CN-224207722-U - Flue gas activated carbon adsorption device
Abstract
The utility model belongs to the technical field of flue gas treatment, in particular to a flue gas activated carbon adsorption device, which comprises an adsorption component body, wherein the lower end part of one side of the adsorption component body is fixedly connected with an elbow gas pipe, the top of the elbow gas pipe is fixedly communicated with a communicating pipe, guide plates are arranged on two sides of an inner bin of the elbow gas pipe, the top of each guide plate is fixedly connected with a connecting top plate, an installation bin is arranged inside each guide plate, a filter screen is arranged inside each installation bin, filter cotton is fixedly connected inside each filter screen, one side of each guide plate is fixedly connected with an inner installation seat, so that the impact on the elbow of the elbow gas pipe is avoided when flue gas passes through the elbow of the elbow gas pipe, the abrasion on the elbow of the elbow gas pipe can be reduced, and the impact on the elbow of the elbow gas pipe caused by impact force generated in the flue gas conveying process in the long-term use process is reduced.
Inventors
- XU LUN
Assignees
- 清原满族自治县永利木材防腐有限公司
Dates
- Publication Date
- 20260508
- Application Date
- 20250530
Claims (7)
- 1. A flue gas activated carbon adsorption device comprises an adsorption component body (1), and is characterized in that an elbow gas pipe (2) is fixedly connected to the lower end part of one side of the adsorption component body (1), communicating pipes (21) are fixedly connected to the top of the elbow gas pipe (2), guide plates (3) are mounted on two sides of an inner bin of the elbow gas pipe (2), a connecting top plate (31) is fixedly connected to the top of the guide plates (3), an installation bin (32) is arranged in the guide plates (3), a filter screen (4) is arranged in the installation bin (32), filter cotton (41) is fixedly connected to the inside of the filter screen (4), an inner mounting seat (33) is fixedly connected to one side of the guide plates (3), the guide plates (3) are mounted in the inner part of the elbow gas pipe (2) through the inner mounting seat (33), rubber soft plates (35) are fixedly connected to the end parts of the guide plates (3), a solid plate (22) is fixedly connected to the outer side of the elbow gas pipe (2), and an inner arc gas pipe (221) is fixedly connected to the inner arc gas pipe (2).
- 2. The flue gas activated carbon adsorption device as claimed in claim 1, wherein a plurality of communication holes (311) are formed in the connecting top plate (31).
- 3. The flue gas activated carbon adsorption device as claimed in claim 1, wherein the rubber soft plate (35) is embedded with a supporting plate (351).
- 4. The flue gas activated carbon adsorption device according to claim 1, wherein an outer mounting seat (34) is mounted on the outer side of the adsorption assembly body (1), and an anti-slip pad (341) is fixedly connected to the inner side of the outer mounting seat (34).
- 5. The flue gas activated carbon adsorption device as claimed in claim 4, wherein the second mounting grooves (24) are formed in the elbow gas pipe (2) and the inner mounting seat (33).
- 6. A flue gas activated carbon adsorption apparatus as claimed in claim 5 wherein said second mounting groove (24) is threaded with the interior of said outer mounting seat (34) by a threaded rod (342).
- 7. The flue gas activated carbon adsorption device according to claim 6, wherein a first mounting groove (23) is formed in the elbow gas pipe (2), and the inner mounting seat (33) is fixedly connected with the outer mounting seat (34) through the first mounting groove (23).
Description
Flue gas activated carbon adsorption device Technical Field The utility model belongs to the technical field of flue gas treatment, and particularly relates to a flue gas activated carbon adsorption device. Background The fume active carbon adsorption device is a tool for treating industrial waste gas, and the fly ash carried in high-temperature fume flushes the inner wall of a pipeline at high speed, and particularly forms erosive wear at the elbow and the reducing position. For example, the outer wall thickness of a DN800 pipeline elbow may be thinned by 0.5mm-1mm every year, the pipeline body may be worn out after 3 years, leakage occurs in the pipeline body, when a leakage point is close to a height Wen Duanshi, external cold air enters at the moment, local flue gas temperature suddenly drops, when the temperature is lower than an acid dew point, water vapor and sulfur trioxide combine to generate sulfuric acid mist, the sulfuric acid mist is condensed on the surface of active carbon, micropores are blocked, equipment is corroded, and normal operation of the equipment is affected. Disclosure of utility model The utility model provides a flue gas activated carbon adsorption device, which has the characteristics of avoiding the impact on the elbow of an elbow gas pipe when flue gas passes through the elbow of the elbow gas pipe, reducing the abrasion on the elbow of the elbow gas pipe, and reducing the impact on the elbow of the elbow gas pipe caused by impact acting force generated in the flue gas conveying process in the long-term use process. The utility model provides a smoke activated carbon adsorption device which comprises an adsorption component body, wherein the lower end part of one side of the adsorption component body is fixedly connected with an elbow gas pipe, the top of the elbow gas pipe is fixedly communicated with a communicating pipe, guide plates are arranged on two sides of an inner bin of the elbow gas pipe, the top of each guide plate is fixedly connected with a connecting top plate, an installation bin is arranged in each guide plate, a filter screen is arranged in each installation bin, filter cotton is fixedly connected in each filter screen, one side of each guide plate is fixedly connected with an inner installation seat, the guide plates are installed in the elbow gas pipe through the inner installation seats, the end parts of the guide plates are fixedly connected with rubber soft plates, the outer sides of the elbow gas pipe are fixedly connected with external arc fixing plates, and the inner sides of the elbow gas pipe are fixedly connected with inner arc fixing plates. Wherein, a plurality of communication holes are arranged in the connecting top plate. Wherein, the inside of rubber soft board inlays and is equipped with the backup pad. The outer side of the adsorption component body is provided with an outer mounting seat, and the inner side of the outer mounting seat is fixedly connected with an anti-slip pad. Wherein, the inside of elbow gas-supply pipe with the inside of interior mount pad has all seted up the second mounting groove. The second mounting groove and the inner threads of the outer mounting seat are connected with threaded rods. Wherein, a first mounting groove is arranged in the elbow gas pipe, and the inner mounting seat is fixedly connected with the outer mounting seat through the first mounting groove. The utility model has the advantages that under the action of the guide plate and the rubber soft plate, the flue gas in the elbow gas pipe can be guided through the flue gas at the elbow, so that the impact on the elbow of the elbow gas pipe is avoided when the flue gas passes through the elbow of the elbow gas pipe, the abrasion on the elbow of the elbow gas pipe can be reduced, the impact on the elbow of the elbow gas pipe caused by impact acting force generated in the flue gas conveying process in the long-term use process is reduced, and in addition, the elbow of the elbow gas pipe can be reinforced under the mutual cooperation of the external reinforcing arc plate and the internal reinforcing arc plate. None of the parts of the device are the same as or can be implemented using prior art. Drawings FIG. 1 is a schematic diagram of a front view of the present utility model; FIG. 2 shows an elbow gas pipe according to the present utility model a communicating pipe, a guide plate a schematic diagram of a front view structure when the outer mounting seat and the rubber soft board are disassembled; fig. 3 is an enlarged schematic view of a detail of the portion a in fig. 1 according to the present utility model. The device comprises an adsorption assembly body, an elbow gas pipe, a communicating pipe, an external fixing arc plate, a 221 inner fixing arc plate, a 23 first installation groove, a 24 second installation groove, a 3 guide plate, a 31 connecting top plate, a 311 communicating hole, a 32 mounting bin, a 33 inner installation seat, a 34 outer in