Condensed cloth fabric production waste gas treatment equipment and process thereof

By designing waste gas treatment equipment for condensing cloth fabric production, and utilizing a combination of condensation, filtration, and cleaning components, the problem of poor adsorption effect caused by high humidity in the waste gas was solved, achieving efficient waste gas treatment and automated cleaning, and ensuring stable equipment operation.

CN120789863BActive Publication Date: 2026-04-10NANTONG ZHUOYUE COATING TEXTILES CO LTD
View PDF 2 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
NANTONG ZHUOYUE COATING TEXTILES CO LTD
Filing Date
2025-06-30
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

During the production of condensation fabric, the high humidity in the exhaust gas leads to poor adsorption, affecting the adsorption and incineration of organic matter.

Method used

An exhaust gas treatment device including a condensation mechanism, a filtration mechanism, and a cleaning component was designed. The condensation mechanism reduces the humidity of the exhaust gas, the filtration mechanism removes impurities, and the cleaning component automatically cleans the filtration mechanism, thereby achieving efficient exhaust gas treatment.

Benefits of technology

It effectively reduces the humidity of exhaust gas, improves the adsorption effect, reduces the difficulty of manual cleaning, ensures continuous operation of equipment, and avoids downtime for cleaning.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN120789863B_ABST
    Figure CN120789863B_ABST
Patent Text Reader

Abstract

The application belongs to the technical field of waste gas treatment, and particularly relates to a waste gas treatment equipment for cold condensation cloth production and a process thereof, which comprises a treatment mechanism, a collecting mechanism, a filtering mechanism, a condensing mechanism and an air inlet pipe. The collecting mechanism is installed at the top of the connecting pipe. The filtering mechanism is uniformly arranged on the inner wall of the collecting mechanism. The condensing mechanism is uniformly arranged on the inner wall of the collecting mechanism. The air inlet pipe is arranged on the side of the collecting mechanism away from the connecting pipe. The water vapor contained in the gas is condensed into water droplets and adheres to the surface of the annular pipe when the condensing mechanism is set, so that the water droplets are quickly separated from the annular pipe and enter the collecting mechanism under extrusion. The particulate matters in the waste gas and the organic matters dissolved in water are separately and centrally collected, the waste gas with low pollutant concentration is conveniently centrally treated, the humidity of the waste gas is reduced, and the adsorption and incineration treatment of the waste gas by the treatment mechanism are not affected.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The application belongs to the technical field of waste gas treatment, and particularly relates to a waste gas treatment equipment for condensing cloth production and a process thereof. BACKGROUND

[0002] Condensing cloth, also known as moisture-permeable waterproof fabric, is a kind of fabric with waterproof and moisture-permeable functions. The main function of condensing cloth is to prevent water from penetrating into the fabric while allowing sweat to be discharged in the form of water vapor, thereby maintaining the comfort of the garment. This fabric has a wide range of applications in outdoor sports, military equipment and daily clothing.

[0003] In the production process, the coating raw material will volatilize harmful substances, and the tail gas needs to be collected and treated before being discharged. In the practice of treating low-concentration organic waste gas, adsorption concentration and catalytic combustion technology have been widely used. Due to the high humidity of the waste gas, the adsorption effect is not good, which affects the adsorption of organic matter. SUMMARY

[0004] In view of the defects of the prior art, the technical scheme adopted by the application to solve the technical problems is: a waste gas treatment equipment for condensing cloth production, comprising:

[0005] A treatment mechanism is arranged at the top of the treatment mechanism;

[0006] A collection mechanism is installed at the top of the connecting pipe;

[0007] A filter mechanism is uniformly arranged on the inner wall of the collection mechanism;

[0008] A condensing mechanism is uniformly arranged on the inner wall of the collection mechanism;

[0009] An air inlet pipe is arranged on the side of the collection mechanism away from the connecting pipe;

[0010] The condensing mechanism comprises:

[0011] A water inlet pipe is uniformly arranged at the bottom of the collection mechanism;

[0012] An annular pipe is installed at the top of the water inlet pipe;

[0013] A sponge ring is symmetrically arranged on the outer wall of the annular pipe;

[0014] An extrusion assembly is arranged on the outer wall of the sponge ring.

[0015] Further, the condensing mechanism further comprises:

[0016] An extension box is symmetrically arranged on the outer wall of the collecting mechanism, and one end of the extrusion assembly is connected to the inner wall of the extension box.

[0017] A water outlet pipe is arranged on the top of the annular pipe.

[0018] Further, the collecting mechanism comprises:

[0019] A buffer pipe is installed on the top of the connecting pipe, and a groove is arranged on the bottom of the inner wall of the buffer pipe.

[0020] A flow guide box is installed on the bottom of the buffer pipe, and an inclined surface is arranged on the bottom of the inner wall of the flow guide box.

[0021] Further, the collecting mechanism further comprises:

[0022] A filter plate is installed on the bottom of the buffer pipe.

[0023] A collecting box is arranged on the top of the processing mechanism, the outer wall of the collecting box is connected to one end of the flow guide box, and the outer wall of the water inlet pipe is sleeved with the inner wall of the collecting box.

[0024] Further, the filtering mechanism comprises:

[0025] A motor is installed on the top of the buffer pipe, and the outer wall of the motor is sleeved with a track.

[0026] A central pipe is sleeved with the inner wall of the track.

[0027] A filter hopper is connected to the inner wall of the buffer pipe, the inner wall of the filter hopper is provided with a sleeve, the inner wall of the sleeve is sleeved with the outer wall of the central pipe, the filter hopper is fixed in the buffer pipe, and the central pipe passes through the middle of the filter hopper.

[0028] Further, the filtering mechanism further comprises:

[0029] A threaded pipe is arranged on the outer wall of the filter hopper, and the outer wall of the threaded pipe is connected to the inner wall of the buffer pipe.

[0030] A shaft sleeve is arranged on the end of the central pipe away from the motor, and the inner wall of the shaft sleeve is sleeved with the outer wall of the central pipe.

[0031] A suction pipe is arranged on the inner wall of the shaft sleeve, and the outer wall of the suction pipe is sleeved with the inner wall of the shaft sleeve.

[0032] A cleaning assembly is uniformly arranged on the outer wall of the central pipe, and the outer wall of the cleaning assembly is in contact with the inner wall of the filter hopper.

[0033] Further, the cleaning assembly comprises:

[0034] The telescopic rod is arranged on the outer wall of the sleeve pipe.

[0035] The elastic sheet is arranged on the top of the telescopic rod, and the elastic sheet is in the shape of U and wraps the cleaning rod.

[0036] The cleaning rod is arranged on the outer wall of the central pipe, the outer wall of the cleaning rod is in contact with the inner wall of the filter hopper, the end of the cleaning rod away from the central pipe is in contact with the inner wall of the buffer pipe, and the surface of the cleaning rod is uniformly provided with the dirt discharging holes.

[0037] Further, the extrusion assembly comprises:

[0038] The circular plate is symmetrically arranged at two ends of the sponge ring, and the circular plate is arranged on the outer wall of the annular pipe.

[0039] The supporting rod is symmetrically arranged on the inner wall of the circular plate.

[0040] Further, the extrusion assembly further comprises:

[0041] The elastic rod is arranged at the end of the supporting rod away from the circular plate, the elastic rod is elastic, the supporting rod can be deflected, and the supporting effect of the supporting rod is maintained.

[0042] The connecting shaft is arranged at the bottom of the elastic rod.

[0043] The telescopic column is connected with the connecting shaft at one end, and the other end of the telescopic column is connected with the inner wall of the extension box.

[0044] A waste gas treatment process of a waste gas treatment equipment for producing condensing cloth fabric comprises the following steps:

[0045] S1: connecting the air inlet pipe with the condensing cloth processing equipment, and sucking the waste gas generated in the processing into the collection mechanism;

[0046] S2: the gas entering the collection mechanism has a high steam content, the condensing mechanism condenses the steam, reduces the steam content in the waste gas, and then the gas enters the filtering mechanism;

[0047] S3: the filtering hopper intercepts the dust and other impurities contained in the gas, the cleaning assembly cleans the inner wall of the filtering hopper, and the concentrated impurities are collected and discharged;

[0048] S4: the gas filtered and condensed finally enters the treatment mechanism from the connecting pipe to be treated and discharged, the condensed liquid is collected into the collection box through the flow guide box and is treated separately.

[0049] The beneficial effects of the present application are as follows:

[0050] 1. The present application sets up a condensing mechanism, when the gas enters the inside of the collecting mechanism, the water vapor contained in it condenses into water droplets attached to the surface of the annular pipe when it is cooled, and after a period of time, the extrusion assembly wipes the surface of the annular pipe to make the water droplets quickly detach from the annular pipe and be extruded into the inside of the collecting mechanism for centralized discharge, the particulate matter in the exhaust gas and the organic matter dissolved in water are separately and centrally collected, which is convenient for centralized treatment of the exhaust gas with low pollutant concentration, reduces the humidity of the exhaust gas, and avoids affecting the adsorption and incineration treatment of the exhaust gas by the treatment mechanism.

[0051] 2. The present application sets up a filtering mechanism, the cleaning assembly scrapes off the impurities on the inner wall of the filter hopper and forms a negative pressure in the center pipe along with the inside of the cleaning assembly through the external suction device, so that the scraped impurities are sucked, the impurities enter the center pipe through the cleaning assembly, and finally are discharged through the suction pipe, so that the impurities on the inner wall of the buffer pipe and the filter hopper are cleaned in time, the speed of gas passing through is not affected by the excessive accumulation of impurities, and the impurities are discharged outward in a suction manner to maintain the sealing of the buffer pipe without manual cleaning and without stopping work for cleaning.

[0052] 3. The present application sets up a cleaning assembly, the elastic sheet is close to the cleaning rod, the cleaning rod is covered, the suction pipe is externally connected to the suction device and is opened, a negative pressure is formed in the center pipe and the cleaning rod, water-containing impurities are sucked through the blowdown hole, at this time the elastic sheet covers the cleaning rod, air circulation near the cleaning rod is reduced, a larger negative pressure is formed around the cleaning rod, the blowdown pipe is assisted to suck and discharge the impurities, manual cleaning is not needed, the contact between workers and exhaust gas is reduced, the difficulty of manual cleaning is reduced, and the workload of workers is reduced.

[0053] 4. The present application sets up an extrusion assembly, the circular plate moves along the outer wall of the ring pipe and finally moves to the upper and lower ends of the annular pipe, the sponge ring is unfolded, the sponge ring absorbs the condensed water on the annular pipe, then the telescopic column is retracted, the circular plate is driven to the initial position, the sponge ring is extruded, the excess water is squeezed out and flows to the bottom of the buffer pipe, the condensed water on the annular pipe is quickly collected and absorbed, and the condensation effect on the exhaust gas is maintained. BRIEF DESCRIPTION OF DRAWINGS

[0054] Figure 1 It is a structural schematic view of the present application;

[0055] Figure 2 It is a sectional view of the present application;

[0056] Figure 3 It is a structural schematic view of the collecting mechanism of the present application;

[0057] Figure 4 It is a structural schematic view of the filtering mechanism of the present application;

[0058] Figure 5 is a structural schematic diagram of the condensing mechanism of the present application;

[0059] Figure 6 is a structural schematic diagram of the cleaning assembly of the present application;

[0060] Figure 7 is a structural schematic diagram of the extruding assembly of the present application;

[0061] Figure 8 is a partial structural schematic diagram of the extruding assembly of the present application;

[0062] Figure 9 is a flow chart of the waste gas treatment process of the present application.

[0063] In the figure: 1, treatment mechanism; 2, connecting pipe; 3, collection mechanism; 301, buffer pipe; 302, groove; 303, filter plate; 304, flow guide box; 305, inclined surface; 306, collection box; 4, filtering mechanism; 401, motor; 402, track; 403, center pipe; 404, filter hopper; 405, threaded pipe; 406, shaft sleeve; 407, suction pipe; 408, cleaning assembly; 4081, telescopic rod; 4082, elastic sheet; 4083, cleaning rod; 4084, blowhole; 409, sleeve pipe; 5, air inlet pipe; 6, condensing mechanism; 601, water inlet pipe; 602, annular pipe; 603, water outlet pipe; 604, sponge ring; 605, extension box; 606, extruding assembly; 6061, round plate; 6062, support rod; 6063, connecting shaft; 6064, telescopic column; 6065, elastic rod. DETAILED DESCRIPTION

[0064] The present application will be further described below in conjunction with the drawings and specific embodiments. The embodiments of the present application are given for the purpose of illustration and description, and are not intended to be exhaustive or to limit the present application to the forms disclosed. Many modifications and variations will be apparent to those of ordinary skill in the art. Embodiments were chosen and described in order to best explain the principles of the present application and its practical application, and to enable others skilled in the art to understand the present application for various embodiments with various modifications as are suited to the particular use contemplated.

[0065] Embodiment 1, please refer to Figures 1-5 The present application provides a technical solution: a waste gas treatment equipment for condensing cloth production and its process is described as follows.

[0066] It comprises:

[0067] The treatment mechanism 1 is provided at the top with a connecting pipe 2;

[0068] The collecting mechanism 3 is installed at the top of the connecting pipe 2;

[0069] The filtering mechanism 4 is uniformly arranged on the inner wall of the collecting mechanism 3;

[0070] The condensing mechanism 6 is uniformly arranged on the inner wall of the collecting mechanism 3;

[0071] The air inlet pipe 5 is arranged on the side of the collecting mechanism 3 away from the connecting pipe 2;

[0072] During operation, the air inlet pipe 5 is connected to the gas collecting end of the condensing cloth processing equipment, so that the gas generated during processing enters the collecting mechanism 3 through the external air pump, and is cooled and dehumidified through the condensing mechanism 6 and the filtering mechanism 4, and finally the dry gas enters the processing mechanism 1 for processing, and the condensed water is separately treated and discharged.

[0073] The condensing mechanism 6 comprises:

[0074] The water inlet pipe 601 is uniformly arranged at the bottom of the collecting mechanism 3, and the water inlet pipe 601 is externally connected to a cold water injection device;

[0075] The annular pipe 602 is installed at the top of the water inlet pipe 601;

[0076] The sponge ring 604 is symmetrically arranged on the outer wall of the annular pipe 602;

[0077] The extrusion assembly 606 is arranged on the outer wall of the sponge ring 604.

[0078] The condensing mechanism 6 further comprises:

[0079] The extension box 605 is symmetrically arranged on the outer wall of the collecting mechanism 3, and one end of the extrusion assembly 606 is connected to the inner wall of the extension box 605;

[0080] The water outlet pipe 603 is arranged at the top of the annular pipe 602.

[0081] During use, the water inlet pipe 601 is connected to cold water, so that the water enters the annular pipe 602 from the bottom and flows out from the water outlet pipe 603 above. When the gas enters the collecting mechanism 3, the water vapor contained therein condenses into water droplets and adheres to the surface of the annular pipe 602 when cooled. After a period of time, the extrusion assembly 606 wipes the surface of the annular pipe 602, so that the water droplets quickly separate from the annular pipe 602 and are extruded into the collecting mechanism 3 for centralized discharge. The particulate matter in the exhaust gas and the organic matter dissolved in the water are separately and centrally collected, which facilitates the centralized treatment of the exhaust gas with low pollutant concentration, reduces the humidity of the exhaust gas, and avoids affecting the adsorption and incineration treatment of the exhaust gas by the processing mechanism 1.

[0082] The collecting mechanism 3 comprises:

[0083] The buffer pipe 301 is installed at the top of the connecting pipe 2, and a groove 302 is formed at the bottom of the inner wall of the buffer pipe 301, which is an arc-shaped concave surface at the bottom of the buffer pipe 301, so that the condensed water enters the groove 302 through the filter plate 303;

[0084] The flow guide box 304 is installed at the bottom of the buffer pipe 301, and an inclined surface 305 is formed at the bottom of the inner wall of the flow guide box 304.

[0085] The collecting mechanism 3 further comprises:

[0086] The filter plate 303 is installed at the bottom of the buffer pipe 301;

[0087] The collecting box 306 is arranged at the top of the processing mechanism 1, and the outer wall of the collecting box 306 is connected with one end of the flow guide box 304, and the outer wall of the water inlet pipe 601 is sleeved with the inner wall of the collecting box 306.

[0088] After the gas enters the buffer pipe 301 through the air inlet pipe 5, and after the dehumidification and filtration of the condensing mechanism 6 and the filtering mechanism 4, the water condensed by the condensing mechanism 6 and the water scraped off the inner wall of the buffer pipe 301 by the filtering mechanism 4 are concentrated through the filter plate 303 into the flow guide box 304, and finally into the collecting box 306 along the flow guide box 304, realizing the separate concentration and discharge of the water and gas in the exhaust gas.

[0089] The filtering mechanism 4 comprises:

[0090] The motor 401 is installed at the top of the buffer pipe 301, and the outer wall of the motor 401 is sleeved with the track 402;

[0091] The center pipe 403 is sleeved with the inner wall of the track 402;

[0092] The filter hopper 404 is connected with the inner wall of the buffer pipe 301, and the inner wall of the filter hopper 404 is provided with a sleeve pipe 409, the inner wall of the sleeve pipe 409 is sleeved with the outer wall of the center pipe 403, the filter hopper 404 is fixed in the buffer pipe 301, and the center pipe 403 passes through the middle of the filter hopper 404.

[0093] The filtering mechanism 4 further comprises:

[0094] The threaded pipe 405 is arranged on the outer wall of the filter hopper 404, the outer wall of the threaded pipe 405 is connected with the inner wall of the buffer pipe 301, the threaded pipe 405 is attached to the filter hopper 404, and the inside flows cooling water to further condense the gas;

[0095] A sleeve 406 is arranged at the end of the central pipe 403 away from the motor 401, the inner wall of the sleeve 406 is sleeved with the outer wall of the central pipe 403, the sleeve 406 enables the central pipe 403 to rotate and keeps the central pipe 403 connected with the suction pipe 407;

[0096] A suction pipe 407 is arranged at the inner wall of the sleeve 406, the outer wall of the suction pipe 407 is sleeved with the inner wall of the sleeve 406, and the suction pipe 407 is connected with the suction device;

[0097] A cleaning assembly 408 is uniformly arranged at the outer wall of the central pipe 403, and the outer wall of the cleaning assembly 408 is in contact with the inner wall of the filter hopper 404.

[0098] When the gas passes through the filter hopper 404, the impurities in the gas are filtered, the motor 401 drives the central pipe 403 to rotate through the track 402, thereby driving the cleaning assembly 408 to rotate, so that the cleaning assembly 408 scrapes off the impurities on the inner wall of the filter hopper 404 and through the connected suction device, the central pipe 403 and the cleaning assembly 408 form a negative pressure, thereby sucking the concentrated impurities, making the impurities pass through the cleaning assembly 408 into the central pipe 403, and finally being discharged through the suction pipe 407, so that the impurities on the inner wall of the buffer pipe 301 and the filter hopper 404 are cleaned in time, avoiding that the impurities are accumulated too much to affect the speed of the gas passing through, and the impurities are discharged outward in a suction manner, so that the buffer pipe 301 is kept sealed, manual cleaning is not needed, and cleaning is not needed during shutdown.

[0099] Embodiment 2, please refer to Figures 1-9 The application provides a technical solution: on the basis of embodiment 1, the cleaning assembly 408 comprises:

[0100] A telescopic rod 4081 is arranged at the outer wall of the sleeve 409;

[0101] An elastic sheet 4082 is arranged at the top of the telescopic rod 4081, the elastic sheet 4082 is in a U shape and wraps the cleaning rod 4083;

[0102] A cleaning rod 4083 is arranged at the outer wall of the central pipe 403, the outer wall of the cleaning rod 4083 is in contact with the inner wall of the filter hopper 404, the end of the cleaning rod 4083 away from the central pipe 403 is in contact with the inner wall of the buffer pipe 301, and the surface of the cleaning rod 4083 is uniformly provided with a plurality of blowholes 4084.

[0103] In the cleaning process, the central pipe 403 drives the cleaning rod 4083 to rotate, the cleaning rod 4083 is in contact with the inner wall of the buffer pipe 301 and the inner wall of the filter hopper 404, and is scraped off, so that impurities are accumulated near the cleaning rod 4083, when the accumulated water-containing impurities are more, the cleaning rod 4083 is rotated to stop directly above, the elastic sheet 4082 is driven by the telescopic rod 4081 to be close to the cleaning rod 4083, so that the cleaning rod 4083 is covered, the suction pipe 407 is connected with the suction device and opened, so that the central pipe 403 and the cleaning rod 4083 form a negative pressure, the water-containing impurities are sucked in through the drain hole 4084, at this time the elastic sheet 4082 covers the cleaning rod 4083, reduces the air flow near the cleaning rod 4083, forms a larger negative pressure around the cleaning rod 4083, assists the suction of the drain pipe, and the impurities are discharged. It is not necessary to stop cleaning, reduce the contact of workers with waste gas, reduce the difficulty of manual cleaning, and reduce the workload of workers.

[0104] The extrusion assembly 606 comprises:

[0105] A circular plate 6061 is symmetrically arranged at two ends of the sponge ring 604, and the circular plate 6061 is sleeved on the outer wall of the annular pipe 602.

[0106] A supporting rod 6062 is symmetrically arranged on the inner wall of the circular plate 6061.

[0107] The extrusion assembly 606 further comprises:

[0108] A resilient rod 6065 is arranged at one end of the supporting rod 6062 away from the circular plate 6061, the resilient rod 6065 has elasticity, so that the supporting rod 6062 can be deflected, and meanwhile the supporting effect of the supporting rod 6062 is maintained;

[0109] A connecting shaft 6063 is installed at the bottom of the resilient rod 6065.

[0110] A telescopic column 6064 is connected at one end with the connecting shaft 6063, and connected at the other end with the inner wall of the extension box 605.

[0111] ​At the beginning, the telescopic column 6064 is retracted in the extension box 605, so that the upper and lower circular plates 6061 are driven by the elastic rod 6065 and the supporting rod 6062 to be close to each other, after the condensate water is attached to the annular pipe 602, the telescopic column 6064 is extended, the circular plate 6061 on the supporting rod 6062 is moved along the outer wall of the annular pipe, and finally moves to the upper and lower ends of the annular pipe 602, so that the sponge ring 604 is unfolded, the sponge ring 604 absorbs the condensate water on the annular pipe 602, then the telescopic column 6064 is retracted, the circular plate 6061 is driven to the initial position, and the sponge ring 604 is squeezed to squeeze out the excess water and flow to the bottom of the buffer pipe 301, so that the condensate water on the annular pipe 602 is quickly collected and absorbed, and the condensation effect on the exhaust gas is maintained.

[0112] A waste gas treatment process of a waste gas treatment equipment for condensing cloth production, comprising the following steps:

[0113] S1: connecting the air inlet pipe 5 with the condensing cloth processing equipment, and sucking the processing generated exhaust gas into the collection mechanism 3;

[0114] S2: the gas entering the collection mechanism 3 has a high steam content, the condensing mechanism 6 condenses the steam to reduce the steam content in the exhaust gas, and then the gas enters the filtering mechanism 4;

[0115] S3: the filtering hopper 404 intercepts the dust and other impurities contained in the gas, the cleaning assembly 408 cleans the inner wall of the filtering hopper 404, and collects and discharges the concentrated impurities;

[0116] S4: the finally filtered and condensed gas enters the treatment mechanism 1 from the connecting pipe 2 for exhaust gas treatment and discharge, the collected liquid enters the collection tank 306 through the flow guide box 304 for separate treatment.

[0117] The specific working process is as follows:

[0118] In work, the air inlet pipe 5 is connected with the air collection end of the condensing cloth processing equipment, so that the gas in the processing process enters the collection mechanism 3 through the external air pump, in use, the water inlet pipe 601 introduces cold water, so that the water enters the annular pipe 602 from the bottom and flows out from the water outlet pipe 603 at the top, when the gas enters the collection mechanism 3, the water vapor contained therein condenses into water droplets and adheres to the surface of the annular pipe 602, after a period of time, the squeezing assembly 606 wipes the surface of the annular pipe 602, so that the water droplets quickly separate from the annular pipe 602 and are squeezed into the collection mechanism 3 for centralized discharge, the particulate matters in the exhaust gas and the organic matters dissolved in the water are separately collected, so as to conveniently collect and treat the exhaust gas with low pollutant concentration;

[0119] When the gas passes through the filter hopper 404, the impurities in the gas are filtered, the motor 401 drives the central pipe 403 to rotate through the track 402, thereby driving the cleaning assembly 408 to rotate, so that the cleaning assembly 408 scrapes the impurities on the inner wall of the filter hopper 404 and passes through the external suction device, so that the central pipe 403 and the cleaning assembly 408 inside form a negative pressure, thereby sucking the concentrated impurities, so that the impurities pass through the cleaning assembly 408 into the central pipe 403, and finally are discharged through the suction pipe 407;

[0120] After the gas enters the buffer pipe 301 through the gas inlet pipe 5, is dehumidified and filtered through the condensing mechanism 6 and the filtering mechanism 4, the water squeezed out by the condensing mechanism 6 and the water scraped off by the filtering mechanism 4 from the inner wall of the buffer pipe 301 are concentrated to pass through the filter plate 303 into the flow guide box 304, and finally enter the collection box 306 along the flow guide box 304, so that the water and the gas in the exhaust gas are respectively concentrated and collected and discharged, and finally the dry gas enters the processing mechanism 1 for processing, and the condensed water is processed separately and then discharged.

[0121] Obviously, the described embodiments are only part of the embodiments of the present application, not all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art and related fields without creative labor should belong to the protection scope of the present application. The structures, devices and operation methods not specifically described and explained in the present application, if not specially described and limited, are implemented according to the conventional means in the art.

Claims

1. A waste gas treatment equipment for cold condensation cloth production, comprising: a treatment mechanism (1), characterized in that: the top of the treatment mechanism (1) is provided with a connecting pipe (2); a collection mechanism (3) installed at the top of the connecting pipe (2); a filtering mechanism (4) uniformly arranged on the inner wall of the collection mechanism (3); a condensing mechanism (6) uniformly arranged on the inner wall of the collection mechanism (3); an air inlet pipe (5) arranged on the side of the collection mechanism (3) away from the connecting pipe (2); the condensing mechanism (6) comprises: a water inlet pipe (601) uniformly arranged at the bottom of the collection mechanism (3); a ring-shaped pipe (602) installed at the top of the water inlet pipe (601); a sponge ring (604) symmetrically arranged on the outer wall of the ring-shaped pipe (602); a squeezing assembly (606) arranged on the outer wall of the sponge ring (604); the filtering mechanism (4) comprises: a motor (401) installed at the top of the buffer pipe (301), the outer wall of the motor (401) being sleeved with a track (402); a center pipe (403) with the outer wall sleeved with the inner wall of the track (402); a filter hopper (404) with the outer wall connected with the inner wall of the buffer pipe (301), the inner wall of the filter hopper (404) being provided with a sleeve pipe (409) with the inner wall sleeved with the outer wall of the center pipe (403); the filtering mechanism (4) further comprises: a threaded pipe (405) arranged on the outer wall of the filter hopper (404), the outer wall of the threaded pipe (405) being connected with the inner wall of the buffer pipe (301); a shaft sleeve (406) arranged at the end of the center pipe (403) away from the motor (401), the inner wall of the shaft sleeve (406) being sleeved with the outer wall of the center pipe (403); a suction pipe (407) arranged on the inner wall of the shaft sleeve (406), the outer wall of the suction pipe (407) being sleeved with the inner wall of the shaft sleeve (406); a cleaning assembly (408) uniformly arranged on the outer wall of the center pipe (403), the outer wall of the cleaning assembly (408) being in contact with the inner wall of the filter hopper (404); the cleaning assembly (408) comprises: an extension rod (4081) arranged on the outer wall of the sleeve pipe (409); an elastic sheet (4082) arranged at the top of the extension rod (4081). The cleaning rod (4083) is arranged on the outer wall of the central pipe (403), the outer wall of the cleaning rod (4083) is in contact with the inner wall of the filter hopper (404), one end of the cleaning rod (4083) away from the central pipe (403) is in contact with the inner wall of the buffer pipe (301), and the surface of the cleaning rod (4083) is uniformly provided with a blowhole (4084).

2. The waste gas treatment equipment for condensing cloth production according to claim 1, wherein: The condensing mechanism (6) further comprises: The extension box (605) is symmetrically arranged on the outer wall of the collecting mechanism (3), one end of the extrusion assembly (606) is connected with the inner wall of the extension box (605); The water outlet pipe (603) is arranged on the top of the annular pipe (602).

3. The exhaust treatment apparatus for condensation fabric production according to claim 2, characterized in that: The collecting mechanism (3) comprises: The buffer pipe (301) is installed on the top of the connecting pipe (2), and the bottom of the inner wall of the buffer pipe (301) is provided with a groove (302); The flow guide box (304) is installed at the bottom of the buffer pipe (301), and the bottom of the inner wall of the flow guide box (304) is provided with an inclined surface (305).

4. The exhaust treatment apparatus for condensation fabric production according to claim 3, characterized in that: The collecting mechanism (3) further comprises: The filter plate (303) is installed at the bottom of the buffer pipe (301); The collecting box (306) is arranged on the top of the treatment mechanism (1), the outer wall of the collecting box (306) is connected with one end of the flow guide box (304), and the outer wall of the water inlet pipe (601) is sleeved with the inner wall of the collecting box (306).

5. The exhaust treatment apparatus for condensation fabric production according to claim 1, characterized in that: The extrusion assembly (606) comprises: The circular plate (6061) is symmetrically arranged at both ends of the sponge ring (604), and the circular plate (6061) is sleeved on the outer wall of the annular pipe (602); The supporting rod (6062) is symmetrically arranged on the inner wall of the circular plate (6061).

6. The exhaust treatment apparatus for condensation fabric production of claim 5, wherein: The extrusion assembly (606) further comprises: The elastic rod (6065) is arranged at one end of the supporting rod (6062) away from the circular plate (6061); The connecting shaft (6063) is installed at the bottom of the elastic rod (6065); One end of the telescopic column (6064) is connected with the connecting shaft (6063), and the other end of the telescopic column (6064) is connected with the inner wall of the extension box (605).

7. A waste gas treatment process of a waste gas treatment apparatus for producing a cold condensation cloth according to any one of claims 1 to 6, characterized in that, The method comprises the following steps: S1: connecting the air inlet pipe (5) with the condensing cloth processing equipment, and sucking the waste gas generated in the processing into the collecting mechanism (3); S2: the gas entering the collecting mechanism (3) has a high steam content, the condensing mechanism (6) condenses the steam to reduce the steam content in the waste gas, and then the gas enters the filtering mechanism (4); S3: The filter hopper (404) intercepts the dust impurities contained in the gas, the cleaning assembly (408) cleans the inner wall of the filter hopper (404), and collects and discharges the concentrated impurities; S4: The gas filtered and condensed finally enters the processing mechanism (1) from the connecting pipe (2) for waste gas treatment and emission, and the condensed liquid enters the collection tank (306) through the flow guide box (304) for separate treatment.

Citation Information

Patent Citations

  • High -efficient dehumidification filter equipment of organic waste gas

    CN208032253U

  • Intelligent switch cabinet with comprehensive state detection function

    CN214478578U