CN102276013B - Liquid purification device - Google Patents

Liquid purification device Download PDF

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Publication number
CN102276013B
CN102276013B CN201010192810.3A CN201010192810A CN102276013B CN 102276013 B CN102276013 B CN 102276013B CN 201010192810 A CN201010192810 A CN 201010192810A CN 102276013 B CN102276013 B CN 102276013B
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China
Prior art keywords
carrier
hollow tube
liquid
cleaning device
medial surface
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CN201010192810.3A
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Chinese (zh)
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CN102276013A (en
Inventor
裴绍凯
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CAO XIAOSONG
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Hongfujin Precision Industry Shenzhen Co Ltd
Hon Hai Precision Industry Co Ltd
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Priority to CN201010192810.3A priority Critical patent/CN102276013B/en
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Abstract

A liquid purification device contains a plurality of carriers, at least one rotation shaft and a driving part, wherein the carriers can be in contact with a liquid, each carrier has an outer surface, the outer surface of each carrier is covered with a nanometer material for treating impurities in the liquid to remove harmful substances; the carriers are arranged on the at least one rotation shaft; and the driving part is used to drive the at least one rotation shaft to rotate so as to drive the carriers to rotate.

Description

Liquid cleaning device
Technical field
The present invention relates to a kind of liquid cleaning device.
Background technology
Sewage, contains hazardous and noxious substances, suspended substance, silt, iron rust, smell pollution thing, bacteriophage etc. conventionally in the liquid such as oil.Liquid cleaning device is removed these materials exactly from water.But because traditional purifying method efficiency is low, cost is high, have secondary pollution problems, therefore, purifying treatment can not get good solution always.
Summary of the invention
In view of this, be necessary the liquid cleaning device that provides a kind of purification efficiency high.
, at least one ultraviolet light source that provides is provided for it; A plurality of can uv-transmitting carrier, the plurality of carrier can contact with liquid, each carrier has an outside surface, this outside surface coating nanometer titanic oxide material in order to process impurity in this liquid to remove hazardous and noxious substances under this uviolizing, and this ultraviolet ray is from the inside of this carrier this outside surface of directive; At least one hollow tube, is provided with this at least one light source in each hollow tube, this at least one hollow tube can make ultraviolet ray see through, and this at least one hollow tube is through the plurality of carrier; One rinse bath, in order to hold this liquid, this rinse bath has an opening to appear this liquid, and the periphery that this at least one light source is fixed on this opening makes the plurality of carrier contact and cover this fluid surface with this liquid; An and driving part, this driving part comprises one first dull and stereotyped and second flat board, this first dull and stereotyped in or in this second flat board, be provided with rotation motor, the first flat board has one first medial surface, the second flat board has one second medial surface, this first medial surface is relative with this second medial surface, the plurality of carrier is between this first medial surface and the second medial surface, the two ends of this at least one hollow tube respectively through this first medial surface with the second medial surface to be connected with rotation motor, this driving part drives this hollow tube to rotate to drive the rotation of the plurality of carrier.
With respect to prior art, liquid cleaning device provided by the invention adopts the impurity in nanometer titanic oxide material treatment liq, and purification efficiency is high, and adopts driving part to drive and control angle of rotation and the speed of rotation of carrier, further improves purification efficiency.
Accompanying drawing explanation
Fig. 1 is the perspective view of liquid cleaning device and the use view of this liquid cleaning device that the embodiment of the present invention provides.
Fig. 2 is the decomposing schematic representation of the liquid cleaning device shown in Fig. 1.
Main element nomenclature
Liquid cleaning device 10
Carrier 20
Outside surface 22
Hollow tube 30
Array 32
Driving part 40
The first flat board 41
The second flat board 42
The first medial surface 410
The second medial surface 420
Riser 50
Plummer 500
The first lift motor 51
The second lift motor 52
The first axle 510
The second axle 520
Slide rail 60
Groove 61
Rinse bath 70
Embodiment
Refer to Fig. 1 and Fig. 2, the embodiment of the present invention provides a kind of liquid cleaning device 10, can dispose of sewage or the liquid such as oil in impurity to remove hazardous and noxious substances.
This refining plant 10 comprises a plurality of carriers 20, at least one hollow tube 30, and a driving part 40.
In this at least one hollow tube 30, be provided with light source (not shown), this light source can be ultraviolet lamp tube, and itself and power supply (not shown) are joined, for ultraviolet ray is provided.It is rectangular cylindric and through a plurality of carriers 20 that each hollow tube 30 is.This hollow tube 30 adopts to be made the transparent material of ultraviolet ray, for example silicon-dioxide.Because ultraviolet light source is located at the inside of hollow tube 30, and this hollow tube 30 is through the plurality of carrier 20, so ultraviolet ray is from the inside directive outside surface 22 of carrier 20.The length of each hollow tube 30 can be slightly larger than the maximum length of a carrier 20, can be also the maximum length sum of a plurality of carriers 20.
The plurality of carrier 20 can contact with liquid to be clean, for example can be only and the Surface Contact of this liquid, or go deep into liquid internal etc.Each carrier 20 has an outside surface 22, and this outside surface 22 is coated with nano titanium oxide (TiO 2) material, nano titanium oxide (TiO 2) material can the hazardous and noxious substances in this liquid of catalysis generate nontoxic material in ultraviolet ray.
In the present embodiment, this carrier 20 is glass spheres, adopts silicon-dioxide to make, and can also adopt polymethylmethacrylate (Polymethylmethacrylate, PMMA) or other can uv-transmitting material manufacture.Internal diameter is made according to actual needs, for example, can be 5~15cm.This outside surface 22 is ball surface, and nanometer titanic oxide material is distributed in part outside surface 22, and preferably, nanometer titanic oxide material is covered in whole outside surface 22 to increase purification efficiency.When this outside surface 22 is ball surface, carrier 20 has larger surface-area, also larger with the contact area of liquid, but is not limited to this shape.
When the quantity of this at least one hollow tube 30 is one, all carriers 20 be take this hollow tube 30 as axle rotation.When hollow tube 30 is while being a plurality of, carrier 20 can divide into groups arbitrarily arrange or be on average arranged on a plurality of hollow tubes 30, and a plurality of hollow tubes 30 can be parallel to each other, and also can intersect, and the sense of rotation of each carrier 20 can be identical, also can be different.By controlling angle of rotation and the speed of rotation of hollow tube 30, can control carrier 20, for example, control carrier 20 Rotate 180 degree, 360 degree, or other angle, speed of rotation also can become as required large or diminish.The hazardous and noxious substances that the diversified spinning movement of multi-angle can make the plurality of carrier 20 accelerate in catalytic fluid.Wherein, the light source in hollow tube 30 can be followed these hollow tube 30 rotations or do not turned.
In the present embodiment, this at least one hollow tube 30 is 3, have 3 hollow tubes that are parallel to each other 30, the plurality of carrier 20 is equally divided into 3 groups, every group of carrier 20 strings are located at a hollow tube 30, hollow tube 30 passes the carrier 20 center being located thereon, thereby forms an array of carriers 32.Space and the space between two adjacent groups carrier be located between each carrier 20 on a hollow tube 30 of string is changeable, as long as make each carrier 20 can accessible rotation.Preferably, as shown in Figure 2, every adjacent two carriers 20 in the plurality of carrier 20 are in contact with one another, and closely assemble, and the size of this array of carriers 32 are advisable can substantially cover the surface of liquid to be clean.The plurality of carrier 20 is closely assembled, and can increase to greatest extent on the one hand the contact area of carrier 20 and liquid, on the other hand, because array of carriers 32 covers fluid surface, just can reduce airborne impurity and enter liquid, thereby improve purification efficiency.
The spread pattern of the plurality of carrier 20 is not limited to shown in the present embodiment, and such as being circle, Polygons, radial etc., for example the plurality of hollow tube 30 radiates and opens centered by a bit, and on each hollow tube 30, string is established a plurality of carriers 20.
This hollow tube 30 is not necessarily through each carrier 20 center, in other embodiments, also can make the outside surface 22 of each carrier 20 be attached at hollow tube 30, or make hollow tube 30 through the optional position of each carrier 20, or adopt the combination of above-mentioned set-up mode, for example, some hollow tubes 30 are through part carrier 20 center, some hollow tubes 30 pass the optional position of another part carrier 20 or are sticked at the outside surface of each carrier 20, as long as each carrier 20 can be rotated around the hollow tube 30 at its place.
In other embodiments, light source can be directly through a plurality of years topics 30 and without the protection of hollow tube 30.
Thereby driving part 40 drives the plurality of carrier 20 to rotate for driving this at least one hollow tube 30 to rotate.In the present embodiment, driving part 40 comprises one first dull and stereotyped 41 and second flat boards 42, and this is in first dull and stereotyped 41 or be provided with rotation motor (not shown) in this second flat board 42.
The first flat board 41 has first medial surface 410, the second flat boards 42 and has second medial surface 420, and this first medial surface 410 is relative with this second medial surface 420.The two ends of each hollow tube 30 respectively through this first medial surface 410 with the second medial surface 420 to be connected with rotation motor (not shown).
Further, this liquid cleaning device 10 also comprises that a riser 50 is directly connected with hollow tube 30 or is indirectly connected to draw high or reduces hollow tube 30, thereby the convenient position of controlling the relative liquid of carrier, surface that both can contact liq, also can go deep into the inside of liquid.
In the present embodiment, riser 50 comprises plummer 500, one first lift motors 51 and one second lift motor 52.This first lift motor 51 and the second lift motor 52 are positioned at these plummer 500, the first lift motors 51 and have first axle 510, and this second lift motor has second axle 520.This first axle 510 is connected and is connected with this second flat board 42 with this first flat board 41 through this plummer 500 respectively with this second axle 520.
This riser 50 is connected with hollow tube 30 by being connected with this driving part 40 and finally acts on hollow tube 30.In other embodiments, riser 50 also can directly be connected directly to control the lifting of hollow tube 30 with this hollow tube 30.
Further, this liquid cleaning device also comprises a slide rail 60, and this slide rail 60 is directly or indirectly connected so that this driving part 40 moves along slide rail 60 with this driving part 40.
In the present embodiment, plummer 500 central authorities are provided with a union lever, and the top of union lever is provided with a groove 61, thereby slide rail 60 can move along this slide rail 60 this plummer 500 through this groove 61.When liquid surface area compared with the total area of large and a plurality of carrier 20 hour, or have when a plurality of when the rinse bath of contain fluid, can move driving part 40 and carrier 20 arrives next rinse bath or cleaning positions by this slide rail 60.
This liquid cleaning device 10 comprises that a plurality of rinse baths 70 are in order to hold liquid to be clean.This rinse bath 70 has a upper end open to appear this liquid, the plurality of hollow tube 30 is fixed on the periphery of this opening, for example, this first dull and stereotyped the 41 and second flat board 42 can be placed on to the periphery of the opening of this rinse bath 70, when the water level of liquid is suitable, the plurality of carrier 20 can and preferably cover this fluid surface with the Surface Contact of liquid.Handle after the liquid in rinse bath 70, can be by the fluid storage of processing to clean container.
The liquid cleaning device 10 that the embodiment of the present invention provides adopts the hazardous and noxious substances in nanometer titanic oxide material catalytic fluid to generate nontoxic material, purification efficiency is high, and adopt driving part to drive and control angle of rotation and the speed of rotation of carrier, further improve purification efficiency.
Be understandable that, those skilled in the art also can do other and change in spirit of the present invention, within all should being included in the present invention's scope required for protection.

Claims (7)

1. a liquid cleaning device, it comprises:
At least onely provide ultraviolet light source;
A plurality of carriers that ultraviolet ray is seen through, the plurality of carrier can contact with liquid, each carrier has an outside surface, this outside surface coating nanometer titanic oxide material in order to process impurity in this liquid to remove hazardous and noxious substances under this uviolizing, and this ultraviolet ray is from the inside of this carrier this outside surface of directive;
At least one hollow tube, is provided with this at least one light source in each hollow tube, this at least one hollow tube can make ultraviolet ray see through, and this at least one hollow tube is through the plurality of carrier;
One rinse bath, in order to hold this liquid, this rinse bath has an opening to appear this liquid, and the periphery that this at least one light source is fixed on this opening makes the plurality of carrier contact and cover this fluid surface with this liquid; And
One driving part, this driving part comprises one first dull and stereotyped and second flat board, this first dull and stereotyped in or in this second flat board, be provided with rotation motor, the first flat board has one first medial surface, the second flat board has one second medial surface, this first medial surface is relative with this second medial surface, the plurality of carrier is between this first medial surface and the second medial surface, the two ends of this at least one hollow tube respectively through this first medial surface with the second medial surface to be connected with rotation motor, this driving part drives this hollow tube to rotate to drive the rotation of the plurality of carrier.
2. liquid cleaning device as claimed in claim 1, is characterized in that, this at least one hollow tube comprises N the hollow tube being parallel to each other, the plurality of carrier is divided into N group, this N group carrier is gone here and there respectively and is located at this N hollow tube to form an array, and wherein, N is greater than 1 integer.
3. liquid cleaning device as claimed in claim 2, is characterized in that, every adjacent two carriers in the plurality of carrier have contact with each other, and this array covers this fluid surface substantially.
4. liquid cleaning device as claimed in claim 1, it is characterized in that, this refining plant also comprises a riser, this riser comprises a plummer, one first lift motor and one second lift motor, this first lift motor and this second lift motor are positioned at this plummer, and the first lift motor has one first axle, this second lift motor has one second axle, and this first axle is connected with this first flat board and this second flat board through this plummer respectively with this second axle.
5. liquid cleaning device as claimed in claim 4, is characterized in that, this refining plant further comprises a slide rail, and this plummer is connected to slide along this slide rail with this slide rail.
6. liquid cleaning device as claimed in claim 1, is characterized in that, the structure of the plurality of carrier is spheroid.
7. liquid cleaning device as claimed in claim 1, is characterized in that, the plurality of carrier adopts silicon-dioxide or polymethylmethacrylate to make.
CN201010192810.3A 2010-06-08 2010-06-08 Liquid purification device Active CN102276013B (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201010192810.3A CN102276013B (en) 2010-06-08 2010-06-08 Liquid purification device

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201010192810.3A CN102276013B (en) 2010-06-08 2010-06-08 Liquid purification device

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CN102276013A CN102276013A (en) 2011-12-14
CN102276013B true CN102276013B (en) 2014-01-22

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Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2003014030A1 (en) * 2001-08-06 2003-02-20 Chosun University Method for killing of microorganisms in the water by uv-tio2 photocatalytic reaction and reactor for killling of microorganisms
CN2717937Y (en) * 2004-06-16 2005-08-17 上海国达特殊光源有限公司 Ultraviolet water purifier
WO2008059503A1 (en) * 2006-11-14 2008-05-22 Atlantium Technologies Ltd. Method and apparatus for liquid disinfection using light transparent conduit
CN201080442Y (en) * 2007-02-13 2008-07-02 广州金川环保设备有限公司 Nanometer TiO2 photocatalytic oxidation reactor for biologically-difficult degradable organic wastewater
CN101353186A (en) * 2008-09-18 2009-01-28 上海交通大学 Double turntable light-sensitive cell liquid membrane reactor photocatalysis organic wastewater processing method
JP2009214041A (en) * 2008-03-11 2009-09-24 Maeda Shoji:Kk Purification device and purification tank
KR20090115446A (en) * 2008-05-02 2009-11-05 (주)한도엔지니어링 Underwater type wastewater treatment apparatus

Patent Citations (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2003014030A1 (en) * 2001-08-06 2003-02-20 Chosun University Method for killing of microorganisms in the water by uv-tio2 photocatalytic reaction and reactor for killling of microorganisms
CN2717937Y (en) * 2004-06-16 2005-08-17 上海国达特殊光源有限公司 Ultraviolet water purifier
WO2008059503A1 (en) * 2006-11-14 2008-05-22 Atlantium Technologies Ltd. Method and apparatus for liquid disinfection using light transparent conduit
CN201080442Y (en) * 2007-02-13 2008-07-02 广州金川环保设备有限公司 Nanometer TiO2 photocatalytic oxidation reactor for biologically-difficult degradable organic wastewater
JP2009214041A (en) * 2008-03-11 2009-09-24 Maeda Shoji:Kk Purification device and purification tank
KR20090115446A (en) * 2008-05-02 2009-11-05 (주)한도엔지니어링 Underwater type wastewater treatment apparatus
CN101353186A (en) * 2008-09-18 2009-01-28 上海交通大学 Double turntable light-sensitive cell liquid membrane reactor photocatalysis organic wastewater processing method

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Effective date of registration: 20150925

Address after: 225400 Daqing East Road, Taizhou, Jiangsu, No. 88

Patentee after: Hu Lichun

Address before: 518109 Guangdong city of Shenzhen province Baoan District Longhua Town Industrial Zone tabulaeformis tenth East Ring Road No. 2 two

Patentee before: Hongfujin Precise Industry (Shenzhen) Co., Ltd.

Patentee before: Hon Hai Precision Industry Co., Ltd.

C56 Change in the name or address of the patentee
CP02 Change in the address of a patent holder

Address after: 510640, China Education building, No. five, 371-1 mountain road, Guangzhou, Guangdong, Tianhe District 715, China

Patentee after: Hu Lichun

Address before: 225400 Daqing East Road, Taizhou, Jiangsu, No. 88

Patentee before: Hu Lichun

C41 Transfer of patent application or patent right or utility model
TR01 Transfer of patent right

Effective date of registration: 20151117

Address after: 226236 Jiangsu city of Nantong province Qidong City Binhai Industrial Park East Road No. 11-1

Patentee after: CAO XIAOSONG

Address before: 510640, China Education building, No. five, 371-1 mountain road, Guangzhou, Guangdong, Tianhe District 715, China

Patentee before: Hu Lichun