Activated carbon cooling device

By designing the purification zone, heat exchange zone and water storage zone in the activated carbon adsorption device, and using the circulating water pump and heat exchange block for heat exchange, the problem of degradation of activated carbon adsorption effect at high temperatures is solved, and the effective reduction of activated carbon temperature and the improvement of adsorption effect is achieved.

CN120285722APending Publication Date: 2025-07-11广东中天环保科技有限公司
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Patent Information

Application Number
CN202510364667.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-26
Publication Date
2025-07-11

AI Technical Summary

Technical Problem

When the activated carbon adsorption device is operated in a high temperature environment, the temperature is too high, resulting in a decrease in the adsorption effect, affecting the working efficiency.

Method used

A activated carbon cooling device is designed, which includes a purification area, heat exchange area and water storage area in the box. The circulating water pump and heat exchange block are used to exchange heat, and the heat is taken away through the circulating water channel and the activated carbon temperature is reduced, and the heat dissipation is accelerated with the heat dissipation fan.

Benefits of technology

Effectively reduce the temperature of activated carbon, improve the adsorption effect, and enhance the processing efficiency of the device.

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Abstract

The activated carbon cooling device comprises a box body, a first partition plate and a second partition plate are arranged in an inner cavity of the box body, the area between the first partition plate and the top wall of the box body is a purification area, the area between the first partition plate and the second partition plate is a heat exchange area, and the area between the second partition plate and the bottom of the box body is a water storage area. A heat exchange device is arranged in the heat exchange area and comprises a first heat exchange block and a circulating water pump, a first cooling water channel is arranged in the first heat exchange block, the water inlet end of the circulating water pump is connected with the water storage area, the water outlet end of the circulating water pump is connected with the water inlet end of the first cooling water channel, and the water outlet end of the first cooling water channel is connected with the water storage area. The circulating water pump pumps water from the water storage area, the water enters the first cooling water channel to take away heat of the first heat exchange block, then the water flows back into the water storage area, the first heat exchange block can absorb heat of the first partition plate to cool the purification area, and therefore the temperature of activated carbon is reduced, and the adsorption effect of the activated carbon is improved.
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Description

Technical Field

[0001] The invention relates to the technical field of cooling devices, and in particular to an activated carbon cooling device. Background Art

[0002] The activated carbon adsorption device has the advantages of high treatment efficiency, convenient operation, low operating cost and wide application range. It is a widely used treatment device in waste gas or gas treatment devices. However, when the activated carbon adsorption device continues to operate in a high temperature environment, the activated carbon pile continues to accumulate heat, making the temperature too high, resulting in a rapid decrease in the adsorption effect, affecting the work efficiency. Summary of the invention

[0003] The present invention aims to solve one of the technical problems in the related art at least to a certain extent. To this end, the present invention provides an activated carbon cooling device.

[0004] An embodiment of the present invention provides an activated carbon cooling device, the activated carbon cooling device comprising:

[0005] A box body, wherein a first partition and a second partition are provided in the inner cavity of the box body, the first partition is located above the second partition, the area between the first partition and the top wall of the box body is a purification area, the area between the first partition and the second partition is a heat exchange area, and the area between the second partition and the bottom of the box body is a water storage area;

[0006] A heat exchange device is provided in the heat exchange area, and the heat exchange device includes a first heat exchange block and a circulating water pump. The upper end surface of the first heat exchange block is attached to the lower end surface of the first partition. A first cooling water channel is provided in the first heat exchange block. The water inlet end of the circulating water pump is connected to the water storage area, the water outlet end of the circulating water pump is connected to the water inlet end of the first cooling water channel, and the water outlet end of the first cooling water channel is connected to the water storage area.

[0007] The activated carbon cooling device according to the embodiment of the present invention has at least the following technical effects: the circulating water pump draws water from the water storage area, the water enters the first cooling water channel and takes away the heat of the first heat exchange block, and then the water flows back to the water storage area. The first heat exchange block can absorb the heat of the first partition to cool the purification area, thereby reducing the temperature of the activated carbon and further improving the adsorption effect of the activated carbon.

[0008] According to some embodiments of the present invention, a heat dissipation fan is provided on a side wall of the box body, and an air cavity of the heat dissipation fan is in communication with the heat exchange area.

[0009] According to some embodiments of the present invention, a plurality of the heat dissipation fans are provided on both the left side wall and the right side wall of the box body. The plurality of heat dissipation fans located on the left side wall of the box body are arranged at intervals in the front-back direction, and the plurality of heat dissipation fans located on the right side wall of the box body are arranged at intervals in the front-back direction. The heat dissipation fans located on the left side wall of the box body blow towards the heat exchange area, and the heat dissipation fans located on the right side wall of the box body blow towards the outside.

[0010] According to some embodiments of the present invention, the first heat exchange block includes a first heat conducting plate, a second heat conducting plate and a heat conducting column. The first heat conducting plate is located above the second heat conducting plate. The upper end of the heat conducting column is connected to the first heat conducting plate, and the lower end of the heat conducting column is connected to the second heat conducting plate. The first cooling water channel is provided in the second heat conducting plate.

[0011] According to some embodiments of the present invention, a second heat exchange block is provided in the purification area. The second heat exchange block is installed on the top wall of the box body. A second cooling water channel is provided in the second heat exchange block. The water outlet end of the circulating water pump is connected to the water inlet end of the second cooling water channel, and the water outlet end of the second cooling water channel is connected to the water storage area.

[0012] According to some embodiments of the present invention, there are a plurality of the second heat exchange blocks. The plurality of second heat exchange blocks are arranged at intervals in the left-right direction. The water inlet end of the second cooling water channel of the second heat exchange block located on the left is connected to the water outlet end of the second cooling water channel of the second heat exchange block located on the right. The water inlet end of the second cooling water channel of the second heat exchange block located on the rightmost side is connected to the circulating water pump, and the water outlet end of the second cooling water channel of the second heat exchange block located on the leftmost side is connected to the water storage area.

[0013] According to some embodiments of the present invention, a water inlet and a water outlet are provided on the side wall of the box body. The water inlet and the water outlet are both communicated with the water storage area.

[0014] According to some embodiments of the present invention, an air inlet and an air outlet are provided on the side wall of the box body. The air inlet and the air outlet are both communicated with the purification area.

[0015] According to some embodiments of the present invention, the purification area includes a stacking area and two air guiding areas. The two air guiding areas are respectively located on the left and right sides of the stacking area. The air guiding areas are communicated with the stacking area, and the two air guiding areas are symmetrically arranged in the left-right direction; the air inlet is communicated with one of the air guiding areas, and the air outlet is communicated with the other air guiding area.

[0016] According to some embodiments of the present invention, the length of the air guiding area in the up-down direction gradually increases towards the direction close to the stacking area.

[0017] Additional aspects and advantages of the present invention will be given in part in the following description, become apparent in part from the following description, or be learned through the practice of the present invention. Description of the Drawings

[0018] The above and / or additional aspects and advantages of the present invention will become apparent and be readily understood from the description of the embodiments in conjunction with the following drawings, in which:

[0019] Figure 1 is a schematic structural diagram of an activated carbon cooling device according to some embodiments of the present invention;

[0020] Figure 2 is a cross-sectional view of an activated carbon cooling device according to some embodiments of the present invention;

[0021] Figure 3 is a partial cross-sectional view of an activated carbon cooling device according to some embodiments of the present invention.

[0022] Reference Numerals in the Drawings:

[0023] Cabinet 100; First partition 110; Second partition 120; Water storage area 130; Heat exchange area 140; Purification area 150; Stockpiling area 151; Air guiding area 152; Upper wall 161; Lower wall 162;

[0024] Heat exchange device 200; Circulating water pump 201; First heat exchange block 210; First cooling water channel 211; First heat conducting plate 221; Second heat conducting plate 222; Heat conducting column 223; Second heat exchange block 230; Second cooling water channel 231;

[0025] Heat dissipation fan 300; Water inlet 310; Water outlet 320; Air inlet 330; Air outlet 340. Detailed Embodiments

[0026] Embodiments of the present invention will be described in detail below. Examples of the embodiments are shown in the drawings, where the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the drawings are exemplary only for explaining the present invention and should not be construed as limiting the present invention.

[0027] In the description of the present invention, it should be understood that with respect to the orientation description, such as the up, down, front, back, left, right, etc., the orientation or positional relationship indicated is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and thus should not be construed as limiting the present invention.

[0028] In the description of the present invention, "a number of" means one or more, "a plurality of" means more than two, and understandings such as "greater than", "less than", "exceeding", etc. do not include the corresponding number, while understandings such as "above", "below", "within", etc. include the corresponding number. If there is a description of "first" and "second", it is only for the purpose of distinguishing technical features and cannot be understood as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features or implicitly specifying the sequence relationship of the indicated technical features.

[0029] In the description of the present invention, unless otherwise clearly defined, terms such as "arrangement", "installation", "connection", etc. should be understood in a broad sense, and those skilled in the art can reasonably determine the specific meanings of the above terms in the present invention in combination with the specific content of the technical solution.

[0030] The following further elaborates on the embodiments of the present invention with reference to the accompanying drawings.

[0031] According to some embodiments of the present invention, referring to Figures 1 to 3 , the activated carbon cooling device includes a box body 100. A first partition 110 and a second partition 120 are arranged in the inner cavity of the box body 100. Both the first partition 110 and the second partition 120 are horizontally arranged, and the first partition 110 is located above the second partition 120. The area between the first partition 110 and the top wall of the box body 100 is the purification area 150, the area between the first partition 110 and the second partition 120 is the heat exchange area 140, and the area between the second partition 120 and the bottom of the box body 100 is the water storage area 130. That is, the first partition 110 and the second partition 120 cooperate together to divide the inner cavity of the box body 100 into the purification area 150, the heat exchange area 140, and the water storage area 130 from top to bottom in sequence. Activated carbon is provided in the purification area 150, and when the gas passes through the purification area 150, the activated carbon plays a role in adsorbing and purifying the gas. A heat exchange device 200 is provided in the heat exchange area 140. The heat exchange device 200 includes a first heat exchange block 210 and a circulating water pump 201. The upper end surface of the first heat exchange block 210 is attached to the lower end surface of the first partition 110 to facilitate heat exchange. A first cooling water channel 211 is provided in the first heat exchange block 210. The water inlet end of the circulating water pump 201 is connected to the water storage area 130, the water outlet end of the circulating water pump 201 is connected to the water inlet end of the first cooling water channel 211, and the water outlet end of the first cooling water channel 211 is connected to the water storage area 130.

[0032] It can be understood that the circulating water pump 201 pumps water from the water storage area 130, and the water enters the first cooling water channel 211 under the drive of the circulating water pump 201 to exchange heat with the first heat exchange block 210, and then the heated water flows back into the water storage area 130 for circulation in sequence. The first heat exchange block 210 can absorb the heat of the first partition 110 to cool the purification area 150, reduce the temperature of the activated carbon, and thus improve the adsorption effect of the activated carbon.

[0033] According to some embodiments of the present invention, referring toFigures 1 to 3 On the side wall of the box body 100, a heat dissipation fan 300 is provided, and the air cavity of the heat dissipation fan 300 communicates with the heat exchange area 140. The heat dissipation fan 300 is used to dissipate heat from the heat exchange area 140 to improve the heat exchange efficiency of the heat exchange device 200.

[0034] Preferably, referring to Figures 1 to 3 , a plurality of heat dissipation fans 300 are provided on both the left and right side walls of the box body 100. The plurality of heat dissipation fans 300 on the left side wall of the box body 100 are arranged at intervals in the front-rear direction, and the plurality of heat dissipation fans 300 on the right side wall of the box body 100 are arranged at intervals in the front-rear direction. The heat dissipation fans 300 on the left side wall of the box body 100 blow towards the heat exchange area 140, and the heat dissipation fans 300 on the right side wall of the box body 100 blow towards the outside, thereby accelerating the gas flow efficiency in the heat exchange area 140 and achieving the effect of rapid heat dissipation through the circulation of outside air.

[0035] According to some embodiments of the present invention, referring to Figure 2 and Figure 3 , the first heat exchange block 210 includes a first heat conducting plate 221, a second heat conducting plate 222 and a heat conducting column 223. The first heat conducting plate 221 is located above the second heat conducting plate 222. The upper end of the heat conducting column 223 is connected to the first heat conducting plate 221, and the lower end of the heat conducting column 223 is connected to the second heat conducting plate 222. A first cooling water channel 211 is provided in the second heat conducting plate 222. After the first heat conducting plate 221 exchanges heat with the first partition plate 110, the heat of the first heat conducting plate 221 is transferred to the second heat conducting plate 222 through the heat conducting column 223, and the circulating water in the first cooling water channel 211 cools the second heat conducting plate 222 again.

[0036] According to some embodiments of the present invention, referring to Figure 2 , a second heat exchange block 230 is provided in the purification area 150. The second heat exchange block 230 is installed on the top wall of the box body 100. A second cooling water channel 231 is provided in the second heat exchange block 230. The water outlet end of the circulating water pump 201 is connected to the water inlet end of the second cooling water channel 231, and the water outlet end of the second cooling water channel 231 is connected to the water storage area 130. The second heat exchange block 230 exchanges heat with the purification area 150, and the circulating water in the second cooling water channel 231 cools the second heat exchange block 230.

[0037] Preferably, there are a plurality of second heat exchange blocks 230, and the plurality of second heat exchange blocks 230 are arranged at intervals in the left - right direction. The water inlet end of the second cooling water channel 231 of the second heat exchange block 230 on the left side is connected to the water outlet end of the second cooling water channel 231 of the second heat exchange block 230 on the right side. The water inlet end of the second cooling water channel 231 of the second heat exchange block 230 on the rightmost side is connected to the circulation water pump 201, and the water outlet end of the second cooling water channel 231 of the second heat exchange block 230 on the leftmost side is connected to the water storage area 130. The plurality of second heat exchange blocks 230 cooperate to improve the heat exchange efficiency.

[0038] According to some embodiments of the present invention, referring to Figures 1 to 3 , the side wall of the box body 100 is provided with a water inlet 310 and a water outlet 320. Both the water inlet 310 and the water outlet 320 are communicated with the water storage area 130. The bottom of the water storage area 130 is provided with a polyurethane heat - insulating layer to prevent external heat from entering. The water inlet 310 is arranged on the left side wall of the box body 100, and the water outlet 320 is arranged on the right side wall of the box body 100. When the water temperature in the water storage area 130 rises to a certain temperature, the water in the water storage area 130 is replaced to avoid affecting the heat exchange efficiency.

[0039] According to some embodiments of the present invention, referring to Figures 1 to 3 , the side wall of the box body 100 is provided with an air inlet 330 and an air outlet 340. Both the air inlet 330 and the air outlet 340 are communicated with the purification area 150. The gas enters the purification area 150 through the air inlet 330 and is purified by the activated carbon in the purification area 150, and then discharged through the air outlet 340.

[0040] Preferably, referring to Figure 2 , the purification area 150 includes a stacking area 151 and two air guiding areas 152. The two air guiding areas 152 are respectively located on the left and right sides of the stacking area 151. The air guiding areas 152 are communicated with the stacking area 151, and the two air guiding areas 152 are symmetrically arranged in the left - right direction; the air inlet 330 is communicated with the air guiding area 152 on the left side, and the air outlet 340 is communicated with the air guiding area 152 on the right side, and the gas flows from left to right. Further, the length of the air guiding area 152 in the up - down direction gradually increases towards the direction close to the stacking area 151. The box body 100 has an upper wall 161 and a lower wall 162. The upper wall 161 is located above the lower wall 162. Both the left and right sides of the stacking area 151 have an upper wall 161 and a lower wall 162. The upper wall 161 and the lower wall 162 enclose the air guiding area 152. The upper wall 161 slopes upward towards the direction close to the stacking area 151, and the lower wall 162 slopes downward towards the direction close to the stacking area 151, so as to guide the gas to diffuse after entering the stacking area 151, so as to fully contact with the activated carbon.

[0041] In the description of this specification, the description referring to the term "some embodiments" means that the specific features, structures, materials or characteristics described in connection with that embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic representation of the above term does not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described may be combined in any one or more embodiments or examples in a suitable manner.

[0042] Although the embodiments of the present invention have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present invention, and the scope of the present invention is defined by the claims and their equivalents.

Claims

1. An activated carbon cooling device, characterized in that, Comprising: A box body (100), a first partition (110) and a second partition (120) are provided in the inner cavity of the box body (100). The first partition (110) is located above the second partition (120). The area between the first partition (110) and the top wall of the box body (100) is a purification area (150). The area between the first partition (110) and the second partition (120) is a heat exchange area (140). The area between the second partition (120) and the bottom of the box body (100) is a water storage area (130); A heat exchange device (200) is provided in the heat exchange area (140). The heat exchange device (200) includes a first heat exchange block (210) and a circulating water pump (201). The upper end surface of the first heat exchange block (210) is attached to the lower end surface of the first partition (110). A first cooling water channel (211) is provided in the first heat exchange block (210). The water inlet end of the circulating water pump (201) is connected to the water storage area (130). The water outlet end of the circulating water pump (201) is connected to the water inlet end of the first cooling water channel (211). The water outlet end of the first cooling water channel (211) is connected to the water storage area (130).

2. The activated carbon cooling device according to claim 1, wherein A heat dissipation fan (300) is provided on the side wall of the box body (100). The air cavity of the heat dissipation fan (300) is communicated with the heat exchange area (140).

3. The activated carbon cooling device according to claim 2, characterized in that, A plurality of the heat dissipation fans (300) are provided on both the left side wall and the right side wall of the box body (100). The plurality of heat dissipation fans (300) on the left side wall of the box body (100) are arranged at intervals in the front-back direction. The plurality of heat dissipation fans (300) on the right side wall of the box body (100) are arranged at intervals in the front-back direction. The heat dissipation fans (300) on the left side wall of the box body (100) blow towards the heat exchange area (140). The heat dissipation fans (300) on the right side wall of the box body (100) blow towards the outside.

4. The activated carbon cooling device according to claim 1, characterized in that, The first heat exchange block (210) includes a first heat conducting plate (221), a second heat conducting plate (222) and heat conducting columns (223). The first heat conducting plate (221) is located above the second heat conducting plate (222). The upper end of the heat conducting column (223) is connected to the first heat conducting plate (221). The lower end of the heat conducting column (223) is connected to the second heat conducting plate (222). The first cooling water channel (211) is provided in the second heat conducting plate (222).

5. The activated carbon cooling device according to claim 1, characterized in that, A second heat exchange block (230) is provided in the purification area (150). The second heat exchange block (230) is installed on the top wall of the box body (100). A second cooling water channel (231) is provided in the second heat exchange block (230). The water outlet end of the circulating water pump (201) is connected to the water inlet end of the second cooling water channel (231). The water outlet end of the second cooling water channel (231) is connected to the water storage area (130).

6. The activated carbon cooling device according to claim 5, wherein There are a plurality of the second heat exchange blocks (230). The plurality of the second heat exchange blocks (230) are arranged at intervals in the left - right direction. The water inlet end of the second cooling water channel (231) of the second heat exchange block (230) on the left side is connected to the water outlet end of the second cooling water channel (231) of the second heat exchange block (230) on the right side. The water inlet end of the second cooling water channel (231) of the second heat exchange block (230) on the rightmost side is connected to the circulation water pump (201). The water outlet end of the second cooling water channel (231) of the second heat exchange block (230) on the leftmost side is connected to the water storage area (130).

7. The activated carbon cooling device according to claim 1, characterized in that, An inlet (310) and an outlet (320) are provided on the side wall of the box body (100). Both the inlet (310) and the outlet (320) are communicated with the water storage area (130).

8. The activated carbon cooling device according to claim 1, characterized in that An air inlet (330) and an air outlet (340) are provided on the side wall of the box body (100). Both the air inlet (330) and the air outlet (340) are communicated with the purification area (150).

9. The activated carbon cooling device according to claim 8, characterized in that The purification area (150) includes a stacking area (151) and two air guiding areas (152). The two air guiding areas (152) are respectively located on the left and right sides of the stacking area (151). The air guiding areas (152) are communicated with the stacking area (151). The two air guiding areas (152) are symmetrically arranged in the left - right direction. The air inlet (330) is communicated with one air guiding area (152), and the air outlet (340) is communicated with the other air guiding area (152).

10. The activated carbon cooling device according to claim 9, wherein, The length of the air guiding area (152) in the up - down direction gradually increases in the direction approaching the stacking area (151).