CN204799051U - Can effectively improve clarifier of air purification efficiency - Google Patents

Can effectively improve clarifier of air purification efficiency Download PDF

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Publication number
CN204799051U
CN204799051U CN201520352644.7U CN201520352644U CN204799051U CN 204799051 U CN204799051 U CN 204799051U CN 201520352644 U CN201520352644 U CN 201520352644U CN 204799051 U CN204799051 U CN 204799051U
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China
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framework
collecting box
clarifier
hole
purification efficiency
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Expired - Fee Related
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CN201520352644.7U
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Chinese (zh)
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王杨
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Abstract

The utility model provides a can effectively improve clarifier of air purification efficiency, the on -line screen storage device comprises a base, collection device, the framework, air inlet unit, recovery unit, the retaining device, filter equipment, pouring device and air outlet means, be equipped with first through -hole in the framework, first fixed block, second fixed block and first through -hole, collection device includes first collecting box, second collecting box and closed piece, air inlet unit includes intake pipe and fan, recovery unit includes first recovery tube, second recovery tube and first pneumatic valve, the retaining device includes first recovery pole, the bracing piece, first filter screen and first swash plate, filter equipment includes the rectangle piece, a second filter screen and a holding the rod, the pouring device includes the upper end, lower tip, first accepting groove, passageway and round hole, air outlet means includes first outlet duct, second outlet duct and second pneumatic valve, the upper surface of framework is equipped with the third through -hole. The utility model discloses purifying effect to the air is better, makes combustion gas humidity suitable simultaneously.

Description

A kind of clarifier that effectively can improve air purification efficiency
Technical field
The utility model relates to environmental technology field, particularly relates to a kind of clarifier that effectively can improve air purification efficiency.
Background technology
Air purifier is widely used in the multiple occasions such as factory, power plant, hotel, air purifier generally makes waste gas and liquid close contact, utilize inertial collision and other effect arrested particles of water droplet and particle, or particle is increased, with reach dissolve in liquid dedusting, sulphur removal, except wet goods, reach the effect making purification of air.In the past general air purifier, as cartridge type granite water film dust device, water consumption is large, exhaust-gas treatment amount is few, and have water treatment dead angle, cause the waste gas containing flue dust to pass through from dead angle, the poor effect of smoke abatement, and effect good wet type air cleaner big energy-consuming, cost is high, floor space is large.
Therefore, need to provide a kind of new technical scheme to solve the problems of the technologies described above.
Utility model content
The purpose of this utility model is to provide a kind of clarifier that effectively can improve air purification efficiency that can effectively solve the problems of the technologies described above.
In order to solve the problems of the technologies described above, the utility model adopts following technical scheme:
A kind of clarifier that effectively can improve air purification efficiency, the described clarifier that effectively can improve air purification efficiency comprises base, be positioned at the gathering-device above described base, be positioned at the framework above described gathering-device, be positioned at the inlet duct on the left of described framework, be positioned at the retracting device on the right side of described framework, be positioned at the retaining device of described framework inside, be positioned at the filter above described retaining device, the air-out apparatus being positioned at the pouring device above described filter and being arranged in described framework, described framework is provided with and is positioned at the first through hole at right surface, be positioned at the first fixed block of framework inside, be positioned at the second fixed block below described first fixed block and be positioned at the second through hole at left surface, described gathering-device comprises the first collecting box, the closure bar being positioned at the second collecting box on the left of described first collecting box and being positioned at above described second collecting box, described inlet duct comprises air inlet pipe and is arranged at the blower fan in described air inlet pipe, described retracting device comprises the first recovery tube, the first air valve being positioned at the second recovery tube below described first recovery tube and being arranged on described first recovery tube, described retaining device comprises the first bridle catcher, be positioned at the support bar below described first bridle catcher, the first swash plate being positioned at the first screen pack on the left of described support bar and being positioned at above described first bridle catcher, described filter comprises rectangular block, the first holding rod being positioned at the second screen pack on the right side of described rectangular block and being positioned on described second screen pack, described pouring device comprises upper end, be positioned at the bottom below described upper end, be positioned at the first accepting groove of inside, described upper end, the passage being positioned at inside, described bottom and the some circular holes communicated with described passage, described air-out apparatus comprises the first escape pipe, the second air valve being positioned at the second escape pipe above described framework and being arranged on described second escape pipe, the upper surface of described framework is also provided with third through-hole.
Described first collecting box is cylinder, and the lower surface of described first collecting box contacts with the upper surface of described base, and the upper surface of described first collecting box is recessed to form the first host cavity downwards.
Described second collecting box is cuboid, the lower surface of described second collecting box contacts with the upper surface of described base, the upper surface of described second collecting box is recessed to form the second host cavity downwards, described closure bar is rectangular-shaped, the lower surface of described closure bar is fixedly connected with the upper surface of described second collecting box, and the upper surface of described closure bar contacts with the lower surface of described framework.
The right-hand member of described air inlet pipe is aimed at described second through hole and is fixedly connected with the left surface of described framework.
Described first recovery tube is skewed, and the left end of described first recovery tube is aimed at described first through hole and is fixedly connected with the right surface of described framework, and described second recovery tube is vertical shape.
Described first bridle catcher is L-type, and the right-hand member of described first bridle catcher is fixedly connected with the inner surface of described framework, and described first bridle catcher is positioned at the below of described first through hole, and the left end of described first bridle catcher is vertical shape.
Described first screen pack is that upper left lower right tilts, and the left end of described first screen pack is fixedly connected with the inner surface of described framework, and the right-hand member of described first screen pack is fixedly connected with the left surface of described support bar.
The lower surface of described bottom contacts with the upper surface of described rectangular block, and the upper end of described passage communicates with described first accepting groove, and the left end of described circular hole communicates with described passage, and the right-hand member of described circular hole communicates with the inside of described framework.
After adopting technique scheme, the utility model tool has the following advantages:
The clarifier structure that the utility model effectively can improve air purification efficiency is simple, easy to use, fully can purify air, particle larger for volume in air can be collected simultaneously, prevent it to be scattering into the external world and affect environment further, the principle of hydraulic pressure can be utilized simultaneously, make water fully to cover on screen pack, make it better to the clean-up effect of air, make the gas humidity of discharge be suitable for simultaneously.
Accompanying drawing explanation
Below in conjunction with accompanying drawing, the detailed description of the invention that the utility model effectively can improve the clarifier of air purification efficiency is described further:
Fig. 1 is the structural representation that the utility model effectively can improve the clarifier of air purification efficiency;
Detailed description of the invention
As shown in Figure 1, the air-out apparatus 9 that the clarifier that the utility model effectively can improve air purification efficiency comprises base 1, be positioned at gathering-device 2 above described base 1, be positioned at framework 3 above described gathering-device 2, be positioned at inlet duct 5 on the left of described framework 3, be positioned at retracting device 6 on the right side of described framework 3, be positioned at the retaining device 7 of described framework 3 inside, be positioned at filter 8 above described retaining device 7, be positioned at the pouring device 4 above described filter 8 and be arranged in described framework 3.
As shown in Figure 1, described base 1 is in cuboid, described base 1 horizontal positioned, described base 1 is provided with the first support column 11, described first support column 11 is provided with two and lays respectively at the left and right sides, described first support column 11 is in cuboid, and the lower surface of described first support column 11 is fixedly connected with the upper surface of described base 1, and the upper surface of described first support column 11 is fixedly connected with the lower surface of described framework 3.
As shown in Figure 1, described framework 3 is in hollow cuboid, described framework 3 is vertically placed, and described framework 3 is provided with and is positioned at the first through hole 31 at right surface, is positioned at the first fixed block 32 of framework 3 inside, is positioned at the second fixed block 34 below described first fixed block 32 and is positioned at the second through hole 33 at left surface.Described first through hole 31 is in cylindrical shape, and described second through hole 33 is in cylindrical shape.Described first fixed block 32 is in cuboid, and the right surface of described first fixed block 32 is fixedly connected with the inner surface of described framework 3.Described second fixed block 34 is provided with two and lays respectively at the left and right sides, and the right surface being positioned at second fixed block 34 on right side is fixedly connected with the inner surface of described framework 3.The upper surface of described framework 3 is also provided with third through-hole, and described third through-hole is cylindrical shape, and described third through-hole makes the inside of described framework 3 communicate with space outerpace.
As shown in Figure 1, described gathering-device 2 closure bar 23 that comprises the first collecting box 21, be positioned at the second collecting box 22 on the left of described first collecting box 21 and be positioned at above described second collecting box 22.Described first collecting box 21 is in cylinder, and the lower surface of described first collecting box 21 contacts with the upper surface of described base 1, and the upper surface of described first collecting box 21 is recessed to form the first host cavity downwards, and described first host cavity is cylindrical shape.Described second collecting box 22 is in cuboid, and the lower surface of described second collecting box 22 contacts with the upper surface of described base 1, and the upper surface of described second collecting box 22 is recessed to form the second host cavity downwards, and described second host cavity is rectangular-shaped.Described closure bar 23 is in rectangular-shaped, described closure bar 23 is provided with two and lays respectively at the left and right sides, the lower surface of described closure bar 23 is fixedly connected with the upper surface of described second collecting box 22, and the upper surface of described closure bar 23 contacts with the lower surface of described framework 3.
As shown in Figure 1, described inlet duct 5 comprises air inlet pipe 51 and is arranged at the blower fan 52 in described air inlet pipe 51.The right-hand member of described air inlet pipe 51 is aimed at described second through hole 33 and is fixedly connected with the left surface of described framework 3, and the inside of described framework 3 is communicated with the inside of described air inlet pipe 51.Described blower fan 52 is arranged in described air inlet pipe 51, for being drawn into by extraneous air in described air inlet pipe 51.
As shown in Figure 1, described retracting device 6 the first air valve 62 of comprising the first recovery tube 61, being positioned at the second recovery tube 63 below described first recovery tube 61 and being arranged on described first recovery tube 61.Described first recovery tube 61 is one-body molded with described second recovery tube 62, described first recovery tube 61 is in skewed, the left end of described first recovery tube 61 is aimed at described first through hole 31 and is fixedly connected with the right surface of described framework 3, and described first recovery tube 61 is communicated with the inside of described framework 3.Described second recovery tube 63 is in vertical shape.Described first air valve 62 is arranged on described first recovery tube 61.
As shown in Figure 1, described retaining device 7 the first swash plate 74 of comprising the first bridle catcher 71, being positioned at support bar 72 below described first bridle catcher 71, being positioned at the first screen pack 73 on the left of described support bar 72 and being positioned at above described first bridle catcher 71.Described first bridle catcher 71 is in L-type, and the right-hand member of described first bridle catcher 71 is fixedly connected with the inner surface of described framework 3, and described first bridle catcher 71 is positioned at the below of described first through hole 31, and the left end of described first bridle catcher 71 is vertical shape.Described support bar 72 is in vertical shape, and the upper surface of described support bar 72 is skewed, and the lower surface of described support bar 72 is fixedly connected with the inner surface of described framework 3, and the upper surface of described support bar 72 is fixedly connected with the lower surface of described first bridle catcher 71.Described first screen pack 73 is in skewed, described first screen pack 73 tilts in upper left lower right, the left end of described first screen pack 73 is fixedly connected with the inner surface of described framework 3, and the right-hand member of described first screen pack 73 is fixedly connected with the left surface of described support bar 72.Described first swash plate 74 is in skewed, described first swash plate 74 tilts in lower left upper right side, the right-hand member of described first swash plate 74 is fixedly connected with the inner surface of described framework 3 and is positioned at the top of described first through hole 31, and described first swash plate 74 can make dust collect and enter into described first recovery tube 61.
As shown in Figure 1, described filter 8 the first holding rod 83 of comprising rectangular block 82, being positioned at the second screen pack 81 on the right side of described rectangular block 82 and being positioned on described second screen pack 81.Described rectangular block 82 is in cuboid, and described rectangular block 82 horizontal positioned, the left surface of described rectangular block 82 is fixedly connected with the inner surface of described framework 3, and the left surface being positioned at second fixed block 34 in left side is fixedly connected with the right surface of described rectangular block 82.Described second screen pack 81 is in cuboid, described second screen pack 81 horizontal positioned, the described left surface of the second screen pack 81 and the right surface contact of described rectangular block 82, the right surface of described second screen pack 81 contacts with the inner surface of described framework 3, and the lower surface of described second screen pack 81 contacts with the upper surface of described second fixed block 34.Described first holding rod 83 is in L-type, and the lower surface of described first holding rod 83 is fixedly connected with the upper surface of described second screen pack 81.
As shown in Figure 1, described pouring device 4 comprises upper end 41, is positioned at the bottom 43 below described upper end 41, the first accepting groove 42 being positioned at inside, described upper end 41, the passage 44 being positioned at inside, described bottom 43 and the some circular holes 45 communicated with described passage 44.Described upper end 41 is in cuboid, and the upper surface of described upper end 41 is recessed to form the first accepting groove 42 downwards, and described first accepting groove 42 is in rectangular-shaped.Described bottom 43 is in cuboid, and the lower end of described bottom 43 extends to the inside of described framework 3 through the upper surface of described framework 3, and the lower surface of described bottom 43 contacts with the upper surface of described rectangular block 82.Described passage 44 is in rectangular-shaped, and the upper end of described passage 44 communicates with described first accepting groove 42.Described circular hole 45 is in cylindrical shape, and the left end of described circular hole 45 communicates with described passage 44, and the right-hand member of described circular hole 45 communicates with the inside of described framework 3.When water is full of in described passage 44, because upper and lower hydraulic pressure is different, the hydraulic pressure being positioned at below is comparatively large, make by the water of the circular hole 45 of below spray far away, the water sprayed by the circular hole 45 of top is comparatively near, makes it possible to more comprehensively cover described second screen pack 81.
As shown in Figure 1, described air-out apparatus 9 the second air valve 94 of comprising the first escape pipe 93, being positioned at the second escape pipe 92 above described framework 3 and being arranged on described second escape pipe 92.The upper end of described first escape pipe 93 is aimed at described third through-hole and is fixedly connected with the upper inner surface of described framework 3.Third through-hole described in the lower end aligned of described second escape pipe 92 and being fixedly connected with the upper surface of described framework 3.Described first escape pipe 93, third through-hole and the second escape pipe 92 form an outlet passageway 91, and the air of framework 3 inside can be discharged.Described second air valve 94 is arranged on described second escape pipe 92, for controlling gas purging.Described air-out apparatus 9 comprises the second holding rod 95, and described second holding rod 95 is in L-type, and one end of described second holding rod 95 is fixedly connected with the upper wall of described framework 3, to be extracted by the upper wall of framework 3.
As shown in Figure 1, when described the utility model effectively can improve the clarifier use of air purification efficiency, first blower fan 52 is started, extraneous air is made to be drawn in air inlet pipe 51, then in the first accepting groove 42, place water, make it be full of in passage 44, and spray from circular hole 45, make the water sprayed can cover on the second screen pack 81, form water membrane.Enter into the top of retaining device 7 after the filtration of the air entered from described air inlet pipe 51 by the first screen pack 73, the particle that wherein volume is larger enters into the second host cavity of the second collecting box 22 after being filtered by the first screen pack 73.Then enter into air above retaining device 7 and enter into top after the second screen pack 81 filter, the solid granulates be wherein filtered by after the first bridle catcher 71 landing by entering into the first host cavity of the first collecting box 21 after the first recovery tube 61, second recovery tube 63.The air entered into above the first screen pack 81 is discharged through air-out apparatus 9, and described first holding rod 83 may be used for the first screen pack 81 to take out, to clean.So far, the clarifier use procedure that the utility model effectively can improve air purification efficiency is described.
The above; be only detailed description of the invention of the present utility model, but protection domain of the present utility model is not limited thereto, any those skilled in the art are in the technical scope that the present invention discloses; change can be expected easily or replace, all should be encompassed within protection domain of the present utility model.Therefore, protection domain of the present utility model should be as the criterion with the protection domain of described claim.

Claims (8)

1. one kind effectively can be improved the clarifier of air purification efficiency, it is characterized in that: the described clarifier that effectively can improve air purification efficiency comprises base, be positioned at the gathering-device above described base, be positioned at the framework above described gathering-device, be positioned at the inlet duct on the left of described framework, be positioned at the retracting device on the right side of described framework, be positioned at the retaining device of described framework inside, be positioned at the filter above described retaining device, the air-out apparatus being positioned at the pouring device above described filter and being arranged in described framework, described framework is provided with and is positioned at the first through hole at right surface, be positioned at the first fixed block of framework inside, be positioned at the second fixed block below described first fixed block and be positioned at the second through hole at left surface, described gathering-device comprises the first collecting box, the closure bar being positioned at the second collecting box on the left of described first collecting box and being positioned at above described second collecting box, described inlet duct comprises air inlet pipe and is arranged at the blower fan in described air inlet pipe, described retracting device comprises the first recovery tube, the first air valve being positioned at the second recovery tube below described first recovery tube and being arranged on described first recovery tube, described retaining device comprises the first bridle catcher, be positioned at the support bar below described first bridle catcher, the first swash plate being positioned at the first screen pack on the left of described support bar and being positioned at above described first bridle catcher, described filter comprises rectangular block, the first holding rod being positioned at the second screen pack on the right side of described rectangular block and being positioned on described second screen pack, described pouring device comprises upper end, be positioned at the bottom below described upper end, be positioned at the first accepting groove of inside, described upper end, the passage being positioned at inside, described bottom and the some circular holes communicated with described passage, described air-out apparatus comprises the first escape pipe, the second air valve being positioned at the second escape pipe above described framework and being arranged on described second escape pipe, the upper surface of described framework is also provided with third through-hole.
2. the clarifier that effectively can improve air purification efficiency according to claim 1, it is characterized in that: described first collecting box is cylinder, the lower surface of described first collecting box contacts with the upper surface of described base, and the upper surface of described first collecting box is recessed to form the first host cavity downwards.
3. the clarifier that effectively can improve air purification efficiency according to claim 1, it is characterized in that: described second collecting box is cuboid, the lower surface of described second collecting box contacts with the upper surface of described base, the upper surface of described second collecting box is recessed to form the second host cavity downwards, described closure bar is rectangular-shaped, the lower surface of described closure bar is fixedly connected with the upper surface of described second collecting box, and the upper surface of described closure bar contacts with the lower surface of described framework.
4. the clarifier that effectively can improve air purification efficiency according to claim 1, is characterized in that: the right-hand member of described air inlet pipe is aimed at described second through hole and is fixedly connected with the left surface of described framework.
5. the clarifier that effectively can improve air purification efficiency according to claim 1, it is characterized in that: described first recovery tube is skewed, the left end of described first recovery tube is aimed at described first through hole and is fixedly connected with the right surface of described framework, and described second recovery tube is vertical shape.
6. the clarifier that effectively can improve air purification efficiency according to claim 1, it is characterized in that: described first bridle catcher is L-type, the right-hand member of described first bridle catcher is fixedly connected with the inner surface of described framework, described first bridle catcher is positioned at the below of described first through hole, and the left end of described first bridle catcher is vertical shape.
7. the clarifier that effectively can improve air purification efficiency according to claim 1, it is characterized in that: described first screen pack is that upper left lower right tilts, the left end of described first screen pack is fixedly connected with the inner surface of described framework, and the right-hand member of described first screen pack is fixedly connected with the left surface of described support bar.
8. the clarifier that effectively can improve air purification efficiency according to claim 1, it is characterized in that: the lower surface of described bottom contacts with the upper surface of described rectangular block, the upper end of described passage communicates with described first accepting groove, the left end of described circular hole communicates with described passage, and the right-hand member of described circular hole communicates with the inside of described framework.
CN201520352644.7U 2015-05-27 2015-05-27 Can effectively improve clarifier of air purification efficiency Expired - Fee Related CN204799051U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104826442A (en) * 2015-05-27 2015-08-12 王杨 Purifier with effective air purification efficiency improving function

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104826442A (en) * 2015-05-27 2015-08-12 王杨 Purifier with effective air purification efficiency improving function
CN104826442B (en) * 2015-05-27 2017-02-08 南安市达腾商务服务有限公司 Purifier with effective air purification efficiency improving function

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C14 Grant of patent or utility model
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CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20151125

Termination date: 20160527