Organic waste gas adsorption filtering treatment system
By designing the coordination between the air cylinder and piston, combined with the alternating mechanism and air pressure monitoring, the problem of uneven use of activated carbon components was solved, achieving uniform utilization and consistent replacement cycles of activated carbon components, and improving the efficiency of waste gas treatment.
Patent Information
- Application Number
- CN202510368856.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-27
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2045-03-27
AI Technical Summary
In existing organic waste gas adsorption systems, the use of activated carbon components is uneven, leading to frequent replacement of components near the air inlet, which affects the treatment effect and cycle.
An adsorption filtration system was designed to uniformly distribute the waste gas volume through the cooperation of the air cylinder and piston, and to achieve uniform utilization and alternating operation of the activated carbon components through the alternating mechanism and air pressure monitoring, ensuring the consistency of use and the same replacement cycle for each component.
This achieves uniform use and replacement cycle of activated carbon components, improves the efficiency and effectiveness of waste gas treatment, and ensures the rational utilization of activated carbon.
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Figure CN119869151B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of organic waste gas treatment, and specifically relates to an organic waste gas adsorption and filtration treatment system. BACKGROUND
[0002] In the existing organic waste gas adsorption technology, the waste gas is usually introduced into the interiors of multiple active carbon assemblies through a main pipe to improve the effect and efficiency of waste gas treatment. However, in the process of diversion of the main pipe, the active carbon assembly close to the gas inlet end of the main pipe has a larger treatment capacity than the active carbon assembly far from the gas inlet end of the main pipe, so that the active carbon in the interior of the active carbon assembly close to the gas inlet end is saturated at a faster speed, which causes the active carbon in the interiors of the multiple active carbon assemblies to be not used uniformly and reasonably, and causes the active carbon in the interior of the active carbon assembly close to the gas inlet end to be replaced more frequently, so that the replacement cycle of the active carbon in the interiors of the multiple active carbon assemblies is not the same and uniform, and the phenomenon of poor adsorption and treatment effect of the organic waste gas often occurs due to the failure to replace the active carbon in the interior of the individual active carbon assembly in time.
[0003] Therefore, the organic waste gas adsorption and filtration treatment system is proposed to solve the above problems. SUMMARY
[0004] To solve the problems in the background technology, the application provides an organic waste gas adsorption and filtration treatment system.
[0005] To achieve the above purpose, the application provides the following technical scheme: an organic waste gas adsorption and filtration treatment system, comprising an adsorption and filtration mechanism and an air inlet mechanism.
[0006] The adsorption and filtration mechanism is arranged on the air inlet mechanism.
[0007] The air inlet mechanism comprises an air inlet box, and the adsorption and filtration mechanism comprises a treatment box which is connected to the air inlet box and can communicate with the air inlet box, three chambers in the treatment box are each provided with an active carbon assembly, and the top of the treatment box is connected with an exhaust pipe.
[0008] The three-way pipe is connected with the air inlet box, two ends of the three-way pipe in the air inlet box are respectively connected with fixed pipes, the upper side of the fixed pipe is fixedly connected with three air block one, the top of the air block one is fixedly connected with an air cylinder, the top of the air cylinder is fixedly connected with a bend pipe, the other end of the bend pipe is connected with an air block two, the other side of the air block two is connected with a gas distribution assembly located at the connecting position of the air inlet box and the processing box, both sides of the air cylinder are sleeved with a piston one, one side of the piston one is connected with a spring one, the other end of the spring one is connected with the inner wall of the air cylinder, both sides of the air block one are provided with a valve one, the outer side of the valve one is connected with a connecting rod, the other end of the connecting rod extends to the outside of the air block one and is connected with a clamping seat, the outer side of the valve one is connected with a spring three, the other end of the spring three is connected with the inner wall of the air block one.
[0009] Preferably, the lower side of the air cylinder is movably sleeved with a movable block, the top of the movable block is connected with a spring two, the other end of the spring two is connected with the inner wall of the air cylinder, the bottom of the movable block is connected with a clamping block extending to the lower side of the air cylinder, the inclined surface of one side of the movable block abuts against an inclined block which can be sleeved in the air cylinder, the other side of the inclined block is connected with a bend rod.
[0010] Preferably, the inner side of the air block one is connected with a T-shaped pipe, both sides of the T-shaped pipe are sleeved with a piston rod two, the other end of the piston rod two is connected with a fixed plate located outside the T-shaped pipe, the fixed plate is connected with the clamping seat, the center of the T-shaped pipe is sleeved with a piston three, the center of the T-shaped pipe is sleeved with a push rod, one end of the push rod extends to the outside of the T-shaped pipe and is connected with an inclined push block, the piston three and the push rod are connected with a spring four.
[0011] Preferably, the alternating mechanism is further included, the alternating mechanism is arranged in the air inlet box, the alternating mechanism comprises a limiting frame, the limiting frame is installed in the air inlet box, and a movable frame is movably sleeved on the limiting frame.
[0012] Preferably, both sides of the movable frame are provided with inclined grooves, the inclined grooves are provided with six, and the inner wall of the inclined groove abuts against the inclined push block.
[0013] Preferably, both sides of the limiting frame are connected with magnetic blocks one, and both sides of the movable frame are connected with magnetic blocks two.
[0014] Preferably, the upper side of the movable frame is connected with the same number of connecting frames as the air block two, one end of the connecting frame extends into the air block two and is connected with a valve two.
[0015] Preferably, a reset mechanism is further included, the reset mechanism comprises two moving frames, both of the moving frames are slidingly installed on both sides in the air inlet box, the inner side of the moving frame is connected with a fixed rod, the other end of the fixed rod extends into the T-shaped pipe through the air block and is connected with the piston three, a cam driven by the motor is movably installed below the inside of the air inlet box, and the fixed pipe is provided with a gas pressure monitoring mechanism.
[0016] Compared with the prior art, the present application has the following advantages:
[0017] The present application sets up the air cylinder and the piston one, when the gas stored in each air cylinder is the same, the spring one is in the compressed state, after the corresponding air block one is closed and opened, the piston one can be pushed to move to the inside due to the elastic recovery of the spring one, and the gas in the air cylinder can enter the processing box through the elbow, the air block two and the gas distribution assembly, so that the waste gas adsorbed by each activated carbon assembly is the same, the design can make the waste gas be evenly distributed to each activated carbon assembly, so as to guarantee the consistency of the use degree of the activated carbon assembly, and also can guarantee the same replacement period of each activated carbon assembly.
[0018] The present application sets up the piston one and the inclined block, the waste gas is sent into the three-way pipe and the fixed pipe through the induced draft fan, is sent into a group of opened air block one through the fixed pipe, and is sent into the corresponding air cylinder, so that the piston one moves to the outside under the action of high pressure, and the spring one is compressed, when the piston one moves to abut and push the elbow and the inclined block to move, the movable block and the clamping block can be pushed to lift up through the inclined surface of the inclined block, at this time, the spring two is compressed, when the clamping block is separated from the clamping seat, the fixing of the clamping seat, the connecting rod and the valve one is released, the spring three in the compressed state is pushed to move to the inside to close under the elastic recovery, so that the air block one is closed, at this time, the air cylinder can store a fixed amount of waste gas, when the whole group of air block one is closed, the waste gas storage in the corresponding air cylinder is the same, so that the gas in the subsequent air cylinder can be reasonably utilized when the gas in the air cylinder is discharged into the processing box.
[0019] The present application sets up the ventilation block one, the air cylinder and the ventilation block two, after a group of air cylinders store fixed amount of waste gas, through the cooperation of the movable block and the inclined block, the ventilation block one is closed, and the inclined push block is elastically extruded and abuts on the inclined surface groove, because the two groups of ventilation block one are all closed, with the continuous entering of waste gas into the fixed pipe, the air pressure in the fixed pipe is increased, and is monitored by the air pressure monitoring mechanism, the control end will drive the cam to rotate one hundred and eighty degrees through the motor, drives the moving frame to drive the other group of inclined push block to move outward to release the clamping, and at the same time, the other group of ventilation block one is opened, at this time, the inclined push block can be pushed under the elastic extrusion force, drives the movable frame to drive the valve two to move, so that the originally closed ventilation block two is opened, and the originally opened air cylinder is closed, so that the waste gas in the group of air cylinders is treated through the activated carbon assembly, the other group of air cylinders adds waste gas and stores, and the alternate operation of the two groups of air cylinders is formed, so that the continuous supply of waste gas is ensured, and the desorption treatment efficiency of waste gas is improved. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 It is a structural schematic diagram of the present application;
[0021] Figure 2 It is a sectional view structural schematic diagram of the present application;
[0022] Figure 3 It is a structural schematic diagram of the air inlet mechanism of the present application;
[0023] Figure 4 It is a sectional view structural schematic diagram of the air cylinder of the present application;
[0024] Figure 5 It is a sectional view structural schematic diagram of the ventilation block one of the present application;
[0025] Figure 6 It is Figure 5 It is a local enlarged structural schematic diagram of A in the figure;
[0026] Figure 7 It is Figure 5 It is a local enlarged structural schematic diagram of B in the figure;
[0027] Figure 8 It is a sectional view structural schematic diagram of the piston one of the present application;
[0028] Figure 9 It is a sectional view structural schematic diagram of the clamping seat of the present application;
[0029] Figure 10 It is Figure 9 It is a local enlarged structural schematic diagram of C in the figure;
[0030] Figure 11 It is a structural schematic diagram of the T-shaped pipe of the present application;
[0031] Figure 12It is a sectional structure schematic view of the T-shaped pipe of the present application;
[0032] Figure 13 It is a sectional structure schematic view of the T-shaped pipe of the present application; Figure 12 It is a local enlarged structure schematic view at D;
[0033] Figure 14 It is a sectional structure schematic view of the movable frame of the present application;
[0034] Figure 15 It is a sectional structure schematic view of the ventilation block two of the present application;
[0035] Figure 16 It is a structure schematic view of the movable frame of the present application;
[0036] Figure 17 It is a structure schematic view of the cam of the present application.
[0037] In the figure: 1, adsorption filtering mechanism; 11, processing box; 12, activated carbon assembly; 13, exhaust pipe; 2, air inlet mechanism; 21, air inlet box; 22, three-way pipe; 23, fixed pipe; 24, ventilation block one; 25, air cylinder; 26, piston one; 27, spring one; 28, elbow pipe; 29, movable block; 210, spring two; 211, inclined block; 212, bent rod; 213, valve one; 214, connecting rod; 215, spring three; 216, clamping seat; 217, clamping block; 218, T-shaped pipe; 219, piston rod two; 220, fixed plate; 221, piston three; 222, push rod; 223, inclined push block; 224, spring four; 225, ventilation block two; 226, gas distribution assembly; 227, air pressure monitoring mechanism; 3, alternating mechanism; 31, limiting frame; 32, movable frame; 33, magnetic block one; 34, magnetic block two; 35, inclined groove; 36, connecting frame; 37, valve two; 4, reset mechanism; 41, movable frame; 42, fixed rod; 43, cam. DETAILED DESCRIPTION
[0038] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the 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. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0039] As shown in the figure, the present application provides an organic waste gas adsorption filtering processing system, which comprises an adsorption filtering mechanism 1 and an air inlet mechanism 2; Figures 1 to 17
[0040] The adsorption filtering mechanism 1 is arranged on the air inlet mechanism 2;
[0041] The air intake mechanism 2 comprises an air intake box 21, the adsorption filtering mechanism 1 comprises a treatment box 11 connected to and in communication with the air intake box 21, and an activated carbon assembly 12 is arranged in each of three chambers in the treatment box 11, and an exhaust pipe 13 is in communication with the top of the treatment box 11;
[0042] A three-way pipe 22 is in communication in the air intake box 21, and a fixed pipe 23 is connected to each end of the three-way pipe 22 in the air intake box 21, three air block I 24 are fixedly connected above the fixed pipe 23, an air cylinder 25 is fixedly connected to the top of the air block I 24, a bend pipe 28 is fixedly connected to the top of the air cylinder 25, an air block II 225 is connected to the other end of the bend pipe 28, an air distribution assembly 226 is connected to the other side of the air block II 225 at the communication position between the air intake box 21 and the treatment box 11, a piston I 26 is sleeved on each side in the air cylinder 25, a spring I 27 is connected to one side of the piston I 26, the other end of the spring I 27 is connected to the inner wall of the air cylinder 25, a valve I 213 is arranged on each side in the air block I 24, a connecting rod 214 is connected to the outer side of the valve I 213, the other end of the connecting rod 214 extends to the outside of the air block I 24 and is connected to a clamping seat 216, a spring III 215 is connected to the outer side of the valve I 213, and the other end of the spring III 215 is connected to the inner wall of the air block I 24.
[0043] By adopting the above scheme, when the amount of gas stored in each air cylinder 25 is the same, the spring I 27 is in a compressed state, the corresponding air block I 24 is closed and the air block II 225 is opened, and due to the elastic restoring force of the spring I 27, the piston I 26 can be pushed to move inward, and the gas in the air cylinder 25 can enter the treatment box 11 through the bend pipe 28, the air block II 225 and the air distribution assembly 226, so that the amount of waste gas adsorbed and treated by each activated carbon assembly 12 is the same, thereby enabling the waste gas to be evenly distributed to each activated carbon assembly 12, and the consistency of the use degree of the activated carbon assembly 12 is ensured.
[0044] As shown in Figures 4 to 10 The bottom of the air cylinder 25 is movably sleeved with a movable block 29, the top of the movable block 29 is connected with a spring II 210, the other end of the spring II 210 is connected with the inner wall of the air cylinder 25, the bottom of the movable block 29 is connected with a clamping block 217 extending to the bottom of the air cylinder 25, the inclined surface on one side of the movable block 29 abuts against an inclined block 211 which can be sleeved in the air cylinder 25, and the other side of the inclined block 211 is connected with a bend rod 212.
[0045] Adopting the above scheme: the exhaust gas is sent into a group of open venting blocks one 24 through the fixed pipe 23, and into the corresponding air cylinder 25, so that the piston one 26 moves outward under the action of high pressure, and the spring one 27 is compressed, when the piston one 26 moves to abut and push the bent rod 212 and the inclined block 211 to move, the movable block 29 and the clamping block 217 can be lifted up by the inclined surface of the inclined block 211, at this time the spring two 210 is compressed, when the clamping block 217 is separated from the clamping seat 216, the fixing of the clamping seat 216, the connecting rod 214 and the valve one 213 is released, so that the spring three 215 in the compressed state pushes the valve one 213, the connecting rod 214 and the clamping seat 216 to move inward to close, so that the venting block one 24 is closed, so that the air cylinder 25 can store a fixed amount of exhaust gas.
[0046] As shown in Figures 11 to 13 , the inner side of the venting block one 24 is connected with a T-shaped pipe 218, both sides of the inside of the T-shaped pipe 218 are sleeved with a piston rod two 219, the other end of the piston rod two 219 is connected with a fixed plate 220 located outside the T-shaped pipe 218, the fixed plate 220 is connected with the clamping seat 216, the central part of the inside of the T-shaped pipe 218 is sleeved with a piston three 221, the central part of the inside of the T-shaped pipe 218 is sleeved with a push rod 222, one end of the push rod 222 extends to the outside of the T-shaped pipe 218 and is connected with an inclined push block 223, the piston three 221 and the push rod 222 are connected with a spring four 224.
[0047] Adopting the above scheme: when the valve one 213 closes inwardly, the movement of the clamping seat 216 will drive the fixed plate 220 and the piston rod two 219 to move inwardly to the inside of the T-shaped pipe 218, and push the piston three 221 to move by air pressure and elastically extrude the push rod 222 and the inclined push block 223 through the spring four 224, so that the inclined push block 223 abuts and extrudes on the inclined groove 35.
[0048] As shown in Figure 2 , Figure 3 , Figure 14 and Figure 15 , further comprising an alternating mechanism 3, the alternating mechanism 3 is arranged in the air inlet tank 21, the alternating mechanism 3 comprises a limiting frame 31, the limiting frame 31 is installed in the air inlet tank 21, and the limiting frame 31 is movably sleeved with a movable frame 32.
[0049] Adopting the above scheme: when the movable frame 32 moves, it can be limited by the limiting frame 31, so that the movable frame 32 can only move horizontally on the limiting frame 31.
[0050] As shown in Figure 2 , Figure 3 , Figure 14 and Figure 15As shown, the two sides in the movable frame 32 are provided with inclined grooves 35, and the inner wall of the inclined grooves 35 abuts against the inclined push block 223.
[0051] With the above scheme, when the other group of inclined push blocks 223 is not clamped with the inclined grooves 35, the group of inclined push blocks 223 can be moved along the limiting frame 31 to one side by extruding the inclined grooves 35 under the extrusion of the spring 224.
[0052] As shown in Figure 2 , Figure 3 , Figure 14 and Figure 15 , the two sides inside the limiting frame 31 are connected with magnetic blocks one 33, and the two sides of the movable frame 32 are connected with magnetic blocks two 34.
[0053] With the above scheme, when the movable frame 32 moves along the limiting frame 31 to one side, the group of magnetic blocks two 34 and the magnetic blocks one 33 can be separated, and finally the other group of magnetic blocks two 34 and the magnetic blocks one 33 are magnetically attracted, so that the movable frame 32 can be fixed after moving.
[0054] As shown in Figure 2 , Figure 3 , Figure 14 and Figure 15 , the upper side of the movable frame 32 is connected with the same number of connecting frames 36 as the number of the air block two 225, one end of the connecting frame 36 extends into the air block two 225 and is connected with a valve two 37.
[0055] With the above scheme, due to the movement of the movable frame 32, the connecting frame 36 can drive the valve two 37 to move, so that the originally closed air block two 225 is opened, and the originally opened air block two 225 is closed, thereby forming an alternation.
[0056] As shown in Figure 2 , Figure 3 , Figure 12 , Figure 13 , Figure 16 and Figure 17 , it further includes a reset mechanism 4, the reset mechanism 4 includes two moving frames 41, the two moving frames 41 are slidably installed on the two sides inside the air inlet tank 21, the inner side of the moving frame 41 is connected with a fixed rod 42, the other end of the fixed rod 42 penetrates through the air block one 24 and extends into the T-shaped pipe 218 and is connected with the piston three 221, a cam 43 driven by a motor is movably installed at the lower side inside the air inlet tank 21, and the fixed pipe 23 is provided with a gas pressure monitoring mechanism 227.
[0057] Adopt the above scheme: due to the rotation of the cam 43, the moving frame 41 and the fixed rod 42 can be pushed to move the piston three 221, and the piston rod two 219, the fixed plate 220 and the clamping seat 216 are pushed outwards by the gas pressure, and the connecting rod 214 and the valve one 213 are moved outwards, another group of ventilation blocks one 24 are opened, and the clamping seat 216 is moved to the clamping block 217 and is clamped and fixed, so that the ventilation blocks one 24 are opened.
[0058] The working principle and use process of the application are as follows:
[0059] Initial state: a group of ventilation blocks one 24 are opened, and another group of ventilation blocks one 24 are closed; the inclined push block 223 corresponding to the closed ventilation blocks one 24 is clamped and abuts in the inclined surface groove 35; the inclined push block 223 corresponding to the opened ventilation blocks one 24 is in contact with the inner wall of the inclined surface groove 35 and is not clamped; the ventilation block two 225 corresponding to the closed ventilation blocks one 24 is in the opened state; the ventilation block two 225 corresponding to the opened ventilation blocks one 24 is in the closed state; the moving frame 41 corresponding to the closed ventilation blocks one 24 abuts on the cam 43; and the moving frame 41 corresponding to the opened ventilation blocks one 24 is away from the cam 43.
[0060] The exhaust gas is sent into the three-head pipe 22 and the fixed pipe 23 by the induced draft fan, is sent into a group of opened ventilation blocks one 24 through the fixed pipe 23, and enters the corresponding air cylinder 25, so that the piston one 26 moves outward under the action of high pressure, and the spring one 27 is compressed; when the piston one 26 moves and abuts and pushes the bent rod 212 and the inclined block 211 to move, the inclined surface of the inclined block 211 can extrude and push the movable block 29 and the clamping block 217 upward, at this time, the spring two 210 is compressed, and when the clamping block 217 is separated from the clamping seat 216, the fixing of the clamping seat 216, the connecting rod 214 and the valve one 213 is released, so that the spring three 215 in the compressed state pushes the valve one 213, the connecting rod 214 and the clamping seat 216 to move inward to close, so that the ventilation blocks one 24 are closed; at this time, a fixed amount of exhaust gas can be stored in the air cylinder 25; when the whole group of ventilation blocks one 24 are closed, the storage amount of exhaust gas in the air cylinder 25 corresponding to the ventilation blocks one 24 is the same; due to the complete closing of the two groups of ventilation blocks one 24, as the exhaust gas continuously enters the fixed pipe 23, the gas pressure in the fixed pipe 23 rises and is monitored by the gas pressure monitoring mechanism 227.
[0061] When the valve 213 closes inwardly, the movement of the cartridge 216 will drive the fixed plate 220 and the piston rod two 219 to move inwardly to the T-shaped pipe 218, and through the air pressure to push the piston three 221, the fixed rod 42 and the moving frame 41 to move and abut on the cam 43, at the same time, the movement of the piston three 221 and the elastic extrusion of the spring four 224 to the push rod 222 and the inclined push block 223, so that the inclined push block 223 abuts and extrudes on the inclined groove 35, because the other group of inclined push blocks 223 is clamped in the other group of inclined grooves 35, and the group of magnetic blocks two 34 and the magnetic block one 33 are in the state of magnetic attraction, therefore, the group of inclined push blocks 223 cannot move the movable frame 32 through the elastic extrusion of the spring four 224, which can ensure the smooth closing of the ventilation block one 24. When the air pressure monitoring mechanism 227 monitors the increase of the air pressure in the fixed pipe 23, the control end will drive the cam 43 to rotate one hundred and eighty degrees through the motor, in the process of rotating the cam 43, the cam 43 will extrude and push another moving frame 41 abutting with the cam 43, so that the moving frame 41 drives the fixed rod 42 and the piston three 221 to move, at the same time, it drives another group of clamped inclined push blocks 223 to retract, which releases the clamping of the inclined push block 223 and the inclined groove 35. At this time, because the other group of inclined push blocks 223 is not clamped with the inclined groove 35, the group of inclined push blocks 223 can move the movable frame 32 along the limiting frame 31 to one side through the extrusion of the inclined groove 35 under the elastic extrusion of the spring four 224, so that the group of magnetic blocks two 34 and the magnetic block one 33 are separated, and finally the other group of magnetic blocks two 34 and the magnetic block one 33 are magnetically attracted. Because of the movement of the movable frame 32, the connecting frame 36 drives the valve two 37 to move, so that the originally closed ventilation block two 225 is opened, and the originally opened ventilation block two 225 is closed, forming alternation. When the ventilation block two 225 is opened, because of the elastic recovery of the spring one 27, the piston one 26 can be pushed to move inwardly, and the gas in the air cylinder 25 can enter the treatment box 11 through the elbow pipe 28, the ventilation block two 225 and the gas distribution assembly 226, so that each activated carbon assembly 12 absorbs the same amount of waste gas for treatment, so that the waste gas can be evenly distributed to each activated carbon assembly 12, ensuring the consistency of the use degree of the activated carbon assembly 12, and also ensuring the same replacement period of each activated carbon assembly 12.
[0062] When the fixed rod 42 drives the piston three 221 to move, the piston rod two 219, the fixed plate 220 and the cartridge 216 can be pushed by the air pressure to move outwardly, at the same time, it drives the connecting rod 214 and the valve one 213 to move outwardly, opens another group of ventilation blocks one 24, and fixes the cartridge 216 when it moves to the clamping block 217, when another group of ventilation blocks one 24 is opened, the waste gas can continue to enter another group of air cylinders 25 through the fixed pipe 23, forming two groups of air cylinders 25 running alternately, so as to ensure the continuous supply of waste gas and improve the desorption treatment efficiency of waste gas.
[0063] It is to be understood that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to be limiting; it is not intended to exclude myriad other embodiments of the present application that other inventors can develop based on the same general inventive concepts embodied by the described embodiments. That is, although the present application is described in terms of particular embodiments and implementations, it is to be understood that the terminology used is for the purpose of descriptive clarity and that it should be taken in its broadest possible sense. This is especially so where "comprising", "including", "containing", "characterized by" or the like are used as subordinating conjunctions. In this context, "comprising" is intended to mean that the embodiments can include a combination of one or more elements and / or features, including those not expressly described, without necessarily relying on any of the other features or elements not expressly described. In addition, it is to be understood that the described embodiments include any alterative or equivalent implementations or substitutions for one or more of the elements or features described. Any such alternatives or equivalents are intended to be encompassed by the description of the described embodiments.
[0064] While the embodiments of the application have been shown and described herein, it is to be understood that the application is not limited to these embodiments. Rather, many modifications, changes, alternatives and variations will be apparent to those skilled in the art once the teachings of the present disclosure have been known. It is therefore contemplated that the application shall cover any and all such modifications, changes, alternatives and variations as fall within the true spirit and scope of the present application.
Claims
1. An organic waste gas adsorption and filtration treatment system, characterized in that, It includes an adsorption filtration mechanism (1) and an air intake mechanism (2); The adsorption filtration mechanism (1) is mounted on the air intake mechanism (2); The air intake mechanism (2) includes an air intake box (21), and the adsorption filtration mechanism (1) includes a processing box (11). The processing box (11) is connected to and can communicate with the air intake box (21). Activated carbon components (12) are provided in the three chambers inside the processing box (11). An exhaust pipe (13) is connected to the top of the processing box (11). The air intake box (21) is connected to a three-pronged pipe (22). The two ends of the three-pronged pipe (22) inside the air intake box (21) are respectively connected to fixed pipes (23). Three ventilation blocks (24) are fixedly connected above the fixed pipes (23). An air cylinder (25) is fixedly connected to the top of each ventilation block (24). A bent pipe (28) is fixedly connected to the top of each air cylinder (25). The other end of the bent pipe (28) is connected to a second ventilation block (225). A gas distribution assembly (226) located at the connection between the air intake box (21) and the processing box (11) is connected to the air cylinder (225). Piston 1 (26) is fitted on both sides of the air cylinder (25). One side of piston 1 (26) is connected to spring 1 (27). The other end of spring 1 (27) is connected to the inner wall of air cylinder (25). Valves 1 (213) are provided on both sides of air block 1 (24). Connecting rods (214) are connected to the outer side of valve 1 (213). The other end of connecting rods (214) extends to the outside of air block 1 (24) and is connected to a card seat (216). Spring 3 (215) is connected to the outer side of valve 1 (213). The other end of spring 3 (215) is connected to the inner wall of air block 1 (24).
2. The organic waste gas adsorption and filtration treatment system according to claim 1, characterized in that: A movable block (29) is movably fitted inside the lower part of the air cylinder (25). A second spring (210) is connected to the top of the movable block (29). The other end of the second spring (210) is connected to the inner wall of the air cylinder (25). A locking block (217) extending to the bottom of the air cylinder (25) is connected to the bottom of the movable block (29). An inclined block (211) that can be fitted inside the air cylinder (25) is abutted on one side of the movable block (29). A bent rod (212) is connected to the other side of the inclined block (211).
3. The organic waste gas adsorption and filtration treatment system according to claim 1, characterized in that: The inner side of the ventilation block 1 (24) is connected to a T-shaped tube (218). Piston rod 2 (219) is sleeved on both sides inside the T-shaped tube (218). The other end of the piston rod 2 (219) is connected to a fixing plate (220) located outside the T-shaped tube (218). The fixing plate (220) is connected to the card seat (216). Piston 3 (221) is sleeved in the center inside the T-shaped tube (218). Push rod (222) is sleeved in the center inside the T-shaped tube (218). One end of the push rod (222) extends to the outside of the T-shaped tube (218) and is connected to a slanted push block (223). Spring 4 (224) is connected between piston 3 (221) and push rod (222).
4. The organic waste gas adsorption and filtration treatment system according to claim 3, characterized in that, It also includes an alternation mechanism (3), which is located inside the air intake box (21). The alternation mechanism (3) includes a limit frame (31), which is installed inside the air intake box (21). A movable frame (32) is movably sleeved on the limit frame (31).
5. The organic waste gas adsorption and filtration treatment system according to claim 4, characterized in that: The movable frame (32) has inclined grooves (35) on both sides, and there are six inclined grooves (35). The inner wall of the inclined groove (35) abuts against the inclined push block (223).
6. The organic waste gas adsorption and filtration treatment system according to claim 5, characterized in that: The limiting frame (31) has magnetic block 1 (33) connected to both sides inside, and the movable frame (32) has magnetic block 2 (34) connected to both sides.
7. The organic waste gas adsorption and filtration treatment system according to claim 6, characterized in that: The movable frame (32) is connected to a connecting frame (36) in the same number as the second ventilation block (225), one end of which extends into the second ventilation block (225) and is connected to a valve (37).
8. The organic waste gas adsorption and filtration treatment system according to claim 3, characterized in that, It also includes a reset mechanism (4), which includes two movable frames (41). The two movable frames (41) are slidably installed on both sides inside the air intake box (21). A fixed rod (42) is connected to the inner side of the movable frame (41). The other end of the fixed rod (42) passes through the first ventilation block (24) and extends into the T-tube (218) and is connected to the third piston (221). A cam (43) that can be driven by a motor is movably installed in the lower part of the air intake box (21). A pressure monitoring mechanism (227) is provided in the fixed tube (23).
Citation Information
Patent Citations
Multi-channel activated carbon adsorption device
CN110681239A
Cited By
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