CN212818819U - High-efficient dust removal structure of water dust collecting equipment - Google Patents

High-efficient dust removal structure of water dust collecting equipment Download PDF

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Publication number
CN212818819U
CN212818819U CN202021163052.8U CN202021163052U CN212818819U CN 212818819 U CN212818819 U CN 212818819U CN 202021163052 U CN202021163052 U CN 202021163052U CN 212818819 U CN212818819 U CN 212818819U
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CN
China
Prior art keywords
water
dust removal
removal chamber
exhaust
chamber
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Expired - Fee Related
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CN202021163052.8U
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Chinese (zh)
Inventor
连玉田
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Suzhou Talent View Environment Technology Co ltd
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Suzhou Talent View Environment Technology Co ltd
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Priority to CN202021163052.8U priority Critical patent/CN212818819U/en
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Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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Abstract

The utility model relates to a chemical industry dust disposal equipment field discloses a water dust collecting equipment's high-efficient dust removal structure, including the fan, water dust removal chamber and trade the pond, the fan is provided with waste gas pipeline, waste gas pipeline's exhaust port sets up the lower part in water dust removal chamber, water dust removal chamber's bottom is provided with sewage pipes, water dust removal chamber's top is provided with a plurality of gas vents, it trades the water installation to be provided with in the pond, it is provided with the inlet tube that communicates in the water dust removal chamber to trade the water installation, water dust removal chamber and trade all contain the dust removal water in the pond, the end of inlet tube is located more than the dust removal surface in water dust removal chamber and is provided with the water changing nozzle, be provided with the internal circulation water pump and the internal circulation nozzle that link to each other through the internal circulation pipeline in the water dust removal chamber, the internal circulation water pump is. Can effectively remove dust at the blowdown in-process of changing water, the inner loop further increases dust removal effect, and is efficient, simple structure, facilitate promotion.

Description

High-efficient dust removal structure of water dust collecting equipment
Technical Field
The utility model relates to a chemical industry dust disposal equipment, in particular to water dust collecting equipment's high-efficient dust removal structure.
Background
In chemical production, many links all can involve the material of powder class, the material of powder class shifts and collection in-process inevitable the floating of dust and reveals, the powder class product of chemical material or semi-manufactured leakage can produce the pollution to the processing environment, still can produce some losses when influencing the operative employee healthy, the cost of production has been increased, so we can use the dust removal device occasionally, but when using water filtration dust collector, water filtration dust collector's filter effect is also lower when the air current is great, the structure to the better water filtration dust collector of dust removal effect is very complicated again, and the cost is higher, be unfavorable for promoting.
SUMMERY OF THE UTILITY MODEL
The utility model provides a technical problem provide a high-efficient dust removal structure of water dust collecting equipment.
The utility model provides a technical scheme that its technical problem adopted is: an efficient dust removing structure of water dust removing equipment comprises a fan, a water dust removing chamber and a water exchange pool, wherein the fan is provided with a waste gas pipeline, the exhaust port of the waste gas pipeline is arranged at the lower part in the water dust removal chamber, the bottom of the water dust removal chamber is provided with a sewage discharge pipeline, the top of the water dust chamber is provided with a plurality of exhaust ports, a water changing device is arranged in the water changing pool, the water changing device is provided with a water inlet pipe communicated with the water dust removing chamber, the water dust removing chamber and the water changing pool are filled with dedusting water, the tail end of the water inlet pipe is positioned above the dedusting water surface in the water dedusting chamber and is provided with a water changing nozzle, an internal circulating water pump, an internal circulating pipeline and an internal circulating nozzle are arranged in the water dust chamber, the internal circulating water pump is positioned at the bottom of the water dust chamber, the internal circulation nozzle is positioned above the dedusting water surface in the water dedusting chamber, and the internal circulation water pump is connected with the internal circulation nozzle through an internal circulation pipeline. The water changing nozzle can effectively remove dust in the sewage discharge and water changing process, the internal circulation nozzle further increases the dust removing effect, and the dust removing device is high in efficiency, simple in structure and convenient to popularize.
Further, the method comprises the following steps: and a dust removal sponge is arranged at the outer end of the exhaust port of the water dust removal chamber. The air after dust removal is ensured to be clean and dry, and the environment is not influenced.
Further, the method comprises the following steps: the dust removal device is characterized in that a partition plate is arranged below the dust removal water surface in the water dust removal chamber, holes through which a waste gas pipeline and an internal circulation pipeline penetrate are formed in the partition plate, a plurality of exhaust holes are formed in the partition plate, and an exhaust port of the waste gas pipeline is located below the lowest partition plate. The large bubbles are separated into small air bags, so that the efficient dust removal effect is ensured.
Further, the method comprises the following steps: the two partition plates arranged below the dedusting water surface in the partition plate water dedusting chamber are provided, and the total area of the plurality of exhaust holes on the partition plates is larger than the cross-sectional area of the waste gas pipeline. Ensuring smooth exhaust.
Further, the method comprises the following steps: the exhaust ports are uniformly distributed around the top exhaust gas pipeline of the water dust removal chamber, and the total cross-sectional area of the exhaust ports is larger than that of the exhaust gas pipeline. Ensuring smooth exhaust.
Drawings
Fig. 1 is a schematic cross-sectional view of the present invention.
Labeled as: the device comprises an exhaust gas pipeline 110, a water dust removal chamber 200, a sewage discharge pipeline 210, an exhaust port 220, a dust removal sponge 221, an internal circulation water pump 230, an internal circulation pipeline 231, an internal circulation nozzle 232, a partition plate 240, an exhaust hole 241, a water changing pool 300, a water changing device, a water inlet pipe 320, a water changing nozzle 321 and a water changing water pump 322.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and the following detailed description.
As shown in fig. 1, an efficient dust removing structure of a water dust removing device comprises a fan, a water dust removing chamber 200 and a water changing pool 300, wherein the fan is provided with a waste gas pipeline 110, an exhaust port of the waste gas pipeline 110 is arranged at the lower part of the water dust removing chamber 200, a sewage pipeline 210 is arranged at the bottom of the water dust removing chamber 200, a plurality of exhaust ports 220 are arranged at the top of the water dust removing chamber 200, a water changing device is arranged in the water changing pool 300, the water changing device is provided with a water inlet pipe 320 communicated with the water dust removing chamber 200, dust removing water is filled in the water dust removing chamber 200 and the water changing pool 300, the tail end of the water inlet pipe 320 is positioned above the dust removing water surface of the water dust removing chamber 200 and is provided with a water changing nozzle 321, an internal circulation water pump 231, an internal circulation pipeline 232 and an internal circulation nozzle 233 are arranged in the water dust removing chamber 200, the internal circulation water, the internal circulation nozzle 233 is positioned above the dedusting water surface in the water dedusting chamber 200, and the internal circulation water pump 231 and the internal circulation nozzle 233 are connected through the internal circulation pipe 232. The fan is a common fan purchased from the market for dedusting and exhausting, the water changing device comprises a water inlet pipe 320, a water changing nozzle 321 and a water changing pump 322, the water nozzle 321 and the water changing pump 322 are connected through the water inlet pipe 320, and the water changing nozzle 321 and the water changing pump 322 are respectively positioned in the water dedusting chamber 200 and the water changing pool 300. The fan extracts waste gas containing dust and discharges the waste gas into dedusting water in the water dedusting chamber 200 through a waste gas pipeline 110 for dedusting; the internal circulation water pump 231 is a micro sewage pump, and the internal circulation nozzle 233 is a general sewage nozzle. The internal circulation water pump 231 sucks the dedusting water out and sprays out from the internal circulation nozzle 233, the internal circulation nozzle 233 is aligned with the dedusting water liquid surface in the water dedusting chamber 200, and the dedusted air emerging from the dedusting water liquid surface is sprayed out from the internal circulation nozzle 233 to be further dedusted; when water is changed, clean dedusting water is pumped by the water changing water pump 322 and sprayed out of the water changing nozzle 321 into the water dedusting chamber 200, the water changing nozzle 321 is aligned with the dedusting water liquid surface in the water dedusting chamber 200, and the dedusted air which is sprayed out of the dedusting water liquid surface is sprayed out of the internal circulation nozzle 233 to be further dedusted. Trade water nozzle 321 and can effectively remove dust at the blowdown in-process of trading water, inner loop nozzle 233 further increases dust removal effect, and is efficient, simple structure, facilitate promotion.
In addition, as shown in fig. 1, a dust removing sponge 221 is disposed at an outer end of the exhaust port 220 of the water dust removing chamber 200. Dust removal sponge 221 is the ordinary dustproof sponge of purchasing on the market, sets up in gas vent 220 outer end, and further to the air filter, has also got rid of the moisture in the exhaust air by the way, guarantees the clean dry of air after the dust removal, does not influence the environment.
On the basis, as shown in fig. 1, a partition 240 is disposed below the dust removal water surface in the water dust removal chamber 200, a hole through which the exhaust gas pipe 110 and the internal circulation pipe 231 pass is disposed on the partition 240, a plurality of exhaust holes 241 are further disposed on the partition 240, and an exhaust port of the exhaust gas pipe 110 is located below the lowest partition 240. The partition plate 240 is an anti-corrosion plastic plate, small holes are formed in the partition plate, the partition plate is horizontally arranged below the dedusting water surface in the water dedusting chamber 200, when waste gas with dust is discharged from the exhaust port of the waste gas pipeline 110, bubbles of the waste gas rise to meet the partition plate 240, the rising waste gas bubbles are scattered by the partition plate to become dispersed small bubbles, the dispersed small bubbles are discharged from the exhaust hole 241, contact between the dust in the waste gas and dedusting water is increased, the large bubbles are separated into small air bags, and efficient dedusting effect is guaranteed.
On the basis of the above, as shown in fig. 1, there are two partitions 240 disposed below the dedusting water surface in the partition 240 water dedusting chamber 200, and the total area of the plurality of exhaust holes 241 on the partition 240 is larger than the cross-sectional area of the exhaust gas duct 110. In practical implementation, the exhaust holes 241 of the two partition plates 240 are annularly and uniformly distributed around the exhaust gas duct 110, the aperture of the exhaust hole 241 of each plate is one fifth of the inner diameter of the exhaust gas duct 110, and the number of the exhaust holes 241 is fifty. Ensuring smooth exhaust.
On the basis of the above, as shown in fig. 1, the plurality of exhaust ports 220 are uniformly distributed around the top exhaust gas duct 110 of the water dust chamber 200, and the total cross-sectional area of the plurality of exhaust ports 220 is larger than the cross-sectional area of the exhaust gas duct 110. In practical implementation, there are four exhaust ports 220, which are uniformly and annularly distributed around the exhaust gas duct 110 at the top of the water dust chamber 200, and the inner diameter of the exhaust port 220 is two thirds of the inner diameter of the exhaust gas duct 110. Ensuring smooth exhaust.
The above-mentioned embodiments, further detailed description of the objects, technical solutions and advantages of the present invention, it should be understood that the above-mentioned embodiments are only specific embodiments of the present invention, and are not intended to limit the present invention, and any modifications, equivalent substitutions, improvements, etc. made within the spirit and principle of the present invention should be included in the scope of the present invention.

Claims (5)

1. The utility model provides a water dust collecting equipment's high-efficient dust removal structure, includes fan, water dust removal chamber (200) and trades pond (300), the fan is provided with exhaust duct (110), the exhaust port setting of exhaust duct (110) is in the lower part of water dust removal chamber (200), the bottom of water dust removal chamber (200) is provided with sewage pipes (210), the top of water dust removal chamber (200) is provided with a plurality of gas vents (220), it trades the water installation to be provided with in pond (300) to trade, it is provided with inlet tube (320) of communicateing in water dust removal chamber (200) to trade the water installation, all remove dirt water, its characterized in that contain in water dust removal chamber (200) and the pond (300) of trading: the end of inlet tube (320) is located more than the dust removal surface of water in water dust removal chamber (200) and is provided with trades water nozzle (321), be provided with internal recycle water pump (231), inner loop pipeline (232) and internal recycle nozzle (233) in water dust removal chamber (200), internal recycle water pump (231) are located water dust removal chamber (200) bottom, internal recycle nozzle (233) are located more than the dust removal surface of water in water dust removal chamber (200), internal recycle water pump (231) and internal recycle nozzle (233) link to each other through internal recycle pipeline (232).
2. The high-efficiency dust removing structure of water dust removing equipment according to claim 1, wherein: and a dust removal sponge (221) is arranged at the outer end of an exhaust port (220) of the water dust removal chamber (200).
3. The high-efficiency dust removing structure of water dust removing equipment according to claim 2, characterized in that: be provided with baffle (240) below the dust removal surface of water in water clean room (200), be provided with the hole that exhaust gas duct (110) and inner loop pipeline (232) passed on baffle (240), still be provided with a plurality of exhaust holes (241) on baffle (240), the exhaust port of exhaust gas duct (110) is located the below of a bottom baffle (240).
4. The high-efficiency dust removing structure of water dust removing equipment according to claim 3, wherein: the partition board (240) arranged below the dedusting water surface in the partition board (240) water dedusting chamber (200) is provided with two partition boards (240), and the total area of the plurality of exhaust holes (241) on the partition board (240) is larger than the section area of the waste gas pipeline (110).
5. The high-efficiency dust removing structure of water dust removing equipment according to claim 1, wherein: the exhaust openings (220) are uniformly distributed around the top exhaust gas pipeline (110) of the water dust removal chamber (200), and the total cross-sectional area of the exhaust openings (220) is larger than that of the exhaust gas pipeline (110).
CN202021163052.8U 2020-06-22 2020-06-22 High-efficient dust removal structure of water dust collecting equipment Expired - Fee Related CN212818819U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202021163052.8U CN212818819U (en) 2020-06-22 2020-06-22 High-efficient dust removal structure of water dust collecting equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202021163052.8U CN212818819U (en) 2020-06-22 2020-06-22 High-efficient dust removal structure of water dust collecting equipment

Publications (1)

Publication Number Publication Date
CN212818819U true CN212818819U (en) 2021-03-30

Family

ID=75175628

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202021163052.8U Expired - Fee Related CN212818819U (en) 2020-06-22 2020-06-22 High-efficient dust removal structure of water dust collecting equipment

Country Status (1)

Country Link
CN (1) CN212818819U (en)

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Granted publication date: 20210330