CN203389476U - Separator for separating gaseous oil-water mixture - Google Patents

Separator for separating gaseous oil-water mixture Download PDF

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Publication number
CN203389476U
CN203389476U CN201320491648.4U CN201320491648U CN203389476U CN 203389476 U CN203389476 U CN 203389476U CN 201320491648 U CN201320491648 U CN 201320491648U CN 203389476 U CN203389476 U CN 203389476U
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CN
China
Prior art keywords
stainless steel
separate mesh
steel separate
inner chamber
separator
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Expired - Fee Related
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CN201320491648.4U
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Chinese (zh)
Inventor
温广胜
杨培军
王海博
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Hebei Bo Qiang Environmental Protection Technology Co Ltd
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Hebei Bo Qiang Environmental Protection Technology Co Ltd
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Priority to CN201320491648.4U priority Critical patent/CN203389476U/en
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Publication of CN203389476U publication Critical patent/CN203389476U/en
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Abstract

The utility model discloses a separator for separating a gaseous oil-water mixture. The separator comprises a body, a gas inlet pipe, a gas outlet pipe, at least one layer of stainless steel separation net and a water draining outlet, wherein a cavity is formed in the body; the stainless steel separation net is arranged in the cavity; the gas inlet pipe is arranged at a position, near the lower end, of the outer side of the body; the gas outlet pipe is arranged at a position, near the upper end, of the outer side of the body; a plurality of meshes are arranged on the stainless steel separation net; the stainless steel separation net is of a sandwich structure and is provided with a sandwich inner cavity; cooling water can be led into the sandwich inner cavity. Based on the sandwich structure, when the separator is used for separating gaseous oil and water, the gaseous water can be condensed into water when meeting the cold stainless steel separation net; then the water is gathered to the bottom of the cavity while the oil at a high liquefaction temperature is also gaseous and discharged from the gas outlet pipe, so that the function of oil-water separation is realized.

Description

A kind of separator for separating of gaseous state oil water mixture
Technical field
The invention belongs to field of Environment Protection, be specifically related to a kind of separator for separating of gaseous state oil water mixture.
Background technology
Oil water separator is airborne water and the oil in being commonly used to separated air compressor machine in textile industry, and so-called oil water separator, as the term suggests be exactly the device of separating oil and water.The principle of separating oil and water is roughly divided three classes at present.The first, rely on diffusion barrier to carry out separation, general hydrone is less, and the therefore separated greatly film of oil molecule institute is separated; The second, rely on water different separated with oily density, the oil that standing a period of time of oil water mixture is stablized Hou,Jiang upper strata is separated; The 3rd relies on the temperature contrast of liquefaction, normal atmosphere is depressed, the temperature of water vapour is more than 100 ℃, the condensing temperature of oil is conventionally more than 300 ℃, after cooling, steam can drop to fast 100 degrees Celsius and condense into below water, and oil is still gaseous state for higher temperature, and both are separated from each other.At present, conventional oil water separator comprises body, air inlet pipe, escape pipe, nonwoven screen pack, draining valve in the industry; In described body, there is a cavity; Described air inlet pipe is arranged on the below of body one side; Described escape pipe is arranged on the top of the opposite side of body; Described draining valve is arranged on the bottom of body; The top of described body is provided with top cover; Described nonwoven screen pack is arranged on intrinsic cavity inside.But due to the easy adsorbed water of nonwoven, water, at absorption dust, easily produces and stops up.Therefore, there is inventor to propose to replace nonwoven separate mesh wherein with stainless steel separate mesh, can avoid adsorbing the problems such as dust obstruction.
Although but having made the separate mesh of stainless steel structure into, this separate mode is mainly the effect that the filtration that relies on temperature that stainless steel reduces and mesh reaches water-oil separating.For stainless steel, mesh to be worked into allow hydrone by and do not allow oil molecule to pass through, the very difficult work of part, and the lower temperature being had with stainless steel itself liquefies water, due to long-term work also can cause stainless steel separate mesh temperature and steam difference little, liquefaction inefficiency, separative efficiency is not ideal enough.In view of the foregoing, above-mentioned oil water separator, still needs further to be improved.
Utility model content
In order to solve the problems of the technologies described above, the utility model provides a kind of novel oil water separator simple in structure, and its stainless separate mesh has refrigerating function, can further promote the effect of water-oil separating.
The utility model is for separating of the separator of gaseous state oil water mixture, comprise body, air inlet pipe, escape pipe, one deck stainless steel separate mesh at least, discharge outlet, this body interior is a cavity, described stainless steel separate mesh is located in this cavity, this air inlet pipe is located at this body outside near lower end position, this escape pipe is located at this body outside near the position of upper end, described stainless steel separate mesh is provided with some mesh, wherein said rust steel separate mesh is sandwich, have interlayer inner chamber, described interlayer inner chamber can pass into cooling water.
The temperature of cooling water is the water temperature of normal temperature 20-30 degree, and this stainless steel separate mesh integral body is cylindrical, and its tube wall is provided with some described mesh, and described mesh passes through for the oil molecule of gaseous state.
Further, described stainless steel separate mesh comprises three layers, and ground floor stainless steel separate mesh, second layer stainless steel separate mesh, the 3rd layer of stainless steel separate mesh are spaced apart and arranged in intrinsic cavity successively.
Further, described body bottom is coniform body, and the place, tip of this coniform body is provided with this discharge outlet, by the bottom of this coniform body, can make isolated water be pooled to behind body bottom, more can from the discharge outlet of bottom, discharge smoothly.
Further, on described ground floor stainless steel separate mesh, second layer stainless steel separate mesh, the 3rd layer of stainless (steel) wire, the order number of the mesh of unit are is increase successively.
Further, described body outside is also provided with a coolant outlet near upper end, and described body outside is provided with Yi Ge cooling water inlet near lower end, described coolant outlet and described cooling water inlet are all communicated with the interlayer inner chamber of described stainless steel separate mesh.Whereby, make stainless steel separate mesh can keep for a long time a lower temperature, can make the hydrone in oil water mixture condense into quickly aqueous water, and with the separation of oil of this gaseous state.
Further, described body outside is also provided with a coolant outlet near upper end, described body outside is provided with Yi Ge cooling water inlet near lower end, described coolant outlet is communicated with the interlayer inner chamber of described ground floor or the 3rd layer of stainless steel separate mesh, described cooling water inlet is communicated with the interlayer inner chamber of described the 3rd layer or ground floor stainless steel separate mesh, and the interlayer inner chamber of the interlayer inner chamber of described ground floor stainless steel separate mesh, second layer stainless steel separate mesh, the interlayer inner chamber of the 3rd layer of stainless steel separate mesh are communicated with successively.
Preferably, this body bottom is located in described cooling water inlet, Qie Gai cooling water inlet is communicated with the interlayer inner chamber of the 3rd layer of stainless steel separate mesh, and this coolant outlet is located at the upper end sidewall of this body, is communicated with the interlayer inner chamber of this ground floor stainless steel separate mesh.
Further, described coolant outlet is connected to a normal temperature tank with pipeline, and described normal temperature tank is connected to this cooling water inlet with pipeline, and is provided with pump on its pipeline one of at least, and this pump provides the power of cooling water waterway circulating.
The utility model is by being made as sandwich by the intrinsic stainless steel separate mesh of separator, and pass into cooling water in the inner chamber forming to its interlayer, can make separate mesh keep a lower temperature, at the oil water mixture of gaseous state when air inlet pipe enters to this body interior, be subject to stopping with cooling of stainless steel separate mesh, the water that makes hydrone condense into liquid is pooled to the bottom of body along stainless steel separate mesh, and body bottom is also made as conical structure, can accelerate the discharge of aqueous water, and the temperature of gaseous state oil is higher, even if be subject to identical cooling still quick setting Cheng Shui very, still with gas form, be discharged to the external world.
Accompanying drawing explanation
Fig. 1 is the schematic perspective view of separator of the present utility model (removing top cover).
Fig. 2 is that structural representation is looked up in the utility model inside.
The specific embodiment
As shown in Figure 1, separator for separating of gaseous state oil water mixture, comprise body 1, body inside is a cavity 11, air inlet pipe 2, escape pipe 3 are communicated with respectively this cavity 11, three layers of stainless steel separate mesh, and ground floor stainless steel separate mesh 4, second layer stainless steel separate mesh 5, the 3rd layer of stainless steel separate mesh 6 are spaced apart and arranged in intrinsic cavity 11 successively.Air inlet pipe 2 is located at this body 1 outside near lower end position, escape pipe 3 is located at this body 1 outside near the position of upper end, described three layers of stainless steel separate mesh are provided with some mesh 61, rust steel separate mesh is sandwich (not illustrating in figure), have interlayer inner chamber, interlayer inner chamber can pass into cooling water.The temperature of cooling water is normal-temperature water (20-30 degree), and stainless steel separate mesh 4,5,6 is whole cylindrical, and mesh 61 can pass through for the oil molecule of gaseous state.Body bottom 12 is coniform body, and the place, tip of this coniform body is provided with this discharge outlet 13, by the bottom 12 of this coniform body, can make isolated water be pooled to behind body bottom 12, more can from the discharge outlet 13 of bottom, discharge smoothly.On described ground floor stainless steel separate mesh, second layer stainless steel separate mesh, the 3rd layer of stainless (steel) wire, the order number of the mesh of unit are for increasing successively, for example, is followed successively by 200 orders, 300 orders, 500 orders.Body 1 outside is also provided with a coolant outlet 81 near upper end, and body 1 outside is provided with Yi Ge cooling water inlet 82 near lower end, and coolant outlet 81Yu cooling water inlet 82 is all communicated with the interlayer inner chamber of described stainless steel separate mesh.Specifically as shown in Figure 2, coolant outlet 81 is communicated with the interlayer inner chamber of described ground floor stainless steel separate mesh 4, cooling water inlet 82 is communicated with the interlayer inner chamber of described the 3rd layer of stainless steel separate mesh 6, and the interlayer inner chamber of the interlayer inner chamber of described ground floor stainless steel separate mesh 4, second layer stainless steel separate mesh 5, the interlayer inner chamber of the 3rd layer of stainless steel separate mesh 6 are communicated with successively.Cooling waters are injected in ,Xiang cooling water inlet 82 whereby, make stainless steel separate mesh 4,5,6 can keep for a long time a lower temperature, can make the hydrone in oil water mixture condense into quickly aqueous water, and with the separation of oil of this gaseous state.Certainly, as long as cooling water inlet 82 can be fed through cooling water in the interlayer inner chamber of each described stainless steel separate mesh, be not limited to concrete type of attachment, therefore, also can make cooling water inlet 82 be communicated with the interlayer inner chamber of ground floor stainless steel separate mesh 4, and coolant outlet 81 is communicated with the interlayer inner chamber of the 3rd layer of stainless steel separate mesh 6.Preferably, the upper end sidewall of this body 1 is located in the 12,Qie Gai cooling water inlet, bottom 81 that this body 1 is located in described cooling water inlet 82, is communicated with the interlayer inner chamber of this ground floor stainless steel separate mesh 4.Further, can make coolant outlet 81 be connected to a normal temperature tank with pipeline, normal temperature tank is connected to cooling water inlet 82 with pipeline again, and is provided with pump on its pipeline one of at least, and this pump provides the power of cooling water waterway circulating.

Claims (8)

1. the separator for separating of gaseous state oil water mixture, comprise body, air inlet pipe, escape pipe, one deck stainless steel separate mesh at least, discharge outlet, this body interior is a cavity, described stainless steel separate mesh is located in this cavity, this air inlet pipe is located at this body outside near lower end position, this escape pipe is located at this body outside near the position of upper end, described stainless steel separate mesh is provided with some mesh, it is characterized in that: described rust steel separate mesh is sandwich, have interlayer inner chamber, described interlayer inner chamber can pass into cooling water.
2. separator as claimed in claim 1, is characterized in that, described stainless steel separate mesh comprises three layers, and ground floor stainless steel separate mesh, second layer stainless steel separate mesh, the 3rd layer of stainless steel separate mesh are spaced apart and arranged in intrinsic cavity successively.
3. separator as claimed in claim 1, is characterized in that, described body bottom is coniform body, and the place, tip of this coniform body is provided with this discharge outlet.
4. separator as claimed in claim 2, is characterized in that, on described ground floor stainless steel separate mesh, second layer stainless steel separate mesh, the 3rd layer of stainless (steel) wire, the order number of the mesh of unit are is for increasing successively.
5. the separator as described in claim 1 or 3, it is characterized in that, described body outside is also provided with a coolant outlet near upper end, and described body outside is provided with Yi Ge cooling water inlet near lower end, described coolant outlet and described cooling water inlet are all communicated with the interlayer inner chamber of described stainless steel separate mesh.
6. separator as claimed in claim 2, it is characterized in that, described body outside is also provided with a coolant outlet near upper end, described body outside is provided with Yi Ge cooling water inlet near lower end, described coolant outlet is communicated with the interlayer inner chamber of described ground floor or the 3rd layer of stainless steel separate mesh, described cooling water inlet is communicated with the interlayer inner chamber of described the 3rd layer or ground floor stainless steel separate mesh, the interlayer inner chamber of described ground floor stainless steel separate mesh, the interlayer inner chamber of second layer stainless steel separate mesh, the interlayer inner chamber of the 3rd layer of stainless steel separate mesh is communicated with successively.
7. separator as claimed in claim 6, it is characterized in that, this body bottom is located in described cooling water inlet, Qie Gai cooling water inlet is communicated with the interlayer inner chamber of the 3rd layer of stainless steel separate mesh, and this coolant outlet is located at the upper end sidewall of this body, be communicated with the interlayer inner chamber of this ground floor stainless steel separate mesh.
8. separator as claimed in claim 5, is characterized in that, described coolant outlet is connected to a normal temperature tank with pipeline, and described normal temperature tank is connected to this cooling water inlet with pipeline, and is provided with pump on its pipeline one of at least.
CN201320491648.4U 2013-08-12 2013-08-12 Separator for separating gaseous oil-water mixture Expired - Fee Related CN203389476U (en)

Priority Applications (1)

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Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201320491648.4U CN203389476U (en) 2013-08-12 2013-08-12 Separator for separating gaseous oil-water mixture

Publications (1)

Publication Number Publication Date
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107115755A (en) * 2017-06-30 2017-09-01 吉林市吉研高科技纤维有限责任公司 A kind of new shredded tobacco for water pipes separator

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN107115755A (en) * 2017-06-30 2017-09-01 吉林市吉研高科技纤维有限责任公司 A kind of new shredded tobacco for water pipes separator

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C14 Grant of patent or utility model
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20140115

Termination date: 20150812

EXPY Termination of patent right or utility model