Advanced oxidation treatment device for organic waste gas

Through innovative designs of anti-clogging components and spraying components, the problem of packing layer blockage in organic waste gas treatment devices has been solved, achieving smooth airflow and uniform spraying of liquid, thereby improving the efficiency and effectiveness of organic waste gas treatment.

CN224057084UActive Publication Date: 2026-03-31SHENZHEN XINGNENG ENVIRONMENT PROTECTION TECH CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-15
Publication Date
2026-03-31

AI Technical Summary

Technical Problem

Existing organic waste gas treatment devices are prone to clogging of the packing layer due to the adhesion of impurities or precipitates after long-term use, which reduces the efficiency of advanced oxidation treatment.

Method used

The design incorporates anti-clogging and spraying components. The anti-clogging component uses a motor-driven shaft and gear reversing device to drive the limiting block and fixing ring, thereby causing the filling container to vibrate up and down and remove impurities. The spraying component, through the design of the pump body and nozzles, expands the spraying range of the liquid and improves the reaction effect.

Benefits of technology

It effectively prevents the packing layer from clogging, ensures smooth airflow, improves reaction efficiency and uniform distribution of the drug solution, and avoids the adhesion of impurities that affect the treatment effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an advanced oxidation treatment device for organic waste gas, which relates to the technical field of organic waste gas treatment and comprises a shell and an anti-blocking component, a filler container is slidably connected in the shell, and the anti-blocking component is connected to the upper portion of the shell. The anti-blocking assembly comprises a motor, a rotating shaft, a gear reverser, a supporting plate, a driving shaft, a fixing ring, a limiting block, an ejector rod, a ball and a spring seat, the motor is arranged on the upper portion of the outer side of the shell, an output shaft of the motor is connected with the rotating shaft, and the end of the rotating shaft is connected with the gear reverser. According to the advanced oxidation treatment device for the organic waste gas, through the arrangement of the anti-blocking assembly, when the waste gas is subjected to spraying treatment, a motor can be started to drive a driving shaft to rotate through a rotating shaft and a gear reverser, so that a fixing ring drives a limiting block to synchronously move, an ejector rod is extruded, and a filler container moves downwards; meanwhile, friction loss of the ejector rod is reduced through the balls.
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Description

Technical Field

[0001] This utility model relates to the field of organic waste gas treatment technology, specifically to an advanced oxidation treatment device for organic waste gas. Background Technology

[0002] Organic waste gas treatment refers to the adsorption, filtration, and purification of organic waste gas generated during industrial production. Common organic waste gas treatment methods include treatment of formaldehyde, benzene, xylene and other benzene series organic waste gas, acetone and methyl ethyl ketone organic waste gas, ethyl acetate waste gas, oil mist organic waste gas, furfural organic waste gas, styrene, acrylic acid organic waste gas, resin organic waste gas, additive organic waste gas, paint mist organic waste gas, and thinner organic waste gas, etc., which are air purification methods containing organic matter such as carbon, hydrogen and oxygen.

[0003] For example, utility model CN210874779U discloses an advanced oxidation treatment device for treating waste gas based on persulfate. This utility model device utilizes persulfate-based advanced oxidation technology, an innovation of Fenton's advanced oxidation technology. Sulfate free radicals have higher redox potentials, stronger oxidizing power, and longer stability and half-life, making it worthy of widespread application. However, after prolonged use, impurities or precipitates from the reaction in this type of equipment can adhere to the packing layer. Excessive adherence of impurities can clog the packing layer, reducing the efficiency of advanced oxidation treatment. Utility Model Content

[0004] The purpose of this invention is to provide an advanced oxidation treatment device for organic waste gas to solve the problems mentioned in the background art.

[0005] To achieve the above objectives, this utility model provides the following technical solution: an advanced oxidation treatment device for organic waste gas, comprising a shell and an anti-clogging component. A packing container is slidably connected inside the shell. The anti-clogging component is connected to the upper part of the shell. The anti-clogging component includes a motor, a rotating shaft, a gear commutator, a support plate, a drive shaft, a fixing ring, a limiting block, a push rod, ball bearings, and a spring seat. A motor is mounted on the upper outer side of the shell, and the output shaft of the motor is connected to the rotating shaft. The end of the rotating shaft is connected to the gear commutator. A support plate is fixed to one side of the gear commutator, and a drive shaft is mounted at the bottom of the gear commutator. A fixing ring is fixed to the outer side of the drive shaft, and a limiting block is connected to the bottom of the fixing ring. A push rod is mounted on the top of the packing container, and a ball bearing is provided on the top of the push rod. Spring seats are mounted at the four ends of the bottom of the packing container.

[0006] Furthermore, the support plate is fixedly connected to the housing, and the rotating shaft is rotatably connected to the housing.

[0007] Furthermore, the spring seat is fixedly connected to the housing, and the spring seats are equidistantly distributed circumferentially about the bottom of the packing container.

[0008] Furthermore, an air inlet pipe is connected to one side of the lower part of the housing, an exhaust pipe is installed on the top of the housing, and a medicine storage box is provided on the other side of the lower part of the housing.

[0009] Furthermore, an inner ring is provided on the top of the packing container, and an outer ring is slidably connected to the outer side of the inner ring, and the outer ring is fixedly connected to the fixing ring.

[0010] Furthermore, a spray assembly is connected to the top of the medicine storage tank, and the spray assembly includes a pump body, a diversion pipe and an annular pipe. The pump body is installed on the top of the medicine storage tank, and a diversion pipe is connected to the top of the pump body. An annular pipe is fixed to the end of the diversion pipe.

[0011] Furthermore, the spray assembly also includes a rotating tube and a through hole, with the rotating tube rotatably connected inside the annular tube and a through hole opened on the outside of the rotating tube.

[0012] Furthermore, the spray assembly also includes a branch pipe and a nozzle, with the lower outer side of the rotating pipe connected to the branch pipe and the nozzle provided at the bottom of the branch pipe.

[0013] This utility model provides an advanced oxidation treatment device for organic waste gas, which has the following beneficial effects:

[0014] 1. This utility model, through the setting of the anti-clogging component, can start the motor when spraying waste gas, so that the motor drives the drive shaft to rotate through the rotating shaft and gear reversing device, so that the fixed ring drives the limit block to move synchronously, thereby squeezing the top rod and causing the packing container to move downward. At the same time, the ball bearings reduce the friction loss of the top rod. As the fixed ring continues to rotate, when the limit block separates from the top rod, the spring seat will push the packing container to move upward and reset. Thus, during the rotation of the drive shaft, the packing container vibrates up and down, thereby using vibration to create larger gaps in the packing inside, which facilitates airflow and shakes off impurities, preventing impurities from continuously adhering between the packing particles and affecting the efficiency of airflow.

[0015] 2. Through the setting of the spray assembly, the pump body draws the liquid medicine inside the storage tank through the pipeline during the spraying process, and delivers it to the annular pipe through the diversion pipe. The liquid medicine then enters the rotating pipe through the through hole and is sprayed out from the nozzle on the branch pipe. At the same time, the drive shaft will drive the rotating pipe to rotate, thereby making the branch pipe rotate synchronously, further expanding the spraying range, making the liquid medicine spray more even, and improving the reaction effect. Attached Figure Description

[0016] Figure 1This is a schematic cross-sectional view of the advanced oxidation treatment device for organic waste gas according to the present invention.

[0017] Figure 2 This is a three-dimensional structural diagram of the anti-clogging component of an advanced oxidation treatment device for organic waste gas according to the present invention.

[0018] Figure 3 This is a schematic diagram of the spray assembly of an advanced oxidation treatment device for organic waste gas according to the present invention.

[0019] In the diagram: 1. Shell; 2. Inlet pipe; 3. Exhaust pipe; 4. Medicine storage tank; 5. Packing container; 6. Anti-clogging component; 601. Motor; 602. Rotating shaft; 603. Gear reversing device; 604. Support plate; 605. Drive shaft; 606. Fixing ring; 607. Limiting block; 608. Push rod; 609. Ball bearing; 610. Spring seat; 7. Inner ring; 8. Outer ring; 9. Spray assembly; 901. Pump body; 902. Diverter pipe; 903. Annular pipe; 904. Rotating pipe; 905. Through hole; 906. Branch pipe; 907. Nozzle. Detailed Implementation

[0020] The embodiments of this utility model will be described in further detail below with reference to the accompanying drawings and examples. The following examples are for illustrative purposes only and should not be construed as limiting the scope of this utility model.

[0021] like Figures 1 to 3As shown, an advanced oxidation treatment device for organic waste gas includes a housing 1 and an anti-clogging component 6. An inlet pipe 2 is connected to one side of the lower part of the housing 1, and an exhaust pipe 3 is installed at the top of the housing 1. A chemical storage tank 4 is provided on the other side of the lower part of the housing 1. A packing container 5 is slidably connected inside the housing 1. The anti-clogging component 6 is connected to the upper part of the housing 1 and includes a motor 601, a rotating shaft 602, a gear reversing device 603, a support plate 604, a drive shaft 605, a fixing ring 606, a limiting block 607, a push rod 608, a ball bearing 609, and a spring seat 610. A motor 601 is mounted on the upper outer side of housing 1, and the output shaft of the motor 601 is connected to a rotating shaft 602. A gear commutator 603 is connected to the end of the rotating shaft 602. A support plate 604 is fixed to one side of the gear commutator 603, and a drive shaft 605 is mounted at the bottom of the gear commutator 603. The support plate 604 is fixedly connected to housing 1, and the rotating shaft 602 is rotatably connected to housing 1. The motor 601 drives the drive shaft 605 to rotate via the rotating shaft 602 and the gear commutator 603. A retaining ring 606 is fixed to the outer side of the drive shaft 605, and the bottom of the retaining ring 606 is connected to... A limit block 607 is connected to the top of the filling container 5. A push rod 608 is installed on the top of the push rod 608, and a ball bearing 609 is provided on the top of the push rod 608. When the fixing ring 606 rotates, it will drive the limit block 607 to move synchronously, thereby squeezing the push rod 608 and causing the filling container 5 to move downward. At the same time, the ball bearing 609 can reduce the frictional wear of the push rod 608. Spring seats 610 are installed at the four ends of the bottom of the filling container 5. The spring seat 610 is composed of a rubber-coated spring and a telescopic rod. The rubber sleeve on the outside of the spring can improve the service life of the spring. The spring seat 610 is fixedly connected to the housing 1, and the spring... The seat 610 is equidistantly distributed around the bottom of the packing container 5. When the limiting block 607 separates from the push rod 608, the spring seat 610 will push the packing container 5 to move upward and reset. As the drive shaft 605 rotates, the packing container 5 vibrates up and down, thereby using the vibration to create a larger gap in the packing inside, avoiding blockage. The top of the packing container 5 is equipped with an inner ring 7, and an outer ring 8 is slidably connected to the outside of the inner ring 7. The outer ring 8 is fixedly connected to the fixing ring 606, and the inner ring 7 and the outer ring 8 are used for shielding and protection.

[0022] like Figure 1 and Figure 3As shown, a spray assembly 9 is connected to the top of the medicine storage tank 4. The spray assembly 9 includes a pump body 901, a diversion pipe 902, and an annular pipe 903. The pump body 901 is mounted on the top of the medicine storage tank 4, and the diversion pipe 902 is connected to the top of the pump body 901. An annular pipe 903 is fixed to the end of the diversion pipe 902. The pump body 901 draws the medicine liquid inside the medicine storage tank 4 through the pipe and delivers it to the annular pipe 903 through the diversion pipe 902. The spray assembly 9 also includes a rotating pipe 904 and a through hole 905. The inner part of the annular pipe 903... The rotating tube 904 is rotatably connected to the rotating tube 904, and a through hole 905 is provided on the outer side of the rotating tube 904. The liquid medicine will enter the rotating tube 904 through the through hole 905. The spray assembly 9 also includes a branch pipe 906 and a nozzle 907. The lower outer side of the rotating tube 904 is connected to the branch pipe 906, and the bottom of the branch pipe 906 is provided with a nozzle 907. The liquid medicine will be sprayed out from the nozzle 907 on the branch pipe 906. At the same time, the drive shaft 605 will also drive the rotating tube 904 to rotate, so that the branch pipe 906 rotates synchronously, further expanding the spraying range.

[0023] In summary, when using this advanced oxidation treatment device for organic waste gas, the first step is to... Figure 1 , Figure 2 and Figure 3 In the structure shown, organic waste gas enters the housing 1 through the inlet pipe 2. At this time, the pump body 901 draws the liquid medicine from the storage tank 4 through the pipe and delivers it to the annular pipe 903 through the diversion pipe 902. The liquid medicine then enters the rotating pipe 904 through the through hole 905 and is sprayed out from the nozzle 907 on the branch pipe 906. Next, the motor 601 is started, causing it to drive the drive shaft 605 to rotate via the rotating shaft 602 and the gear reversing device 603. This drives the rotating pipe 904 to rotate, thus causing the branch pipe 906 to rotate synchronously. To expand the spraying range, when the drive shaft 605 rotates, the fixed ring 606 will drive the limiting block 607 to move synchronously, thereby squeezing the push rod 608 and causing the packing container 5 to move downward. At the same time, the ball bearings 609 can reduce the frictional wear of the push rod 608. As the fixed ring 606 continues to rotate, when the limiting block 607 separates from the push rod 608, the spring seat 610 will push the packing container 5 to move upward and reset. Thus, during the rotation of the drive shaft 605, the packing container 5 vibrates up and down to avoid blockage.

[0024] The embodiments of this utility model are given for illustrative and descriptive purposes only, and are not intended to be exhaustive or to limit the utility model to the forms disclosed. Many modifications and variations will be apparent to those skilled in the art. The embodiments were chosen and described in order to better illustrate the principles and practical applications of this utility model, and to enable those skilled in the art to understand this utility model and design various embodiments with various modifications suitable for a particular purpose.

Claims

1. A device for advanced oxidation treatment of organic exhaust gases, comprising a housing (1) and a anti-clogging assembly (6), characterized in that, The inside of the shell (1) is slidably connected with a filler container (5), the anti-blocking assembly (6) is connected with the upper part of the shell (1), the anti-blocking assembly (6) comprises a motor (601), a rotating shaft (602), a gear reversing device (603), a support plate (604), a drive shaft (605), a fixed ring (606), a limiting block (607), a jacking rod (608), a ball (609) and a spring seat (610), the outside upper part of the shell (1) is provided with the motor (601), the output shaft of the motor (601) is connected with the rotating shaft (602), and the end of the rotating shaft (602) is connected with the gear reversing device (603), one side of the gear reversing device (603) is fixedly provided with the support plate (604), and the bottom of the gear reversing device (603) is provided with the drive shaft (605), the outside of the drive shaft (605) is fixedly provided with the fixed ring (606), and the bottom of the fixed ring (606) is connected with the limiting block (607), the top of the filler container (5) is provided with the jacking rod (608), and the top of the jacking rod (608) is provided with the ball (609), and the bottom of the filler container (5) is provided with the spring seat (610).

2. The apparatus for advanced oxidation treatment of organic exhaust gas according to claim 1, wherein The support plate (604) is fixedly connected with the shell (1), and the rotating shaft (602) is rotatably connected with the shell (1).

3. The device for advanced oxidation treatment of organic exhaust gas according to claim 1, characterized in that, The spring seat (610) is fixedly connected with the shell (1), and the spring seat (610) is equidistantly and circumferentially distributed about the bottom of the filler container (5).

4. The apparatus for advanced oxidation treatment of organic exhaust gas according to claim 1, wherein One side of the lower part of the shell (1) is connected with an air inlet pipe (2), the top of the shell (1) is provided with an air outlet pipe (3), and the other side of the lower part of the shell (1) is provided with a medicine storage box (4).

5. The device for advanced oxidation treatment of organic exhaust gas according to claim 1, characterized in that, The top of the filler container (5) is provided with an inside ring (7), the outside of the inside ring (7) is slidably connected with an outside ring (8), and the outside ring (8) is fixedly connected with the fixed ring (606).

6. The apparatus for advanced oxidation treatment of organic exhaust gas according to claim 4, wherein The top of the medicine storage box (4) is connected with a spraying assembly (9), and the spraying assembly (9) comprises a pump body (901), a shunt pipe (902) and an annular pipe (903), the top of the medicine storage box (4) is provided with the pump body (901), the top of the pump body (901) is connected with the shunt pipe (902), and the end of the shunt pipe (902) is fixedly provided with the annular pipe (903).

7. The apparatus for advanced oxidation treatment of organic exhaust gas according to claim 6, wherein The spraying assembly (9) further comprises a rotating pipe (904) and a through hole (905), the inside of the annular pipe (903) is rotatably connected with the rotating pipe (904), and the outside of the rotating pipe (904) is provided with the through hole (905).

8. The apparatus for advanced oxidation treatment of organic exhaust gas according to claim 7, wherein The spraying assembly (9) further comprises a branch pipe (906) and a spray head (907), the lower outside of the rotating pipe (904) is connected with the branch pipe (906), and the bottom of the branch pipe (906) is provided with the spray head (907).

Citation Information

Patent Citations

  • Advanced oxidation treatment device for treating waste gas based on persulfate

    CN210874779U