CN110980872A - Cyclone desander - Google Patents

Cyclone desander Download PDF

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Publication number
CN110980872A
CN110980872A CN201911301712.6A CN201911301712A CN110980872A CN 110980872 A CN110980872 A CN 110980872A CN 201911301712 A CN201911301712 A CN 201911301712A CN 110980872 A CN110980872 A CN 110980872A
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CN
China
Prior art keywords
clear liquid
cyclone
outer shell
sewage
pipe
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201911301712.6A
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Chinese (zh)
Inventor
顾振辉
高伟
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shanghai Vansch Environment Technology Co ltd
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Shanghai Vansch Environment Technology Co ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Shanghai Vansch Environment Technology Co ltd filed Critical Shanghai Vansch Environment Technology Co ltd
Priority to CN201911301712.6A priority Critical patent/CN110980872A/en
Publication of CN110980872A publication Critical patent/CN110980872A/en
Pending legal-status Critical Current

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    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/38Treatment of water, waste water, or sewage by centrifugal separation

Abstract

The invention provides a cyclone desander which is used for solving the technical problems that in the prior art, the separation effect is poor, sewage and clean water are easy to mix with each other, the device is large in size, the separation effect is fixed and unadjustable, the compatible sewage is few in types, and solid particles are easy to deposit; the method comprises the following steps: the device comprises an outer shell, a cyclone tube, a partition plate, a bracket, a clear liquid guide tube and a clear liquid tube; by implementing the technical scheme of the invention, the clear liquid pipe is arranged, so that the sewage with low flow velocity is prevented from contacting the clear liquid, and the sewage and the clear liquid can be prevented from being mixed; the adjustable air-blowing system is arranged, so that the volume of the device is effectively reduced, a user can adjust the separation effect of the air output quantity adjusting device of the air-blowing system, and the compatibility of the device is improved; the sewage flows into the diversion cavity along the tangential direction of the diversion end, and the sludge outlet is positioned at the lowest part of the device and can accumulate solid particles in the sewage in the device.

Description

Cyclone desander
Technical Field
The invention relates to the field of solid-liquid separation devices, in particular to a cyclone desander.
Background
The sewage often contains a large amount of organic matters and inorganic matters, wherein the inorganic matters mainly comprise heavy metal salts and fine sand. Wherein, the heavy metal salt has great harm and has toxic action on animals and plants; the fine sand tends to have a high content and tends to clog fine pipes, so that it is necessary to perform solid-liquid separation on the liquid.
In the prior art, a cyclone desander is often used for carrying out solid-liquid separation on sewage. However, the existing cyclone desander has an imperfect structure, poor separation effect, easy mutual mixing of sewage and clean water, large device volume, fixed separation effect, unadjustable separation effect, less compatible sewage types and easy occurrence of solid particle siltation.
Therefore, a cyclone desander which has the advantages of good separation effect, small volume, controllable separation effect and difficult deposition of solid particles is needed.
Disclosure of Invention
In order to solve the technical problem, the invention discloses a cyclone desander, and the technical scheme of the invention is implemented as follows:
a cyclone desander comprising: the device comprises an outer shell, a cyclone tube, a partition plate, a bracket, a clear liquid guide tube and a clear liquid tube; the outer shell is provided with a sewage inlet, a clear liquid outlet and a sludge outlet, the clear liquid outlet is arranged at the top of the outer shell, and the sludge outlet is arranged at the bottom of the outer shell; the cyclone tube is arranged in the outer shell and is hermetically connected to the top of the outer shell, and the length of the cyclone tube is smaller than that of the inner cavity of the outer shell; the baffle plate is arranged in the outer shell and is hermetically connected to the outer shell and the cyclone tube, the space between the outer shell and the cyclone tube is divided into a flow guide cavity and a separation cavity, one end of the cyclone tube, which is positioned in the flow guide cavity, is a flow guide end, and the other end of the cyclone tube is a screw-out end; the sewage inlet is communicated with the diversion cavity, and the diversion end is provided with a diversion trench; the support is arranged at the bottom of the outer shell and fixed to the inner wall of the outer shell, and is provided with a clear liquid hole which is arranged on the axis of the rotational flow pipe; the clear liquid pipe is arranged in the cyclone pipe, one end of the clear liquid pipe is hermetically connected to the clear liquid outlet, and the axis of the clear liquid pipe is superposed with the axis of the cyclone pipe; (ii) a One end of the clear liquid guide pipe is arranged in the separation cavity, and the other end of the clear liquid guide pipe is connected to the other side of the clear liquid hole; the sludge outlet is arranged at the bottom of the outer shell and communicated with the separation cavity.
Preferably, the cyclone desander further comprises an air blowing system, wherein the air blowing system comprises a high-pressure air source and an air guide pipe, one end of the air guide pipe is connected to the high-pressure air source, and the other end of the air guide pipe is connected to the cyclone pipe and communicated with the interior of the cyclone pipe.
Preferably, the air duct is provided with a pressure stabilizing valve.
Preferably, the pressure stabilizing valve is an intelligent pressure stabilizing valve, and the air blowing system further comprises a controller, wherein the controller is electrically connected to the pressure stabilizing valve and controls the opening of the pressure stabilizing valve.
Preferably, the sewage inlet is provided with an inlet pressure gauge, and the clear liquid outlet is provided with a clear liquid pressure gauge.
Preferably, the inlet pressure gauge and the clear liquid pressure gauge are electrically connected to the controller, and transmit the detection result to the controller.
Preferably, the flow area of the sewage inlet is S1, the flow area between the cyclone pipe and the clear liquid pipe is S2, the flow area of the separation cavity is S3, the ratio of S1 to S2 ranges from 1 to 3, and the ratio of S3 to S2 ranges from 1 to 10.
Preferably, the direction of the sewage inlet is arranged to be tangential to the flow guide end.
Preferably, the cyclone desander further comprises an angle supporting mechanism; the angle support mechanism is connected to the outer housing.
By implementing the technical scheme of the invention, the technical problems of poor separation effect, easy mutual mixing of sewage and clean water, large device volume, fixed and unadjustable separation effect, few compatible sewage types and easy occurrence of solid particle siltation in the prior art can be solved; by implementing the technical scheme of the invention, the clear liquid pipe is arranged, so that the sewage with low flow velocity is prevented from contacting the clear liquid, and the sewage and the clear liquid can be prevented from being mixed; the adjustable air-blowing system is arranged, so that the volume of the device is effectively reduced, a user can adjust the separation effect of the air output quantity adjusting device of the air-blowing system, and the compatibility of the device is improved; the sewage flows into the diversion cavity along the tangential direction of the diversion end, and the sludge outlet is positioned at the lowest part of the device and can accumulate solid particles in the sewage in the device.
Drawings
In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only one embodiment of the present invention, and for those skilled in the art, other drawings can be obtained according to the drawings without creative efforts.
FIG. 1 is a schematic structural view of a cyclone desander according to an embodiment of the present invention;
fig. 2 is a schematic structural view of a diversion cavity according to an embodiment of the present invention;
FIG. 3 is a schematic diagram of a stent structure according to an embodiment of the present invention;
FIG. 4 is a schematic structural view of a cyclone sand remover with an angle supporting mechanism according to an embodiment of the present invention.
In the above drawings, the reference numerals denote:
1-an outer shell; 2-a swirl tube; 201-a diversion end; 202-a screw-out end; 203-diversion trenches; 3-a separator; 4-a scaffold; 5-clear liquid guide pipe; 6-a clear liquid pipe; 7-a sewage inlet; 8-clear liquid outlet; 9-sludge outlet; 10-a flow guide cavity; 11-a separation chamber; 12-clear liquid wells; 13-an air-blowing system; 1301-a high-pressure gas source; 1302-an airway tube; 1303-pressure maintaining valve; 1304-a controller; 14-inlet pressure gauge; 15-clear liquid pressure gauge; 16-angle support mechanism.
Detailed Description
The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. All other embodiments, which can be derived by a person skilled in the art from the embodiments given herein without making any creative effort, shall fall within the protection scope of the present invention.
In one embodiment of the present invention, a cyclone desander, as shown in fig. 1, 2, 3 and 4, comprises: the device comprises an outer shell 1, a cyclone tube 2, a partition plate 3, a bracket 4, a clear liquid guide tube 5 and a clear liquid tube 6; the outer shell 1 is provided with a sewage inlet 7, a clear liquid outlet 8 and a sludge outlet 9, the clear liquid outlet 8 is arranged at the top of the outer shell 1, and the sludge outlet 9 is arranged at the bottom of the outer shell 1; the cyclone tube 2 is arranged in the outer shell 1 and is hermetically connected to the top of the outer shell 1, and the length of the cyclone tube 2 is smaller than that of the inner cavity of the outer shell 1; the partition plate 3 is arranged in the outer shell 1, is hermetically connected to the outer shell 1 and the cyclone tube 2, and divides a space between the outer shell 1 and the cyclone tube 2 into a flow guide cavity 10 and a separation cavity 11, one end of the cyclone tube 2, which is positioned in the flow guide cavity 10, is a flow guide end 201, and the other end of the cyclone tube is a screw-out end 202; the sewage inlet 7 is communicated with the diversion cavity 10, and the diversion end 201 is provided with a diversion trench 203; the bracket 4 is arranged at the bottom of the outer shell 1 and fixed to the inner wall of the outer shell 1, the bracket 4 is provided with a clear liquid hole 12, and the clear liquid hole 12 is arranged on the axis of the cyclone tube 2; the clear liquid pipe 6 is arranged inside the cyclone pipe 2, one end of the clear liquid pipe is hermetically connected to the clear liquid outlet 8, and the axis of the clear liquid pipe 6 is superposed with the axis of the cyclone pipe 2; one end of the clear liquid guide pipe 5 is arranged in the separation cavity 11, and the other end is connected to the other side of the clear liquid hole 12; the sludge outlet 9 is arranged at the bottom of the outer shell 1 and communicated with the separation cavity 11.
In the specific embodiment, the main body of the cyclone desander is made of stainless steel, so that the cyclone desander has higher structural strength and is beneficial to improving the treatment capacity of the device. The cyclone desander is used for treating sewage, and the cyclone desander main body is made of stainless steel materials, so that the service life of the device is prolonged. Users can replace other materials or electroplate chromium-containing alloy on the surface of a structure which contacts sewage in the cyclone desander according to the type of the sewage, and the like, so that the wear resistance and the corrosion resistance of the device are enhanced, and the reliability of the device is improved. All parts of the device can be connected in a non-detachable mode such as welding and the like, and can also be connected in a detachable mode such as bolt connection and the like, so that the device is convenient to detach and clean. The sewage inlet 7, the clear liquid outlet 8 and the sludge outlet 9 can adopt flanges for connecting related equipment to the outside. Can pass through welded fastening between cyclone tube 2 and shell body 1, clear solution honeycomb duct 5 and the support 4 to play sealed effect, also can be fixed through helicitic texture, realize mechanical seal, play the effect of keeping apart rivers.
In the cyclone desander working process, the user can use external pump to pump sewage into sewage inlet 7, flows into water conservancy diversion chamber 10, later flows into cyclone tube 2 through guiding gutter 203. The sewage is rotated around the clear liquid pipe 6 to the screw-out end 202 by the obstruction of the clear liquid pipe 6 in the cyclone pipe 2. In order to prevent the sewage from flowing directly to the screw-out end 202, the diversion trench 203 can be arranged to be inclined and deviated from the axial direction, and the larger the inclined angle is, the better the device can separate the sewage by rotating. The user also can set up guide vane in water conservancy diversion end 201 inside, and the guide sewage whirl improves the work efficiency of whirl desander.
After flowing out of the spiral-out end 202, the sewage flows to the bottom of the device and then flows upwards along the direction of the outer side of the spiral-flow pipe 2 towards the partition plate 3, and in the flowing process, solid particles are deposited towards the bottom of the device under the action of gravity, so that the content of the solid particles in the liquid at the lower part of the separation cavity 11 is higher, and the content of the solid particles in the liquid at the upper part is lower; meanwhile, the sewage still keeps rotating after flowing out of the rotating-out end 202, and in the rotating process, solid particles with high density are accumulated to the edge of the device under the action of centrifugal force. The liquid flowing out of the sludge outlet 9 contains a high content of solid particles under the combined action of gravity and centrifugal force. The clear liquid with less solid particles passes through the clear liquid draft tube 5 into the clear liquid tube 6 in the separation chamber 11 and out of the clear liquid outlet 8.
Along with the continuous flow in cyclone tube 2, the rotational speed of sewage accelerates gradually, and the faster the rotational speed then the better is the solid-liquid separation effect of sewage. Consequently, use longer cyclone tube 2, can improve the treatment effect of device, use shorter cyclone tube 2, can reduce the holistic volume of device, the installation of being convenient for. The user can select suitable cyclone tube 2 specifications according to parameters such as the type of sewage, separation requirement, installation environment.
The clear liquid pipe 6 is provided to prevent the sewage which flows by rotation from being mixed with the clear liquid which flows toward the clear liquid outlet 8. The user can set up in the position of the one end of separation chamber by clear liquid honeycomb duct 5, is close to baffle 3, then the clear liquid solid content of collecting is lower, and the particle diameter in the clear liquid is less, keeps away from baffle 3, then the clear liquid solid content of collecting is higher, and the particle diameter in the clear liquid is great. The user can select the position of the clear liquid guide pipe 5 according to the subsequent parameters of clear liquid and sludge treatment devices, components in sewage and the like.
In a preferred embodiment, the cyclone desander, as shown in fig. 1, 2 and 3, further comprises an air-blowing system 13, wherein the air-blowing system 13 comprises a high-pressure air source 1301 and an air duct 1302, one end of the air duct 1302 is connected to the high-pressure air source 1301, the other end of the air duct 1302 is connected to the cyclone tube 2, and the air duct is communicated with the inside of the cyclone tube 2.
In this embodiment, high pressurized air source 1301 is the air compressor machine, and the air compressor machine passes through air duct 1302 and inputs compressed air to cyclone tube 2 in, and compressed air's inflow direction is unanimous with the flow direction of sewage, improves the flow speed of pressure and sewage in cyclone tube 2 to under the prerequisite that does not change the device specification, improve the separating ability of device greatly, do benefit to the volume that reduces the device, reduce the required time cost of device installation and maintenance and human cost. After the air and the sewage flow out of the spiral-out end 202, most of the air directly flows into the clear liquid draft tube 5 along with the clear liquid through the separation cavity 11 due to the low density.
In a preferred embodiment, as shown in fig. 1, the air duct 1302 is provided with a pressure maintaining valve 1303, so that the device can be in a stable working state, and the reliability of the device is improved.
In a preferred embodiment, the pressure maintaining valve 1303 is an intelligent pressure maintaining valve, and the air blowing system 13 further includes a controller 1304, wherein the controller 1304 is electrically connected to the pressure maintaining valve 1303, and controls the opening degree of the pressure maintaining valve 1303.
According to the type of sewage, the type and the density of solid particles, a user can control the gas pressure output by the air blowing system 13 through the controller 1304, so that the treatment effect of the cyclone desander meets the target requirement, and meanwhile, the working power of the air compressor can be selected as required, so that the energy consumption is reduced. Meanwhile, the device is suitable for different types of sewage, and the compatibility of the device is improved.
In a preferred embodiment, as shown in fig. 1, 2 and 4, the sewage inlet 7 is provided with an inlet pressure gauge 14 and the clear liquid outlet 8 is provided with a clear liquid pressure gauge 15.
The pressure gauge may use a diaphragm pressure gauge, an inlet pressure gauge 14 for measuring the pressure of the sewage flowing into the apparatus, and a clear liquid pressure gauge 15 for measuring the pressure of the clear liquid flowing out of the clear liquid outlet 8. The user can preliminarily judge the working condition of the cyclone desander according to the pressure difference between the sewage and the clear liquid, and the reliability of the device is improved.
In a preferred embodiment, as shown in fig. 1 and 4, the inlet pressure gauge 14 and the clear liquid pressure gauge 15 are electrically connected to the controller 1304, and the detection result is transmitted to the controller 1304.
The user can preset control logic in the controller 1304, and the controller 1304 selects the input gas pressure according to parameters such as sewage density, flow and treatment requirements input by the user through the sewage pressure and clear liquid pressure obtained in real time, so that the working stability of the device is improved, and the device is suitable for various working modes.
In a preferred embodiment, as shown in fig. 1, 2 and 4, the flow area of the sewage inlet 7 is S1, the flow area between the cyclone tube 2 and the clear liquid tube 6 is S2, the flow area of the separation chamber 11 is S3, the ratio of S1 to S2 ranges from 1 to 3, and the ratio of S3 to S2 ranges from 1 to 10.
In this embodiment, the ratio of S1 to S2 is 2, the ratio of S3 to S2 is 4, and if the sewage flows into the sewage inlet 7 at a velocity v1The flow velocity of the sewage between the cyclone tube 2 and the clear liquid tube 6 is v2The flow velocity of the sewage after leaving the screw-out end 202 is v3Then v is2=2v1The rotating speed of the sewage in the cyclone tube 2 can be improved; v. of3=1/4v2The speed of the sewage after leaving the screw-out end 202 is greatly reduced, and the solid particles in the sewage keep a relatively high speed, so that the separation of liquid and the solid particles is favorably realized, and the separation effect of the device is optimized. The user can select suitable S1 and S2, S3 and S2' S ratio according to parameters such as installation environment, sewage kind, separation requirement, the great then separation effect is better of ratio, the ratio is less then does benefit to the volume that reduces the device, reduces the production degree of difficulty and the manufacturing cost of device.
In a preferred embodiment, as shown in fig. 1, 2 and 4, the sewage inlet 7 is oriented tangentially to the flow-guiding end 201. The flowing direction of the sewage which just flows into the diversion cavity 10 from the sewage inlet 7 is tangent to the diversion end 201, so that the sewage in the diversion end 201 can keep rotating around the diversion end 201, the sewage can conveniently flow in a rotating manner after entering the cyclone pipe 2, meanwhile, the deposition of solid particles in the sewage in the diversion cavity 10 can be reduced, the maintenance frequency of the device can be reduced, and the time cost and the labor cost of the maintenance of the device can be reduced.
In a preferred embodiment, a cyclone desander is shown in fig. 1, 2, 3 and 4. Also included is an angle support mechanism 16; the angle support mechanism 16 is connected to the outer housing 1.
The angle supporting mechanism 16 can keep the cyclone sand remover inclined, so that the device is suitable for a working environment with lower height. The angle supporting mechanism 16 can be set to enable the sludge outlet 9 to be located at the lowest position of the device, so that sludge can directly flow out of the cyclone desander without other pumping devices, external equipment required by the operation of the cyclone desander is reduced, the sludge treatment system is simplified, and the cost of the system is reduced.
In this embodiment, the angle support mechanism 16 includes a base and a support rod, a fixing member is disposed on the outer surface of the outer housing 1, the support rod is mounted on the base and fixed to the fixing member by bolts, the support rod and the fixing member are detachably fixed, and the angle of the cyclone sand remover can be changed by replacing the support rods with different lengths. The user can be according to the environment of installation scene, the operating condition isoparametric of whirl desander with the whirl desander suitable angle. The base, the supporting rod and the fixing piece are made of stainless steel materials, the strength is high, and sufficient supporting force can be provided for the heavy cyclone desander. The user may also select another angle support mechanism 16 and the connection mode of the angle support mechanism 16 and the outer shell 1.
It should be understood that the above-described embodiments are merely exemplary of the present invention, and are not intended to limit the present invention, and that any modification, equivalent replacement, or improvement made without departing from the spirit and principle of the present invention shall fall within the protection scope of the present invention.

Claims (9)

1. A cyclone desander is characterized by comprising: the device comprises an outer shell, a cyclone tube, a partition plate and a bracket; the outer shell is provided with a sewage inlet, a clear liquid outlet and a sludge outlet, and the sludge outlet is arranged at the bottom of the outer shell;
the cyclone tube is arranged in the outer shell and is hermetically connected to the top of the outer shell, and the length of the cyclone tube is smaller than that of the inner cavity of the outer shell;
the baffle plate is arranged in the outer shell and is hermetically connected to the outer shell and the cyclone tube, the space between the outer shell and the cyclone tube is divided into a flow guide cavity and a separation cavity, one end of the cyclone tube, which is positioned in the flow guide cavity, is a flow guide end, and the other end of the cyclone tube is a screw-out end;
the sewage inlet is communicated with the flow guide cavity, and the flow guide end is provided with a plurality of flow guide ports;
the support is arranged at the bottom of the outer shell and fixed to the inner wall of the outer shell, and is provided with a clear liquid hole which is arranged on the axis of the rotational flow pipe;
the clear liquid pipe is arranged in the cyclone pipe, one end of the clear liquid pipe is hermetically connected to the clear liquid outlet, and the axis of the clear liquid pipe is superposed with the axis of the cyclone pipe;
one end of the clear liquid guide pipe is arranged in the separation cavity, and the other end of the clear liquid guide pipe is connected to the other side of the clear liquid hole;
the sludge outlet is arranged at the bottom of the outer shell and communicated with the separation cavity.
2. The cyclone desander as claimed in claim 1 further comprising an air blowing system, wherein the air blowing system comprises a high pressure air source and an air duct, one end of the air duct is connected to the high pressure air source, and the other end of the air duct is connected to the cyclone tube and communicated with the inside of the cyclone tube.
3. A cyclonic grit catcher as claimed in claim 2, wherein the gas duct is provided with a pressure maintaining valve.
4. The cyclone sand remover as claimed in claim 3, wherein the pressure maintaining valve is an intelligent pressure maintaining valve, and the air blowing system further comprises a controller electrically connected to the pressure maintaining valve for controlling the opening degree of the pressure maintaining valve.
5. The cyclone sand remover according to claim 4, wherein the sewage inlet is provided with an inlet pressure gauge, and the clear liquid outlet is provided with a clear liquid pressure gauge.
6. The cyclone sand remover as claimed in claim 5, wherein said inlet pressure gauge and said clear liquid pressure gauge are electrically connected to said controller, and transmit the detection results to said controller.
7. A cyclone sand remover according to claim 6, wherein the flow area of the sewage inlet is S1, the flow area between the cyclone pipe and the clear liquid pipe is S2, the flow area of the separation chamber is S3, the ratio of S1 to S2 is 1-3, and the ratio of S3 to S2 is 1-10.
8. The cyclone desander as claimed in claim 7 wherein the sewage inlet is oriented tangentially to the deflector end.
9. The cyclone grit catcher as claimed in claim 8, further comprising an angle supporting mechanism; the angle support mechanism is connected to the outer housing.
CN201911301712.6A 2019-12-17 2019-12-17 Cyclone desander Pending CN110980872A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201911301712.6A CN110980872A (en) 2019-12-17 2019-12-17 Cyclone desander

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Application Number Priority Date Filing Date Title
CN201911301712.6A CN110980872A (en) 2019-12-17 2019-12-17 Cyclone desander

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CN110980872A true CN110980872A (en) 2020-04-10

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CN201911301712.6A Pending CN110980872A (en) 2019-12-17 2019-12-17 Cyclone desander

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Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN106976930A (en) * 2017-06-08 2017-07-25 长沙理工大学 For the hydrocyclone of spoil disposal water and the processing system and method for the synchronous dissolution of spoil disposal water concentration/coagulant
CN207002417U (en) * 2017-05-09 2018-02-13 李尽善 A kind of sewage-treatment plant
CN108339789A (en) * 2018-03-01 2018-07-31 上海毓风机电设备有限公司 A kind of cooling tower water-collecting tray automatic cleaning system and its cleaning method
CN208230382U (en) * 2018-03-01 2018-12-14 上海毓风机电设备有限公司 A kind of cooling tower water-collecting tray automatic cleaning system
CN110054320A (en) * 2019-05-16 2019-07-26 重庆市机电设计研究院 A kind of aquaculture wastewater pre-processing device
CN213506092U (en) * 2019-12-17 2021-06-22 上海梵煦环境科技有限公司 Cyclone desander

Patent Citations (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN207002417U (en) * 2017-05-09 2018-02-13 李尽善 A kind of sewage-treatment plant
CN106976930A (en) * 2017-06-08 2017-07-25 长沙理工大学 For the hydrocyclone of spoil disposal water and the processing system and method for the synchronous dissolution of spoil disposal water concentration/coagulant
CN108339789A (en) * 2018-03-01 2018-07-31 上海毓风机电设备有限公司 A kind of cooling tower water-collecting tray automatic cleaning system and its cleaning method
CN208230382U (en) * 2018-03-01 2018-12-14 上海毓风机电设备有限公司 A kind of cooling tower water-collecting tray automatic cleaning system
CN110054320A (en) * 2019-05-16 2019-07-26 重庆市机电设计研究院 A kind of aquaculture wastewater pre-processing device
CN213506092U (en) * 2019-12-17 2021-06-22 上海梵煦环境科技有限公司 Cyclone desander

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