Active carbon fiber adsorption and desorption organic waste gas treatment equipment
By installing a filter and a conveying pipe in the air intake pipe to isolate and clean impurities, the problem of impurities clogging the pores in the activated carbon fiber equipment was solved, and the normal operation of the equipment and the exhaust gas purification effect were achieved.
Patent Information
- Application Number
- CN202422795254.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-17
- Publication Date
- 2025-09-16
- Estimated Expiration
- 2034-11-17
AI Technical Summary
When the activated carbon fiber adsorption and desorption organic waste gas treatment equipment is in use, impurities adhere to the surface of the activated carbon, blocking the pore structure, resulting in a decrease in adsorption efficiency and affecting the purification effect.
A filter is installed in the air intake pipe to isolate impurities, and the impurities are transported to the storage bottle through the delivery pipe for unified cleaning to prevent impurities from entering the activated carbon adsorption box. A clamping structure is set between the storage tank and the storage bottle to ensure that impurities enter the storage tank smoothly.
Effectively prevent impurities from entering the activated carbon adsorption box, maintain the normal working state of the activated carbon, and ensure the exhaust gas purification effect.
Smart Images

Figure CN223337085U_ABST
Abstract
Description
Technical Field
[0001] The utility model belongs to the technical field related to activated carbon fiber adsorption and desorption organic waste gas treatment equipment, and specifically relates to activated carbon fiber adsorption and desorption organic waste gas treatment equipment. Background Art
[0002] Activated carbon fiber adsorption and desorption organic waste gas treatment equipment is a device that uses activated carbon fiber as an adsorbent to adsorb and desorb organic waste gas. Activated carbon fiber has a high surface area, good adsorption performance and thermal stability, and can effectively adsorb organic matter in the waste gas and release the organic matter from the activated carbon fiber through the desorption process, thereby achieving the purpose of waste gas treatment and purification. This equipment is usually used in waste gas treatment systems in industrial production, which can effectively reduce the harm caused by organic waste gas to the environment and human health.
[0003] When the activated carbon fiber adsorption and desorption organic waste gas treatment equipment is in use, when the air intake pipe transports the waste gas containing impurities to the activated carbon adsorption box, the impurities will adhere to the surface of the activated carbon, blocking the pore structure of the activated carbon, resulting in a decrease in the activated carbon adsorption efficiency and affecting the waste gas purification effect. Utility Model Content
[0004] The purpose of the utility model is to provide an activated carbon fiber adsorption and desorption organic waste gas treatment equipment to solve the problem that when the activated carbon fiber adsorption and desorption organic waste gas treatment equipment proposed in the above background technology is in use, when the air intake pipe transports the waste gas containing impurities to the activated carbon adsorption box, the impurities will adhere to the surface of the activated carbon, block the pore structure of the activated carbon, cause the activated carbon adsorption efficiency to decrease, and affect the waste gas purification effect.
[0005] To achieve the above-mentioned purpose, the utility model provides the following technical solutions: an activated carbon fiber adsorption and desorption organic waste gas treatment device, comprising an activated carbon adsorption box, wherein protective grids are installed at the left and right end positions of the interior of the activated carbon adsorption box, and the protective grids limit the activated carbon filler located at the internal position of the activated carbon adsorption box, and the activated carbon adsorption box transports the exhaust gas to the internal position through the air intake pipe at the left end position, and a filter screen for blocking impurities is fixed at the internal position of the air intake pipe, and the impurities isolated by the filter screen fall into the delivery pipe located at the lower end position of the air intake pipe, and the delivery pipe transports the impurities to a storage bottle fixed at the other end position, and a storage tank for storing impurities is installed at the internal position of the storage bottle;
[0006] The storage tank transports impurities to an internal position through a feed port at the right end position, a slide is provided at the left end position of the storage tank, the storage tank is engaged with a fixed block fixed at an internal position of the storage bottle through the slide, a rotating shaft is fixed at the upper end position of the storage tank, and a top cover is installed at the upper end position of the storage tank through the rotating shaft, the activated carbon adsorption box transports the exhaust gas after adsorption to a bag dust collector, and the bag dust collector transports the gas to a chimney located at the right end position of the induced draft fan through the induced draft fan at the right end position for discharge.
[0007] Preferably, the bag dust collector processes dust through a dust processing port at the lower end.
[0008] Preferably, the activated carbon adsorption box is supported by a support frame fixed at a lower end position, and the activated carbon adsorption box adsorbs the exhaust gas through the activated carbon filler at an internal position.
[0009] Preferably, the activated carbon filler adsorbs organic pollutants in the exhaust gas, and the air intake pipe transports the exhaust gas to an internal position of the activated carbon adsorption box.
[0010] Preferably, the filter screen isolates impurities in the exhaust gas at an internal position of the air intake duct, and the filter screen is tilted so that the isolated impurities fall into a lower position.
[0011] Preferably, a slope structure is provided at the left end of the air intake pipe to guide foreign matter into the inner position of the delivery pipe, and the delivery pipe delivers the foreign matter to the inner position of the storage bottle.
[0012] Preferably, the storage bottle allows foreign matter to enter the inner position of the storage tank through the feed port, and the fixed block is clamped at the inner position of the chute so that the feed port is aligned with the delivery pipe.
[0013] Preferably, the fixing block is clamped at an inner position of the slide groove so that the storage tank does not rotate with the rotation of the top cover, and the top cover rotates at the upper end position of the storage tank through the rotating shaft.
[0014] Preferably, the top cover is installed and removed from the storage bottle by rotation.
[0015] Compared with the existing technology, the utility model provides an activated carbon fiber adsorption and desorption organic waste gas treatment equipment, which has the following beneficial effects:
[0016] The device is equipped with a filter at an internal position of the air intake pipe. The filter isolates impurities in the exhaust gas, and the isolated impurities fall into the internal position of the air intake pipe. The air intake pipe guides the impurities into the delivery pipe through the inclined inner wall, and the impurities are transported to the storage bottle in the delivery pipe for unified cleaning. This can prevent impurities from entering the internal position of the activated carbon adsorption box, so that the activated carbon adsorption box remains in normal working condition.
[0017] A slide is provided at the left end of the storage tank. When the storage tank is inserted into the inner position of the storage bottle, the clamping block at the inner wall of the storage bottle is clamped to the inner position of the slide. In this way, when the top cover is tightened with the storage bottle by rotation, the storage tank will not rotate with the rotation of the top cover. The top cover rotates at the upper end position of the storage tank through the rotating shaft. At the same time, when the fixed block moves to the uppermost end position of the slide, the feed port in the storage tank is aligned with the conveying pipe, so that impurities can enter the inner position of the storage tank. BRIEF DESCRIPTION OF THE DRAWINGS
[0018] Figure 1 This is a schematic structural diagram of an activated carbon fiber adsorption and desorption organic waste gas treatment device of the utility model.
[0019] Figure 2 This is a schematic diagram of the internal structure of an activated carbon adsorption box of an activated carbon fiber adsorption and desorption organic waste gas treatment equipment of the utility model.
[0020] FIG3 is a schematic diagram of the internal structure of a storage bottle of an activated carbon fiber adsorption and desorption organic waste gas treatment device according to the present invention.
[0021] Figure 4 This is a schematic diagram of the top view of the storage bottle of an activated carbon fiber adsorption and desorption organic waste gas treatment device of the present utility model.
[0022] Figure 5 This is a schematic diagram of the structure of a storage tank for an activated carbon fiber adsorption and desorption organic waste gas treatment device of the present utility model.
[0023] Figure 6 This is a schematic diagram of the internal structure of the air intake pipe of an activated carbon fiber adsorption and desorption organic waste gas treatment device of the present utility model.
[0024] In the figure: 1. Activated carbon adsorption box; 2. Air intake duct; 3. Bag dust collector; 4. Chimney; 5. Induced draft fan; 6. Dust disposal port; 7. Support frame; 8. Storage bottle; 9. Top cover; 10. Conveying pipe; 11. Protective grid; 12. Activated carbon filler; 13. Rotating shaft; 14. Fixed block; 15. Chute; 16. Storage tank; 17. Feed port; 18. Filter. DETAILED DESCRIPTION
[0025] The following will clearly and completely describe the technical solutions in the embodiments of the present invention 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, rather than all the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative work are within the scope of protection of the present invention.
[0026] The utility model provides Figure 1-6 The activated carbon fiber adsorption and desorption organic waste gas treatment equipment shown in the figure includes an activated carbon adsorption box 1. The interior of the activated carbon adsorption box 1 is equipped with protective grids 11 at the left and right ends. The protective grids 11 limit the activated carbon filler 12 located at the internal position of the activated carbon adsorption box 1. The activated carbon adsorption box 1 transports the exhaust gas to the internal position through the air intake pipe 2 at the left end. A filter screen 18 for blocking impurities is fixed at the internal position of the air intake pipe 2. The impurities isolated by the filter screen 18 fall into the delivery pipe 10 located at the lower end of the air intake pipe 2. The delivery pipe 10 transports the impurities to the storage bottle 8 fixed at the other end. The storage bottle 8 is equipped with a filter screen 18 at the internal position. A storage tank 16 for storing impurities is provided, and the storage tank 16 transports the impurities to an internal position through a feed port 17 at the right end position. A chute 15 is provided at the left end position of the storage tank 16, and the storage tank 16 is clamped with a fixed block 14 fixed at an internal position of the storage bottle 8 through the chute 15. A rotating shaft 13 is fixed at the upper end position of the storage tank 16, and a top cover 9 is installed at the upper end position of the storage tank 16 through the rotating shaft 13. The activated carbon adsorption box 1 transports the exhaust gas after adsorption to the bag dust collector 3. After the bag dust collector 3 removes the dust from the gas, the gas is transported to the chimney 4 located at the right end position of the induced draft fan 5 through the right end position for discharge.
[0027] The exhaust gas first enters the activated carbon adsorption box 1 and is adsorbed. The surface of the activated carbon filler 12 has a large number of micropores and pore structures. These micropores and pores can provide a huge surface area, thereby increasing the chance of exhaust gas contact with activated carbon particles. When the exhaust gas passes through the activated carbon adsorption box 1, organic pollutant molecules will enter these micropores and pores and be adsorbed on the surface of the activated carbon by physical adsorption. The purified gas continues to flow through the bag filter 3. The bag filter 3 further processes the exhaust gas and filters out solid particles such as tiny particles and dust by filtering to ensure that the exhaust gas emissions are clean and harmless. The exhaust gas treated by the activated carbon adsorption box 1 and the bag filter 3 is discharged into the chimney 4 and discharged into the atmosphere through the chimney 4 to ensure that the exhausted exhaust gas meets environmental protection requirements and does not pollute the environment.
[0028] like Figure 3 and Figure 4 As shown, the bag dust collector 3 processes dust through the dust processing port 6 at the lower end position, the activated carbon adsorption box 1 is supported by the support frame 7 fixed at the lower end position, the activated carbon adsorption box 1 adsorbs the exhaust gas through the activated carbon filler 12 at the internal position, and the activated carbon filler 12 adsorbs organic pollutants in the exhaust gas, and the air intake pipe 2 transports the exhaust gas to the internal position of the activated carbon adsorption box 1, and the filter screen 18 isolates impurities in the exhaust gas at the internal position of the air intake pipe 2. The filter screen 18 is tilted so that the isolated impurities fall into the lower position, and the fixed block 14 is clamped at the internal position of the slide 15 so that the storage tank 16 will not rotate with the rotation of the top cover 9. The top cover 9 is rotated at the upper end position of the storage tank 16 through the rotating shaft 13, and the top cover 9 is installed and disassembled with the storage bottle 8 by rotation.
[0029] A slide groove 15 is provided at the left end position of the storage tank 16. When the storage tank 16 is inserted into the internal position of the storage bottle 8, the clamping block at the inner wall position of the storage bottle 8 is clamped to the internal position of the slide groove 15. In this way, when the top cover 9 is tightened with the storage bottle 8 by rotation, the storage tank 16 will not rotate with the rotation of the top cover 9. The top cover 9 rotates at the upper end position of the storage tank 16 through the rotating shaft 13. At the same time, when the fixing block 14 moves to the uppermost end position of the slide groove 15, the feed port 17 in the storage tank 16 is aligned with the conveying pipe 10, so that impurities can enter the internal position of the storage tank 16.
[0030] like Figure 3 and Figure 6 As shown, a sloped structure is provided at the left end of the air intake pipe 2 to guide impurities into the internal position of the delivery pipe 10. The delivery pipe 10 delivers the impurities to the internal position of the storage bottle 8. The storage bottle 8 allows the impurities to enter the internal position of the storage tank 16 through the feed port 17. The fixed block 14 is clamped at the internal position of the slide groove 15 so that the feed port 17 is aligned with the delivery pipe 10.
[0031] The filter 18 isolates the impurities in the exhaust gas, and the isolated impurities fall to the internal position of the intake pipe 2. The intake pipe 2 guides the impurities into the delivery pipe 10 through the inclined inner wall. In the delivery pipe 10, the impurities are transported to the storage bottle 8 for unified cleaning. This can prevent impurities from entering the internal position of the activated carbon adsorption box 1, so that the activated carbon adsorption box 1 maintains a normal working state.
[0032] Finally, it should be noted that the above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or make equivalent replacements for some of the technical features therein. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.
Claims
1. An activated carbon fiber adsorption and desorption organic waste gas treatment equipment, characterized in that: The invention comprises an activated carbon adsorption box (1), wherein the interior of the activated carbon adsorption box (1) is provided with protective grids (11) at the left and right end positions, wherein the protective grids (11) limit the activated carbon filler (12) located at the interior position of the activated carbon adsorption box (1), wherein the activated carbon adsorption box (1) transports the exhaust gas to the interior position through the air intake pipe (2) at the left end position, wherein a filter screen (18) for blocking impurities is fixed at the interior position of the air intake pipe (2), wherein the impurities isolated by the filter screen (18) fall into the delivery pipe (10) located at the lower end position of the air intake pipe (2), wherein the delivery pipe (10) transports the impurities to a storage bottle (8) fixed at the other end position, wherein a storage tank (16) for storing the impurities is installed at the interior position of the storage bottle (8); The storage tank (16) transports impurities to an internal position through a feed port (17) at a right end position, a chute (15) is provided at a left end position of the storage tank (16), and the storage tank (16) is engaged with a fixed block (14) fixed at an internal position of the storage bottle (8) through the chute (15), a rotating shaft (13) is fixed at an upper end position of the storage tank (16), and a top cover (9) is installed at an upper end position of the storage tank (16) through the rotating shaft (13), and the activated carbon adsorption box (1) transports the waste gas after adsorption to the bag dust collector (3), and the bag dust collector (3) removes the gas and then transports the gas to a chimney (4) located at a right end position of the induced draft fan (5) for discharge through the induced draft fan (5) at the right end position.
2. The activated carbon fiber adsorption and desorption organic waste gas treatment equipment according to claim 1, characterized in that: The bag dust collector (3) processes dust through a dust processing port (6) at the lower end.
3. The activated carbon fiber adsorption and desorption organic waste gas treatment equipment according to claim 1, characterized in that: The activated carbon adsorption box (1) is supported by a support frame (7) fixed at a lower end position, and the activated carbon adsorption box (1) adsorbs exhaust gas through the activated carbon filler (12) at an internal position.
4. The activated carbon fiber adsorption and desorption organic waste gas treatment equipment according to claim 3, characterized in that: The activated carbon filler (12) adsorbs organic pollutants in the exhaust gas, and the air intake pipe (2) transports the exhaust gas to an internal position of the activated carbon adsorption box (1).
5. The activated carbon fiber adsorption and desorption organic waste gas treatment equipment according to claim 4, characterized in that: The filter (18) isolates impurities in the exhaust gas at an internal position of the intake pipe (2), and the filter (18) is tilted so that the isolated impurities fall into a lower position.
6. The activated carbon fiber adsorption and desorption organic waste gas treatment equipment according to claim 5, characterized in that: A sloped structure is provided at the left end of the air intake pipe (2) to guide foreign matter into an inner position of the delivery pipe (10), and the delivery pipe (10) delivers the foreign matter to an inner position of the storage bottle (8).
7. The activated carbon fiber adsorption and desorption organic waste gas treatment equipment according to claim 6, characterized in that: The storage bottle (8) allows foreign matter to enter the internal position of the storage tank (16) through the feed port (17), and the fixing block (14) is clamped at the internal position of the chute (15) so that the feed port (17) is aligned with the conveying pipe (10).
8. The activated carbon fiber adsorption and desorption organic waste gas treatment equipment according to claim 7, characterized in that: The fixing block (14) is clamped at an inner position of the slide groove (15) so that the storage tank (16) does not rotate along with the rotation of the top cover (9), and the top cover (9) rotates at the upper end position of the storage tank (16) via the rotating shaft (13).
9. The activated carbon fiber adsorption and desorption organic waste gas treatment equipment according to claim 8, characterized in that: The top cover (9) is installed and removed from the storage bottle (8) by rotating.