CN204874091U - High accuracy aquatic deoiling device - Google Patents

High accuracy aquatic deoiling device Download PDF

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Publication number
CN204874091U
CN204874091U CN201520593628.7U CN201520593628U CN204874091U CN 204874091 U CN204874091 U CN 204874091U CN 201520593628 U CN201520593628 U CN 201520593628U CN 204874091 U CN204874091 U CN 204874091U
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China
Prior art keywords
locellus
water
cylindrical shell
overflow port
flow deflector
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Withdrawn - After Issue
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CN201520593628.7U
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Chinese (zh)
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高希山
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Individual
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Individual
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Abstract

The utility model belongs to water treatment filtration equipment field, in particular to high accuracy aquatic deoiling device, the novel nipple rectifier comprises a cylindrical shel, set up the locellus casing in the barrel, be equipped with the clearance between locellus casing bottom and the barrel bottom, locellus casing upper portion is the hydrocyclone separation room, the lower part is accurate separation chamber, the hydrocyclone separation room includes water inlet and first overflow mouth, the second overflow mouth is connected at locellus casing top, the barrel outside is arranged in to the second overflow mouth, there is the guide plate in the accurate separation chamber, guide plate bottom and barrel bottom sealing connection, the guide plate top sets up the fibre diffusion barrier, there is the pipe network of catchmenting the bottom, the online installation of collector pipe and the inside communicating water oil separating core of pipe network that catchments, collector pipe net bottom portion sets up the delivery port. Divide into accurate separation chamber and hydrocyclone separation two different other oil removing chamber of level in room to the barrel inner space through the locellus casing, detach high concentration oil impurity, separate through accurate separation chamber high accuracy again through hydrocyclone separation room separation, increased the separating power for the barrel space utilizes fully.

Description

Oil removal plant in high-accuracy water
Technical field
The utility model relates to oil removal plant in a kind of high-accuracy water, belongs to water treatment filtering equipment field.
Background technology
Existing high precision oily water separation technique is widely used in the oil-containing water process of the departments such as oil, chemical industry, smelting, machinery or light industry.Large scale development along with oil Deep mining, chemical enterprise and the strict demand to environment protection, oily(waste)water isolation technique comes into one's own day by day.
Current high precision oily water separating equipment to come liquid impact resistant can poor, fluctuation of service, filtrate medium life are short, backwash effect is bad, after short-term operation, the effect of water outlet does not reach requirement.
Just occur after the current high precision water-and-oil separator initial stage ideal process stage that repercussion effect is poor, easily blocking, later stage water outlet serious not up to standard, can not thoroughly backwash, filtrate medium actual service life is short, run in filter core damage serious, replacing filtrate is frequent, consume a large amount of manpower and materials, later stage also can frequently consume too much clear water because of back flushing, and what cause this reason is fluctuate into water foreign matter content to impact to water-and-oil separator mostly.
Utility model content
The technical problems to be solved in the utility model is: provide oil removal plant in a kind of high-accuracy water, there is impact resistance, improve sewage degrease ability, ensure the operation stability of equipment, improve life-span of filtering material, processing accuracy is high, velocity of separation is fast, ensure sewage disposal after stably reaching standard.
Oil removal plant in high-accuracy water described in the utility model, comprise cylindrical shell, locellus housing is set in cylindrical shell, gap is provided with between locellus housing bottom and cylinder body bottom, locellus housing upper is cyclonic separation room, bottom is accurate separate chamber, cyclonic separation room comprises water-in and the first overflow port, locellus case top connects the second overflow port, second overflow port is placed in cylindrical shell outside, flow deflector is had in accurate separate chamber, be tightly connected with cylinder body bottom bottom flow deflector, flow deflector top arranges fiber separating film, collector pipe network is arranged at bottom, collector pipe network is installed the oily water separation core communicated with collector pipe network inside, the mouth of a river is set out bottom collector pipe network.
By locellus housing cylinder intracorporeal space divide into two different stages in accurate separate chamber and cyclonic separation room except grease chamber, oil-containing water to be revolved by water conservancy diversion from water-in and opens groove and enter cyclonic separation room, oil-containing water opens direction at cyclonic separation room eddy flow along revolving, the greasy dirt class material that cyclonic separation room center top is assembled is overflowed by the first overflow port, oil-containing water separates the clean water of most edge, eddy flow district bottommost by locellus case top conical surface, tank body lower part is arrived again by the gap between locellus housing and cylindrical shell, after simple deposited particles, oil-containing water flows to top, accurate separate chamber through flow deflector, oil-containing water is discharged from the second overflow port through the isolated oils of fiber separating film, oil-containing water is collected at collector pipe network after oily water separation core high-purity separation again, discharged by water outlet.
The cavity bottom that described flow deflector and cylindrical shell are formed arranges the first sewage draining exit, and arrange the second sewage draining exit bottom accurate separate chamber, side, accurate separate chamber arranges manhole.First sewage draining exit regularly discharges the settling bottom cyclonic separation room, and the settling bottom accurate separate chamber is regularly discharged by the second sewage draining exit; First overflow port and the second overflow port use surplus valve controlling water kick top hole pressure, and manhole is convenient to detect.
Described water-in is positioned on the outdoor sidewall of cyclonic separation, and arrange water conservancy diversion inside water-in and revolve and open groove, the first overflow port is arranged on top, cyclonic separation room.
Described water conservancy diversion revolves the groove opening groove and adopt outer circumferential edge and cylinder inboard wall radian to match, and one end is closed, the other end opening.Alter direction, easily causes fluid eddy flow, and structure is simple, easily makes.
Described locellus case top is set to conical surface, and conical surface top is by overflow port tubes connection second overflow port, and overflow port conduit runs through overflow through pipe, and overflow is arranged on cylindrical shell top through pipe, and overflow is the first overflow port through pipe end.
Described collector pipe network is set to rich font pattern set grid, rich font pattern set grid is distributed with the oily water separation core vertically arranged.
Described flow deflector is set to round shape, and round shape flow deflector is connected with airtight at the bottom of cylindrical shell.Play guide functions, increase the oily water separation time.
The beneficial effects of the utility model are:
Locellus housing: by locellus housing cylinder intracorporeal space be divided into two different stages in accurate separate chamber and cyclonic separation room except grease chamber, be separated removing high density oil impurity by cyclonic separation room, pass through accurate separate chamber high-purity separation again, add separating power, barrel space is utilized fully.
Cyclonic separation room: cyclonic separation room utilizes the water conservancy diversion of water inlet to revolve and opens groove and cause spin chamber's high-speed rotational, possess sharp separation ability, cyclonic separation room forms bottom back taper by the conical surface of locellus housing, ensure that eddy flow district outer rim bottommost can separate most clean water, greatly improve the anti-impact force of equipment, enhance separation efficiency.
Water conservancy diversion revolves and opens groove: revolve by water conservancy diversion and open groove and guide water inlet to start cyclonic separation work along camber line, facilitate cyclonic separation room, it is different from tangent line water inlet, but use simple arc groove completes mission, the port area decreased cylindrical shell of intaking than traditional tangent line, improves working efficiency.
Flow deflector: top, sewage guiding accurate separate chamber is collected impurity discharge from the second overflow port through separation oil removing, acceleration top by flow deflector again; The fiber separating film being placed in flow deflector top can as three grades of further accurate separating impurity of fine separation device.
Double overflow mouth: the first overflow port accelerates separation facilities as cyclonic separation room, helps to improve cyclonic separation efficiency, the second overflow port accelerating fibers separatory membrane and oily water separation core and gathers the top oils discharge of accurate separate chamber, ensure filter core precision and strengthen the life-span.
Four fractionation techniques concentrate on one: it is first be separated a large amount of sump oil impurity in cyclonic separation room that first time is separated; Second time is that oil-containing water is when going to accurate separate chamber in process from bottom to top, accelerate oil-in-water class accumulation of impurities to top, accurate separate chamber by overflow port flow direction; Third time is through tunica fibrosa and the oils of tiny emulsification is assembled separation, further by tunica fibrosa breakdown of emulsion; Be through oily water separation core high precision 4th time to be finally separated.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model.
Fig. 2 is the plan structure schematic diagram of Fig. 1.
Fig. 3 is that in Fig. 1, water conservancy diversion revolves the structural representation opening groove.
In figure: 1, the second overflow port 2, overflow are revolved open groove 4, water-in 5, locellus housing 6, fiber separating film 7, flow deflector 8, oily water separation core 9, collector pipe network 10, second sewage draining exit 11, water outlet 12, first sewage draining exit 13, manhole 14, cylindrical shell 15, overflow port conduit 16, first overflow port through pipe 3, water conservancy diversion.
Embodiment
Below in conjunction with accompanying drawing, the utility model is described further:
As shown in FIG. 1 to 3, oil removal plant in high-accuracy water described in the utility model, comprise cylindrical shell 14, locellus housing 5 is set in cylindrical shell 14, gap is provided with between bottom locellus housing 5 and bottom cylindrical shell 14, locellus housing 5 top is cyclonic separation room, bottom is accurate separate chamber, cyclonic separation room comprises water-in 4 and the first overflow port 16, locellus housing 5 top connects the second overflow port 1, it is outside that second overflow port 1 is placed in cylindrical shell 14, flow deflector 7 is had in accurate separate chamber, be connected with cylindrical shell 14 sealed bottom bottom flow deflector 7, flow deflector 7 top arranges fiber separating film 6, collector pipe network 9 is arranged at bottom, collector pipe network 9 is installed the oily water separation core 8 communicated with collector pipe network 9 inside, the mouth of a river 11 is set out bottom collector pipe network 9, it is outside that water outlet 11 is positioned at cylindrical shell 14.The cavity bottom that flow deflector 7 and cylindrical shell 14 are formed arranges the first sewage draining exit 12, and arrange the second sewage draining exit 10 bottom accurate separate chamber, side, accurate separate chamber arranges manhole 13.Water-in 4 is positioned on the outdoor sidewall of cyclonic separation, and arrange water conservancy diversion inside water-in 4 and revolve and open groove 3, the first overflow port 16 is arranged on top, cyclonic separation room.Water conservancy diversion revolves the groove opening groove 3 and adopt outer circumferential edge and cylindrical shell 14 inwall radian to match, and its one end, two ends, left and right is closed, the other end opening.Locellus housing 5 top is set to conical surface, and conical surface top connects the second overflow port 1 by overflow port conduit 15, and overflow port conduit 15 runs through overflow through pipe 2, and overflow is arranged on cylindrical shell 14 top through pipe 2, and overflow is the first overflow port 16 through pipe 2 end.Collector pipe network 9 is set to rich font pattern set grid, rich font pattern set grid is distributed with the oily water separation core 8 vertically arranged.Flow deflector 7 is set to round shape, and round shape flow deflector and cylindrical shell 14 end be airtight to be connected.
Oil-containing water to be revolved by water conservancy diversion from water-in 4 and opens groove 3 and enter cyclonic separation room, oil-containing water opens direction at cyclonic separation room eddy flow along revolving, the greasy dirt class material that cyclonic separation room center top is assembled is overflowed by the first overflow port 16, oil-containing water separates the clean water of most edge, eddy flow district bottommost by locellus housing 5 top tapered face, cylindrical shell 14 bottom is arrived again by the gap between locellus housing 5 and cylindrical shell 14, after simple deposited particles, oil-containing water flows to top, accurate separate chamber through flow deflector 7, oil-containing water is discharged from the second overflow port 1 through the isolated oils of fiber separating film 6, oil-containing water is collected at collector pipe network 9 after oily water separation core 8 high-purity separation again, the water after oil removing is discharged by water outlet 11.

Claims (7)

1. oil removal plant in a high-accuracy water, comprise cylindrical shell (14), it is characterized in that: locellus housing (5) is set in cylindrical shell (14), gap is provided with between locellus housing (5) bottom and cylindrical shell (14) bottom, locellus housing (5) top is cyclonic separation room, bottom is accurate separate chamber, cyclonic separation room comprises water-in (4) and the first overflow port (16), locellus housing (5) top connects the second overflow port (1), it is outside that second overflow port (1) is placed in cylindrical shell (14), flow deflector (7) is had in accurate separate chamber, flow deflector (7) bottom is connected with cylindrical shell (14) sealed bottom, flow deflector (7) top arranges fiber separating film (6), collector pipe network (9) is arranged at bottom, collector pipe network (9) above installs the oily water separation core (8) communicated with collector pipe network (9) inside, collector pipe network (9) bottom sets out the mouth of a river (11).
2. oil removal plant in high-accuracy water according to claim 1, it is characterized in that: the cavity bottom that flow deflector (7) and cylindrical shell (14) are formed arranges the first sewage draining exit (12), arrange the second sewage draining exit (10) bottom accurate separate chamber, side, accurate separate chamber arranges manhole (13).
3. oil removal plant in high-accuracy water according to claim 1 and 2, it is characterized in that: water-in (4) is positioned on the outdoor sidewall of cyclonic separation, water-in (4) inner side arranges water conservancy diversion and revolves and open groove (3), and the first overflow port (16) is arranged on top, cyclonic separation room.
4. oil removal plant in high-accuracy water according to claim 3, is characterized in that: water conservancy diversion revolves the groove opening groove (3) and adopt outer circumferential edge and cylindrical shell (14) inwall radian to match, and one end is closed, the other end opening.
5. oil removal plant in high-accuracy water according to claim 3, it is characterized in that: locellus housing (5) top is set to conical surface, conical surface top connects the second overflow port (1) by overflow port conduit (15), overflow port conduit (15) runs through overflow through pipe (2), overflow is arranged on cylindrical shell (14) top through pipe (2), and overflow is the first overflow port (16) through pipe (2) end.
6. oil removal plant in high-accuracy water according to claim 1, is characterized in that: collector pipe network (9) is set to rich font pattern set grid, rich font pattern set grid is distributed with the oily water separation core (8) vertically arranged.
7. oil removal plant in high-accuracy water according to claim 1, is characterized in that: flow deflector (7) is set to round shape, and round shape flow deflector and cylindrical shell (14) end be airtight to be connected.
CN201520593628.7U 2015-08-07 2015-08-07 High accuracy aquatic deoiling device Withdrawn - After Issue CN204874091U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201520593628.7U CN204874091U (en) 2015-08-07 2015-08-07 High accuracy aquatic deoiling device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201520593628.7U CN204874091U (en) 2015-08-07 2015-08-07 High accuracy aquatic deoiling device

Publications (1)

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CN204874091U true CN204874091U (en) 2015-12-16

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105016508A (en) * 2015-08-07 2015-11-04 高希山 High-precision grease removing device in water
CN108636120A (en) * 2018-05-29 2018-10-12 珠海市江河海水处理科技股份有限公司 Spiral-flow type accurate filter
CN116926899A (en) * 2022-03-31 2023-10-24 无锡小天鹅电器有限公司 Scale inhibition device, detergent box and clothes treatment equipment

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105016508A (en) * 2015-08-07 2015-11-04 高希山 High-precision grease removing device in water
CN105016508B (en) * 2015-08-07 2017-01-25 高希山 High-precision grease removing device in water
CN108636120A (en) * 2018-05-29 2018-10-12 珠海市江河海水处理科技股份有限公司 Spiral-flow type accurate filter
CN116926899A (en) * 2022-03-31 2023-10-24 无锡小天鹅电器有限公司 Scale inhibition device, detergent box and clothes treatment equipment

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C14 Grant of patent or utility model
GR01 Patent grant
AV01 Patent right actively abandoned

Granted publication date: 20151216

Effective date of abandoning: 20161109

C25 Abandonment of patent right or utility model to avoid double patenting