CN109675378A - A kind of energy-saving exhaust gas processing device that treatment fluid recycles - Google Patents
A kind of energy-saving exhaust gas processing device that treatment fluid recycles Download PDFInfo
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- CN109675378A CN109675378A CN201811345235.9A CN201811345235A CN109675378A CN 109675378 A CN109675378 A CN 109675378A CN 201811345235 A CN201811345235 A CN 201811345235A CN 109675378 A CN109675378 A CN 109675378A
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- process tank
- plate
- spray head
- dust
- web plate
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- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D46/00—Filters or filtering processes specially modified for separating dispersed particles from gases or vapours
- B01D46/10—Particle separators, e.g. dust precipitators, using filter plates, sheets or pads having plane surfaces
- B01D46/12—Particle separators, e.g. dust precipitators, using filter plates, sheets or pads having plane surfaces in multiple arrangements
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D46/00—Filters or filtering processes specially modified for separating dispersed particles from gases or vapours
- B01D46/42—Auxiliary equipment or operation thereof
- B01D46/4227—Manipulating filters or filter elements, e.g. handles or extracting tools
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D50/00—Combinations of methods or devices for separating particles from gases or vapours
- B01D50/60—Combinations of devices covered by groups B01D46/00 and B01D47/00
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D53/00—Separation of gases or vapours; Recovering vapours of volatile solvents from gases; Chemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases, aerosols
- B01D53/14—Separation of gases or vapours; Recovering vapours of volatile solvents from gases; Chemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases, aerosols by absorption
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D53/00—Separation of gases or vapours; Recovering vapours of volatile solvents from gases; Chemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases, aerosols
- B01D53/14—Separation of gases or vapours; Recovering vapours of volatile solvents from gases; Chemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases, aerosols by absorption
- B01D53/18—Absorbing units; Liquid distributors therefor
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D53/00—Separation of gases or vapours; Recovering vapours of volatile solvents from gases; Chemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases, aerosols
- B01D53/34—Chemical or biological purification of waste gases
- B01D53/74—General processes for purification of waste gases; Apparatus or devices specially adapted therefor
- B01D53/77—Liquid phase processes
- B01D53/78—Liquid phase processes with gas-liquid contact
-
- B—PERFORMING OPERATIONS; TRANSPORTING
- B01—PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
- B01D—SEPARATION
- B01D2258/00—Sources of waste gases
- B01D2258/02—Other waste gases
Abstract
The invention discloses the energy-saving exhaust gas processing devices that a kind for the treatment of fluid recycles, including process tank, air inlet pipe and exhaust pipe, first spray head is equipped in the middle part of the process tank, the the first dust-break web plate and the second dust-break web plate being parallel to each other up and down are equipped with inside the process tank of first spray head bottom, bottom among the second dust-break web plate is equipped with second spray head, treatment fluid is equipped in the process tank of air inlet bottom of the tube, the process tank side is equipped with water pump, water inlet pipe is equipped at the unit fixed on water pump suction, the water inlet pipe is connected to processing pot bottom, the pump outlet is equipped with outlet pipe, the outlet pipe upper end is connected to first spray head and second spray head respectively, baffle cover is equipped in the middle part of the process tank, baffle cover bottom is equipped with water conservancy diversion ring flat-plate, in exhaust bottom of the tube setting baffle cover and water conservancy diversion ring flat-plate, it can be improved gas When body discharges, gas-liquid separation efficiency reduces the loss for the treatment of fluid.
Description
Technical field:
The present invention relates to tail gas disposal technique fields, and in particular to a kind of energy-saving vent gas treatment that treatment fluid recycles
Device.
Background technique:
A large amount of industrial tail gas can be generated in chemical industry production process, these tail gas are discharged to ring if without processing
In border, it will endanger ecological environment, affect to the health of people.Therefore, it is necessary to tail gas
Reason, after reaching the standard that national exhaust gas externally discharges, can just discharge, outward to reduce environmental pollution.
Enterprise using be essentially all to remove purification by the way of simple circulated sprinkling.
Existing some exhaust gas processing devices, when gas discharge, treatment fluid cannot be separated effectively with gas, from
And it is too fast to cause treatment fluid to be lost, and increases cost, and treatment fluid can not be recycled and be utilized again.
Summary of the invention:
The prior art is difficult to meet the needs of people, and to solve the above problems, the invention proposes a kind of places
The energy-saving exhaust gas processing device that reason liquid recycles.
To achieve the above object, the invention provides the following technical scheme: the energy-saving tail gas that a kind for the treatment of fluid recycles
Processing unit, including process tank, air inlet pipe and exhaust pipe, the process tank upper end are equipped with exhaust pipe, and process tank bottom side
Face is equipped with air inlet pipe, it is characterised in that: first spray head, the processing positioned at first spray head bottom are equipped in the middle part of the process tank
The the first dust-break web plate and the second dust-break web plate being parallel to each other up and down, the bottom among the second dust-break web plate are equipped with inside tank
Equipped with second spray head, treatment fluid is equipped in the process tank of air inlet bottom of the tube, the process tank side is equipped with water pump, institute
It states and is equipped with water inlet pipe at unit fixed on water pump suction, the water inlet pipe is connected to processing pot bottom, and the pump outlet is equipped with outlet pipe, institute
Outlet pipe upper end is stated to be connected to first spray head and second spray head respectively;
Baffle cover is equipped in the middle part of the process tank of exhaust bottom of the tube, baffle cover bottom is equipped with water conservancy diversion ring flat-plate,
Guide ring board bottom portion is fixedly connected with process tank inner sidewall, and the first spray head is set to guide ring board bottom portion.
Preferably, the baffle cover is hemispherical, and the water conservancy diversion ring flat-plate is truncated cone-shaped, and the diameter of water conservancy diversion ring flat-plate upper end is less than
The diameter of bottom, and the diameter of water conservancy diversion ring flat-plate upper end is less than the diameter of baffle cover bottom, baffle cover bottom is equipped with several equal
The fixed link of even distribution, and baffle cover bottom is fixedly connected by fixed link with water conservancy diversion ring flat-plate upper end.
Preferably, the water conservancy diversion ring flat-plate bottommost and processing top tank structure junction are equipped with several equally distributed intercommunicating pores.
Preferably, the first dust-break web plate mesh diameter is less than the second dust-break web plate mesh diameter.
Preferably, the middle part between the first dust-break web plate and the second dust-break web plate is equipped with first turn be flexibly connected
Axis, the first rotating shaft are equipped with the channel washer of several Homogeneous Axisymmetricals distribution, and the channel washer upper and lower ends are equipped with several
Equally distributed brush filament, and is equipped with the second shaft for being flexibly connected in the process tank of flush in the middle part of air inlet pipe, and described the
Be equipped in the middle part of two shafts it is several with the baffle thin plate of distribution, and the second shaft side is equipped with the first bevel gear being fixedly connected,
The first rotating shaft bottom passes through the second dust-break web plate, and first rotating shaft bottom is equipped with the chain to match, second dust-break
The side of web plate bottom is equipped with the connecting shaft being flexibly connected, and the connecting shaft bottom is equipped with and is fixedly connected and nibbles with the first bevel gear
The second bevel gear closed, and connecting shaft is connect with first rotating shaft bottom by horizontal chain.
Further, the junction of the first rotating shaft and chain is equipped with the first seal box, the connecting shaft and chain
Junction is equipped with the second seal box, and the connection case being connected, the chain are equipped between first seal box and the second seal box
Item is in the middle part of connection case, and first seal box is fixedly connected with the second dust-break web plate bottom with the second seal box upper end.
Further, the connecting shaft upper end is equipped with the T shape snap-gauge that is fixedly connected, the second dust-break web plate be equipped with
The card slot that T shape snap-gauge matches, it is living by way of T shape snap-gauge engages with card slot between the connecting shaft and the second dust-break web plate
Dynamic connection.
Preferably, the air inlet pipe is rectangular, if being equipped in the air inlet pipe of process tank Yu air inlet pipe junction
The dry deflector for being uniformly distributed and being horizontally arranged, the deflector outside are equipped with the connecting rod being fixedly connected, the connecting rod
Both ends are flexibly connected with air inlet inside pipe wall, and adjustment hole is equipped in the middle part of the deflector, is equipped with adjusting rod, position in the adjustment hole
In being equipped with the snap ring being fixedly connected on the adjusting rod of adjustment hole upper and lower ends, the Snap ring diameter is greater than adjustment hole hole
Diameter, the air inlet bottom of the tube, which is equipped with, adjusts turntable, and the form that the adjusting rod bottom is connected through a screw thread passes through air inlet inside pipe wall
It is connect with turntable is adjusted.
Compared with prior art, the beneficial effects of the present invention are:
In exhaust bottom of the tube setting baffle cover and water conservancy diversion ring flat-plate, when can be improved gas discharge, gas-liquid separation efficiency is reduced
The loss for the treatment of fluid is arranged several equally distributed intercommunicating pores in water conservancy diversion ring flat-plate and processing top tank structure junction, makes the liquid collected
Body can leave automatically by intercommunicating pore, to realize the recycling for the treatment of fluid, save the cost.
Detailed description of the invention:
Fig. 1 is main view overall structure diagram of the invention;
Fig. 2 is enlarged structure schematic diagram at A in Fig. 1 of the invention;
Fig. 3 is first rotating shaft and the second rotating shaft connecting structure schematic diagram of the invention;
Fig. 4 is that the first seal box of the invention and the second seal box connect overall structure diagram;
Fig. 5 is water conservancy diversion ring flat-plate overlooking structure diagram of the invention;
In figure: 1- exhaust pipe, 2- process tank, 3- air inlet pipe, 4- baffle cover, 5- fixed link, 6- water conservancy diversion ring flat-plate, 7- first spray
Head, the first dust-break of 8- web plate, 9- channel washer, 10- connecting shaft, 11- treatment fluid, 12- water inlet pipe, 13- water pump, the second dust-break of 14-
Web plate, 15- outlet pipe, 16- baffle thin plate, 17- brush filament, 18- first rotating shaft, the second shaft of 19-, the first bevel gear of 20-, 21-
Second bevel gear, 22- intercommunicating pore, 23- adjusting rod, 24- connecting rod, 25- snap ring, 26- adjust turntable, 27- adjustment hole, 28- and connect
Logical case, 29- card slot, 30-T shape fixture block, the first seal box of 31-, the second seal box of 32-, 33- second spray head, 34- deflector.
Specific embodiment:
In order to be easy to understand the technical means, the creative features, the aims and the efficiencies achieved by the present invention, tie below
Conjunction is specifically illustrating, and the present invention is further explained.
Embodiment 1, a kind of energy-saving exhaust gas processing device that treatment fluid recycles, including process tank 2,3 and of air inlet pipe
Exhaust pipe 1,2 upper end of process tank is equipped with exhaust pipe 1, and 2 bottom side face of process tank is equipped with air inlet pipe 3, the process tank 2
Middle part is equipped with first spray head 7, and the first gear being parallel to each other up and down is equipped with inside the process tank 2 of 7 bottom of first spray head
The bottom of dirt web plate 8 and the second dust-break web plate 14,14 centre of the second dust-break web plate is equipped with second spray head 33, is located at air inlet pipe
Treatment fluid 11 is equipped in the process tank 2 of 3 bottoms, 2 side of process tank is equipped with water pump 13, and 13 entrance of water pump is set
Have water inlet pipe 12, the water inlet pipe 12 is connected to 2 bottom of process tank, 13 exit of water pump be equipped with outlet pipe 15, it is described go out
15 upper end of water pipe is connected to first spray head 7 and second spray head 33 respectively.
Preferably, 8 mesh diameter of the first dust-break web plate is less than 14 mesh diameter of the second dust-break web plate.
Embodiment 2
Place same as Example 1 no longer repeats, and difference from Example 1 is:
Preferably, baffle cover 4 is equipped in the middle part of the process tank 2 of 1 bottom of exhaust pipe, 4 bottom of baffle cover is set
There is water conservancy diversion ring flat-plate 6,6 bottom of water conservancy diversion ring flat-plate is fixedly connected with 2 inner sidewall of process tank, and the first spray head 7 is set to guide ring
6 bottom of plate.In exhaust bottom of the tube setting baffle cover and water conservancy diversion ring flat-plate, when can be improved gas discharge, gas-liquid separation efficiency is reduced
The loss for the treatment of fluid
Further, the baffle cover 4 be hemispherical, the water conservancy diversion ring flat-plate 6 be truncated cone-shaped, 6 upper end of water conservancy diversion ring flat-plate it is straight
Diameter is less than the diameter of bottom, and the diameter of 6 upper end of water conservancy diversion ring flat-plate is less than the diameter of 4 bottom of baffle cover, and 4 bottom of baffle cover is set
There are several equally distributed fixed links 5, and 4 bottom of baffle cover is fixedly connected by fixed link 5 with 6 upper end of water conservancy diversion ring flat-plate.
Further, 6 bottommost of water conservancy diversion ring flat-plate and 2 inner wall junction of process tank are equipped with several equally distributed be connected to
Hole 22.Several equally distributed intercommunicating pores are set in water conservancy diversion ring flat-plate and processing top tank structure junction, enable the liquid collected certainly
It is dynamic to be left by intercommunicating pore, to realize the recycling for the treatment of fluid, save the cost.
Embodiment 3
Place same as Example 1 no longer repeats, and difference from Example 1 is:
Preferably, the middle part between the first dust-break web plate 8 and the second dust-break web plate 14 is equipped with first be flexibly connected
Shaft 18, the first rotating shaft 18 are equipped with the channel washer 9 of several Homogeneous Axisymmetricals distribution, and 9 upper and lower ends of channel washer are equal
Equipped with several equally distributed brush filaments 17, and second be flexibly connected is equipped in the process tank 2 of 3 middle part flush of air inlet pipe
Shaft 19, be equipped in the middle part of second shaft 19 it is several with the baffle thin plate 16 of distribution, and 19 side of the second shaft be equipped with it is solid
Surely the first bevel gear 20 connected, 18 bottom of first rotating shaft passes through the second dust-break web plate 14, and first turn of 18 axis bottom is set
There is the chain 27 to match, the side of 14 bottom of the second dust-break web plate is equipped with the connecting shaft 10 being flexibly connected, the connection
10 bottom of axis is equipped with the second bevel gear 21 for being fixedly connected and engaging with the first bevel gear 20, and connecting shaft 10 and first rotating shaft 18
Bottom is connected by horizontal chain 27.Channel washer and cleaning brush will be set between the first dust-break web plate and the second dust-break web plate
Silk, drives the rotation of channel washer by gear drive using the flow of air inlet, can carry out effective cleaning to mesh, prevent
Mesh blocking, and can be further improved the contact probability of gas and treatment fluid, improve vent gas treatment efficiency, wind energy it is effective
Utilization, greatly saved cost.
Embodiment 4
Place same as Example 3 no longer repeats, and difference from Example 3 is:
Further, the first rotating shaft 18 and the junction of chain 27 are equipped with the first seal box 31, the connecting shaft 10
It is equipped with the second seal box 32 with the junction of chain 27, is equipped with and is connected between first seal box 31 and the second seal box 32
Connection case 28, the chain 27 is in connection case 28 middle part, first seal box 31 and 32 upper end of the second seal box with
Second dust-break web plate, 14 bottom is fixedly connected.The first seal box is respectively set in the junction of chain and first rotating shaft and connecting shaft
With the second seal box, and between the first seal box and the second seal box setting connection case, make first rotating shaft bottom, chain and
It connects shaft connection place and keeps sealing, effectively prevent corrosion of the sour gas to equipment in tail gas, improve service life.
Further, 10 upper end of connecting shaft is equipped with the T shape snap-gauge 30 that is fixedly connected, on the second dust-break web plate 14
Equipped with the card slot 29 to match with T shape snap-gauge 30, between the connecting shaft 10 and the second dust-break web plate 14 by T shape snap-gauge 30 with
The form that card slot 29 engages is flexibly connected.
Embodiment 5
Place same as Example 1 no longer repeats, and difference from Example 1 is:
Preferably, the air inlet pipe 3 is rectangular, is set in the air inlet pipe 3 of process tank 2 with 3 junction of air inlet pipe
There are several deflectors 34 for being uniformly distributed and being horizontally arranged, be equipped with the connecting rod 24 being fixedly connected on the outside of the deflector 34,
24 both ends of connecting rod are flexibly connected with 3 inner wall of air inlet pipe, and adjustment hole 27, the adjusting are equipped in the middle part of the deflector 34
It is equipped with adjusting rod 23 in hole 27, is equipped with the snap ring being fixedly connected on the adjusting rod 23 of 27 upper and lower ends of adjustment hole
25,25 diameter of snap ring is greater than 27 aperture of adjustment hole, and 3 bottom of air inlet pipe, which is equipped with, adjusts turntable 26, the adjusting rod 23
The form that bottom is connected through a screw thread passes through 3 inner wall of air inlet pipe and connect with turntable 26 is adjusted.Deflector is set in air inlet pipe, is led to
Crossing deflector can preferably control into the air flow direction in process tank, improve the contact probability of air-flow and treatment fluid, thus
Device is improved integrally to the treatment effect of tail gas, and the rotation direction of the second shaft, adjustment can be controlled by water conservancy diversion thin plate
The direction of rotation of brush filament is cleaned, the cleaning effect of cleaning brush filament is improved;
Embodiment 6
A kind of energy-saving exhaust gas processing device that treatment fluid recycles, including process tank 2, air inlet pipe 3 and exhaust pipe 1,
2 upper end of process tank is equipped with exhaust pipe 1, and 2 bottom side face of process tank is equipped with air inlet pipe 3, is equipped in the middle part of the process tank 2
First spray head 7 is equipped with 8 He of the first dust-break web plate being parallel to each other up and down inside the process tank 2 of 7 bottom of first spray head
The bottom of second dust-break web plate 14,14 centre of the second dust-break web plate is equipped with second spray head 33, the institute positioned at 3 bottom of air inlet pipe
It states and is equipped with treatment fluid 11 in process tank 2,2 side of process tank is equipped with water pump 13, and 13 entrance of water pump is equipped with water inlet pipe
12, the water inlet pipe 12 is connected to 2 bottom of process tank, and 13 exit of water pump is equipped with outlet pipe 15, on the outlet pipe 15
End is connected to first spray head 7 and second spray head 33 respectively.
Preferably, baffle cover 4 is equipped in the middle part of the process tank 2 of 1 bottom of exhaust pipe, 4 bottom of baffle cover is set
There is water conservancy diversion ring flat-plate 6,6 bottom of water conservancy diversion ring flat-plate is fixedly connected with 2 inner sidewall of process tank, and the first spray head 7 is set to guide ring
6 bottom of plate.
Further, the baffle cover 4 be hemispherical, the water conservancy diversion ring flat-plate 6 be truncated cone-shaped, 6 upper end of water conservancy diversion ring flat-plate it is straight
Diameter is less than the diameter of bottom, and the diameter of 6 upper end of water conservancy diversion ring flat-plate is less than the diameter of 4 bottom of baffle cover, and 4 bottom of baffle cover is set
There are several equally distributed fixed links 5, and 4 bottom of baffle cover is fixedly connected by fixed link 5 with 6 upper end of water conservancy diversion ring flat-plate.
Further, 6 bottommost of water conservancy diversion ring flat-plate and 2 inner wall junction of process tank are equipped with several equally distributed be connected to
Hole 22.
Preferably, 8 mesh diameter of the first dust-break web plate is less than 14 mesh diameter of the second dust-break web plate.
Preferably, the middle part between the first dust-break web plate 8 and the second dust-break web plate 14 is equipped with first be flexibly connected
Shaft 18, the first rotating shaft 18 are equipped with the channel washer 9 of several Homogeneous Axisymmetricals distribution, and 9 upper and lower ends of channel washer are equal
Equipped with several equally distributed brush filaments 17, and second be flexibly connected is equipped in the process tank 2 of 3 middle part flush of air inlet pipe
Shaft 19, be equipped in the middle part of second shaft 19 it is several with the baffle thin plate 16 of distribution, and 19 side of the second shaft be equipped with it is solid
Surely the first bevel gear 20 connected, 18 bottom of first rotating shaft passes through the second dust-break web plate 14, and first turn of 18 axis bottom is set
There is the chain 27 to match, the side of 14 bottom of the second dust-break web plate is equipped with the connecting shaft 10 being flexibly connected, the connection
10 bottom of axis is equipped with the second bevel gear 21 for being fixedly connected and engaging with the first bevel gear 20, and connecting shaft 10 and first rotating shaft 18
Bottom is connected by horizontal chain 27.
Further, the first rotating shaft 18 and the junction of chain 27 are equipped with the first seal box 31, the connecting shaft 10
It is equipped with the second seal box 32 with the junction of chain 27, is equipped with and is connected between first seal box 31 and the second seal box 32
Connection case 28, the chain 27 is in connection case 28 middle part, first seal box 31 and 32 upper end of the second seal box with
Second dust-break web plate, 14 bottom is fixedly connected.
Further, 10 upper end of connecting shaft is equipped with the T shape snap-gauge 30 that is fixedly connected, on the second dust-break web plate 14
Equipped with the card slot 29 to match with T shape snap-gauge 30, between the connecting shaft 10 and the second dust-break web plate 14 by T shape snap-gauge 30 with
The form that card slot 29 engages is flexibly connected.
Preferably, the air inlet pipe 3 is rectangular, is set in the air inlet pipe 3 of process tank 2 with 3 junction of air inlet pipe
There are several deflectors 34 for being uniformly distributed and being horizontally arranged, be equipped with the connecting rod 24 being fixedly connected on the outside of the deflector 34,
24 both ends of connecting rod are flexibly connected with 3 inner wall of air inlet pipe, and adjustment hole 27, the adjusting are equipped in the middle part of the deflector 34
It is equipped with adjusting rod 23 in hole 27, is equipped with the snap ring being fixedly connected on the adjusting rod 23 of 27 upper and lower ends of adjustment hole
25,25 diameter of snap ring is greater than 27 aperture of adjustment hole, and 3 bottom of air inlet pipe, which is equipped with, adjusts turntable 26, the adjusting rod 23
The form that bottom is connected through a screw thread passes through 3 inner wall of air inlet pipe and connect with turntable 26 is adjusted.
The energy-saving exhaust gas processing device that the present invention is recycled for treatment fluid is when in use:
Air inlet pipe 3 is connect with the blower exhaust outlet of tail gas collecting device, starts water pump 13, treatment fluid 11 is passed through first
Spray head 7 and second spray head 33 are sprayed, and the blower of tail gas collecting device is then started, and tail gas enters processing by air inlet pipe 3
In tank 2;
Turntable 26 is adjusted by rotation, by rotating upwardly and downwardly deflector 34, adjusts the air-flow trend in process tank 2;
The rotation of baffle thin plate 16 is driven into the air-flow in process tank 2, to pass through the transmission of gear and chain, is driven
The rotation for cleaning brush filament 17, can effectively clean the first dust-break web plate 8 and the second dust-break web plate 8, and can have
The contact probability of the raising gas and treatment fluid of effect, improves treatment effeciency;
By the air-flow of first spray head 7, when by water conservancy diversion ring flat-plate 6 and baffle cover 4,11 energy for the treatment of fluid that is carried in air-flow
It enough efficiently separates, the treatment fluid 11 of collection is back to 2 bottom of process tank by intercommunicating pore 22;
Treated air-flow, is discharged outward by exhaust pipe 1.
The above shows and describes the basic principles and main features of the present invention and the advantages of the present invention.The technology of the industry
Personnel are it should be appreciated that the present invention is not limited to the above embodiments, and the above embodiments and description only describe this
The principle of invention, without departing from the spirit and scope of the present invention, various changes and improvements may be made to the invention, these changes
Change and improvement all fall within the protetion scope of the claimed invention.The claimed scope of the invention by appended claims and its
Equivalent thereof.
Claims (4)
1. the energy-saving exhaust gas processing device that a kind for the treatment of fluid recycles, including process tank, air inlet pipe and exhaust pipe, the place
It manages tank upper end and is equipped with exhaust pipe, and process tank bottom side face is equipped with air inlet pipe, it is characterised in that: be equipped in the middle part of the process tank
First spray head is equipped with the first dust-break web plate and second being parallel to each other up and down inside the process tank of first spray head bottom
Dust-break web plate, the bottom among the second dust-break web plate is equipped with second spray head, in the process tank of air inlet bottom of the tube
Equipped with treatment fluid, the process tank side is equipped with water pump, is equipped with water inlet pipe, the water inlet pipe and process tank at the unit fixed on water pump suction
Bottom connection, the pump outlet are equipped with outlet pipe, and the outlet pipe upper end is connected to first spray head and second spray head respectively;
Baffle cover is equipped in the middle part of the process tank of exhaust bottom of the tube, baffle cover bottom is equipped with water conservancy diversion ring flat-plate, described
Guide ring board bottom portion is fixedly connected with process tank inner sidewall, and the first spray head is set to guide ring board bottom portion.
2. the energy-saving exhaust gas processing device that treatment fluid according to claim 1 recycles, it is characterised in that: the gear
Stream cover is hemispherical, and the water conservancy diversion ring flat-plate is truncated cone-shaped, and the diameter of water conservancy diversion ring flat-plate upper end is less than the diameter of bottom, and water conservancy diversion ring flat-plate
The diameter of upper end is less than the diameter of baffle cover bottom, and baffle cover bottom is equipped with several equally distributed fixed links, and baffle
Cover bottom is fixedly connected by fixed link with water conservancy diversion ring flat-plate upper end.
3. the energy-saving exhaust gas processing device that treatment fluid according to claim 1 recycles, it is characterised in that: described to lead
It flows ring flat-plate bottommost and processing top tank structure junction is equipped with several equally distributed intercommunicating pores.
4. the energy-saving exhaust gas processing device that treatment fluid according to claim 1 recycles, it is characterised in that: described
One dust-break web plate mesh diameter is less than the second dust-break web plate mesh diameter.
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CN201811345235.9A CN109675378A (en) | 2018-11-13 | 2018-11-13 | A kind of energy-saving exhaust gas processing device that treatment fluid recycles |
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CN201811345235.9A CN109675378A (en) | 2018-11-13 | 2018-11-13 | A kind of energy-saving exhaust gas processing device that treatment fluid recycles |
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CN206881174U (en) * | 2017-06-08 | 2018-01-16 | 华南理工大学 | A kind of detachable type high-efficiency gas-liquid separation device |
CN107485938A (en) * | 2017-09-28 | 2017-12-19 | 平潭海创智汇科技有限公司 | A kind of ventilation unit air admission hole filter for saving bridge construction |
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Application publication date: 20190426 |