Carbon dioxide trapping device

By designing the impeller body and cam rotation system in the carbon dioxide capture device, combined with the impact cleaning of the T-bar and ring seat, the problem of inconvenient impurity accumulation in the filter layer was solved, and stable operation of the filter layer and energy saving were achieved.

CN223404614UActive Publication Date: 2025-10-03XIANGTAN TONGYAO ENERGY SAVING & ENVIRONMENTAL PROTECTION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202422638120.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-31
Publication Date
2025-10-03
Estimated Expiration
2034-10-31

AI Technical Summary

Technical Problem

In existing carbon dioxide capture devices, it is inconvenient to clean impurities accumulated on the surface of the filter layer, and the energy consumption is high.

Method used

A carbon dioxide capture device was designed. Through the combination of an extrusion plate, an air pipe, an air inlet pipe, a pipe seat, a ring seat, a filter layer, a ring frame, a T-bar and a spring A, the fluidity of carbon dioxide gas is used to drive the impeller body and the cam to rotate. The T-bar hits the ring seat to assist in cleaning impurities in the filter layer. The device operates stably through spring support and a limit structure.

Benefits of technology

It achieves efficient cleaning of impurities in the filter layer, extends the service life of the filter layer, and reduces energy consumption.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of carbon dioxide capturing equipment, in particular to a carbon dioxide capturing device which comprises a base, an extrusion plate is assembled on the surface of the top end of the base, a gas conveying pipe and a gas inlet pipe which are communicated with each other are assembled on the surface of the outer wall of the extrusion plate, and the end, away from the gas conveying pipe, of the gas inlet pipe is connected with a pipe seat through a flange; when the carbon dioxide capturing equipment is used, captured carbon dioxide gas can enter the gas inlet pipe from the pipe seat, and the T-shaped rod sliding in the ring frame in the pipe seat can slide and impact the ring seat between the gas inlet pipe and the gas conveying pipe; according to the device, the annular seats are arranged, so that impurities intercepted by filtering carbon dioxide on the filter screen layers in the annular seats can be cleaned in an auxiliary manner under the impact force, and meanwhile, the springs A between the two groups of annular seats can elastically support the annular seats, so that the annular seats can stably operate and generate certain vibration, and the impurities can be cleaned more smoothly; and the filter screen layer can stably operate.
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Description

Technical Field

[0001] The utility model relates to the technical field of carbon dioxide capture equipment, in particular to a carbon dioxide capture device. Background Art

[0002] Carbon dioxide is abundant in nature and is widely used in industry. The main industrial preparation methods of carbon dioxide include the calcination method of high-temperature calcined limestone and the carbon dioxide recovery method of ethanol fermentation. Patent No. CN202322954032.2 discloses a carbon dioxide capture device. By compressing two extrusion plates in opposite directions, the carbon dioxide transported internally is compressed into the filter layer for filtration, thereby achieving the purpose of efficiently filtering particulate impurities in the carbon dioxide gas. However, since the filter layer between the air intake pipe and the compressed air pipe will filter the collected carbon dioxide, and the solid particles in the carbon dioxide will adhere to the surface of the filter layer, when there are more impurities attached, they will accumulate on the surface of the filter layer, and the filter layer located between the air intake pipe and the compressed air pipe is not easy to clean. To this end, we propose a carbon dioxide capture device. Utility Model Content

[0003] In view of the problems in the prior art, the utility model provides a carbon dioxide capture device.

[0004] The technical solution adopted by the present invention to solve its technical problems is a carbon dioxide capture device, comprising a base, an extrusion plate mounted on the top surface of the base, and an air supply pipe and an air inlet pipe connected to each other mounted on the outer wall surface of the extrusion plate, an end of the air inlet pipe away from the air supply pipe being connected to a pipe seat via a flange, and a ring seat slidably mounted between the air supply pipe and the air inlet pipe, and two groups of ring seats, a spring A mounted between the two groups of ring seats, and a filter layer mounted inside the ring seat, a ring frame mounted inside the pipe seat, and a T-shaped rod slidably mounted inside the ring frame to abut against the ring seat;

[0005] A spring B is installed between the T-shaped rod and the ring frame, and a vertical shaft is installed in the pipe seat, and a vertical cylinder is rotatably installed on the outer periphery of the vertical shaft. The outer periphery of the vertical cylinder is sleeved with an impeller body and a cam, and there are two groups of impeller bodies. The end of the T-shaped rod close to the cam is integrally constructed with a ball head body that abuts the cam.

[0006] By adopting the above technical solution, when the carbon dioxide capture equipment is in use, the captured carbon dioxide gas can enter the pipe seat and then enter the intake pipe. The T-shaped rod sliding in the ring frame in the pipe seat can slide and impact the ring seat between the intake pipe and the gas transmission pipe, so that the impurities intercepted by the carbon dioxide filtered on the filter layer in the ring seat can be assisted by the impact force. At the same time, the spring A between the two sets of ring seats can elastically support the ring seats, so that the ring seats can operate stably and generate a certain amount of vibration, thereby more smoothly cleaning impurities and ensuring the stable operation of the filter layer.

[0007] When the captured carbon dioxide gas enters the pipe seat, the carbon dioxide gas can blow the impeller body in the pipe seat, causing the vertical cylinder on the outer periphery of the vertical shaft to rotate with the rotation of the impeller body. Then the vertical cylinder can easily drive the cam to rotate, so that the raised end of the cam continues to abut against the ball head body at the outer end of the T-bar, and under the elastic support of the spring B between the T-bar and the ring frame, the T-bar can slide back and forth and continuously hit the ring seat, so that the impurities accumulated on the surface of the filter layer on the ring seat are assisted in cleaning, thereby extending the service life of the filter layer, and using the fluidity of the carbon dioxide gas to drive the impeller body and the cam to rotate, which is convenient for saving energy consumption.

[0008] Specifically, a ring seat for limiting is sleeved on the outer periphery of the T-bar, and a fastening screw for fixing is threadedly installed on the outer periphery of the ring seat.

[0009] By adopting the above technical solution, the ring seat is installed on one end of the T-bar passing through the ring frame, and the ring seat is fixed with a fastening screw, so that the T-bar can slide stably in the ring frame without separation.

[0010] Specifically, a ring for limiting position is threadedly installed in the air intake pipe, and a surface of the ring close to the ring seat and a surface of the ring seat close to the ring frame are both bonded with rubber pads.

[0011] By adopting the above technical solution, the ring is threadedly installed in the intake pipe, which is convenient for limiting the ring seat slidably installed in the intake pipe, so that the ring seat can operate stably. At the same time, the ring seat can be removed by removing the lower ring. At the same time, the rubber pad has a certain elasticity, which is convenient for reducing the situation of scratches and damage caused by friction between the ring and the ring seat, and can also reduce the situation of scratches and damage between the ring seat and the slide.

[0012] Specifically, a top seat for auxiliary support is assembled on one side of the ring seat close to the T-bar.

[0013] By adopting the above technical solution, the top seat on the outer periphery of the ring seat facilitates auxiliary support, so that the T-bar can hit the ring seat more stably.

[0014] Specifically, a push rod located on the inner periphery of the spring A is assembled between the two groups of ring seats.

[0015] By adopting the above technical solution, when the ring seats in the intake pipe are displaced under the impact force, the ring seats can drive the push rods to impact another set of ring seats, so that impurities attached to the surfaces of the two sets of ring seats are assisted in cleaning.

[0016] Compared with the prior art, the present invention has the following beneficial effects:

[0017] 1. The technical solution of the present application is designed through the extrusion plate, gas pipe, gas intake pipe, pipe seat, ring seat, filter layer, ring frame, T-rod and spring A. When the carbon dioxide capture equipment is in use, the captured carbon dioxide gas can enter the pipe seat and then enter the gas intake pipe. The T-rod sliding in the ring frame in the pipe seat can slide and hit the ring seat between the gas intake pipe and the gas intake pipe, so that the impurities intercepted by the carbon dioxide filtered on the filter layer in the ring seat can be assisted and cleaned under the impact force. At the same time, the spring A between the two groups of ring seats can elastically support the ring seat, so that the ring seat can operate stably and generate a certain amount of vibration, thereby more smoothly cleaning the impurities and allowing the filter layer to operate stably.

[0018] 2. The technical solution of the present application is designed with a vertical shaft, a vertical cylinder, an impeller body, a cam, a ball head body and a spring B. When the captured carbon dioxide gas enters the tube seat, the carbon dioxide gas can blow the impeller body in the tube seat, so that the vertical cylinder on the outer periphery of the vertical shaft rotates with the rotation of the impeller body. Then the vertical cylinder conveniently drives the cam to rotate, so that the raised end of the cam continues to abut against the ball head body at the outer end of the T-bar, and under the elastic support of the spring B between the T-bar and the ring frame, the T-bar can slide back and forth and continuously hit the ring seat, so that impurities accumulated on the surface of the filter layer on the ring seat are assisted in cleaning, thereby extending the service life of the filter layer, and utilizing the fluidity of the carbon dioxide gas to drive the impeller body and the cam to rotate, which is convenient for saving energy consumption. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0020] Figure 1 This is an axonometric drawing of the present utility model;

[0021] Figure 2 It is a schematic plan view of the connection structure between the pipe seat and the intake pipe of the utility model;

[0022] Figure 3 It is a plan view of the connection structure between the cam and the T-bar of the utility model;

[0023] In the figure: 1. Base; 2. Extrusion plate; 3. Air pipe; 4. Inlet pipe; 5. Pipe seat; 6. Ring seat; 7. Filter layer; 8. Spring A; 9. Ring frame; 10. T-bar; 11. Vertical axis; 12. Vertical cylinder; 13. Impeller body; 14. Cam; 15. Ball head body; 16. Spring B; 17. Ring seat; 18. Ring; 19. Rubber pad; 20. Top seat; 21. Push rod; 22. Fastening screw. DETAILED DESCRIPTION

[0024] In order to make the technical means, creative features, objectives and effects achieved by the present invention easier to understand, the present invention is further described below in conjunction with specific implementation methods.

[0025] See also Figure 1-3 The embodiment of the utility model provides a technical solution: a carbon dioxide capture device, including a base 1, a top surface of the base 1 is equipped with an extrusion plate 2, and the outer surface of the extrusion plate 2 is equipped with an air supply pipe 3 and an air inlet pipe 4 that are interconnected, the end of the air inlet pipe 4 away from the air supply pipe 3 is connected to a pipe seat 5 through a flange, and a ring seat 6 is slidably installed between the air supply pipe 3 and the air inlet pipe 4, and there are two groups of ring seats 6, a spring A8 is installed between the two groups of ring seats 6, and a filter is installed in the ring seat 6. The mesh layer 7 and the tube seat 5 are equipped with a ring frame 9, and a T-shaped rod 10 is slidably installed in the ring frame 9 and abuts the ring seat 6; a spring B16 is installed between the T-shaped rod 10 and the ring frame 9, and a vertical shaft 11 is installed in the tube seat 5, and a vertical cylinder 12 is rotatably installed on the outer periphery of the vertical shaft 11, and an impeller body 13 and a cam 14 are sleeved on the outer periphery of the vertical cylinder 12, and there are two groups of impeller bodies 13, and the end of the T-shaped rod 10 close to the cam 14 is integrally constructed with a ball head body 15 abutting the cam 14.

[0026] During use, when the carbon dioxide capture device is in use, the captured carbon dioxide gas can enter the pipe seat 5 and then enter the intake pipe 4. The T-shaped rod 10 sliding in the ring frame 9 in the pipe seat 5 can slide and hit the ring seat 6 between the intake pipe 4 and the gas transmission pipe 3, so that the impurities intercepted by the carbon dioxide filtered on the filter layer 7 in the ring seat 6 can be assisted by the impact force to be cleaned. At the same time, the spring A8 between the two groups of ring seats 6 can elastically support the ring seat 6, so that the ring seat 6 can operate stably and generate a certain amount of vibration, thereby more smoothly cleaning the impurities and ensuring the stable operation of the filter layer 7.

[0027] When the captured carbon dioxide gas enters the tube seat 5, the carbon dioxide gas can blow the impeller body 13 in the tube seat 5, causing the vertical cylinder 12 on the outer periphery of the vertical shaft 11 to rotate with the rotation of the impeller body 13, and then the vertical cylinder 12 conveniently drives the cam 14 to rotate, so that the raised end of the cam 14 continues to abut against the ball head body 15 at the outer end of the T-shaped rod 10, and under the elastic support of the spring B16 between the T-shaped rod 10 and the ring frame 9, the T-shaped rod 10 can slide back and forth and continuously hit the ring seat 6, so that the impurities accumulated on the surface of the filter layer 7 on the ring seat 6 are assisted in cleaning, thereby extending the service life of the filter layer 7, and utilizing the fluidity of the carbon dioxide gas to drive the impeller body 13 and the cam 14 to rotate, which is convenient for saving energy consumption.

[0028] like Figure 2 and Figure 3 As shown, a ring seat 17 for limiting is sleeved on the outer periphery of the T-bar 10, and a fastening screw 22 for fixing is screwed on the outer periphery of the ring seat 17.

[0029] When in use, the ring seat 17 is sleeved and installed on one end of the T-bar 10 passing through the ring frame 9, and the ring seat 17 is fixed by a fastening screw 22, so that the T-bar 10 can slide stably in the ring frame 9 without separation.

[0030] like Figure 2 and Figure 3 As shown, a ring 18 for limiting is threadedly installed in the intake pipe 4, and a rubber pad 19 is bonded to a surface of the ring 18 close to the ring seat 6 and a surface of the ring seat 17 close to the ring frame 9.

[0031] When in use, the ring ring 18 is screwed and installed in the intake pipe 4, which is convenient for limiting the ring seat 6 slidably installed in the intake pipe 4, so that the ring seat 6 can operate stably. At the same time, the ring ring 18 can be removed to remove the ring seat 6. At the same time, the rubber pad 19 has a certain elasticity, which is convenient for reducing the situation of scratches and damage caused by friction between the ring ring 18 and the ring seat 6, and can also reduce the situation of scratches and damage between the ring seat 17 and the slide.

[0032] like Figure 2 As shown, a top seat 20 for auxiliary support is assembled on one side of the ring seat 6 close to the T-bar 10 .

[0033] During use, the top seat 20 on the outer periphery of the ring seat 6 facilitates auxiliary support, so that the T-bar 10 can hit the ring seat 6 more stably.

[0034] like Figure 2 As shown, a push rod 21 located on the inner periphery of the spring A8 is assembled between the two sets of ring seats 6.

[0035] During use, when the ring seats 6 in the air intake pipe 4 are displaced under the impact force, the ring seats 6 can drive the push rods 21 to impact another group of ring seats 6, so that impurities attached to the surfaces of the two groups of ring seats 6 are assisted cleaned.

[0036] The working principle and use process of the present invention are as follows: when in use, first install the corresponding structural components in the appropriate position. When the carbon dioxide capture device is in use, the captured carbon dioxide gas can enter the pipe seat 5 and then enter the intake pipe 4. The T-shaped rod 10 sliding in the ring frame 9 in the pipe seat 5 can slide and hit the ring seat 6 between the intake pipe 4 and the gas pipe 3, so that the impurities intercepted by the carbon dioxide filtered on the filter layer 7 in the ring seat 6 can be assisted and cleaned under the impact force. At the same time, the spring A8 between the two groups of ring seats 6 can elastically support the ring seat 6, so that the ring seat 6 can operate stably and generate a certain vibration, so that the impurities can be cleaned more smoothly, and the filter layer 7 can operate stably. At the same time, when the captured carbon dioxide gas enters the pipe seat 5 When the carbon dioxide gas is exhausted, the impeller body 13 in the pipe seat 5 is blown, so that the vertical cylinder 12 on the outer periphery of the vertical shaft 11 rotates with the rotation of the impeller body 13, and then the vertical cylinder 12 conveniently drives the cam 14 to rotate, so that the raised end of the cam 14 continues to abut against the ball head body 15 at the outer end of the T-shaped rod 10, and under the elastic support of the spring B16 between the T-shaped rod 10 and the ring frame 9, the T-shaped rod 10 can slide back and forth and continuously hit the ring seat 6, so that the impurities accumulated on the surface of the filter layer 7 on the ring seat 6 are assisted in cleaning, thereby extending the service life of the filter layer 7, and using the fluidity of the carbon dioxide gas to drive the impeller body 13 and the cam 14 to rotate, it is convenient to save energy consumption, so that the carbon dioxide capture equipment can collect carbon dioxide more stably.

[0037] The above shows and describes the basic principles, main features, and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited to the above embodiments. The above embodiments and descriptions are merely illustrative of the principles of the present invention. Various changes and improvements may be made to the present invention without departing from the spirit and scope of the present invention. Such changes and improvements are intended to fall within the scope of the present invention. The scope of protection claimed in the present invention is defined by the appended claims and their equivalents.

Claims

1. A carbon dioxide capture device, characterized in that: The invention comprises a base (1), wherein the top surface of the base (1) is equipped with an extrusion plate (2), and the outer wall surface of the extrusion plate (2) is equipped with an air delivery pipe (3) and an air inlet pipe (4) that are interconnected, and the air inlet pipe (4) is connected to a pipe seat (5) at one end away from the air delivery pipe (3) through a flange, and a ring seat (6) is slidably installed between the air delivery pipe (3) and the air inlet pipe (4), and there are two groups of ring seats (6), a spring A (8) is installed between the two groups of ring seats (6), and a filter layer (7) is installed in the ring seat (6), and a ring frame (9) is installed in the pipe seat (5), and a T-shaped rod (10) abutting against the ring seat (6) is slidably installed in the ring frame (9); A spring B (16) is installed between the T-shaped rod (10) and the ring frame (9), and a vertical shaft (11) is installed in the pipe seat (5), and a vertical cylinder (12) is rotatably installed on the outer periphery of the vertical shaft (11). The outer periphery of the vertical cylinder (12) is sleeved with an impeller body (13) and a cam (14), and the impeller body (13) has two groups. The end of the T-shaped rod (10) close to the cam (14) is integrally constructed with a ball head body (15) that abuts the cam (14).

2. A carbon dioxide capture device according to claim 1, characterized in that: A ring seat (17) for limiting is sleeved on the outer periphery of the T-shaped rod (10), and a fastening screw (22) for fixing is screwed on the outer periphery of the ring seat (17).

3. The carbon dioxide capture device according to claim 1, characterized in that: A ring (18) for limiting is screwed into the air inlet pipe (4), and a rubber pad (19) is bonded to one side of the ring (18) close to the ring seat (6) and one side of the ring seat (17) close to the ring frame (9).

4. The carbon dioxide capture device according to claim 1, characterized in that: A top seat (20) for auxiliary support is assembled on one side of the ring seat (6) close to the T-shaped rod (10).

5. The carbon dioxide capture device according to claim 1, characterized in that: A push rod (21) located on the inner periphery of the spring A (8) is assembled between the two groups of ring seats (6).

Citation Information

Patent Citations

  • Carbon dioxide trapping device

    CN221144848U