Organic waste gas purification treatment device

By combining a plasma treatment module and an adsorption module in the organic waste gas purification device, and by adjusting the positions of the moving box and the cathode and anode plates, the problem of poor purification effect caused by changes in waste gas concentration and rate is solved, and a highly efficient waste gas purification effect is achieved.

CN119386614BActive Publication Date: 2026-02-27HUNAN MENGTUO ENVIRONMENTAL TECH CO LTD
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Patent Information

Application Number
CN202411751896.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-12-02
Publication Date
2026-02-27
Estimated Expiration
2044-12-02

AI Technical Summary

Technical Problem

Existing organic waste gas purification devices struggle to effectively adjust purification intensity when faced with changes in waste gas concentration and rate at different production stages, resulting in poor purification performance.

Method used

The system employs a combination of plasma treatment and adsorption modules. By adjusting the positions of the moving box and the cathode and anode plates, multiple electric fields are formed to adapt to changes in waste gas concentration. High-concentration waste gas is treated using activated carbon adsorption boxes, and the electric field strength and the number of adsorption boxes are automatically adjusted in conjunction with VOC gas sensors.

Benefits of technology

It achieves automatic adjustment of electric field strength and adsorption purification intensity based on waste gas concentration and rate, improving the purification efficiency of high-concentration waste gas and ensuring the stability and efficiency of purification effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the technical field of organic waste gas treatment, in particular to an organic waste gas purification treatment device, which comprises a casing, the casing comprises a base, a plasma treatment module is arranged in the casing, an exhaust cylinder is arranged at one end of the plasma treatment module, an adsorption module is rotatably sleeved on the outer side of the exhaust cylinder, the adsorption module comprises a sleeve, and a plurality of adsorption boxes are detachably and fixedly inserted into the sleeve in a ring-shaped equiangular mode. In the application, the shaft rod is used to rotate the winding wheels at different positions to wind and release the traction ropes, the moving box one is moved into the square tube, the moving box two is moved into the U-shaped plate, the high-concentration waste gas is divided into two streams which respectively pass through different positions of the reinforced electric field, the effect of the electric field on the waste gas is improved, the two streams of waste gas can be introduced into the active carbon adsorption boxes, the high-concentration waste gas is adsorbed and filtered by using the multiple active carbon adsorption boxes, and the effect of waste gas adsorption and filtration is improved.
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Description

Technical Field

[0001] This invention relates to the field of organic waste gas treatment technology, specifically to an organic waste gas purification and treatment device. Background Technology

[0002] Organic waste gas refers to the general term for waste gas containing organic matter generated during industrial production processes. In order to treat organic waste gas, a variety of waste gas treatment technologies have been developed, such as adsorption, condensation, combustion, catalytic oxidation, and plasma methods. Among them, the adsorption method mainly uses activated carbon to adsorb odors and impurities in the waste gas. The plasma method involves passing the waste gas into a strong electric field generated by a cathode plate and an anode plate. Under the action of the strong electric field, the gas molecules in the air are ionized to form plasma. The plasma also contains a large number of active free radicals (such as hydroxyl radicals, ozone, etc.). These active free radicals have extremely strong oxidizing properties and can chemically react with the organic molecules in the waste gas, oxidizing them into harmless substances.

[0003] Different industrial production processes have different production cycles, such as start-up, stable operation, and shutdown. During these stages, the emission concentration and rate of waste gas will change accordingly. For example, during the start-up stage, due to equipment preheating and raw material input, the emission concentration and rate of waste gas may temporarily increase. When high-concentration waste gas passes through activated carbon and electric field at a relatively fast rate, the time for activated carbon and electric field to purify the waste gas is limited, resulting in insufficient purification of the waste gas by activated carbon and electric field. Most organic waste gas purification devices do not easily adjust the purification intensity according to the transmission concentration and rate of waste gas, affecting the waste gas treatment effect. Summary of the Invention

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

[0005] To achieve the above objectives, the present invention provides the following technical solution:

[0006] An organic waste gas purification and treatment device, comprising:

[0007] The housing includes a base;

[0008] A plasma processing module is arranged inside the casing. The plasma processing module includes a square tube fixedly connected to the casing. A movable box one is slidably connected to the top of the square tube. A C-shaped plate is fixed to the top surface of the square tube. A movable box two is slidably connected to the top of the C-shaped plate.

[0009] A traction mechanism is arranged to drive the mobile box one and the mobile box two to move up and down, which comprises two support seats one and two, and a shaft is arranged to rotate between the two support seats one and two, and the two ends of the shaft are fixed with winding wheels one and two, the outer side of the winding wheel one is fixed with a traction rope one which is fixed with the mobile box two, and the outer side of the winding wheel two is fixed with a traction rope two which is fixed with the mobile box one.

[0010] An exhaust cylinder is arranged at one end of the plasma processing module, which is used to discharge the treated exhaust gas.

[0011] An adsorption module is rotatably sleeved outside the exhaust cylinder, which comprises a sleeve, and a plurality of adsorption boxes are detachably inserted and fixed in the sleeve in a ring shape.

[0012] A transmission mechanism is arranged at one end of the corresponding position shaft, which is used to drive the sleeve to rotate.

[0013] Further, two cathode plates one are embedded and fixed on the inner bottom surface of the square tube, two anode plates are embedded and fixed on the inner bottom surface and the outer bottom surface of the mobile box one, and two cathode plates two are embedded and fixed on the bottom surface of the mobile box two.

[0014] Further, an air inlet cover is fixed at one end of the square tube, a VOC gas sensor is fixed inside the air inlet cover, and a sealing plate is fixed at one end of the air inlet cover close to the air inlet cover.

[0015] Further, the support seat one is fixedly connected with the air inlet cover, the support seat two is fixedly connected with the base, and the outer sides of one support seat one and one support seat two are fixed with motors for driving the shaft to rotate.

[0016] Further, an exhaust pipe is fixed at the top of the exhaust cylinder, a support column fixedly connected with the base is fixed at the bottom of the exhaust cylinder, and an arc-shaped hole one is formed through the outer side of the exhaust cylinder.

[0017] Further, a plurality of arc-shaped holes two are formed through the inner side of the sleeve in a ring shape, and two limiting blocks are rotatably connected at the bottom of the arc-shaped hole two.

[0018] Further, mesh holes are formed on the two sides of the adsorption box, and rubber strips are fixed on the outer edges of the adsorption box.

[0019] Further, a support shell is fixed at the top of the base, a top cover is detachably fixed at the top of the support shell, and a side cover is detachably fixed on one side of the support shell.

[0020] Further, the transmission mechanism comprises:

[0021] A fixed seat is fixed on the top of the base, one end of the fixed seat and the top are respectively provided with a connecting shaft one and a connecting shaft two which are in meshing transmission;

[0022] A gear one is fixedly connected with the connecting shaft two;

[0023] A gear ring is in meshing transmission with the gear one, and the gear ring is fixedly connected with the bottom surface of the sleeve.

[0024] Further, the outer sides of the connecting shaft one and the connecting shaft two are fixedly provided with a gear two which is in meshing transmission with the other, the connecting shaft one is detachably fixedly connected with the corresponding position shaft rod, and a one-way bearing is arranged between the connecting shaft one and the gear two.

[0025] Compared with the prior art, the beneficial effects of the present application are:

[0026] 1. The anode plate on the bottom surface of the moving box one and the cathode plate one on the inner bottom surface of the square tube are pre-electrically connected, a strong electric field is generated between the cathode plate one and the anode plate, the organic waste gas entering the electric field is subjected to plasma purification treatment, the organic waste gas after plasma treatment is conveyed into the adsorption box inside the sleeve, the activated carbon contained in the adsorption box can adsorb odor impurities in the organic waste gas, the purified waste gas is conveyed from the mesh hole of the adsorption box to the inside of the exhaust cylinder through the arc-shaped hole one, and finally discharged from the exhaust pipe.

[0027] 2. The VOC gas sensor in the prior art is installed in the air inlet cover, the VOC gas sensor can detect the concentration of the waste gas passing through the air inlet cover, when the waste gas concentration is detected to be large, the two motors rotate with the shaft rods to make the winding wheels (including winding wheel one and winding wheel two) on the shaft rods rotate, the winding wheels at the top position of the machine shell rotate to release the traction ropes (including traction rope one and traction rope two), the winding wheels at the bottom position of the machine shell rotate to wind the traction ropes, so that the moving box one moves down into the square tube, and the moving box two moves down into the U-shaped plate. Figure 8

[0028] ​The electric field one is generated between the anode plate on the bottom surface of the moving box one and the cathode plate on the inner bottom surface of the square tube, and the electric field two is generated between the cathode plate two on the bottom surface of the moving box two and the anode plate on the top surface of the moving box one, so that the two separated high-concentration waste gases can be treated by the electric field one and the electric field two respectively, and the distance between the cathode plate (including the cathode plate one and the cathode plate two) and the anode plate is reduced after the moving box one and the moving box two move downwards, so that the intensity of the electric field is enhanced while the concentration of the waste gas is increased, and the purification effect of the plasma treatment of the organic waste gas is improved.

[0029] 3、The diameter of the winding wheel one is set to be twice the diameter of the winding wheel two, so that the length of the traction rope one wound or released by the winding wheel one is twice the length of the traction rope two after one rotation of the winding wheel, and the moving distance of the moving box two is twice the moving distance of the moving box one when the moving box one and the moving box two move downwards by winding and releasing the traction rope by the winding wheel, so that the distance between the bottom surface of the moving box one and the inner bottom surface of the square tube is the same as the distance between the bottom surface of the moving box two and the top surface of the moving box one, and the same electric field intensity is generated in the square tube and the H-shaped plate to treat the high-concentration organic waste gas.

[0030] 4、The high-concentration waste gas is separated and passed through different electric fields by moving the moving box one and the moving box two downwards, and the intensity of the electric field is enhanced after the moving box one and the moving box two move downwards, so that the effect of the plasma treatment of the high-concentration waste gas is improved, and the waste gas discharged from the square tube and the H-shaped plate can be introduced into the corresponding adsorption box, so that two adsorption boxes filled with activated carbon can be used to adsorb and purify the waste gas when facing high-concentration waste gas, and the activated carbon can fully adsorb and filter the high-concentration waste gas, so that the efficiency of the plasma treatment and the adsorption treatment of the high-concentration waste gas is improved.

[0031] When the rate of the external waste gas transported into the square tube is relatively large, the two cathode plates one on the inner bottom surface of the square tube, the two anode plates on the top surface and the bottom surface of the moving box one, and the two cathode plates two on the bottom surface of the moving box two are all electrified, so that a long-distance electric field is generated in the whole square tube and the H-shaped plate, and the waste gas with a relatively fast moving rate can be purified in the electric field for a long time, so that the waste gas with a relatively fast moving rate can be fully plasma treated.

[0032] When high-concentration and high-speed exhaust gas is transported into the square tube, while all cathode and anode plates are opened to generate a long-distance electric field, the moving boxes one and two are moved downwards to shorten the distance between the cathode and anode plates, thereby enhancing the intensity of the electric field plasma treatment of organic exhaust gas. This achieves long-distance, strong electric field plasma treatment of exhaust gas, followed by adsorption treatment through two activated carbon adsorption boxes. This allows for automatic adjustment of the electric field intensity and the number of activated carbon adsorption boxes participating in the adsorption of exhaust gas based on the transmission concentration and rate of the exhaust gas, thus adaptively controlling the intensity of adsorption and purification. Attached Figure Description

[0033] Figure 1 This is a schematic diagram of the overall structure of the invention. Figure 1 ;

[0034] Figure 2 This is a schematic diagram of the overall structure of the invention. Figure 2 ;

[0035] Figure 3 This is a schematic diagram of the top structure of the base in this invention;

[0036] Figure 4 This is a schematic diagram of the internal structure of the square tube and the C-shaped plate in this invention;

[0037] Figure 5 This is a schematic diagram of the exhaust stack structure in this invention;

[0038] Figure 6 This is a schematic diagram of the traction mechanism structure in this invention;

[0039] Figure 7 This is a schematic diagram of the adsorption module structure in this invention;

[0040] Figure 8 This is a schematic diagram of the downward-moving state structure of movable box one and movable box two in this invention;

[0041] Figure 9 This is a schematic diagram of the internal structure of the mobile box in this invention.

[0042] In the figure: 100, the shell; 110, the base; 120, the support shell; 130, the top cover; 140, the side cover; 200, the plasma processing module; 210, the square tube; 211, the cathode plate one; 220, the moving box one; 221, the anode plate; 230, the T-shaped plate; 231, the sealing plate; 240, the moving box two; 241, the cathode plate two; 250, the air inlet cover; 251, the VOC gas sensor; 252, the air inlet pipe; 300, the traction mechanism; 310, the support seat one; 320, the support seat two; 330, the shaft rod; 340, the winding wheel one; 341, the traction rope one; 350, the winding wheel two; 351, the traction rope two; 360, the motor; 400, the exhaust cylinder; 410, the exhaust pipe; 420, the support column; 430, the arc-shaped hole one; 500, the adsorption module; 510, the sleeve; 511, the arc-shaped hole two; 512, the limiting block; 520, the adsorption box; 521, the mesh; 522, the rubber strip; 523, the baffle; 600, the transmission mechanism; 610, the fixed seat; 611, the connecting shaft one; 612, the connecting shaft two; 620, the gear one; 630, the gear ring. DETAILED DESCRIPTION

[0043] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all the other embodiments obtained by a person of ordinary skill in the art without creative work are within the protection scope of the present application.

[0044] Embodiment one, please refer to Figure 1 - Figure 9The embodiment of the application discloses an organic waste gas purification treatment device, which comprises a shell 100, the shell 100 comprises a base 110, a plasma treatment module 200 is arranged in the shell 100, the plasma treatment module 200 comprises a square tube 210 fixedly connected with the shell 100, a moving box one 220 is slidably connected to the top of the square tube 210, a U-shaped plate 230 is fixed to the top surface of the square tube 210, a moving box two 240 is slidably connected to the top of the U-shaped plate 230, a traction mechanism 300 for driving the moving box one 220 and the moving box two 240 to move up and down is arranged in the shell 100, the traction mechanism 300 comprises two support seats one 310 and two support seats two 320, shaft rods 330 are rotatably arranged between the two support seats one 310 and between the two support seats two 320, winding wheels one 340 and winding wheels two 350 are fixed to the two ends of the shaft rods 330, traction ropes one 341 fixedly wound outside the winding wheels one 340 are fixed with the moving box two 240, traction ropes two 351 fixedly wound outside the winding wheels two 350 are fixed with the moving box one 220, an exhaust cylinder 400 is arranged at one end of the plasma treatment module 200, an adsorption module 500 is rotatably sleeved outside the exhaust cylinder 400, the adsorption module 500 comprises a sleeve 510, a plurality of adsorption boxes 520 are detachably and fixedly connected to the inside of the sleeve 510 in a ring shape and at equal angles, and one end of one of the shaft rods 330 is provided with a transmission mechanism 600 for driving the sleeve 510 to rotate.

[0045] Specifically, the moving box one 220 and the moving box two 240 are slidably connected above the square tube 210 for treating waste gas by plasma, when high-concentration organic waste gas is introduced into the square tube 210, the shaft rods 330 drive the winding wheels at different positions to wind and release the traction ropes, so that the moving box one 220 moves into the square tube 210 and the moving box two 240 moves into the U-shaped plate 230, thereby realizing that the high-concentration waste gas is divided into two streams and passes through different positions of the enhanced electric field, improving the effect of the electric field on the waste gas treatment by plasma, and the two streams of waste gas can be introduced into the adsorption boxes 520 containing activated carbon, realizing that the high-concentration waste gas is adsorbed and filtered by the plurality of activated carbon adsorption boxes 520, which is beneficial to improving the effect of waste gas filtration and adsorption, and is convenient for automatically adjusting the strength of the electric field and the number of activated carbon adsorption boxes 520 participating in the adsorption of waste gas to adaptively regulate the strength of adsorption purification, so as to achieve the effect of fully purifying waste gas.

[0046] As Figure 4 and Figure 9As shown in the embodiment, the inner bottom surface of the square tube 210 is embedded with two cathode plates 211, the inner and outer bottom surfaces of the moving box 220 are embedded with two anode plates 221, and the bottom surface of the moving box 240 is embedded with two cathode plates 241, so that the cathode plates 211 and 241 can form an electric field with the anode plates 221 to treat the exhaust gas by plasma, and the electric field intensity can be enhanced by the cathode plates and the anode plates 221 in different positions, thereby improving the effect of purifying high-concentration exhaust gas.

[0047] As shown in the embodiment, the inner bottom surface of the square tube 210 is embedded with two cathode plates 211, the inner and outer bottom surfaces of the moving box 220 are embedded with two anode plates 221, and the bottom surface of the moving box 240 is embedded with two cathode plates 241, so that the cathode plates 211 and 241 can form an electric field with the anode plates 221 to treat the exhaust gas by plasma, and the electric field intensity can be enhanced by the cathode plates and the anode plates 221 in different positions, thereby improving the effect of purifying high-concentration exhaust gas. Figure 3 Figure 4 As shown in the embodiment, the inner bottom surface of the square tube 210 is embedded with two cathode plates 211, the inner and outer bottom surfaces of the moving box 220 are embedded with two anode plates 221, and the bottom surface of the moving box 240 is embedded with two cathode plates 241, so that the cathode plates 211 and 241 can form an electric field with the anode plates 221 to treat the exhaust gas by plasma, and the electric field intensity can be enhanced by the cathode plates and the anode plates 221 in different positions, thereby improving the effect of purifying high-concentration exhaust gas.

[0048] As shown in the embodiment, the inner bottom surface of the square tube 210 is embedded with two cathode plates 211, the inner and outer bottom surfaces of the moving box 220 are embedded with two anode plates 221, and the bottom surface of the moving box 240 is embedded with two cathode plates 241, so that the cathode plates 211 and 241 can form an electric field with the anode plates 221 to treat the exhaust gas by plasma, and the electric field intensity can be enhanced by the cathode plates and the anode plates 221 in different positions, thereby improving the effect of purifying high-concentration exhaust gas. Figure 3 Figure 4 As shown in the embodiment, the inner bottom surface of the square tube 210 is embedded with two cathode plates 211, the inner and outer bottom surfaces of the moving box 220 are embedded with two anode plates 221, and the bottom surface of the moving box 240 is embedded with two cathode plates 241, so that the cathode plates 211 and 241 can form an electric field with the anode plates 221 to treat the exhaust gas by plasma, and the electric field intensity can be enhanced by the cathode plates and the anode plates 221 in different positions, thereby improving the effect of purifying high-concentration exhaust gas.

[0049] As shown in the embodiment, the inner bottom surface of the square tube 210 is embedded with two cathode plates 211, the inner and outer bottom surfaces of the moving box 220 are embedded with two anode plates 221, and the bottom surface of the moving box 240 is embedded with two cathode plates 241, so that the cathode plates 211 and 241 can form an electric field with the anode plates 221 to treat the exhaust gas by plasma, and the electric field intensity can be enhanced by the cathode plates and the anode plates 221 in different positions, thereby improving the effect of purifying high-concentration exhaust gas. Figure 1 As shown in the embodiment, the inner bottom surface of the square tube 210 is embedded with two cathode plates 211, the inner and outer bottom surfaces of the moving box 220 are embedded with two anode plates 221, and the bottom surface of the moving box 240 is embedded with two cathode plates 241, so that the cathode plates 211 and 241 can form an electric field with the anode plates 221 to treat the exhaust gas by plasma, and the electric field intensity can be enhanced by the cathode plates and the anode plates 221 in different positions, thereby improving the effect of purifying high-concentration exhaust gas.

[0050] Figure 4 As shown in the embodiment, the inner bottom surface of the square tube 210 is embedded with two cathode plates 211, the inner and outer bottom surfaces of the moving box 220 are embedded with two anode plates 221, and the bottom surface of the moving box 240 is embedded with two cathode plates 241, so that the cathode plates 211 and 241 can form an electric field with the anode plates 221 to treat the exhaust gas by plasma, and the electric field intensity can be enhanced by the cathode plates and the anode plates 221 in different positions, thereby improving the effect of purifying high-concentration exhaust gas. Figure 5 ​​​As shown, in this embodiment, the top of the exhaust cylinder 400 is communicated with a fixed exhaust pipe 410, the bottom of the exhaust cylinder 400 is fixed with a support column 420 which is fixedly connected with the base 110, and the outer side of the exhaust cylinder 400 is throughly provided with an arc-shaped hole one 430. The waste gas after plasma treatment from the square tube 210 and the Z-shaped plate 230 one end enters the adsorption box 520 for adsorption treatment, and the waste gas after adsorption in the adsorption box 520 is transported to the inside of the exhaust cylinder 400 from the arc-shaped hole one 430 position through the mesh hole 521 on the adsorption box 520, and finally is discharged from the exhaust pipe 410 above the exhaust cylinder 400 to the next organic waste gas treatment station for treatment.

[0051] As shown in the figure, Figure 7 As shown in the figure, in this embodiment, the inside of the sleeve 510 is annularly and equiangularly throughly provided with a plurality of arc-shaped holes two 511, which facilitates the insertion and installation of two adsorption boxes 520 in the inside of each arc-shaped hole two 511. The bottom two ends of the arc-shaped hole two 511 are rotatably connected with two limiting blocks 512. When it is necessary to dismount the adsorption box 520 in the inside of the sleeve 510 which is saturated with adsorption, the side cover 140 is opened, the two limiting blocks 512 at the bottom surface of the sleeve 510 are rotated and pushed away from the adsorption box 520, and then the new adsorption box 520 is inserted from the top of the arc-shaped hole two 511 downwards, which facilitates the replacement of the saturated adsorption box 520 and the extrusion of the saturated adsorption box 520 to the base 110. In addition, if the adsorption box 520 at the position above the arc-shaped hole two 511 is not saturated with adsorption, but the adsorption box 520 at the position below the arc-shaped hole two 511 is saturated with adsorption, the adsorption box 520 at the position above the arc-shaped hole two 511 can be pushed down to replace the adsorption box 520 at the position below the arc-shaped hole two 511 for continuous use.

[0052] In this embodiment, the two sides of the adsorption box 520 are provided with mesh holes 521, which facilitates the transmission of the waste gas after activated carbon adsorption treatment to the inside of the exhaust cylinder 400 through the adsorption box 520. The outer side edges of the adsorption box 520 are fixedly sleeved with rubber strips 522, so that the adsorption box 520 inserted into the arc-shaped hole two 511 will not easily fall off from the arc-shaped hole two 511.

[0053] As shown in the figure, Figure 3 As shown in the figure, in this embodiment, the top of the adsorption box 520 is detachably fixed with a baffle 523, and the opening of the baffle 523 can fill the inside of the adsorption box 520 with activated carbon.

[0054] In the second embodiment, on the basis of the first embodiment, in order to automatically replace the adsorption box 520 filled with activated carbon which is saturated with adsorption.

[0055] As shown in the figure, Figure 4 and Figure 6As shown, in the embodiment, the transmission mechanism 600 comprises a fixed seat 610 fixed on the top of the base 110, one end of the fixed seat 610 and the top are respectively rotatably provided with a connecting shaft one 611 and a connecting shaft two 612 which are in meshing transmission with each other, the top of the connecting shaft two 612 is fixedly connected with a gear one 620, the bottom surface of the sleeve 510 is fixedly connected with a tooth ring 630 in meshing transmission with the gear one 620, wherein the outer sides of the connecting shaft one 611 and the connecting shaft two 612 are fixedly provided with gear two in meshing transmission with each other, the connecting shaft one 611 is detachably fixedly connected with the corresponding position shaft rod 330, and a one-way bearing is sleeved between the connecting shaft one 611 and the gear two.

[0056] Specifically, the shaft rod 330 at the bottom position of the casing 100 is recorded as a lower shaft rod 330, when the lower shaft rod 330 rotates with the winding wheel to roll up the traction rope, the lower shaft rod 330 rotates with the connecting shaft one 611, the connecting shaft one 611 idles on the gear two under the action of the one-way bearing, because the purpose of the lower shaft rod 330 rotating with the winding wheel to roll up the traction rope (including the traction rope one 341 and the traction rope two 351) is to make the moving box one 220 and the moving box two 240 move downward to cope with high-concentration waste gas, after the high-concentration waste gas is transmitted to the position of the adsorption box 520 of the sleeve 510 through one end of the square tube 210 and the shaped plate 230, the adsorption box 520 is basically in a saturated state because of the purification work of the high-concentration waste gas;

[0057] After the high-concentration waste gas is treated, in the process that the lower shaft rod 330 rotates with the winding wheel to release the traction rope to make the moving box one 220 and the moving box two 240 return to the initial position, the lower shaft rod 330 rotates with the connecting shaft one 611 again, at this time, the connecting shaft one 611 rotates with the two gear two in meshing transmission to make the connecting shaft two 612 rotate with the gear one 620, the gear one 620 rotates with the tooth ring 630, the tooth ring 630 rotates with the sleeve 510 outside the exhaust cylinder 400, the adsorption boxes 520 at the remaining positions inside the sleeve 510 are transferred to one end of the square tube 210 and the shaped plate 230 for standby, and automatic replacement of the saturated adsorption box 520 is realized, because the connecting shaft one 611 is detachably fixedly connected with the lower shaft rod 330, when the adsorption box 520 does not need to be replaced for a long time, the connecting shaft one 611 can be detached from the lower shaft rod 330, so that the sleeve 510 does not rotate with the lower shaft rod 330, and the effect of long-time use of the adsorption box 520 is realized.

[0058] It will be obvious to a person skilled in the art that the application is not limited to the details of the foregoing exemplary embodiments and can be implemented in other concrete forms without departing from the spirit or essential characteristics of the application. The embodiments are therefore to be considered in all respects as illustrative and not restrictive, the scope of the application being indicated by the appended claims rather than by the foregoing description, and all changes which come within the meaning and range of equivalency of the claims are therefore intended to be embraced therein. No reference signs in the claims should be considered as limiting the scope of the claims to the identity of the reference signs therein.

[0059] Furthermore, it should be understood that although the description is made on the basis of the embodiments, not every embodiment contains only one independent technical solution, and the description of the specification is only for the sake of clarity, and those skilled in the art should consider the specification as a whole, and the technical solutions in each embodiment can also be appropriately combined to form other embodiments that those skilled in the art can understand.

Claims

1. An organic exhaust gas purification treatment device characterized by comprising: The utility model relates to a plasma processing device, including: A cabinet (100) including a base (110); A plasma processing module (200) arranged inside the cabinet (100), the plasma processing module (200) including a square tube (210) fixedly connected with the cabinet (100), a moving box one (220) slidingly connected to the top of the square tube (210), a Z-shaped plate (230) fixed to the top surface of the square tube (210), and a moving box two (240) slidingly connected to the top of the Z-shaped plate (230); A traction mechanism (300) for driving the moving box one (220) and the moving box two (240) to move up and down, the traction mechanism (300) including two support seats one (310) and two support seats two (320), an axle (330) rotating between the two support seats one (310) and between the two support seats two (320), a winding wheel one (340) and a winding wheel two (350) fixed to both ends of the axle (330), a traction rope one (341) fixed to the moving box two (240) outside the winding wheel one (340), and a traction rope two (351) fixed to the moving box one (220) outside the winding wheel two (350); An exhaust cylinder (400) arranged at one end of the plasma processing module (200) for discharging treated exhaust gas; An adsorption module (500) rotatingly sleeved outside the exhaust cylinder (400), the adsorption module (500) including a sleeve (510) with a plurality of adsorption boxes (520) detachably inserted and fixed in a ring shape at equal angles inside the sleeve (510); A transmission mechanism (600) drivingly connected to one end of the axle (330) at a corresponding position for driving the sleeve (510) to rotate, the transmission mechanism (600) including: A fixed seat (610) fixed to the top of the base (110), a connection shaft one (611) and a connection shaft two (612) rotatingly fixed to one end and the top of the fixed seat (610) and drivingly engaged with each other; A gear one (620) fixedly connected with the connection shaft two (612); A gear ring (630) drivingly engaged with the gear one (620), the gear ring (630) fixedly connected with the bottom surface of the sleeve (510).

2. The organic exhaust gas purification treatment apparatus according to claim 1, characterized by Two cathode plates one (211) embedded and fixed to the inner bottom surface of the square tube (210), two anode plates (221) embedded and fixed to the inner bottom surface and the outer bottom surface of the moving box one (220), and two cathode plates two (241) embedded and fixed to the bottom surface of the moving box two (240).

3. The organic exhaust gas purification treatment apparatus according to claim 1, characterized by An air inlet cover (250) fixedly connected to one end of the square tube (210), a VOC gas sensor (251) fixedly installed inside the air inlet cover (250), and a sealing plate (231) fixed to one end of the Z-shaped plate (230) close to the air inlet cover (250).

4. The organic exhaust gas purification device according to claim 1, wherein The support seat one (310) fixedly connected with the Z-shaped plate (230), the support seat two (320) fixedly connected with the base (110), and an electric motor (360) fixed to the outside of one support seat one (310) and one support seat two (320) for driving the axle (330) to rotate.

5. The organic exhaust gas purification treatment apparatus according to claim 1, wherein The top of the exhaust cylinder (400) is communicated and fixed with an exhaust pipe (410), the bottom of the exhaust cylinder (400) is fixed with a support column (420) fixedly connected with the base (110), and the outer side of the exhaust cylinder (400) is throughly provided with an arc-shaped hole (430).

6. The organic exhaust gas purification treatment apparatus according to claim 1, wherein The inside of the sleeve (510) is annularly and equiangularly throughly provided with a plurality of arc-shaped holes (511), and the bottom ends of the arc-shaped holes (511) are rotatably connected with two limiting blocks (512).

7. The organic exhaust gas purification treatment apparatus according to claim 1, wherein The two sides of the adsorption box (520) are provided with mesh holes (521), and the outer side edges of the adsorption box (520) are fixedly sleeved with rubber strips (522).

8. The organic exhaust gas purification treatment apparatus according to claim 1, wherein The top of the base (110) is fixed with a support shell (120), the top of the support shell (120) is detachably fixed with a top cover (130), and one side of the support shell (120) is detachably fixed with a side cover (140).

9. The organic exhaust gas purification treatment apparatus according to claim 1, wherein The outer sides of the connecting shafts (611) and (612) are fixed with gear wheels (two) in meshing transmission, the connecting shaft (611) is detachably fixedly connected with the corresponding position shaft rod (330), and a one-way bearing is sleeved between the connecting shaft (611) and the gear wheel (two).

Citation Information

Patent Citations

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