Automatic processing device for waste incinerator slag exhaust gas

By designing a combination of annular mounting cover, rotating seat, baffle and cleaning components, the problem of interruption in exhaust gas treatment caused by zeolite core block replacement was solved, and the continuity and efficiency of exhaust gas treatment were achieved.

CN120488264BActive Publication Date: 2025-11-21FOSHAN NANHAI DISTRICT LVFUYU RESOURCES TECH CO LTD
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Patent Information

Application Number
CN202510666046.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2025-05-22
Publication Date
2025-11-21
Estimated Expiration
2045-05-22

AI Technical Summary

Technical Problem

When replacing zeolite core blocks, the exhaust gas input needs to be paused, which interrupts the exhaust gas treatment operation and affects the overall efficiency.

Method used

An automatic waste gas treatment device for waste incinerator slag was designed. Through the combination of annular mounting cover, rotating seat, baffle, baffle and cleaning components, the device enables rapid positioning, disassembly and cleaning of zeolite blocks, ensuring the continuity of waste gas treatment.

Benefits of technology

This enables rapid replacement and cleaning of zeolite blocks, avoiding interruptions in waste gas treatment and ensuring the continuity and efficiency of waste gas treatment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to waste gas treatment technical field, specifically disclose a kind of automatic processing device of waste gas of garbage incineration slag, including the annular installation cover of hollow structure in the inside, the outer surface of the annular installation cover is equipped with one and the through material slot of annular installation cover inside intercommunication, the inside rotation of the annular installation cover is provided with rotating seat;A kind of automatic processing device of waste gas of garbage incineration slag of the present application, through the through material slot, positioning connection component, fixed component, baffle, baffle fixing piece and reset structure being set, not only make the operation of dismounting zeolite block more simple, and through baffle can block the placement cavity after zeolite block is dismounted, still can continue to carry out the operation of waste gas in this process, to avoid the condition of interrupting waste gas input, ensure the continuous performance of garbage incineration slag waste gas treatment process, to ensure the efficiency of garbage incineration slag waste gas treatment.
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Description

Technical Field

[0001] This invention relates to the field of waste gas treatment technology, specifically to an automatic treatment device for waste gas from waste incineration furnace slag. Background Technology

[0002] In today's society, with the acceleration of urbanization and population growth, the amount of household waste generated is increasing dramatically. Waste incineration, as an effective waste treatment method, plays a vital role in achieving waste reduction, harmlessness, and resource recovery. However, the incineration process produces a large amount of waste gas, which contains various harmful substances. If this waste gas is released directly into the atmosphere without effective treatment, it will cause serious harm to the environment and human health.

[0003] Zeolite rotor exhaust gas treatment technology is an advanced means of exhaust gas treatment. The zeolite rotor is filled with zeolite molecular sieves with special pore structure. In the adsorption stage, when exhaust gas containing pollutants (such as VOCs) passes through the adsorption zone of the rotor, the target molecules in the exhaust gas will be adsorbed by the zeolite molecular sieve due to its large specific surface area, rich pore structure, high hydrophilicity and selective adsorption capacity, thereby achieving the purification of exhaust gas.

[0004] Some zeolite rotors divide the zeolite disc into multiple easily removable zeolite core blocks, allowing for individual replacement when the exhaust gas treatment efficiency of a single zeolite core block decreases, thus reducing replacement costs. However, during the replacement process, to prevent exhaust gas from passing through the cavity formed after the zeolite core block is removed, the exhaust gas input must be paused, resulting in an interruption of the exhaust gas treatment operation. If multiple zeolite core blocks are replaced, it will take a lot of time, thereby affecting the overall exhaust gas treatment efficiency. Summary of the Invention

[0005] This invention provides an automatic waste gas treatment device for waste incinerator slag, which aims to solve the technical problems in related technologies where replacing zeolite core blocks requires pausing the waste gas input, resulting in interruption of waste gas treatment operations. Furthermore, replacing multiple zeolite core blocks requires a significant amount of time, thus affecting the overall waste gas treatment efficiency.

[0006] An automatic treatment device for waste incinerator slag exhaust gas according to the present invention includes:

[0007] The annular mounting cover has a hollow internal structure. A material passage groove that communicates with the inside of the annular mounting cover is opened on the outer surface of the annular mounting cover. Baffles are rotatably provided on both sides of the annular mounting cover.

[0008] The rotating seat is rotatably positioned at the center of the annular mounting cover;

[0009] A plurality of partitions are uniformly connected to the outer surface of the rotating base, each of the partitions and the annular mounting cover forms a storage cavity, the interior of each of the storage cavities is provided with a zeolite block, each of the zeolite blocks and the rotating base is provided with a positioning connecting assembly, the positioning connecting assembly is used for quickly positioning the zeolite block;

[0010] A plurality of fixing assemblies are connected with the positioning connecting assemblies, the fixing assemblies and the positioning connecting assemblies are one-to-one correspondence, the fixing assemblies and the positioning connecting assemblies are used for stably installing the zeolite block in the interior of the storage cavity;

[0011] Two baffle fixing members are arranged between the annular mounting cover and the two baffles, the baffle fixing members are used for keeping the baffles in a position not blocking the storage cavity;

[0012] Two reset structures are arranged on the annular mounting cover, the reset structures are connected with the baffles, the reset structures and the baffles are one-to-one correspondence, the reset structures are used for resetting the baffles and blocking the storage cavity;

[0013] A cleaning assembly is arranged on the annular mounting cover, the cleaning assembly is connected with the baffle fixing member, and the cleaning assembly is used for cleaning the dust adhered on the zeolite block.

[0014] Preferably, the positioning connecting assembly comprises a storage hole, a positioning insertion hole, a positioning rod, a connecting notch, a reset ring and a jacking spring, the storage hole is arranged on the rotating base, the positioning insertion hole is arranged on the inner wall of the rotating base, the positioning rod is connected with the zeolite block, the positioning rod is inserted into the interior of the positioning insertion hole, the connecting notch is arranged on the outer surface of the positioning rod, the reset ring is slidingly arranged on the outer surface of the positioning rod, the jacking spring is sleeved on the outer surface of the positioning rod, one end of the jacking spring is connected with the zeolite block, and the other end of the jacking spring is connected with the reset ring.

[0015] Preferably, the fixing assembly comprises a storage groove, a limiting rod, a reset spring, a pressing plate and a fixing hook, the storage groove is arranged on one side of the rotating base, the storage groove is in communication with the positioning insertion hole, the length direction of the storage groove is perpendicular to the positioning insertion hole, the limiting rod and the reset spring are both mounted on the outer wall of the storage groove, the pressing plate is slidingly arranged on the outer surface of the limiting rod and connected with the end portion of the reset spring, the fixing hook is mounted on one side of the pressing plate, the fixing hook is connected with the connecting notch, and the top end of the fixing hook and the bottom end of the positioning rod are both arc-shaped.

[0016] Preferably, the baffle fixing part comprises a hanging plate, a fixed horizontal rod, a supporting block, a rotating column, a fixed hook, a rotating frame and a limiting roller, the hanging plate is connected with the baffle, the fixed horizontal rod is installed on one side of the hanging plate, the supporting block is installed on the outer surface of the annular mounting cover, the rotating column is rotatably connected with the supporting block, the number of the fixed hook is at least one, the fixed hook and the rotating frame are connected on the outer surface of the rotating column, and the limiting roller is rotatably connected on the end of the rotating frame.

[0017] Preferably, the reset structure comprises a guide rod one, a limiting block one and a torsion spring one, the guide rod one is installed on one side of the annular mounting cover, the guide rod one penetrates through the baffle, the baffle is rotatably connected with the guide rod one, the limiting block one is connected with the end of the guide rod one, the torsion spring one is sleeved on the outer surface of the guide rod one, one end of the torsion spring one is connected with the baffle, and the other end of the torsion spring one is connected with the limiting block one.

[0018] Preferably, the cleaning assembly comprises a guide rod two, a cleaning brush, a limiting block two, a torsion spring two, a connecting frame and a connecting rope, the guide rod two is installed on one side of the annular mounting cover, the cleaning brush is rotatably arranged on the outer surface of the guide rod two, the limiting block two is connected with the end of the guide rod two, the torsion spring two is sleeved on the outer surface of the guide rod two, one end of the torsion spring two is connected with the cleaning brush, the other end of the torsion spring two is connected with the limiting block two, the connecting frame is connected with the end of the cleaning brush, one end of the connecting rope is connected with the connecting frame, and the other end of the connecting rope is connected with the rotating frame.

[0019] Preferably, a pointer is installed on one side of the annular mounting cover, each of the partition plates is provided with an indicating line, and the pointer corresponds to the position of the indicating line.

[0020] Preferably, the rotating seat is connected with a driving structure, the driving structure is used for driving the rotating seat to rotate, the driving structure comprises a rotating shaft, a synchronous pulley one, a synchronous pulley two and a driving motor, the rotating shaft is connected with the rotating seat, the synchronous pulley one is connected with the outer surface of the rotating shaft, the synchronous pulley two is in transmission connection with the synchronous pulley one through a synchronous belt, and the output end of the driving motor is connected with the synchronous pulley two.

[0021] Preferably, a plurality of guide wheels are fixedly installed on the outer surface of the annular mounting cover, and the connecting rope passes through the inside of the guide wheels.

[0022] Preferably, a base is arranged below the annular mounting cover, a supporting frame connected with the annular mounting cover is installed on the base, a stabilizing seat is installed on the base, a bearing seat is installed on the top side of the stabilizing seat, and the rotating shaft is connected with the bearing seat.

[0023] The beneficial effects of the present application are:

[0024] 1、 through the setting of the feed slot, positioning connection assembly, fixed assembly, baffle, baffle fixing and reset structure, not only makes the operation of disassembling zeolite block is more convenient, and through the baffle can block the placement cavity after the zeolite block is removed, in this process, still can continue to carry out the operation of the exhaust gas, thereby avoiding the interruption of the exhaust gas input condition, ensure the continuous process of the waste incinerator slag exhaust gas treatment process, further ensure the efficiency of the waste incinerator slag exhaust gas treatment.

[0025] 2、 through the setting of the cleaning assembly can be in the process of replacing the zeolite block to a part of the zeolite block which is not replaced for cleaning operation, thereby avoiding the situation that the zeolite block is blocked, ensure that the zeolite block is good for the treatment effect of the waste incinerator slag exhaust gas. BRIEF DESCRIPTION OF DRAWINGS

[0026] Figure 1 is the first perspective structure diagram of the application.

[0027] Figure 2 is the second perspective structure diagram of the application.

[0028] Figure 3 is the third perspective structure diagram of the application.

[0029] Figure 4 is the first perspective structure diagram of the annular mounting cover of the application.

[0030] Figure 5 is the second perspective structure diagram of the annular mounting cover of the application.

[0031] Figure 6 is the cross section structure diagram of the annular mounting cover of the application.

[0032] Figure 7 is the enlarged structure diagram of A in the application. Figure 6

[0033] Figure 8 is the position relationship structure diagram of each part when replacing the zeolite block of the application.

[0034] Figure 9 is the structure diagram of the application Figure 4 without assembling the zeolite block.

[0035] Figure 10 is the cross section structure diagram of the application Figure 9 .

[0036] Figure 11 is the enlarged structure diagram of B in the application. Figure 10

[0037] Figure 12 ​​Figure 1 is a schematic view of the connection structure of the baffle fixing member and the cleaning assembly of the present application.

[0038] Figure 13 Figure 2 is a schematic view of the partial structure of the zeolite block of the present application.

[0039] Reference signs:

[0040] 10, annular mounting cover; 101, through slot; 11, rotating seat; 1101, storage hole; 1102, positioning jack; 1103, storage slot; 12, partition; 121, indicating line; 13, zeolite block; 14, positioning rod; 141, connecting notch; 15, reset ring; 16, jacking spring; 17, limiting rod; 18, reset spring; 19, extrusion plate; 110, fixing hook; 111, pointer; 112, guide wheel; 20, baffle; 21, hanging plate; 22, fixed cross rod; 30, support block; 31, rotating column; 32, fixed hook; 33, rotating frame; 34, limiting roller; 35, guide rod one; 36, limiting block one; 37, torsion spring one; 40, guide rod two; 41, cleaning brush; 42, limiting block two; 43, torsion spring two; 44, connecting frame; 45, connecting rope; 50, rotating shaft; 51, synchronous pulley one; 52, synchronous pulley two; 53, driving motor; 60, base; 61, support frame; 62, stabilizing seat; 63, bearing seat. DETAILED DESCRIPTION

[0041] Embodiments of the present application are described in detail below, examples of which are shown in the accompanying drawings. The embodiments described below by reference to the drawings are exemplary and are intended to explain the present application, and cannot be understood as limiting the present application.

[0042] As Figures 1 to 13As shown, the waste incineration slag waste gas automatic treatment device of the present application comprises an annular mounting cover 10 with a hollow structure, a through feeding groove 101 is formed on the outer surface of the annular mounting cover 10 and is connected with the inside of the annular mounting cover 10, a rotating seat 11 is rotatably arranged in the annular mounting cover 10, a plurality of partition plates 12 are connected to the outer surface of the rotating seat 11, a plurality of storage cavities are formed between the plurality of partition plates 12 and the annular mounting cover 10, a zeolite block 13 is arranged in each storage cavity, a positioning connection assembly is arranged between each zeolite block 13 and the rotating seat 11, the positioning connection assembly is used for quickly positioning the zeolite block 13, a plurality of fixing assemblies are arranged on one side of the rotating seat 11, the fixing assemblies are connected with the positioning connection assemblies, the fixing assemblies and the positioning connection assemblies are one-to-one corresponding, the fixing assemblies and the positioning connection assemblies are used for stably installing the zeolite block 13 in the inside of the storage cavity, a baffle 20 is rotatably arranged on each side of the annular mounting cover 10, the size of the baffle 20 is larger than that of the storage cavity, the baffle 20 is used for shielding the storage cavity when the zeolite block 13 is replaced, so as to avoid that the waste gas passes through the storage cavity, a baffle fixing piece is arranged between the annular mounting cover 10 and the baffle 20, the baffle fixing piece is used for keeping the baffle 20 in a position not shielding the storage cavity, a reset structure is arranged on the annular mounting cover 10, the reset structure is used for resetting the baffle 20 and shielding the storage cavity, a cleaning assembly is arranged on the annular mounting cover 10, the cleaning assembly is connected with the baffle fixing piece, and the cleaning assembly is used for cleaning the dust adhered on the zeolite block 13.

[0043] In normal processing of waste incineration slag waste gas, the baffle 20 is in an inclined state and does not shield the storage cavity, when the zeolite block 13 needs to be replaced, the rotating seat 11 drives the partition plate 12 and the zeolite block 13 to rotate, the zeolite block 13 to be replaced is rotated to a position corresponding to the through feeding groove 101, then the fixing of the baffle 20 by the baffle fixing piece is released, at this time the baffle 20 is reset and shields the storage cavity at the position of the zeolite block 13 to be replaced under the action of the reset structure, after the baffle 20 is reset, the baffle 20 is in contact with the fixing assembly and the fixing assembly is no longer connected with the positioning connection assembly, at this time the zeolite block 13 moves and is removed from the inside of the through feeding groove 101 under the action of the positioning connection assembly, at this time the operator can disassemble and replace the zeolite block 13, and in the process of installing the zeolite block 13, only need to pass the zeolite block 13 from the inside of the through feeding groove 101 and make the end of the zeolite block 13 closely adhere to the rotating seat 11, at this time the zeolite block 13 is automatically fixed by the fixing assembly, so that the operation of disassembling and assembling the zeolite block 13 is relatively simple, the time required for replacing the zeolite block 13 is reduced, and in the process of replacing the zeolite block 13, the waste gas can still be introduced, the baffle 20 will block the waste gas from passing through the inside of the storage cavity from which the zeolite block 13 is removed, and the waste gas will continue to be treated by the remaining zeolite blocks 13.

[0044] It should be noted that part of the zeolite block 13 is located inside the annular mounting cover 10, the end of the zeolite block 13 is arc-shaped, and the diameter of the arc-shaped surface of the zeolite block 13 is matched with the inner diameter of the annular mounting cover 10, so that the zeolite block 13 can rotate smoothly along the annular mounting cover 10, and the position deviation of the zeolite block 13 during rotation is avoided. The size of the baffle 20 is larger than that of the storage cavity, which can fully shield the storage cavity, and the edge of the baffle 20 can be provided with an inclined surface, so that the exhaust gas flows better and faster to the un-replaced zeolite block 13.

[0045] As Figure 6 、 Figure 7 、 Figure 10 and Figure 11 , the positioning connecting assembly includes a storage hole 1101 opened on the rotating seat 11 and a positioning rod 14 connected with the zeolite block 13, the inner wall of the storage hole 1101 is provided with a positioning insertion hole 1102, the positioning rod 14 passes through the inside of the positioning insertion hole 1102, the outer surface of the positioning rod 14 is provided with a connecting slot 141, the outer surface of the positioning rod 14 is slidingly connected with a reset ring 15, one side of the reset ring 15 close to the zeolite block 13 is fixedly connected with a jacking spring 16, and one end of the jacking spring 16 away from the reset ring 15 is connected with the zeolite block 13.

[0046] The fixing assembly includes a storage groove 1103 opened on one side of the rotating seat 11, the storage groove 1103 is communicated with the positioning insertion hole 1102, the length direction of the storage groove 1103 is perpendicular to the positioning insertion hole 1102, the inner wall of the storage groove 1103 is fixedly connected with a limiting rod 17 and a reset spring 18 with a T-shaped cross section, the outer surface of the limiting rod 17 is slidingly connected with a pressing plate 19 connected with the reset spring 18, one side of the pressing plate 19 is fixedly connected with a fixed hook 110, the fixed hook 110 is connected with the connecting slot 141, and the top end of the fixed hook 110 and the bottom end of the positioning rod 14 are both arc-shaped, so that the fixed hook 110 and the positioning rod 14 can be easily dislocated.

[0047] When the zeolite block 13 is installed, the zeolite block 13 is passed through the inside of the feeding slot 101 and enters the inside of the storage cavity, the positioning rod 14 is passed through the inside of the positioning socket 1102 and enters the inside of the storage slot 1103, with the movement of the positioning rod 14, the positioning rod 14 extrudes the top of the fixing hook 110 and makes the fixing hook 110 displace, so that the extrusion plate 19 moves to the inside of the storage slot 1103 and extrudes the return spring 18, when the connecting slot 141 on the positioning rod 14 corresponds to the position of the fixing hook 110, at this time, the extrusion plate 19 drives the fixing hook 110 to reset under the action of the return spring 18 and the fixing hook 110 is inserted into the inside of the connecting slot 141, so that the positioning rod 14 is fixed, at this time, the position of the positioning rod 14 no longer moves, and one end of the zeolite block 13 is attached to the rotating seat 11, at this time, the reset ring 15 enters the inside of the storage hole 1101 and the jacking spring 16 is in a compressed state, when it is necessary to replace the zeolite block 13, in the process that the baffle 20 rotates and blocks the storage cavity, the baffle 20 is attached to the inclined surface of the extrusion plate 19 and the extrusion plate 19 moves to the inside of the storage slot 1103 at this time, the extrusion plate 19 drives the fixing hook 110 to move out of the inside of the connecting slot 141, the positioning rod 14 is no longer fixed, at this time, the zeolite block 13 moves away from the rotating seat 11 under the action of the jacking spring 16 and moves out of the inside of the feeding slot 101, at this time, the operator can take out the zeolite block 13, so that the operation of taking out the zeolite block 13 is relatively simple, the zeolite block 13 can be moved out of the inside of the feeding slot 101 while the storage cavity is blocked, so that the whole operation process is relatively simple.

[0048] As Figure 4 , Figure 5 , Figure 8 , Figure 9 and Figure 12 , the baffle fixing member includes the hanging plate 21 connected with the baffle 20 and the support block 30 installed on the outer surface of the annular installation cover 10, one side of the hanging plate 21 is fixedly connected with the fixed horizontal rod 22, the length direction of the fixed horizontal rod 22 is parallel to the thickness direction of the annular installation cover 10, one side of the support block 30 is rotatably connected with the rotating column 31, the outer surface of the rotating column 31 is connected with at least one fixed hook 32, the fixed hook 32 is hooked with the fixed horizontal rod 22, the outer surface of the rotating column 31 is fixedly connected with the rotating frame 33, and the end of the rotating frame 33 is rotatably connected with the limiting roller 34.

[0049] The reset structure includes the guide rod one 35 installed on one side of the annular installation cover 10, the guide rod one 35 penetrates the baffle 20, the baffle 20 is rotatably connected with the guide rod one 35, the end of the guide rod one 35 is connected with the limiting block one 36, the outer surface of the guide rod one 35 is sleeved with the torsion spring one 37, one end of the torsion spring one 37 is connected with the baffle 20, and the other end of the torsion spring one 37 is connected with the limiting block one 36.

[0050] In normal processing of waste incinerator slag waste gas, the torsion spring 37 is in a torsion loading state, the baffle 20 does not block the zeolite block 13, the fixed hook 32 is hooked with the fixed cross rod 22, and the outer surface of the zeolite block 13 corresponding to the position of the feeding slot 101 is in contact with the limiting roller 34. Through the limiting roller 34, the zeolite block 13 can be smoothly rotated while avoiding the zeolite block 13 from moving out of the inside of the feeding slot 101. When it is necessary to clean the zeolite block 13, the fixed hook 32 is separated from the fixed cross rod 22, and the fixation of the fixed cross rod 22 is released. At this time, the baffle 20 will reset under the action of the torsion spring 37, and after the fixed hook 32 is separated from the fixed cross rod 22, the rotating column 31 will drive the rotating frame 33 to move away from the annular mounting cover 10, so that the limiting roller 34 no longer limits the zeolite block 13. At this time, the jacking spring 16 will jack up the zeolite block 13, thereby facilitating the operation of replacing the zeolite block 13.

[0051] It should be noted that the length of the limiting roller 34 is less than the width of the feeding slot 101, so that the limiting roller 34 can be smoothly rotated and contacted or separated from the zeolite block 13, thereby ensuring the limiting effect of the limiting roller 34.

[0052] As Figure 4 , Figure 5 , Figure 8 , Figure 9 and Figure 12 , the cleaning assembly comprises a guide rod two 40 installed on one side of the annular mounting cover 10, the outer surface of the guide rod two 40 is rotatably connected with a cleaning brush 41, the end of the guide rod two 40 is fixedly connected with a limiting block two 42, the outer surface of the guide rod two 40 is sleeved with a torsion spring two 43, one end of the torsion spring two 43 is connected with the cleaning brush 41, the other end of the torsion spring two 43 is connected with the limiting block two 42, the end of the cleaning brush 41 is connected with a connecting frame 44, the connecting frame 44 is connected with a connecting rope 45, and the end of the connecting rope 45 away from the connecting frame 44 is connected with the rotating frame 33.

[0053] In normal processing of waste incinerator slag exhaust, the torsion spring two 43 is in a torsion loading state, when it is necessary to clean the zeolite block 13, the fixed hook 32 is separated from the fixed horizontal rod 22, at this time under the action of the torsion spring two 43, the cleaning brush 41 will rotate and clean a part of the zeolite block 13, and the position of the cleaning brush 41 after rotating will not block the zeolite block 13, and in the process of rotating the cleaning brush 41, the connecting frame 44 will rotate and drive the connecting rope 45 to move, through the movement of the connecting rope 45, the rotating frame 33 drives the limiting roller 34 to rotate and makes the limiting roller 34 move out of the inside of the feeding slot 101, so that the limiting roller 34 no longer blocks the zeolite block 13 which needs to be replaced, when the zeolite block 13 is replaced, the baffle 20 is rotated and no longer blocks the replaced zeolite block 13, at this time the torsion spring one 37 is in a torsion loading state, then the rotating frame 33 is rotated and the fixed hook 32 is reconnected with the fixed horizontal rod 22, and in the process of rotating the rotating frame 33, under the connection of the connecting rope 45, the connecting frame 44 drives the cleaning brush 41 to rotate and clean the zeolite block 13 again, when the fixed hook 32 is reconnected with the fixed horizontal rod 22, the cleaning brush 41 will not block the zeolite block 13, and the torsion spring two 43 is in a torsion loading state again, through the action of the torsion spring two 43 and the torsion spring one 37, the fixed hook 32 and the fixed horizontal rod 22 are connected more closely, through cleaning the un-replaced zeolite block 13 in the process of replacing the zeolite block 13, the situation that the zeolite block 13 is blocked due to the long processing time of the un-replaced zeolite block 13 to the exhaust gas is avoided, and the positional relationship diagram of each part when replacing the zeolite block 13 is shown in Figure 8 .

[0054] It should be noted that the cross-sectional shape of the guide rod two 40 is T-shaped, and the maximum diameter end of the guide rod two 40 is connected with the annular mounting cover 10, and through the T-shaped guide rod two 40, a mounting and moving space can be provided for the bristles of the cleaning brush 41.

[0055] As Figure 1 , Figure 2 , Figure 4 and Figure 8 , the annular mounting cover 10 is provided with a pointer 111 on one side, and each partition plate 12 is provided with an indicating line 121, and the positions of the pointer 111 and the indicating line 121 correspond to each other.

[0056] When the positions of the pointer 111 and the indicating line 121 correspond to each other, one zeolite block 13 corresponds to the position of the feeding slot 101, and by judging the positions of the pointer 111 and the indicating line 121, it can be better understood whether the zeolite block 13 can be taken out.

[0057] As Figures 1-3The rotating seat 11 is connected with a driving structure, the driving structure is used for driving the rotating seat 11 to rotate, and the driving structure comprises a rotating shaft 50 connected with the rotating seat 11, the outer surface of the rotating shaft 50 is connected with a synchronous pulley one 51, the synchronous pulley one 51 is connected with a synchronous pulley two 52 through a synchronous belt, and the synchronous pulley two 52 is connected with a driving motor 53.

[0058] When the waste incinerator slag waste gas is normally treated, the driving motor 53 is started, the rotating shaft 50 drives the rotating seat 11 to slowly rotate under the driving action of the synchronous pulley one 51, the synchronous pulley two 52 and the synchronous belt, so that the baffle 12 drives the zeolite block 13 located in the storage cavity to rotate and the waste gas is treated.

[0059] As shown in Figure 1 , Figure 2 , Figure 4 and Figure 5 , the outer surface of the annular mounting cover 10 is fixedly connected with a plurality of guide wheels 112, the connecting rope 45 passes through the inside of the guide wheels 112, and the guide wheels 112 are used for guiding the connecting rope 45 to move along a specific path.

[0060] As shown in Figures 1-2 , the bottom of the annular mounting cover 10 is provided with a base 60, the base 60 is provided with a support frame 61 connected with the annular mounting cover 10, the base 60 is provided with a stabilizing seat 62, the top side of the stabilizing seat 62 is provided with a bearing seat 63, and the rotating shaft 50 is connected with the bearing seat 63.

[0061] It should be noted that a plurality of air holes are formed in the stabilizing seat 62, which can ensure the flow speed of the waste gas while ensuring the supporting strength.

[0062] In the description of the present application, it should be understood that the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential" and the like indicate the orientation or positional relationship shown in the drawings, which is only for the convenience of describing the present application and simplifying the description, and does not indicate or imply that the devices or elements referred to must have a particular orientation, be constructed and operated in a particular orientation, therefore it cannot be understood as a limitation of the present application.

[0063] Furthermore, the terms "first", "second", etc. are used only for descriptive purposes and do not connote or imply relative importance or a quantity of the indicated technical features. Thus, a feature defined with "first", "second", etc. can include at least one of the features implicitly or explicitly. In the description of the present application, the meaning of "a plurality" is at least two, for example, two, three, etc., unless otherwise specifically defined.

[0064] Although the embodiments of the present application have been shown and described above, it is understood that the above-described embodiments are exemplary and are not to be construed as limiting the present application, and that changes, modifications, substitutions and variations can be made by those skilled in the art without departing from the scope of the present application.

Claims

1. An automatic treatment device for waste incinerator slag exhaust gas, characterized in that, include: The annular mounting cover (10) has a hollow structure inside. A material passage groove (101) communicating with the inside of the annular mounting cover (10) is opened on the outer surface of the annular mounting cover (10). Baffles (20) are rotatably provided on both sides of the annular mounting cover (10). The rotating seat (11) is rotatably positioned at the center of the annular mounting cover (10); Multiple partitions (12) are evenly connected to the outer surface of the rotating seat (11). Each partition (12) and the annular mounting cover (10) form a storage cavity. Each storage cavity contains a zeolite block (13). Each zeolite block (13) and the rotating seat (11) are connected by a positioning connection assembly. The positioning connection assembly is used to quickly position the zeolite block (13). The positioning connection assembly includes a storage hole (1101) on the rotating seat (11) and a positioning rod (14) connected to the zeolite block (13). The inner wall of the storage hole (1101) is provided with a positioning insertion hole (1102). The positioning rod (14) passes through the inside of the positioning insertion hole (1102). The outer surface of the positioning rod (14) is provided with a connection slot (141). Multiple fixing components are connected to positioning connection components, and the fixing components and positioning connection components correspond one-to-one. The fixing components and positioning connection components are used to stably install zeolite blocks (13) inside the storage cavity. The fixing components include a storage slot (1103) opened on one side of the rotating seat (11). The storage slot (1103) is connected to the positioning insertion hole (1102). The length direction of the storage slot (1103) is perpendicular to the positioning insertion hole (1102). An extrusion plate (19) is provided inside the storage slot (1103). A fixing hook (110) is fixedly connected to one side of the extrusion plate (19). The fixing hook (110) is connected to the connecting groove (141). When the zeolite block (13) needs to be replaced, during the process of the baffle (20) rotating and blocking the storage cavity, the baffle (20) and the inclined surface of the extrusion plate (19) are attached together and the extrusion plate (19) moves into the storage groove (1103). At this time, the extrusion plate (19) drives the fixing hook (110) to move out from the inside of the connecting groove (141) and no longer fixes the positioning rod (14). Two baffle fixing members are disposed between the annular mounting cover (10) and the two baffles (20), and the baffle fixing members are used to keep the baffles (20) in a position that does not obstruct the storage cavity; Two reset structures are set on the annular mounting cover (10). The reset structures are connected to the baffle (20). The reset structures correspond one-to-one with the baffle (20). The reset structures are used to reset the baffle (20) and cover the storage cavity. A cleaning assembly is mounted on an annular mounting cover (10). The cleaning assembly is connected to a baffle fixing member and is used to clean dust adhering to the zeolite block (13).

2. The automatic treatment device for waste incinerator slag exhaust gas according to claim 1, characterized in that, The positioning connection assembly further includes a reset ring (15) and a lifting spring (16). The reset ring (15) is slidably disposed on the outer surface of the positioning rod (14). The lifting spring (16) is sleeved on the outer surface of the positioning rod (14). One end of the lifting spring (16) is connected to the zeolite block (13), and the other end of the lifting spring (16) is connected to the reset ring (15).

3. The automatic treatment device for waste incinerator slag exhaust gas according to claim 2, characterized in that, The fixing assembly also includes a limiting rod (17) and a return spring (18). The limiting rod (17) and the return spring (18) are both installed on the outer wall of the storage slot (1103). The extrusion plate (19) is slidably disposed on the outer surface of the limiting rod (17) and connected to the end of the return spring (18). The top of the fixing hook (110) and the bottom of the positioning rod (14) are both arc-shaped.

4. The automatic treatment device for waste incinerator slag exhaust gas according to claim 2, characterized in that, The baffle fixing component includes a hanging plate (21), a fixed crossbar (22), a support block (30), a rotating column (31), a fixed hook (32), a rotating frame (33), and a limiting roller (34). The hanging plate (21) is connected to the baffle (20). The fixed crossbar (22) is installed on one side of the hanging plate (21). The support block (30) is installed on the outer surface of the annular mounting cover (10). The rotating column (31) is rotatably connected to the support block (30). The number of fixed hooks (32) is at least one. The fixed hook (32) and the rotating frame (33) are connected on the outer surface of the rotating column (31). The limiting roller (34) is rotatably connected to the end of the rotating frame (33).

5. The automatic treatment device for waste incinerator slag exhaust gas according to claim 4, characterized in that, The reset structure includes a guide rod (35), a limiting block (36), and a torsion spring (37). The guide rod (35) is installed on one side of the annular mounting cover (10). The guide rod (35) passes through the baffle (20). The baffle (20) is rotatably connected to the guide rod (35). The limiting block (36) is connected to the end of the guide rod (35). The torsion spring (37) is sleeved on the outer surface of the guide rod (35). One end of the torsion spring (37) is connected to the baffle (20), and the other end of the torsion spring (37) is connected to the limiting block (36).

6. The automatic treatment device for waste incinerator slag exhaust gas according to claim 5, characterized in that, The cleaning assembly includes a second guide rod (40), a cleaning brush (41), a second limiting block (42), a second torsion spring (43), a connecting frame (44), and a connecting rope (45). The second guide rod (40) is installed on one side of the annular mounting cover (10). The cleaning brush (41) is rotatably mounted on the outer surface of the second guide rod (40). The second limiting block (42) is connected to the end of the second guide rod (40). The second torsion spring (43) is sleeved on the outer surface of the second guide rod (40). One end of the second torsion spring (43) is connected to the cleaning brush (41), and the other end of the second torsion spring (43) is connected to the second limiting block (42). The connecting frame (44) is connected to the end of the cleaning brush (41). One end of the connecting rope (45) is connected to the connecting frame (44), and the other end of the connecting rope (45) is connected to the rotating frame (33).

7. The automatic treatment device for waste incinerator slag exhaust gas according to claim 5, characterized in that, A pointer (111) is installed on one side of the annular mounting cover (10), and an indicator line (121) is provided on each of the partitions (12). The pointer (111) and the indicator line (121) are positioned corresponding to each other.

8. The automatic treatment device for waste incinerator slag exhaust gas according to claim 5, characterized in that, A drive structure is connected to the rotating seat (11). The drive structure is used to drive the rotating seat (11) to rotate. The drive structure includes a rotating shaft (50), a first synchronous pulley (51), a second synchronous pulley (52), and a drive motor (53). The rotating shaft (50) is connected to the rotating seat (11). The first synchronous pulley (51) is connected to the outer surface of the rotating shaft (50). The second synchronous pulley (52) is connected to the first synchronous pulley (51) via a synchronous belt. The output end of the drive motor (53) is connected to the second synchronous pulley (52).

9. An automatic treatment device for waste incinerator slag exhaust gas according to claim 6, characterized in that, Multiple guide wheels (112) are fixedly installed on the outer surface of the annular mounting cover (10), and the connecting rope (45) passes through the inside of the guide wheels (112).

10. An automatic treatment device for waste incinerator slag exhaust gas according to claim 8, characterized in that, A base (60) is provided below the annular mounting cover (10). A support frame (61) connected to the annular mounting cover (10) is installed on the base (60). A stabilizing seat (62) is installed on the base (60). A bearing seat (63) is installed on the top side of the stabilizing seat (62). The rotating shaft (50) is connected to the bearing seat (63).

Citation Information

Patent Citations

  • BE679064A

  • Modular adsorption concentration device

    CN222400875U