CN210434136U - Energy-reducing and emission-reducing water circulation system - Google Patents

Energy-reducing and emission-reducing water circulation system Download PDF

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Publication number
CN210434136U
CN210434136U CN201921049635.5U CN201921049635U CN210434136U CN 210434136 U CN210434136 U CN 210434136U CN 201921049635 U CN201921049635 U CN 201921049635U CN 210434136 U CN210434136 U CN 210434136U
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China
Prior art keywords
tank
waste water
filter
sedimentation tank
reducing
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Expired - Fee Related
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CN201921049635.5U
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Chinese (zh)
Inventor
余子亮
魏克明
郑华财
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Zhejiang Chengbo Construction Engineering Co ltd
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Zhejiang Chengbo Construction Engineering Co ltd
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Abstract

The utility model relates to an energy-reducing and emission-reducing water circulation system, which comprises a vehicle cleaning system and a waste water circulation system, wherein the vehicle cleaning system comprises a waste water collecting tank, a hollow grid is arranged on the opening of the waste water collecting tank, a plurality of water spray holes penetrate through the upper end of the grid, the grid is connected with a water service pipe, one end of the waste water circulation system is communicated with the waste water collecting tank, and the other end of the waste water circulation system is communicated with the water service pipe; waste water circulating system includes one-level sedimentation tank, second grade sedimentation tank and tertiary sedimentation tank, all is provided with a plurality of frames of placing in one-level sedimentation tank and the second grade sedimentation tank, and filter hopper has been placed in every frame of placing, all is provided with the filter screen in every filter hopper. The utility model has the advantages of it is following: the waste water that washs the production flows in the waste water collecting tank through the grid, and then filters waste water through filter screen in the wastewater circulating system, and the silt that filters the production will remain in the filter hopper, takes out the filter hopper and can directly unify the collection processing to silt, and silt is handled comparatively portably.

Description

Energy-reducing and emission-reducing water circulation system
Technical Field
The utility model relates to a drainage circulation system especially relates to an energy reduction and emission reduction water circulation system.
Background
Because the construction site transport vehicle directly exits the construction site without being washed, sundries such as soil and the like can be splashed to pollute urban roads, a vehicle washing device must be arranged on the construction site to reduce the pollution of the construction industry, and the methods of most of the construction sites are basically the same at present, and a simple vehicle washing tank is established.
Chinese patent with publication number CN208134289U discloses a building site intelligence flushing device, which comprises a machine body, the side wall board, waste water collection device, first slope, the second slope, the water pipe, a water pump, the water spray pipeline, the control electronic box, first water tank, second water tank and third water tank, the machine body and side wall board are respectively with bolt fastening, the control electronic box is installed in the side wall board outside, the water pipe both ends are connected with side wall board and water pump respectively, waste water collection device and first water tank pass through square water piping connection, first water tank and second water tank intercommunication, second water tank and third water tank intercommunication, the water pump is installed on the third water tank, the water spray pipeline is located the side wall board inboard, the machine body is located waste water collection device top.
However, in the above technical solution, the sludge deposited in the first water tank, the second water tank and the third water tank is not easy to clean, and is to be improved.
SUMMERY OF THE UTILITY MODEL
Not enough to prior art exists, the utility model aims at providing a fall can reduce discharging water circulating system can carry out cyclic utilization to the waste water that the vehicle washs the production, and has the advantage that silt is convenient to clear up.
The above utility model discloses an above-mentioned utility model purpose can realize through following technical scheme:
a water circulation system for reducing energy and emission comprises a vehicle cleaning system and a waste water circulation system, wherein the vehicle cleaning system comprises a waste water collecting pool, a hollow grid is arranged on an opening of the waste water collecting pool, a plurality of water spraying holes with different water spraying directions penetrate through the upper end of the grid, the grid is connected with a water through pipe for passing water to the inside, one end of the waste water circulation system is communicated with the waste water collecting pool, and the other end of the waste water circulation system is communicated with the water through pipe;
waste water circulating system is including filtering the box, filter the box and include that waste water passes through one-level sedimentation tank, second grade sedimentation tank and tertiary sedimentation tank in proper order, all be provided with the frame of placing of a plurality of adjacent arrangements in one-level sedimentation tank and the second grade sedimentation tank, every place and place filter hopper, every in the frame all be provided with in the filter hopper and carry out filterable filter screen to waste water.
Through adopting above-mentioned technical scheme, vehicle is when vehicle cleaning system in the building site, and the water that leads to in the water pipe can be followed the grid and spout, washs the tire to avoid mud in the building site to be taken away the polluted road surface. And wash the waste water that produces and flow into in the waste water collecting tank through the grid, and then filter waste water through the interior filter screen of wastewater circulating system, the silt that filters the production will remain in the filter hopper, can directly unify the collection processing to silt through taking out the filter hopper, and silt is handled comparatively portably.
The utility model discloses further set up to: the diapire of waste water collecting tank is the slope setting, the primary sedimentation tank has been seted up in one side of lowest department to the waste water collecting tank diapire.
Through adopting above-mentioned technical scheme, the diapire of waste water collecting pit is the slope setting for big mud piece and stone can be along the slope deposit in preliminary sedimentation tank, after stone and the deposit of big mud piece to a certain extent in the preliminary sedimentation tank, the staff can directly use instruments such as shovel to clear up preliminary sedimentation tank.
The utility model discloses further set up to: establish the limbers through digging between waste water collecting pit and the filtration box and communicate, the lateral wall of filtering the box runs through the inlet opening that has and leads to the basin intercommunication, the pore of limbers is the slope setting, the opening that the limbers is located the low position is located the top of just precipitation tank.
Through adopting above-mentioned technical scheme, slope setting is carried out through the pore with leading to the water tank, can avoid stone and big stone directly to flow to the rose box internally along with rivers to guarantee to filter step by step.
The utility model discloses further set up to: the filtering box body is formed by welding a plurality of steel plates, a partition plate is welded between two opposite side walls of the first-stage sedimentation tank and the second-stage sedimentation tank, the partition plate is connected with the bottom wall of the filtering box body, the placing frames are arranged on one side, deviating from the waste water, of the corresponding partition plate to enter the corresponding first-stage sedimentation tank or the second-stage sedimentation tank, and the height of the partition plate is not lower than the height of the placing frames.
Through adopting above-mentioned technical scheme, through the setting of baffle for waste water must be flowed in by the top of filter hopper, has guaranteed the filter effect. In addition, the filtering box body is formed by welding a plurality of steel plates, so that the filtering box body can be repeatedly used, and the resource utilization rate is improved.
The utility model discloses further set up to: the filter box comprises a filter box body and is characterized in that two parallel separation assemblies are arranged between two opposite side walls of the filter box body, the filter box body is divided into a primary sedimentation tank, a secondary sedimentation tank and a tertiary sedimentation tank, each separation assembly comprises an upper baffle and a lower baffle, the upper baffle is arranged between the two opposite side walls of the filter box body, the lower baffle is arranged between the two opposite side walls of the filter box body and connected with the bottom wall, the lower end face of the upper baffle is lower than the upper end face of the lower baffle, and the side wall of the upper baffle is connected with one side of a plurality of placing frames.
Through adopting above-mentioned technical scheme, through the setting of separating the subassembly, the lower terminal surface place height of overhead gage is less than the up end place height of baffle down for silt need not rise to next sedimentation tank under the weight of self in, thereby reach good separation effect, reduce the volume that silt got into in next sedimentation tank.
The utility model discloses further set up to: and a fixing plate is arranged between two opposite side walls of the filtering box body and is connected with the upper end surface of the upper baffle.
Through adopting above-mentioned technical scheme, through the setting of fixed plate for the staff can trample on the fixed plate, so that the staff replaces the operation of filter hopper.
The utility model discloses further set up to: the filter box is characterized in that a mounting plate is arranged between two opposite side walls of the filter box body and divides the filter box body into a third-level sedimentation tank and a fourth-level purification tank, and a plurality of vertically-arranged filter plates are inserted into one side of the mounting plate, which is far away from the third-level sedimentation tank.
Through adopting above-mentioned technical scheme, through setting up the filter on the mounting panel, carry out last level and filter, the filter is installed in order to insert the mode of establishing, is convenient for change the washing.
The utility model discloses further set up to: the level four purification tank intercommunication has the rainwater collecting tank, the water service pipe is located tertiary sedimentation tank, the access has bathroom washing unit in the rainwater collecting tank.
Through adopting above-mentioned technical scheme, rainwater in the rainwater collecting tank is collected and can flows in the level four purification tank after to a certain degree, and then gets rid of wherein doped silt and pours into tertiary sedimentation tank in through the filter, washs the wheel in filling the grid with the water in the tertiary sedimentation tank again through the water service pipe. Insert bathroom washing unit and make the hydroenergy in the rainwater collection pond can continuously obtain the consumption, avoid collecting the water yield and spill over, and when belt cleaning device washed the vehicle, unnecessary water yield can enter into to the level four in the purification tank and pours into the rainwater collection pond from tertiary sedimentation tank, realizes the balance of recycling water.
The utility model discloses further set up to: the inner core of the filter plate is made of low-density permeable sponge.
Through adopting above-mentioned technical scheme, the sponge that permeates water of low density not only is convenient for wash, and the replacement cost is low.
The utility model discloses further set up to: the surface of the filtering box body is coated with a perfluoropolyether layer before installation.
Through adopting above-mentioned technical scheme, perfluoropolyether has good lubrication action, and is the oily state, has good isolation to the concrete, at the in-process of concrete curing, can avoid filtering the lateral wall of box and cohere too firmly with the concrete to the recycle of later stage filter box. In addition, the perfluoropolyether has good volatility, so that the concrete can form a certain degree of adhesion with the filter box body at the later stage, and the stability of the filter box body is improved.
To sum up, the utility model discloses a beneficial technological effect does:
1. vehicle is when passing vehicle cleaning system in the building site, and the water that leads to in the water pipe can be followed the grid and spout, washs the tire to avoid mud in the building site to be taken away the polluted road surface. The waste water generated by cleaning flows into the collecting tank through the grating, and then the waste water is filtered through the filter screen in the waste water circulating system, sludge generated by filtering is remained in the filter hopper, and the sludge can be directly collected and treated uniformly by taking out the filter hopper, so that the sludge treatment is simple and convenient;
2. the bottom wall of the collecting tank is obliquely arranged, so that large mud blocks and stones can be deposited in the primary sedimentation tank along the gradient, and after the stones and the large mud blocks in the primary sedimentation tank are deposited to a certain degree, workers can directly use tools such as shovels to clean the primary sedimentation tank;
3. through the arrangement of the separation assembly, the height of the lower end face of the upper baffle is lower than that of the upper end face of the lower baffle, so that silt does not need to rise into the next sedimentation tank under the self weight, a good separation effect is achieved, and the amount of the silt entering the next sedimentation tank is reduced;
4. rainwater in the rainwater collecting tank is collected and can flow into the level four purifying tank after a certain degree, and then the silt doped in the rainwater collecting tank is removed through the filter plate and poured into the tertiary sedimentation tank, and water in the tertiary sedimentation tank is filled into the grids again through the water service pipe to clean the wheels. Insert bathroom washing unit and make the hydroenergy in the rainwater collection pond can continuously obtain the consumption, avoid collecting the water yield and spill over, and when belt cleaning device washed the vehicle, unnecessary water yield can enter into to the level four in the purification tank and pours into the rainwater collection pond from tertiary sedimentation tank, realizes the balance of recycling water.
Drawings
Fig. 1 is a schematic diagram of the distribution structure of the system of the present invention.
Fig. 2 is a schematic structural diagram of the vehicle washing system of the present invention.
Fig. 3 is a schematic structural diagram of the middle filtering box body of the present invention.
Description of reference numerals: 1. a vehicle washing system; 11. a wastewater collection tank; 111. a primary precipitation tank; 12. a vehicle wash station; 2. a wastewater circulation system; 21. a rainwater collection tank; 22. a filter box body; 221. a first-stage sedimentation tank; 222. a secondary sedimentation tank; 223. a third-stage sedimentation tank; 224. a four-stage purification tank; 225. placing the frame; 226. a filter hopper; 227. a filter plate; 3. a partition assembly; 31. an upper baffle plate; 32. a lower baffle plate; 4. a partition plate; 5. a water trough.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
Referring to fig. 1 and 2, for the utility model discloses a fall ability and reduce discharging water circulating system, including vehicle cleaning system 1 and waste water circulating system 2. Vehicle cleaning system 1 includes digging the waste water collecting pit 11 of establishing on ground, and fixedly connected with is inside the grid that is the cavity setting on waste water collecting pit 11's the opening, and the upper end of this grid runs through there are a plurality of hole for water sprayings that the water spray orientation is different, and the grid is connected with carries out the water service pipe that leads to water to its inside to form vehicle wash platform 12. Wherein, grid and water service pipe all set up to two, cooperate extra belt cleaning device to wash the vehicle of going out from the building site, and the waste water that washs the production leaks into in the waste water collecting tank 11 through the grid. One end of the waste water circulating system 2 is communicated with the waste water collecting tank 11, the other end of the waste water circulating system is communicated with the water service pipe, and sludge and sand in the waste water collecting tank 11 are filtered through the waste water circulating system 2 so as to achieve the purpose of recycling.
The diapire of waste water collecting tank 11 is the slope setting, and waste water collecting tank 11's diapire digs in one side of lowest department and is equipped with preliminary sedimentation tank 111. Big mud piece and stone can be along the inclination of 11 diapalls of waste water collecting pit to concentrate on in the preliminary sedimentation tank 111, pile up to the certain degree after as big mud piece and stone, the staff can open the grid, clears up the deposit in the preliminary sedimentation tank 111 through instruments such as shovels.
Referring to fig. 1 and 3, the wastewater circulating system 2 includes an installation tank dug in the ground and a rainwater collection tank 21, a filter box 22 is buried in the installation tank, and the filter box 22 is fixed by pouring concrete into a gap between the installation tank and the filter box 22. The filtering box body 22 comprises a first-stage sedimentation tank 221, a second-stage sedimentation tank 222 and a third-stage sedimentation tank 223 through which wastewater flows in sequence, and a fourth-stage purification tank 224 which balances the water quantity with the rainwater collection system.
The wastewater collection tank 11 is communicated with the installation tank by digging a water trough 5 (refer to fig. 2), and a grid plate is installed at the upper end opening of the water trough 5 so as to facilitate construction. The side wall of the filtering box body 22 is penetrated with a water inlet hole communicated with the water trough 5, the bottom of the water trough 5 is inclined, and the side opening of the lower part of the water trough 5 is positioned above the primary sedimentation tank 111.
The filtering box 22 is formed by welding a plurality of steel plates, and two parallel separating assemblies 3 are fixedly connected between two opposite side walls of the filtering box 22, so that the filtering box 22 is divided into a first-stage sedimentation tank 221, a second-stage sedimentation tank 222 and a third-stage sedimentation tank 223. Every partition subassembly 3 all includes overhead gage 31 and lower baffle 32, overhead gage 31 welds between the double-phase to the lateral wall of filtering box 22 and is the interval setting with the bottom of the case, the lower terminal surface of overhead gage 31 is located the surface of water below, the up end is higher than the surface of water, the both sides of lower baffle 32 weld between the double-phase to the lateral wall of filtering box 22, simultaneously the bottom of lower baffle 32 and the diapire of filtering box 22 welded fastening each other and form and seal, the up end of lower baffle 32 is located the surface of water below, and the lower terminal surface place height of overhead gage 31 is less than the up end place height of lower baffle 32. In the flowing process, the wastewater must enter between the upper baffle 31 and the lower baffle 32 through the lower end surface of the upper baffle 31, and then flows into the next-stage sedimentation tank 221 through the upper end surface of the lower baffle 32, and in the rising process, silt is difficult to rise under the self potential weight and enters the next-stage sedimentation tank 221, so that the silt content is effectively reduced.
A plurality of adjacent and evenly-arranged placing frames 225 are welded and fixed on one side of each of the two upper baffles 31, which is far away from the adjacent lower baffle 32, and the edges of the two placing frames 225 at the outermost edges are respectively and fixedly welded with the two opposite side walls of the filter box body 22. A plurality of be located second grade sedimentation tank 222 place the frame 225 and deviate from the one side of corresponding partition subassembly 3 and another partition subassembly 3 in baffle 32 mutual welded fastening down, a plurality of be located first grade sedimentation tank 221 place the frame 225 and deviate from corresponding one side welded fastening who separates subassembly 3 and have baffle 4, the double-phase relative lateral wall of baffle 4 all with filter box 22 fixed weld, and the lower terminal surface of baffle 4 and the diapire looks welded fastening who filters box 22. The heights of the partition board 4 and the lower baffle 32 welded with the placing frames 225 are not lower than the heights of the placing frames 225, so that the wastewater flows in from the upper parts of the placing frames 225 all the time. The lower baffle 32 in the secondary sedimentation tank 222 is equal to the partition plate 4 in the primary sedimentation tank 221, and can be used for ensuring the flow direction of the wastewater.
Every filter hopper 226 has all been placed in placing frame 225, and filter hopper 226 is made for stainless steel material, and the surface has the hole of permeating water of low-density distribution, filter hopper 226 internal fixation has stainless steel's filter screen. Wherein, the filter screen in the first-stage sedimentation tank 221 is 100 meshes, and the filter screen in the second-stage sedimentation tank 222 is 120 meshes. From the outside, the height of the filter hopper 226 in the first-stage sedimentation tank 221 is higher than that in the second-stage sedimentation tank 222, and therefore the storage capacity of the filter hopper 226 in the first-stage sedimentation tank 221 for silt is improved.
Preferably, in order to facilitate the worker to put and take the filter hopper 226, two fixing plates are welded between two opposite side walls of the filter box body 22, and the two fixing plates are respectively welded to the upper end surfaces of the two upper baffle plates 31, so that the worker can directly drop feet on the fixing plates to facilitate the operation.
A mounting plate is fixedly welded between two opposite side walls of the filtering box body 22 to separate the third-stage settling tank 223 and the fourth-stage purifying tank 224. One side fixed welding that the mounting panel deviates from tertiary sedimentation tank 223 has a plurality of plug-ins that are "T" type, inserts between the adjacent plug-in components to be equipped with the filter 227 that is vertical setting, and the inner core of filter 227 sets up to the thick low density sponge of 50 mm. The water service pipe is arranged in the third-level sedimentation tank 223, the fourth-level purification tank 224 is communicated with the rainwater collection tank 21, and a toilet flushing device is connected into the rainwater collection tank 21.
Rainwater in the rainwater collecting tank 21 is collected to a certain degree and then can flow into the four-stage purification tank 224, and then is filtered and filtered by low-density sponge and filled into the three-stage sedimentation tank 223, and water in the three-stage sedimentation tank 223 is filled into the grids through the water service pipe to clean the wheels. Insert bathroom washing unit, make the hydroenergy that makes in the rainwater collecting pit 21 can continuously obtain the consumption, avoid the collection water yield to spill over, and when belt cleaning device washed the vehicle, unnecessary water yield can be followed tertiary sedimentation tank 223 and then to in the level four purification tank 224 and pour into rainwater collecting pit 21, realize the balance of recycling water.
Further, before the gap between the installation tank and the filter case 22 is poured with concrete, the surface of the filter case 22 is coated with a perfluoropolyether layer. Perfluoropolyether has good lubrication, and is oily state, has good isolation to the concrete, at the in-process of concrete curing, can avoid filtering box 22's lateral wall and concrete to cohere too firmly. The perfluoropolyether has good volatility, so that the concrete can form a certain degree of adhesion with the filter box body 22 at a later stage, and the stability of the filter box body 22 is improved. Finally, the filter box body 22 can be partially bonded with concrete, so that the filter box body 22 has good stability and is convenient to remove and reuse at the later stage.
The embodiment of this specific implementation mode is the preferred embodiment of the present invention, not limit according to this the utility model discloses a protection scope, so: all equivalent changes made according to the structure, shape and principle of the utility model are covered within the protection scope of the utility model.

Claims (10)

1. The utility model provides a fall ability and reduce discharging water circulating system, includes vehicle cleaning system (1) and waste water circulating system (2), its characterized in that: the vehicle cleaning system (1) comprises a waste water collecting tank (11), a grille with a hollow interior is arranged on an opening of the waste water collecting tank (11), a plurality of water spraying holes with different water spraying directions penetrate through the upper end of the grille, the grille is connected with a water through pipe for passing water to the interior, one end of a waste water circulating system (2) is communicated with the waste water collecting tank (11), and the other end of the waste water circulating system is communicated with the water through pipe;
waste water circulating system (2) is including filtering box (22), filter box (22) including waste water one-level sedimentation tank (221), second grade sedimentation tank (222) and tertiary sedimentation tank (223) that pass through in proper order, all be provided with frame (225) of placing of a plurality of adjacent arrangements in one-level sedimentation tank (221) and second grade sedimentation tank (222), every place filter hopper (226) in frame (225), every filter hopper (226) all are provided with in the filter hopper (226) and carry out filterable filter screen to waste water.
2. The energy-reducing and emission-reducing water circulation system according to claim 1, wherein: the diapire of waste water collecting tank (11) is the slope setting, primary sedimentation tank (111) have been seted up in one side of lowest department to waste water collecting tank (11) diapire.
3. The energy-reducing and emission-reducing water circulation system according to claim 1, wherein: waste water collecting tank (11) and filter between the box (22) and establish limbers (5) through digging and communicate, the lateral wall of filtering box (22) runs through the inlet opening that has and limbers (5) intercommunication, the pore of limbers (5) is the slope setting, limbers (5) are located the opening of low department and are located the top of just precipitation tank (111).
4. The energy-reducing and emission-reducing water circulation system according to claim 1, wherein: filter box (22) and form by the welding of a plurality of steel sheets, all weld baffle (4) between the double-phase relative lateral wall of one-level sedimentation tank (221) and second grade sedimentation tank (222), baffle (4) are connected with the diapire that filters box (22), and are a plurality of place frame (225) and all set up in one side that corresponding baffle (4) deviate from waste water and get into corresponding one-level sedimentation tank (221) or second grade sedimentation tank (222), the height of baffle (4) is not less than a plurality of heights of placing frame (225).
5. The energy-reducing and emission-reducing water circulation system according to claim 4, wherein: the filter tank comprises a filter tank body (22), and is characterized in that two parallel separation assemblies (3) are arranged between two opposite side walls of the filter tank body (22), the filter tank body (22) is divided into a first-stage sedimentation tank (221), a second-stage sedimentation tank (222) and a third-stage sedimentation tank (223), each separation assembly (3) comprises an upper baffle (31) and a lower baffle (32), the upper baffles (31) are arranged between the two opposite side walls of the filter tank body (22), the lower baffles (32) are arranged between the two opposite side walls of the filter tank body (22) and are connected with a bottom wall, the lower end faces of the upper baffles (31) are lower than the upper end faces of the lower baffles (32), and the side walls of the upper baffles (31) are connected with one sides of a plurality of placing frames (225).
6. The energy and emission reduction water circulation system according to claim 5, wherein: and a fixing plate is arranged between two opposite side walls of the filtering box body (22), and the fixing plate is connected with the upper end surface of the upper baffle plate (31).
7. The energy-reducing and emission-reducing water circulation system according to claim 4, wherein: the filter tank is characterized in that a mounting plate is arranged between two opposite side walls of the filter tank body (22) to divide the filter tank body (22) into a third-level sedimentation tank (223) and a fourth-level purification tank (224), and a plurality of vertically-arranged filter plates (227) are inserted into one side of the mounting plate departing from the third-level sedimentation tank (223).
8. The energy and emission reduction water circulation system according to claim 7, wherein: four-stage purification pond (224) intercommunication has rainwater collecting tank (21), the water service pipe is located tertiary sedimentation tank (223), the access has bathroom washing unit in rainwater collecting tank (21).
9. The energy and emission reduction water circulation system according to claim 7, wherein: the inner core of the filter plate (227) is set to be low-density permeable sponge.
10. The energy-reducing and emission-reducing water circulation system according to claim 4, wherein: the surface of the filter box body (22) is coated with a perfluoropolyether layer before installation.
CN201921049635.5U 2019-07-05 2019-07-05 Energy-reducing and emission-reducing water circulation system Expired - Fee Related CN210434136U (en)

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CN201921049635.5U CN210434136U (en) 2019-07-05 2019-07-05 Energy-reducing and emission-reducing water circulation system

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Application Number Priority Date Filing Date Title
CN201921049635.5U CN210434136U (en) 2019-07-05 2019-07-05 Energy-reducing and emission-reducing water circulation system

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110270159A (en) * 2019-07-05 2019-09-24 浙江诚博建设工程有限公司 A kind of drop energy emission reduction water circulation system

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110270159A (en) * 2019-07-05 2019-09-24 浙江诚博建设工程有限公司 A kind of drop energy emission reduction water circulation system
CN110270159B (en) * 2019-07-05 2024-11-05 浙江诚博建设工程有限公司 A circulation system for reducing energy and water discharge

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