with embodiments.

[0037] As a preferred embodiment in the present embodiment, as shown in Figures 1 to 5 The embodiment of the utility model provides a waste gas pollutant adsorption treatment system, including waste gas collecting cover 1, the upper end of waste gas collecting cover 1 is connected with collecting pipeline 2, the front end of collecting pipeline 2 is sleeved with a lifting ring, and collecting pipeline 2 is integrally connected by two pipes of different diameters, and the length of collecting pipeline 2 can be freely added according to installation requirements, the lower right end of collecting pipeline 2 is connected with catalytic combustion furnace 3, catalytic combustion furnace 3 and pretreatment assembly 4 are connected by U-shaped pipeline, the right side of catalytic combustion furnace 3 is connected with pretreatment assembly 4, the right side of pretreatment assembly 4 is equipped with spraying assembly 5, spraying assembly 5 and pretreatment assembly 4 are connected by Z-shaped pipeline, the front side of the upper end of spraying assembly 5 is equipped with water inlet pipe 6, the middle part of the upper end of spraying assembly 5 is connected with transmission pipe 7, spraying assembly 5 and transmission pipe 7 are reinforced by four cross bars, the right end of transmission pipe 7 is connected with adsorption assembly 8, the right side of adsorption assembly 8 is equipped with fan 9, the middle part of the upper end of fan 9 is equipped with discharge assembly 10, the lower end of fan 9 is equipped with support 11, and the left end of fan 9 is connected with filter cartridge 12.

[0038] The pretreatment assembly 4 includes a water treatment box 401, a sealing cover 402, a shunt pipe 403, a hollow pipe 404, an adjuster 405, an agitation motor 406, a water stirring rod 407, a sewage motor 408 and a sewage roller 409, the upper end of the water treatment box 401 is provided with the sealing cover 402, the contact end of the sealing cover 402 with the water treatment box 401 is provided with a sealing ring, the lower side of the sealing cover 402 is paved with the shunt pipe 403, the bottom of the shunt pipe 403 is distributed in the inside of the water treatment box 401 in a U shape, the inner side of the lower end of the shunt pipe 403 is screw-mounted with the hollow pipe 404, the hollow pipe 404 is distributed vertically with five rows, and each row is distributed with two pipes, the left and right sides of the outer end of the water treatment box 401 are provided with the adjuster 405, the adjuster 405 is symmetrically distributed with two, the adjuster 405 is composed of an adjusting motor and a threaded rod, and the adjusting motor and the threaded rod are fixed as an integral structure, the lower side of the left side of the outer end of the water treatment box 401 is provided with the agitation motor 406, the transmission end of the agitation motor 406 is butt-jointed with the water stirring rod 407, the outer end of the water stirring rod 407 is sleeve-connected with a fan blade, and the fan blade is reinforced with the water stirring rod 407 by a screw, the lower side of the right side of the outer end of the water treatment box 401 is provided with the sewage motor 408, and the transmission end of the sewage motor 408 is butt-jointed with the sewage roller 409.

[0039] By arranging the water treatment box 401, the exhaust gas enters the shunt pipe 403 from the air inlet pipe at the upper end of the sealing cover 402 before being subjected to adsorption treatment, then enters the hollow pipe 404 along the shunt pipe 403, and then is discharged into the water treatment box 401 to contact with the water flow, so that the particulate matter is stripped from the exhaust gas, and at the same time, when the particulate matter contacts with the water, the agitation motor 406 also starts to work to drive the water stirring rod 407 to rotate, the internal water flow is stirred to generate internal rotation, which can gather the particles in the exhaust gas to the inside of the vortex, so that the particulate matter can be quickly stripped from the exhaust gas, and the stripping efficiency of the particulate matter is improved compared with the traditional spraying stripping.

[0040] By arranging the sewage motor 408, after the exhaust gas treatment is completed and the water flow is static, the particulate matter in the water will precipitate, then the wastewater is discharged, then the sewage motor 408 is started to drive the sewage roller 409 to rotate, and the precipitate at the bottom of the water treatment box 401 is discharged, and secondly, when the shunt pipe 403 and the hollow pipe 404 need to be cleaned, the adjuster 405 starts to work to drive the threaded rod at the front end of the sealing cover 402 to lift upward, and drive the internal shunt pipe 403 and the hollow pipe 404 to separate from the water treatment box 401, so that the surface of the shunt pipe 403 and the hollow pipe 404 can be cleaned.

[0041] As Figure 1 , Figure 3 and Figure 4As shown, the spray assembly 5 includes a spray tower 501, a top cover 502, a threaded pipe 503, a spiral pipe 504, an observation window 505 and a reinforcing member 506, the front side of the lower end of the spray tower 501 is communicated with a blowdown valve, the upper end of the spray tower 501 is bolted with the top cover 502, the contact end of the top cover 502 and the spray tower 501 is provided with a sealing ring, and the top cover 502 and the spray tower 501 are reinforced by bolts, the front side of the lower end of the top cover 502 is butt-jointed with the threaded pipe 503, the lower end of the threaded pipe 503 is communicated with the spiral pipe 504, the lower end and the inner side of the spiral pipe 504 are provided with a spray head, the front side of the outer end of the spray tower 501 is longitudinally provided with the observation window 505, and the right side of the outer end of the spray tower 501 is bolted with the reinforcing member 506; the adsorption assembly 8 includes an adsorption box 801, a sealing plate 802, a mounting groove 803, an adsorption plate 804 and a partition plate 805, the inside of the adsorption box 801 is provided with three layers of cavities from top to bottom, which are upper cavity, middle cavity and lower cavity, and the left and right sides of each layer of cavities are filled with two adsorption plates 804, the front side of the outer end of the adsorption box 801 is provided with the sealing plate 802, the sealing plate 802 is symmetrically provided with six sealing plates, wherein the contact end of the sealing plate 802 and the adsorption box 801 is provided with a sealing gasket, the left and right sides of the rear of the sealing plate 802 are provided with the mounting groove 803, the inside of the mounting groove 803 is slidably provided with the adsorption plate 804, the adsorption plate 804 is symmetrically provided with six adsorption plates, and the inside of the adsorption plate 804 is embedded with an activated carbon filter element, the inside of the adsorption box 801 is inserted with the partition plate 805, and the partition plate 805 is transversely symmetrically distributed.

[0042] The spiral pipe 504 is provided, and due to the spiral structure, it is annularly distributed in the inside of the spray tower 501, and during work, the mixed liquid is injected from the water inlet pipe 6, so that the mixed liquid is sprayed from the lower end and the inner side of the spiral pipe 504 in a cross shape, so that the spraying area of the mixed liquid is larger and more dense, compared with the layered structure in the inside of the traditional spray tower, the contact area of the mixed liquid and the waste gas is increased, so that the effect of removing odor in the waste gas is better.

[0043] The adsorption box 801 is provided, and the inside is designed in a layered manner from top to bottom, each layer of two transversely mounted adsorption plates 804 constitutes an adsorption cavity, and the partition plate 805 is mounted at three positions of front, middle and rear of the adsorption cavity, and when the adsorption plates 804 in different areas of the upper, middle and lower three layers inside need to be replaced, it can be more convenient.

[0044] As Figure 1 and Figure 5As shown, the exhaust assembly 10 includes an exhaust pipe 1001, an exhaust port 1002, a cleaning motor 1003, a shaft 1004, a mesh brush 1005 and an inner tube brush 1006, the outer side of the upper end of the exhaust pipe 1001 is provided with the exhaust port 1002, the top end of the exhaust pipe 1001 is bolted with the cleaning motor 1003, the lower end of the cleaning motor 1003 is provided with the shaft 1004, the cleaning motor 1003 and the shaft 1004 are connected together in a sleeved manner and are reinforced by screws to form an integral structure, the upper end of the outer end of the shaft 1004 is provided with the mesh brush 1005, the lower end of the mesh brush 1005 is provided with the inner tube brush 1006, and the inner tube brush 1006 is longitudinally distributed with four.

[0045] By arranging the cleaning motor 1003, when the exhaust pipe 1001 and the exhaust port 1002 need to be cleaned, the bottom of the exhaust pipe 1001 is first opened, the baffle is put into it, then the lower shaft 1004 is rotated by the cleaning motor 1003, and the shaft 1004, the mesh brush 1005 and the inner tube brush 1006 are fixed together, so that the mesh brush 1005 and the inner tube brush 1006 can also be rotated, the inner wall of the exhaust pipe 1001 and the exhaust port 1002 is cleaned, the internal residual impurities fall on the bottom baffle, then the fallen impurities are cleaned, and the cleaning work of the exhaust assembly 10 is completed.

[0046] The above description is only some of the preferred embodiments of the present disclosure and the explanation of the applied technical principles. Those skilled in the art should understand that the scope of the application involved in the embodiments of the present disclosure is not limited to the technical solutions formed by the specific combination of the above technical features, and should also cover other technical solutions formed by any combination of the above technical features or their equivalent features without departing from the above inventive concept. For example, the above features are replaced with the technical features disclosed in the embodiments of the present disclosure (but not limited to) having similar functions to form technical solutions.

Claims

1. An exhaust gas pollutant adsorption treatment system comprising an exhaust gas collecting hood (1); characterized in that: The upper end of the exhaust gas collecting hood (1) is communicated with a collecting pipeline (2), the lower end of the right end of the collecting pipeline (2) is communicated with a catalytic combustion furnace (3), the right side of the catalytic combustion furnace (3) is communicated with a pretreatment assembly (4), the right side of the pretreatment assembly (4) is provided with a spraying assembly (5), the front side of the upper end of the spraying assembly (5) is provided with a water inlet pipe (6), the upper end of the spraying assembly (5) is communicated with a transmission pipe (7), the right end of the transmission pipe (7) is communicated with an adsorption assembly (8), the right side of the adsorption assembly (8) is provided with a fan (9), the middle part of the upper end of the fan (9) is provided with a discharge assembly (10), the lower end of the fan (9) is provided with a support (11), and the left end of the fan (9) is communicated with a filter cartridge (12).

2. The exhaust pollutant adsorbing treatment system according to claim 1, characterized by: The pretreatment assembly (4) comprises a water treatment box (401), a sealing cover (402), a shunt pipe (403), a hollow pipe (404), an adjuster (405), an agitation motor (406), a water stirring rod (407), a blowdown motor (408) and a blowdown roller (409), the upper end of the water treatment box (401) is provided with a sealing cover (402), the sealing cover (402) is laid with a shunt pipe (403) below, the inner side of the lower end of the shunt pipe (403) is screwed with a hollow pipe (404), the left and right sides of the outer end of the water treatment box (401) are provided with an adjuster (405), the left side below the outer end of the water treatment box (401) is provided with an agitation motor (406), the transmission end of the agitation motor (406) is butt-jointed with a water stirring rod (407), the right side below the outer end of the water treatment box (401) is provided with a blowdown motor (408), and the transmission end of the blowdown motor (408) is butt-jointed with a blowdown roller (409).

3. The exhaust pollutant adsorbing treatment system according to claim 1, characterized by: The spraying assembly (5) comprises a spraying tower (501), a top cover (502), a threaded pipe (503), a spiral pipe (504), an observation window (505) and a reinforcing part (506), the upper end of the spraying tower (501) is bolted with a top cover (502), the front side of the lower end of the top cover (502) is butt-jointed with a threaded pipe (503), the lower end of the threaded pipe (503) is communicated with a spiral pipe (504), the front side of the outer end of the spraying tower (501) is longitudinally provided with an observation window (505), and the right side of the outer end of the spraying tower (501) is bolted with a reinforcing part (506).

4. The exhaust pollutant adsorbing treatment system according to claim 1, characterized by: The adsorption assembly (8) comprises an adsorption box (801), an enclosing plate (802), a mounting groove (803), an adsorption plate (804) and a partition plate (805), the front side of the outer end of the adsorption box (801) is provided with an enclosing plate (802), the left and right sides behind the enclosing plate (802) are provided with mounting grooves (803), the adsorption plate (804) is slidably mounted in the mounting grooves (803), and the partition plate (805) is insertedly mounted in the adsorption box (801).

5. The exhaust pollutant adsorbing treatment system according to claim 1, characterized by: The exhaust assembly (10) includes exhaust pipe (1001), exhaust port (1002), cleaning motor (1003), shaft (1004), mesh brush (1005) and pipe brush (1006), the outer side of the upper end of the exhaust pipe (1001) is provided with exhaust port (1002), the top end of the exhaust pipe (1001) is bolted with cleaning motor (1003), the lower end of the cleaning motor (1003) is provided with shaft (1004), the outer end of the shaft (1004) is provided with mesh brush (1005) above, the lower side of the mesh brush (1005) is provided with pipe brush (1006).

6. The exhaust pollutant adsorbing treatment system according to claim 1, characterized by: The front end of the collecting pipeline (2) is sleeved with a lifting ring, the collecting pipeline (2) is in an integrated structure communicated by two pipes with different diameters, and the length can be freely added according to the installation requirement, the catalytic combustion furnace (3) and the pretreatment assembly (4) are communicated through a U-shaped pipeline, the spraying assembly (5) and the pretreatment assembly (4) are communicated through a Z-shaped pipeline, and the transmission pipe (7) and the spraying assembly (5) are reinforced by four cross bars.

7. The exhaust pollutant adsorbing treatment system according to claim 2, characterized by: The contact end of the sealing cover (402) and the water treatment box (401) is provided with a sealing ring, the bottom of the shunt pipe (403) is U-shaped and distributed in the inside of the water treatment box (401), the hollow pipe (404) is longitudinally distributed with five rows, and each row is distributed with two pipes, the adjuster (405) is symmetrically distributed with two, the adjuster (405) is composed of an adjusting motor and a threaded rod, and the adjusting motor and the threaded rod are fixed as an integrated structure, the outer end of the water stirring rod (407) is sleeved with a fan blade, and the fan blade is reinforced with the water stirring rod (407) by screws.

8. The exhaust pollutant adsorbing treatment system according to claim 3, characterized by: The front side of the lower end of the spray tower (501) is communicated with a blowdown valve, the contact end of the top cover (502) and the spray tower (501) is provided with a sealing ring, and the top cover (502) and the spray tower (501) are reinforced by bolts, and the lower end and the inner side of the spiral pipe (504) are provided with a spray head.

9. The exhaust pollutant adsorbing treatment system according to claim 4, characterized by: The inside of the adsorption box (801) is provided with three layers of cavities from top to bottom, the sealing plate (802) is symmetrically distributed with six, the adsorption plate (804) is symmetrically distributed with six, and the partition plate (805) is horizontally and symmetrically distributed.

10. The exhaust pollutant adsorbing treatment system according to claim 5, characterized by: The cleaning motor (1003) and the shaft (1004) are sleeved and installed together, and are reinforced by screws, and the pipe brush (1006) is longitudinally distributed with four.

Citation Information

Patent Citations

  • Activated carbon waste gas treatment system

    CN221982016U