Cooling device for waste gas treatment

By designing the connecting structure between the cooling mechanism and the heat exhaust mechanism in the cooling device, the circulation of the coolant is achieved, which solves the problems of poor cooling effect and waste of water resources in the existing technology, improves the cooling efficiency and saves water resources.

CN223361177UActive Publication Date: 2025-09-19SUZHOU WEILISI ENVIRONMENTAL PROTECTION TECH CO LTD
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Patent Information

Application Number
CN202422254806.5
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-14
Publication Date
2025-09-19
Estimated Expiration
2034-09-14

AI Technical Summary

Technical Problem

Existing cooling devices are unable to achieve the recycling of cooling water, resulting in poor cooling effect and waste of water resources.

Method used

A cooling device including a cooling mechanism and a heat dissipation mechanism is designed. The circulation of the coolant is achieved through connecting pipes and pipe connectors. The coolant circulates between the cooling mechanism and the heat dissipation mechanism to perform multiple temperature reductions.

Benefits of technology

The cooling liquid can be recycled, the cooling effect is improved, and the waste of water resources is reduced.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223361177U_ABST
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Abstract

The utility model provides a cooling device for waste gas treatment, and belongs to the technical field of waste gas treatment. The cooling device for waste gas treatment comprises a machine box, a cooling mechanism and a heat removal mechanism are arranged on the two sides of the interior of the machine box respectively, a communication pipeline is arranged between the cooling mechanism and the heat removal mechanism, a gas inlet pipe is arranged at the top end of the machine box, one end of the gas inlet pipe is sequentially communicated with one end of the heat removal mechanism and one end of the cooling mechanism, and the other end of the gas inlet pipe is communicated with the heat removal mechanism. The outer wall of the cooling mechanism communicates with a first pipeline, a second pipeline, a fifth pipeline and a sixth pipeline, one end of the outer wall of the first pipeline communicates with a fourth pipeline, one end of the fourth pipeline communicates with one side of the heat removal mechanism, one end of the second pipeline communicates with one side of the heat removal mechanism, and the other end of the second pipeline communicates with the other side of the heat removal mechanism. The outer wall of the second pipeline is communicated with a third pipeline, one end of the fifth pipeline is communicated with the outer wall of the third pipeline, and one end of the sixth pipeline is communicated with the outer wall of the first pipeline.
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Description

Technical Field

[0001] The utility model relates to the technical field of waste gas treatment, in particular to a cooling device for waste gas treatment. Background Art

[0002] Common methods used by waste gas treatment devices to treat waste gas include adsorption, absorption, catalytic combustion, thermal combustion, etc. When selecting a purification method, priority should be given to methods with low cost, low energy consumption, and no secondary pollution based on the specific circumstances, and efforts should be made to turn harm into benefit and fully recycle and utilize components and waste heat.

[0003] In the prior art, when people treat waste gas, they need to cool the high-temperature waste gas. However, the cooling water used by the existing cooling equipment cannot be recycled, resulting in poor cooling effect and causing a large waste of water resources.

[0004] Therefore, we have made improvements to this and proposed a cooling device for exhaust gas treatment. Utility Model Content

[0005] In order to solve the problem that existing cooling devices cannot circulate water, the utility model provides a cooling device for waste gas treatment.

[0006] The utility model is achieved in this way:

[0007] A cooling device for exhaust gas treatment comprises a chassis, a cooling mechanism and a heat exhaust mechanism are respectively provided on both sides of the interior of the chassis, a connecting pipe is provided between the cooling mechanism and the heat exhaust mechanism, an air intake pipe is provided at the top of the chassis, one end of the air intake pipe is connected to the heat exhaust mechanism and one end of the cooling mechanism in sequence, a first pipe, a second pipe, a fifth pipe and a sixth pipe are respectively connected to the outer wall of the cooling mechanism, one end of the outer wall of the first pipe is connected to the fourth pipe, one end of the fourth pipe is connected to one side of the heat exhaust mechanism, one end of the second pipe is connected to one side of the heat exhaust mechanism, the outer wall of the second pipe is connected to the third pipe, one end of the fifth pipe is connected to the outer wall of the third pipe, and one end of the sixth pipe is connected to the outer wall of the first pipe.

[0008] Furthermore, the cooling mechanism includes an outer tube, a heat exchange tank, a cooling pipe, a retaining plate, a limiting collar, an output tube and a necked tube. The top end of the outer tube is connected to the heat exchange tank, and the top end of the heat exchange tank is connected to the cooling pipe. One end of the cooling pipe is respectively connected to one end of the fifth pipe and the sixth pipe.

[0009] The beneficial effect of adopting the above further solution is that, by connecting the cooling pipes, the coolant flowing inside the fifth pipe and the sixth pipe can be refluxed.

[0010] Furthermore, a retaining plate is sleeved on the outer wall of the cooling pipe.

[0011] The beneficial effect of adopting the above further solution is that the cooling pipes are kept stable by using the mounting plate.

[0012] Furthermore, a limiting collar is mounted on the outer wall of the heat exchange tank.

[0013] The beneficial effect of adopting the above further solution is that, through the use of the limiting collar, the exterior of the heat exchange tank is made more stable, which is beneficial to reducing the deformation caused by heat and cold.

[0014] Furthermore, the bottom end of the outer cylinder is connected to the output cylinder, the bottom end of the output cylinder is connected to the necked tube, and the outer wall of the necked tube is connected to one end of the communicating pipe.

[0015] The beneficial effect of adopting the above further solution is that, through the communication use of the necked tube, a communication structure is formed between the outer cylinder and the communication pipe.

[0016] Furthermore, the communicating pipe includes a pipe body and a flange. Flanges are respectively installed at both ends of the pipe body, and the pipe body is communicated with the cooling mechanism and the heat dissipation mechanism respectively through the flanges.

[0017] The beneficial effect of adopting the above further solution is that, through the connection of the flange, the pipe body can be tightly connected with the cooling mechanism and the heat dissipation mechanism.

[0018] Furthermore, the heat dissipation mechanism includes an insulating outer tube, an inner tube, a limiting plate and a hole. The inner tube is installed inside the insulating outer tube, and the top end of the inner tube extends to the outside of the insulating outer tube and is fitted with a limiting plate.

[0019] The beneficial effect of adopting the above further solution is that, through the installation and use of the inner tube, the heat dissipation mechanism forms a double-layer structure.

[0020] Furthermore, holes are provided on the outer wall of the thermal insulation outer tube.

[0021] The beneficial effect of adopting the above further solution is that the arrangement of the holes facilitates the connection of the various pipelines.

[0022] Furthermore, one end of the first pipeline is connected to an infusion valve, and one end of the third pipeline is connected to a discharge valve.

[0023] The beneficial effect of adopting the above further solution is that, by connecting the infusion valve and the discharge valve, it is convenient to connect the pipeline to the coolant supply equipment.

[0024] Furthermore, a door is hinged on one side of the outer wall of the chassis.

[0025] The beneficial effect of adopting the above further solution is that the opening and closing of the chassis is made more convenient by using the hinged connection of the chassis door.

[0026] The beneficial effect of the present invention is that the cooling device realizes the function of cooling circulation through the connection of the cooling mechanism, the heat dissipation mechanism, the connecting pipe and the various pipes, which is beneficial to reducing the waste of water resources. Among them, through the connection of the first pipe and the third pipe, the coolant inside the device can be input and output, and through the switching of the second pipe, the coolant can be respectively passed into the interior of the cooling mechanism and the heat dissipation mechanism, and then with the connection of the fifth pipe and the sixth pipe, the cooling pipe in the cooling mechanism can directly enter the coolant, which is convenient for cooling the exhaust gas inside the cooling mechanism, and then through the switching of the fourth pipe, the coolant after heat exchange enters the heat dissipation mechanism for secondary cooling, thereby realizing the recycling of the coolant. BRIEF DESCRIPTION OF THE DRAWINGS

[0027] In order to more clearly illustrate the technical solutions of the embodiments of the present invention, the following is a brief introduction to the drawings required for use in the embodiments. It should be understood that the following drawings only show certain embodiments of the present invention and therefore should not be regarded as limiting the scope. For ordinary technicians in this field, other relevant drawings can be obtained based on these drawings without creative work.

[0028] Figure 1 A three-dimensional diagram of a cooling device for exhaust gas treatment provided by the present invention;

[0029] Figure 2 This is a schematic diagram of the pipe connection structure of a cooling device for exhaust gas treatment provided by the utility model;

[0030] Figure 3 A schematic diagram of the connecting pipes of a cooling device for exhaust gas treatment provided by the present invention;

[0031] Figure 4 A schematic diagram of a cooling mechanism of a cooling device for exhaust gas treatment provided by the present invention;

[0032] Figure 5 This is a schematic diagram of a heat dissipation mechanism of a cooling device for exhaust gas treatment provided by the utility model.

[0033] In the figure: 100, chassis; 200, cabinet door; 300, air inlet pipe; 400, cooling mechanism; 4001, outer tube; 4002, heat exchange tank; 4003, cooling pipe; 4004, retaining plate; 4005, limiting collar; 4006, output tube; 4007, necking tube; 500, heat dissipation mechanism; 5001, insulation outer tube; 5002, inner tube; 5003, limiting plate; 5004, hole; 600, connecting pipe; 6001, pipe body; 6002, flange; 700, infusion valve; 800, drain valve; 101, first pipe; 102, second pipe; 103, third pipe; 104, fourth pipe; 105, fifth pipe; 106, sixth pipe. DETAILED DESCRIPTION

[0034] To make the purpose, technical solutions, and advantages of the embodiments of the present invention more clear, the technical solutions in the embodiments of the present invention will be clearly and completely described below in conjunction with the drawings in the embodiments of the present invention. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0035] Therefore, the following detailed description of the embodiments of the present invention provided in the accompanying drawings is not intended to limit the scope of the claimed invention, but rather merely represents selected embodiments of the present invention. Based on the embodiments of the present invention, all other embodiments obtained by a person of ordinary skill in the art without creative effort are within the scope of protection of the present invention.

[0036] Example 1

[0037] See also Figure 1-Figure 5The utility model provides a technical solution: a cooling device for exhaust gas treatment, including a chassis 100, a cooling mechanism 400 and a heat exhaust mechanism 500 are respectively provided on both sides of the interior of the chassis 100, a connecting pipe 600 is provided between the cooling mechanism 400 and the heat exhaust mechanism 500, an air inlet pipe 300 is provided at the top of the chassis 100, one end of the air inlet pipe 300 is respectively connected with the heat exhaust mechanism 500 and one end of the cooling mechanism 400, the outer wall of the cooling mechanism 400 is respectively connected with a first pipe 101, a second pipe 102, a fifth pipe 105 and a sixth pipe 106, one end of the outer wall of the first pipe 101 is connected with a fourth pipe 104, one end of the fourth pipe 104 is connected with one side of the heat exhaust mechanism 500, one end of the second pipe 102 is connected with one side of the heat exhaust mechanism 500, and the outer wall of the second pipe 102 is connected with the outer wall of the first pipe 101. The outer wall is connected to a third pipe 103, one end of the fifth pipe 105 is connected to the outer wall of the third pipe 103, and one end of the sixth pipe 106 is connected to the outer wall of the first pipe 101. Through the connection between the first pipe 101 and the third pipe 103, the coolant inside the device can be input and output, and through the transfer of the second pipe 102, the coolant can be respectively passed into the interior of the cooling mechanism 400 and the heat dissipation mechanism 500, and then combined with the connection of the fifth pipe 105 and the sixth pipe 106, the cooling pipe 4003 in the cooling mechanism 400 can directly enter the coolant, which is convenient for cooling the exhaust gas inside the cooling mechanism 400, and then through the transfer of the fourth pipe 104, the coolant after heat exchange enters the heat dissipation mechanism 500 for secondary cooling, thereby realizing the recycling of the coolant.

[0038] Example 2

[0039] See also Figure 1-Figure 5As an embodiment of the present invention, further, the cooling mechanism 400 includes an outer tube 4001, a heat exchange tank 4002, a cooling pipe 4003, a retaining plate 4004, a limiting collar 4005, an output tube 4006 and a necking tube 4007. The top end of the outer tube 4001 is connected to the heat exchange tank 4002, and the top end of the heat exchange tank 4002 is connected to the cooling pipe 4003. One end of the cooling pipe 4003 is respectively connected to one end of the fifth pipe 105 and the sixth pipe 106. The cooling liquid flowing inside the fifth pipe 105 and the sixth pipe 106 is refluxed through the cooling pipe 4003. The wall is fitted with a retaining plate 4004, and the installation and use of the retaining plate 4004 allows the cooling tubes 4003 to remain stable. The outer wall of the heat exchange tank 4002 is fitted with a limiting collar 4005, and the fitted use of the limiting collar 4005 allows the exterior of the heat exchange tank 4002 to be more stable, which is beneficial to reducing thermal deformation. The bottom end of the outer tube 4001 is connected to the output tube 4006, and the bottom end of the output tube 4006 is connected to the necking tube 4007. The outer wall of the necking tube 4007 is connected to one end of the connecting pipe 600. Through the connection and use of the necking tube 4007, a connecting structure is formed between the outer tube 4001 and the connecting pipe 600.

[0040] Example 3

[0041] See also Figure 1-Figure 5 As an embodiment of the present invention, further, the communicating pipe 600 includes a pipe body 6001 and a flange 6002. Flanges 6002 are installed at both ends of the pipe body 6001, and the pipe body 6001 is connected to the cooling mechanism 400 and the heat dissipation mechanism 500 through the flanges 6002. The flanges 6002 are used to connect the pipe body 6001 and the cooling mechanism 400 and the heat dissipation mechanism 500, so that the pipe body 6001 can be tightly connected with the cooling mechanism 400 and the heat dissipation mechanism 500. The heat dissipation mechanism 500 includes an insulating outer pipe 5001, an inner pipe 5002, a limiting plate 5003 and a hole 5004. The inner pipe 5002 is installed inside the insulating outer pipe 5001, and the top of the inner pipe 5002 extends to the insulating outer pipe 5001. The outside of the warm outer tube 5001 is provided with a limit plate 5003. Through the installation and use of the inner tube 5002, the heat dissipation mechanism 500 forms a double-layer structure. The outer wall of the thermal insulation outer tube 5001 is provided with a hole 5004. The setting of the hole 5004 facilitates the docking of various pipelines. One end of the first pipeline 101 is connected to the infusion valve 700, and one end of the third pipeline 103 is connected to the drain valve 800. Through the connection between the infusion valve 700 and the drain valve 800, the pipeline is conveniently docked with the coolant supply equipment. A box door 200 is hinged on one side of the outer wall of the chassis 100. Through the hinged use of the box door 200, the opening and closing of the chassis 100 is more convenient.

[0042] Specifically, the working principle of the cooling device for exhaust gas treatment is as follows: when in use, first, check whether the structure of the device is intact, and put it into use after ensuring that the structure is intact. The first pipe 101 is connected to the third pipe 103, so that the coolant inside the device can be input and output, and the second pipe 102 is switched, so that the coolant can be respectively passed into the interior of the cooling mechanism 400 and the heat dissipation mechanism 500, and then the fifth pipe 105 and the sixth pipe 106 are connected, so that the cooling pipe 4003 in the cooling mechanism 400 can directly enter the coolant, which is convenient for cooling the exhaust gas inside the cooling mechanism 400, and then the fourth pipe 104 is switched, so that the exhaust gas after heat exchange can be cooled. The coolant enters the heat dissipation mechanism 500 for secondary cooling, thereby realizing the recycling of the coolant, and through the connection of the cooling pipe 4003, the coolant flowing inside the fifth pipe 105 and the sixth pipe 106 is refluxed, and at the same time, through the installation and use of the retaining plate 4004, the cooling pipes 4003 are kept stable, and then through the connection of the necking pipe 4007, a connecting structure is formed between the outer tube 4001 and the connecting pipe 600, and through the connection of the flange 6002, the tube body 6001 can be tightly connected with the cooling mechanism 400 and the heat dissipation mechanism 500, and at the same time, through the installation and use of the inner pipe 5002, the heat dissipation mechanism 500 has a double-layer structure.

[0043] The above description is merely a preferred embodiment of the present invention and is not intended to limit the present invention. Those skilled in the art will readily appreciate that the present invention is susceptible to various modifications and variations. Any modifications, equivalent substitutions, or improvements made within the spirit and principles of the present invention shall be included within the scope of protection of the present invention.

Claims

1. A cooling device for exhaust gas treatment, comprising a chassis (100), characterized in that: A cooling mechanism (400) and a heat dissipation mechanism (500) are provided on both sides of the interior of the chassis (100), and a connecting pipe (600) is provided between the cooling mechanism (400) and the heat dissipation mechanism (500). An air inlet pipe (300) is provided at the top of the chassis (100), and one end of the air inlet pipe (300) is connected to the heat dissipation mechanism (500) and one end of the cooling mechanism (400) in sequence. The outer wall of the cooling mechanism (400) is connected to a first pipe (101), a second pipe (102), a fifth pipe (105) and a sixth pipe (106). The pipe (106) comprises a first pipe (101) and a second pipe (102). The first pipe (101) comprises a first pipe (104) and a second pipe (106). The first pipe (101) comprises a first pipe (104) and a second pipe (106). The first pipe (101) comprises a first pipe (104) and a second pipe (106). The first pipe (101) comprises a first pipe (104) and a second pipe (106). The first pipe (101) comprises a first pipe (101) and a second pipe (106). The first pipe (101) comprises a first pipe (101) and a second pipe (106).

2. The cooling device for exhaust gas treatment according to claim 1, characterized in that: The cooling mechanism (400) comprises an outer tube (4001), a heat exchange tank (4002), a cooling pipe (4003), a retaining plate (4004), a limiting collar (4005), an output tube (4006) and a necking tube (4007); the top end of the outer tube (4001) is connected to the heat exchange tank (4002); the top end of the heat exchange tank (4002) is connected to the cooling pipe (4003); one end of the cooling pipe (4003) is respectively connected to one end of the fifth pipe (105) and one end of the sixth pipe (106).

3. The cooling device for exhaust gas treatment according to claim 2, characterized in that: The outer wall of the cooling pipe (4003) is sheathed with a retaining plate (4004).

4. The cooling device for exhaust gas treatment according to claim 3, characterized in that: The outer wall of the heat exchange tank (4002) is provided with a limiting collar (4005).

5. The cooling device for exhaust gas treatment according to claim 4, characterized in that: The bottom end of the outer cylinder (4001) is connected to the output cylinder (4006), the bottom end of the output cylinder (4006) is connected to the necked tube (4007), and the outer wall of the necked tube (4007) is connected to one end of the connecting pipe (600).

6. The cooling device for exhaust gas treatment according to claim 1, characterized in that: The communicating pipe (600) comprises a pipe body (6001) and a flange (6002). Flanges (6002) are respectively installed at both ends of the pipe body (6001), and the pipe body (6001) is respectively communicated with the cooling mechanism (400) and the heat dissipation mechanism (500) through the flanges (6002).

7. The cooling device for exhaust gas treatment according to claim 1, characterized in that: The heat dissipation mechanism (500) comprises an insulating outer tube (5001), an inner tube (5002), a limiting plate (5003) and a hole (5004). The inner tube (5002) is installed inside the insulating outer tube (5001). The top end of the inner tube (5002) extends to the outside of the insulating outer tube (5001) and is fitted with the limiting plate (5003).

8. The cooling device for exhaust gas treatment according to claim 7, characterized in that: The outer wall of the heat-insulating outer tube (5001) is provided with holes (5004).

9. The cooling device for exhaust gas treatment according to claim 1, characterized in that: One end of the first pipe (101) is connected to a liquid infusion valve (700), and one end of the third pipe (103) is connected to a liquid discharge valve (800).

10. The cooling device for exhaust gas treatment according to claim 1, characterized in that: A case door (200) is hingedly connected to one side of the outer wall of the case (100).