Lightweight foamed ceramic plate firing waste gas treatment equipment

By combining air intake, filtration, indexing, alarm, and adsorption mechanisms, the problem of frequent filter replacement in the waste gas treatment equipment for lightweight foamed ceramic plates is solved, achieving efficient and convenient waste gas treatment.

CN223586860UActive Publication Date: 2025-11-25JIANGSU ZEJIAN ENVIRONMENTAL TECH CO LTD
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Patent Information

Application Number
CN202422587429.7
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-10-24
Publication Date
2025-11-25
Estimated Expiration
2034-10-24

AI Technical Summary

Technical Problem

Existing waste gas treatment equipment for the firing of lightweight foamed ceramic panels requires frequent shutdowns to replace the filter screens after long-term filtration, resulting in low waste gas treatment efficiency and inconvenience.

Method used

It adopts a combination of air intake mechanism, filtration mechanism, indexing mechanism, alarm mechanism and adsorption mechanism. The air intake mechanism draws in waste gas, the filtration mechanism filters dust, the indexing drive mechanism adjusts the filtration mechanism, the alarm mechanism detects the degree of use and reminds you to replace it, and the adsorption mechanism adsorbs harmful substances, so that the filter screen can be replaced without frequent shutdown.

Benefits of technology

It improves the efficiency and convenience of exhaust gas treatment, reduces the frequency of filter replacement, and ensures the continuity and quality of exhaust gas treatment.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of waste gas treatment, in particular to light foaming ceramic plate firing waste gas treatment equipment, which does not need to frequently shut down and replace a filter screen, so that the convenience and the waste gas treatment efficiency are improved. Comprising an air inlet mechanism; the device further comprises a filtering mechanism, an indexing mechanism, an indexing driving mechanism, an alarm mechanism and an adsorption mechanism, the air inlet mechanism is connected with an exhaust port of the light foaming ceramic plate firing furnace, the filtering mechanism is connected with the air inlet mechanism, the indexing mechanism is installed on the filtering mechanism, the indexing driving mechanism is installed on the indexing mechanism, the alarm mechanism is installed on the filtering mechanism, and the adsorption mechanism is installed on the filtering mechanism. The adsorption mechanism is connected with the filtering mechanism, waste gas is sucked into the filtering mechanism through the gas inlet mechanism, the filtering mechanism filters dust in the waste gas, the indexing driving mechanism drives the indexing mechanism to adjust the filtering mechanism, the alarm mechanism detects the use degree of the filtering mechanism, and the adsorption mechanism adsorbs the waste gas.
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Description

TECHNICAL FIELD

[0001] The utility model relates to the technical field of waste gas treatment, in particular to a kind of light foamed ceramic plate firing waste gas treatment equipment. BACKGROUND

[0002] Light foamed ceramic plate will produce waste gas in the process of firing, these waste gases can cause pollution to the environment if not properly handled, therefore, special waste gas treatment equipment is needed to handle these waste gases.

[0003] In the existing waste gas treatment technology, for example, the prior art with the application number CN202211331374.2, including waste gas discharge pipe, connecting port, centrifugal fan, first connecting pipe, upper fixed shell, lower fixed shell, fixed support, main pipeline, connecting branch pipe, first sealing element, second sealing element and first sliding chute, etc., the connecting branch pipe is rotated by the main pipeline, the filter shell is connected to one end of the connecting branch pipe, when the connecting branch pipe needs to be cleaned, the connecting branch pipe can be rotated to connect the filter shell through the other end of the connecting branch pipe, and the sealing plate seals one end of the filter shell connected to the connecting branch pipe, which can facilitate the cleaning of the connecting branch pipe without affecting the delivery of waste gas.

[0004] However, the existing technology needs to replace the filter screen frequently after long-term filtration, which not only reduces the efficiency of waste gas treatment but also reduces the convenience. UTILITY MODEL CONTENT

[0005] To solve the above technical problems, the utility model provides a light foamed ceramic plate firing waste gas treatment equipment without frequent shutdown and replacement of the filter screen, which improves the convenience and efficiency of waste gas treatment.

[0006] The utility model discloses a kind of light foamed ceramic plate firing waste gas treatment equipment, including intake mechanism;Further including filtering mechanism, index mechanism, index drive mechanism, alarm mechanism and adsorption mechanism, intake mechanism is connected with the exhaust port of light foamed ceramic plate firing furnace, filtering mechanism is connected with intake mechanism, index mechanism is installed on filtering mechanism, index drive mechanism is installed on index mechanism, alarm mechanism is installed on filtering mechanism, adsorption mechanism is connected with filtering mechanism, by intake mechanism to the waste gas is extracted into to filtering mechanism, filtering mechanism filters dust in waste gas, index drive mechanism drives index mechanism to adjust filtering mechanism, alarm mechanism detects the degree of use of filtering mechanism, adsorption mechanism carries out adsorption treatment to waste gas;By intake mechanism to the waste gas is extracted into to filtering mechanism, filtering mechanism filters dust in waste gas, when the efficiency and quality of filtering mechanism filtering reduce, index drive mechanism drives index mechanism to adjust filtering mechanism, to improve the quality and efficiency of filtering mechanism to waste gas dust filtration, alarm mechanism detects the degree of use of filtering mechanism, and timely reminds operator to clean and replace, improve the quality of filtration, adsorption mechanism carries out adsorption treatment to waste gas.

[0007] Preferably, intake mechanism includes air inlet pipe, centrifugal fan and air outlet pipe, one end of air inlet pipe is connected with the exhaust port of light foamed ceramic plate firing furnace, the other end of air inlet pipe is installed on centrifugal fan, air outlet pipe is installed on centrifugal fan;By opening centrifugal fan, waste gas in light foamed ceramic plate firing furnace is transported to filter cartridge through air inlet pipe and air outlet pipe.

[0008] Preferably, filtering mechanism includes filter cartridge, air inlet pipeline, air outlet pipeline, adjusting shaft, partition plate and filter plate, air inlet pipeline and air outlet pipeline are installed on the outer wall of both ends of filter cartridge, air inlet pipeline is connected with air outlet pipe through flange, air outlet pipe is connected with adsorption mechanism through flange, adjusting shaft is rotatably installed in filter cartridge, partition plate is installed on adjusting shaft, filter plate is installed on 15;Waste gas enters filter cartridge through air outlet pipe and air inlet pipeline, filters waste gas through filter plate, and then waste gas is adsorbed into adsorption mechanism through air outlet pipeline, the space in filter cartridge is divided into multiple filtering spaces by partition plate, when filtering effect and efficiency reduce, adjusting shaft is rotated to drive partition plate to rotate, and then filtering space is replaced, so as to improve the efficiency and quality of filtration.

[0009] Preferably, the indexing mechanism comprises an indexing disc, a groove, a poking groove, an indexing drive shaft, a drive disc, a limiting semi-ring and a poking rod, the indexing disc is installed at the outer end of the adjusting shaft, the indexing disc is provided with the groove and the poking groove, the indexing drive shaft is rotatably installed on the side wall of the filter cartridge, the drive disc is installed on the indexing drive shaft, the limiting semi-ring is installed on the drive disc, the limiting semi-ring is concentric with the indexing drive shaft, the poking rod is installed on the drive disc, the poking rod is eccentrically installed on the drive disc, the limiting semi-ring is semi-ring-shaped, the number of the groove and the poking groove is the same as the number of the filtering spaces enclosed by the partition plates; when the filtering effect and efficiency are reduced, the indexing drive mechanism is turned on to drive the indexing drive shaft to rotate, thereby driving the drive disc to rotate, so as to drive the poking rod to rotate, when the poking rod is away from the indexing disc, the limiting semi-ring is located in the groove for limiting, when the poking rod approaches the indexing disc, the limiting semi-ring removes the limiting of the indexing disc, then the poking rod enters the poking groove to drive the indexing disc to rotate, thereby driving the adjusting shaft to rotate, the adjusting shaft is driven to rotate to drive the partition plates to rotate, thereby replacing the filtering spaces, so as to improve the filtering efficiency and quality.

[0010] Preferably, the indexing drive mechanism comprises a worm gear, a worm and an indexing motor, the worm gear is installed on the indexing drive shaft, the outer wall of the filter cartridge is provided with a drive frame, the worm is rotatably installed on the drive frame, the indexing motor is installed on the drive frame, the worm is engaged with the worm gear, and the output end of the indexing motor is connected with the worm; when the filtering effect and efficiency are reduced, the indexing motor is turned on to drive the worm to rotate, then the indexing drive shaft is driven to rotate through the engagement relationship, thereby driving the drive disc to rotate, so as to drive the poking rod to rotate, when the poking rod is away from the indexing disc, the limiting semi-ring is located in the groove for limiting, when the poking rod approaches the indexing disc, the limiting semi-ring removes the limiting of the indexing disc, then the poking rod enters the poking groove to drive the indexing disc to rotate, thereby driving the adjusting shaft to rotate, the adjusting shaft is driven to rotate to drive the partition plates to rotate, thereby replacing the filtering spaces, so as to improve the filtering efficiency and quality.

[0011] Preferably, the alarm mechanism comprises a rotating disc, a proximity block, a mounting bracket and a proximity switch, the rotating disc is rotatably installed on the outer wall of the filter cartridge, the rotating disc is concentrically connected with the adjusting shaft, the rotating disc is provided with indexing grids, the number of the indexing grids is the same as the number of the filtering spaces enclosed by the partition plates, the proximity block is installed on the indexing grids, the proximity switch is installed on the outer wall of the filter cartridge through the mounting bracket, and the outer wall of the filter cartridge is provided with a buzzer; when the adjusting shaft is rotated to drive the partition plates to rotate to adjust the filtering spaces, the rotating disc is also rotated, initially, the position of the proximity block corresponds to the last filtering space, when all the filtering spaces in the filter cartridge are used up, the proximity block approaches the proximity switch at this time, the buzzer is controlled by the proximity switch to alarm and remind the operator to replace and clean in time.

[0012] Preferably, the adsorption mechanism comprises an adsorption box and an activated carbon adsorption plate, the activated carbon adsorption plate is installed in the adsorption box, and the activated carbon adsorption plate is connected with the gas outlet pipeline through a flange plate; the waste gas enters the adsorption box through the gas outlet pipeline, and the harmful substances in the waste gas are adsorbed and treated by the activated carbon adsorption plate, so that the quality of waste gas treatment is improved.

[0013] Compared with the prior art, the beneficial effects of the utility model are that: through the air inlet mechanism, the waste gas is drawn into the filtering mechanism, the dust in the waste gas is filtered by the filtering mechanism, when the efficiency and quality of the filtering mechanism are reduced, the indexing drive mechanism drives the indexing mechanism to adjust the filtering mechanism, so that the quality and efficiency of the filtering mechanism for filtering the dust in the waste gas are improved, the use degree of the filtering mechanism is detected by the alarm mechanism, and the operator is reminded to clean and replace in time, the filtering quality is improved, and the waste gas is adsorbed and treated by the adsorption mechanism. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is the first axonometric structure schematic view of the utility model;

[0015] Figure 2 It is the second axonometric structure schematic view of the utility model;

[0016] Figure 3 It is the third axonometric structure schematic view of the utility model;

[0017] Figure 4 It is the fourth axonometric structure schematic view of the utility model;

[0018] Figure 5 It is the front view cross section structure schematic view of the utility model;

[0019] Figure 6 It is the front view cross section axonometric structure schematic view of the utility model;

[0020] Figure 7 It is the first side view cross section axonometric structure schematic view of the utility model;

[0021] Figure 8 It is the second side view cross section axonometric structure schematic view of the utility model;

[0022] Figure 9 It is the third side view cross section axonometric structure schematic view of the utility model;

[0023] Figure 10 It is the Figure 3 Enlarged structure schematic view of A in the utility model;

[0024] The attached diagram is labeled as follows: 01, air intake mechanism; 11, air intake pipe; 12, centrifugal fan; 13, air outlet pipe; 02, filtration mechanism; 21, filter cartridge; 22, air intake pipe; 23, air outlet pipe; 24, adjusting shaft; 25, partition plate; 26, filter plate; 03, indexing mechanism; 31, indexing plate; 32, groove; 33, actuating groove; 34, indexing drive shaft; 35, drive disc; 36, limiting semi-circular ring; 37, lever; 04, indexing drive mechanism; 41, worm gear; 42, worm; 43, indexing motor; 05, alarm mechanism; 51, turntable; 52, proximity block; 53, mounting bracket; 54, proximity switch; 06, adsorption mechanism; 61, adsorption box; 62, activated carbon adsorption plate. Detailed Implementation

[0025] To facilitate understanding of this utility model, a more complete description will be given below with reference to the accompanying drawings. This utility model can be implemented in many different forms and is not limited to the embodiments described herein. Rather, these embodiments are provided to make the disclosure of this utility model more thorough and complete.

[0026] Example 1

[0027] like Figures 1 to 10 As shown, a waste gas treatment device for the firing of lightweight foamed ceramic panels includes an air inlet mechanism 01, a filter mechanism 02, an indexing mechanism 03, an indexing drive mechanism 04, an alarm mechanism 05, and an adsorption mechanism 06. The air inlet mechanism 01 is connected to the exhaust port of the lightweight foamed ceramic panel firing furnace, the filter mechanism 02 is connected to the air inlet mechanism 01, the indexing mechanism 03 is installed on the filter mechanism 02, the indexing drive mechanism 04 is installed on the indexing mechanism 03, the alarm mechanism 05 is installed on the filter mechanism 02, and the adsorption mechanism 06 is connected to the filter mechanism 02.

[0028] The exhaust gas is drawn into the filter mechanism 02 through the air intake mechanism 01. The filter mechanism 02 filters the dust in the exhaust gas. The indexing drive mechanism 04 drives the indexing mechanism 03 to adjust the filter mechanism 02. The alarm mechanism 05 detects the usage level of the filter mechanism 02. The adsorption mechanism 06 adsorbs the exhaust gas.

[0029] The air intake mechanism 01 includes an air intake pipe 11, a centrifugal fan 12, and an air outlet pipe 13. One end of the air intake pipe 11 is connected to the exhaust port of the lightweight foamed ceramic plate firing furnace, and the other end of the air intake pipe 11 is installed on the centrifugal fan 12. The air outlet pipe 13 is installed on the centrifugal fan 12.

[0030] The filtering mechanism 02 comprises a filtering cylinder 21, an air inlet pipe 22, an air outlet pipe 23, an adjusting rotating shaft 24, a partition plate 25 and a filtering plate 26, the air inlet pipe 22 and the air outlet pipe 23 are installed on the outer wall of the two ends of the filtering cylinder 21, the air inlet pipe 22 is connected with the air outlet pipe 13 through a flange, the air outlet pipe 13 is connected with the adsorption mechanism 06 through a flange, the adjusting rotating shaft 24 is rotatably installed in the filtering cylinder 21, the partition plate 25 is installed on the adjusting rotating shaft 24, and the filtering plate 26 is installed on 15;

[0031] The indexing mechanism 03 comprises an indexing disc 31, a recess 32, a pushing groove 33, an indexing driving shaft 34, a driving disc 35, a limiting semi-circular ring 36 and a pushing rod 37, the indexing disc 31 is installed on the outer end of the adjusting rotating shaft 24, the indexing disc 31 is provided with the recess 32 and the pushing groove 33, the indexing driving shaft 34 is rotatably installed on the side wall of the filtering cylinder 21, the driving disc 35 is installed on the indexing driving shaft 34, the limiting semi-circular ring 36 is installed on the driving disc 35, the limiting semi-circular ring 36 is concentric with the indexing driving shaft 34, the pushing rod 37 is installed on the driving disc 35, the pushing rod 37 is eccentrically installed on the driving disc 35, the limiting semi-circular ring 36 is semi-circular, and the number of the recess 32 and the pushing groove 33 is the same as that of the filtering spaces surrounded by the partition plate 25;

[0032] The indexing driving mechanism 04 comprises a worm wheel 41, a worm 42 and an indexing motor 43, the worm wheel 41 is installed on the indexing driving shaft 34, the outer wall of the filtering cylinder 21 is provided with a driving frame, the worm 42 is rotatably installed on the driving frame, the indexing motor 43 is installed on the driving frame, the worm 42 is meshed with the worm wheel 41, and the output end of the indexing motor 43 is connected with the worm 42;

[0033] The exhaust gas in the light foamed ceramic plate firing furnace is transported into the filtering cylinder 21 through the air inlet pipe 11 and the air outlet pipe 13 by opening the centrifugal fan 12, the exhaust gas enters into the filtering cylinder 21 through the air outlet pipe 13 and the air inlet pipe 22, the exhaust gas is filtered through the filtering plate 26, and then the exhaust gas is adsorbed into the adsorption mechanism 06 through the air outlet pipe 23, the space in the filtering cylinder 21 is divided into multiple filtering spaces through the partition plate 25, when the filtering effect and efficiency are reduced, the worm 42 is driven to rotate through the opening of the indexing motor 43, then the indexing driving shaft 34 is driven to rotate through the meshing relationship, and then the driving disc 35 is driven to rotate, so that the pushing rod 37 is driven to rotate, when the pushing rod 37 is away from the indexing disc 31, the limiting semi-circular ring 36 is located in the recess 32 for limiting, when the pushing rod 37 approaches the indexing disc 31, the limiting semi-circular ring 36 releases the limiting of the indexing disc 31, then the pushing rod 37 enters into the pushing groove 33 to push the indexing disc 31 to rotate, and then the adjusting rotating shaft 24 is driven to rotate, the partition plate 25 is driven to rotate through the rotation of the adjusting rotating shaft 24, and then the filtering space is replaced, so that the filtering efficiency and quality are improved.

[0034] Example 2

[0035] As Figures 4 to 6 shown, a kind of lightweight foamed ceramic plate firing exhaust gas treatment equipment, including air intake mechanism 01, still including filtering mechanism 02, indexing mechanism 03, indexing drive mechanism 04, alarm mechanism 05 and adsorption mechanism 06, air intake mechanism 01 is connected with the exhaust port of lightweight foamed ceramic plate firing furnace, filtering mechanism 02 is connected with air intake mechanism 01, indexing mechanism 03 is installed on filtering mechanism 02, indexing drive mechanism 04 is installed on indexing mechanism 03, alarm mechanism 05 is installed on filtering mechanism 02, adsorption mechanism 06 is connected with filtering mechanism 02;

[0036] by air intake mechanism 01 to the exhaust gas into filtering mechanism 02, filtering mechanism 02 carries out filtering to dust in exhaust gas, indexing drive mechanism 04 drives indexing mechanism 03 to adjust filtering mechanism 02, alarm mechanism 05 detects the degree of use of filtering mechanism 02, adsorption mechanism 06 carries out adsorption treatment to exhaust gas;

[0037] air intake mechanism 01 includes air inlet pipe 11, centrifugal fan 12 and air outlet pipe 13, one end of air inlet pipe 11 is connected with the exhaust port of lightweight foamed ceramic plate firing furnace, the other end of air inlet pipe 11 is installed on centrifugal fan 12, air outlet pipe 13 is installed on centrifugal fan 12;

[0038] filtering mechanism 02 includes filter cartridge 21, air inlet pipe 22, air outlet pipe 23, adjusting shaft 24, partition plate 25 and filter plate 26, air inlet pipe 22 and air outlet pipe 23 are installed on the outer wall of both ends of filter cartridge 21, air inlet pipe 22 is connected with air outlet pipe 13 by flange, air outlet pipe 13 is connected with adsorption mechanism 06 by flange, adjusting shaft 24 is rotatably installed in filter cartridge 21, partition plate 25 is installed on adjusting shaft 24, filter plate 26 is installed on 15;

[0039] alarm mechanism 05 includes turntable 51, proximity block 52, mounting bracket 53 and proximity switch 54, turntable 51 is rotatably installed on the outer wall of filter cartridge 21, turntable 51 is concentrically connected with adjusting shaft 24, degree grid is provided on turntable 51, the number of degree grid is same with the number of filter space surrounded by partition plate 25, proximity block 52 is installed on degree grid, proximity switch 54 is installed on the outer wall of filter cartridge 21 by mounting bracket 53, buzzer is provided on the outer wall of filter cartridge 21;

[0040] adsorption mechanism 06 includes adsorption box 61 and activated carbon adsorption plate 62, activated carbon adsorption plate 62 is installed in adsorption box 61, activated carbon adsorption plate 62 is connected with air outlet pipe 23 by flange;

[0041] The waste gas is sucked into the filtering mechanism 02 through the air inlet mechanism 01, the dust in the waste gas is filtered by the filtering mechanism 02, when the filtering efficiency and quality of the filtering mechanism 02 are reduced, the indexing driving mechanism 04 drives the indexing mechanism 03 to adjust the filtering mechanism 02, so that the filtering quality and efficiency of the filtering mechanism 02 on the dust in the waste gas are improved, the use degree of the filtering mechanism 02 is detected by the alarm mechanism 05, and the operator is reminded to clean and replace in time, the filtering quality is improved, and the waste gas is adsorbed by the adsorption mechanism 06.

[0042] As shown in Figures 1 to 10 The utility model discloses a kind of light foamed ceramic plate firing waste gas treatment equipment, when working, by opening centrifugal fan 12, light foamed ceramic plate firing furnace inside waste gas is transported to filter cartridge 21 by air inlet pipe 11 and air outlet pipe 13, waste gas enters into filter cartridge 21 by air outlet pipe 13 and air inlet pipe 22, waste gas is filtered by filter plate 26, after which waste gas is adsorbed by entering into adsorption mechanism 06 by air outlet pipe 23, the space in filter cartridge 21 is divided into multiple filtering spaces by separating plate 25, when filtering effect and efficiency reduce, by opening indexing motor 43, drive worm 42 rotation, then drive indexing driving shaft 34 rotation by meshing relationship, further drive driving disc 35 rotation, to drive lever 37 rotation, when lever 37 is far from indexing disc 31, so that limiting semicircle ring 36 is positioned in recess 32 and is positioned, when lever 37 approaches indexing disc 31, limiting semicircle ring 36 removes the limiting of indexing disc 31, then lever 37 enters into indexing groove 33 and indexes indexing disc 31 rotation, further drive adjusting shaft 24 rotation, drive separating plate 25 rotation by adjusting shaft 24 rotation, further change filtering space, to improve filtering efficiency and quality, when adjusting shaft 24 rotation drives separating plate 25 rotation and adjusts filtering space, turntable 51 is rotated, when first used, approach block 52 position corresponds to last filtering space, when all filtering spaces in filter cartridge 21 are used up, approach block 52 approaches proximity switch 54 at this time, waste gas enters into adsorption box 61 by air outlet pipe 23, harmful substances in waste gas are adsorbed by active carbon adsorption plate 62, to improve waste gas treatment quality.

[0043] Centrifugal fan 12 of the utility model, indexing motor 43 and proximity switch 54 are purchased on market, and technical personnel in this industry only need to install and operate according to the use instruction book attached, without the creative labor of technical personnel in the field.

[0044] The utility model realizes the main function as follows: in the waste gas treatment working process, filter screen does not need to be replaced frequently, and convenience and waste gas treatment efficiency are improved.

[0045] The above merely describes preferred embodiments of the present application, and it should be noted that, for those skilled in the art, without departing from the technical principles of the present application, a number of improvements and modifications can be made, and these improvements and modifications should also be considered as falling within the protection scope of the present application.

Claims

1. A waste gas treatment device for the firing of lightweight foamed ceramic panels, comprising an air inlet mechanism (01); characterized in that, It also includes a filter mechanism (02), an indexing mechanism (03), an indexing drive mechanism (04), an alarm mechanism (05), and an adsorption mechanism (06). The air intake mechanism (01) is connected to the exhaust port of the lightweight foamed ceramic plate firing furnace. The filter mechanism (02) is connected to the air intake mechanism (01). The indexing mechanism (03) is installed on the filter mechanism (02). The indexing drive mechanism (04) is installed on the indexing mechanism (03). The alarm mechanism (05) is installed on the filter mechanism (02). The adsorption mechanism (06) is connected to the filter mechanism (02). The air intake mechanism (01) draws the exhaust gas into the filter mechanism (02), the filter mechanism (02) filters the dust in the exhaust gas, the indexing drive mechanism (04) drives the indexing mechanism (03) to adjust the filter mechanism (02), the alarm mechanism (05) detects the usage level of the filter mechanism (02), and the adsorption mechanism (06) adsorbs the exhaust gas.

2. The waste gas treatment equipment for the firing of lightweight foamed ceramic panels as described in claim 1, characterized in that, The air intake mechanism (01) includes an air intake pipe (11), a centrifugal fan (12) and an air outlet pipe (13). One end of the air intake pipe (11) is connected to the exhaust port of the lightweight foamed ceramic plate firing furnace, and the other end of the air intake pipe (11) is installed on the centrifugal fan (12). The air outlet pipe (13) is installed on the centrifugal fan (12).

3. The waste gas treatment equipment for the firing of lightweight foamed ceramic panels as described in claim 2, characterized in that, The filtration mechanism (02) includes a filter cylinder (21), an air inlet pipe (22), an air outlet pipe (23), an adjusting shaft (24), a partition plate (25), and a filter plate (26). The air inlet pipe (22) and the air outlet pipe (23) are installed on the outer walls of both ends of the filter cylinder (21). The air inlet pipe (22) is connected to the air outlet pipe (13) through a flange. The air outlet pipe (13) is connected to the adsorption mechanism (06) through a flange. The adjusting shaft (24) is rotatably installed inside the filter cylinder (21). The partition plate (25) is installed on the adjusting shaft (24), and the filter plate (26) is installed on the partition plate (15).

4. The waste gas treatment equipment for the firing of lightweight foamed ceramic panels as described in claim 3, characterized in that, The indexing mechanism (03) includes an indexing plate (31), a groove (32), a shifting groove (33), an indexing drive shaft (34), a drive disc (35), a limiting semicircular ring (36), and a lever (37). The indexing plate (31) is installed on the outer end of the adjusting shaft (24). The indexing plate (31) is provided with a groove (32) and a shifting groove (33). The indexing drive shaft (34) is rotatably installed on the side wall of the filter cylinder (21). The drive disc (35) is rotatably installed on the side wall of the filter cylinder (21). 5) Installed on the indexing drive shaft (34), the limiting semicircular ring (36) is installed on the drive disk (35), the limiting semicircular ring (36) is concentric with the indexing drive shaft (34), the lever (37) is installed on the drive disk (35), the lever (37) is eccentrically installed on the drive disk (35), the limiting semicircular ring (36) is semi-circular, and the number of grooves (32) and actuation grooves (33) is the same as the number of filter spaces enclosed by the partition plate (25).

5. The waste gas treatment equipment for the firing of lightweight foamed ceramic panels as described in claim 4, characterized in that, The indexing drive mechanism (04) includes a worm wheel (41), a worm (42) and an indexing motor (43). The worm wheel (41) is mounted on the indexing drive shaft (34). A drive frame is provided on the outer wall of the filter cylinder (21). The worm (42) is rotatably mounted on the drive frame. The indexing motor (43) is mounted on the drive frame. The worm (42) meshes with the worm wheel (41). The output end of the indexing motor (43) is connected to the worm (42).

6. The waste gas treatment equipment for the firing of lightweight foamed ceramic panels as described in claim 3, characterized in that, The alarm mechanism (05) includes a turntable (51), a proximity block (52), a mounting bracket (53), and a proximity switch (54). The turntable (51) is rotatably mounted on the outer wall of the filter cylinder (21). The turntable (51) is concentrically connected to the adjusting shaft (24). The turntable (51) is provided with a scale, the number of which is the same as the number of filter spaces enclosed by the partition plate (25). The proximity block (52) is mounted on the scale. The proximity switch (54) is mounted on the outer wall of the filter cylinder (21) through the mounting bracket (53). A buzzer is provided on the outer wall of the filter cylinder (21).

7. The waste gas treatment equipment for the firing of lightweight foamed ceramic panels as described in claim 3, characterized in that, The adsorption mechanism (06) includes an adsorption box (61) and an activated carbon adsorption plate (62). The activated carbon adsorption plate (62) is installed inside the adsorption box (61) and is connected to the gas outlet pipe (23) through a flange.

Citation Information

Patent Citations

  • Waste gas treatment method and device in foamed ceramic firing process

    CN115738499A