Sewage circulating treatment system

Through the combined design of hydraulic tank and coagulation tank, the problem of frequent filter replacement in the sewage circulation treatment system is solved, the stable and efficient operation of the system and water quality purification are achieved, and the operation and maintenance burden is reduced.

CN223163278UActive Publication Date: 2025-07-29SUZHOU GUANTIAN INTELLIGENT TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421664263.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-07-15
Publication Date
2025-07-29
Estimated Expiration
2034-07-15

AI Technical Summary

Technical Problem

The existing sewage circulation treatment system has a large demand for filters, which requires frequent replacement and maintenance, increase the operating burden of operation and maintenance personnel, and reduce the stability and efficiency of system operation.

Method used

The combination design of hydraulic tank, water collecting tank, column, hydraulic motor, limiting plate, support plate, telescopic bag, water outlet, hydraulic rod and pressure plate is adopted to ensure the stable operation of the system; the setting of coagulation tank, chemical barrel, stirring motor, inlet pump and stirring rod is to promote the uniform dissolution of the chemical and coagulation reaction, and accelerate the treatment efficiency.

Benefits of technology

It improves the stability and efficiency of the sewage treatment system, reduces equipment vibration and noise, extends the equipment life, ensures the tight connection and normal operation of the system, reduces the workload of operation and maintenance personnel, and improves the water quality purification effect.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223163278U_ABST
    Figure CN223163278U_ABST
Patent Text Reader

Abstract

The utility model discloses a sewage circulation treatment system which comprises a reservoir, a coagulating basin arranged on the right side of the reservoir, a sedimentation basin arranged on the right side of the coagulating basin, a hydraulic basin arranged on the right side of the sedimentation basin, a hydraulic motor arranged on the right side of the hydraulic basin, and limiting plates arranged on the left side and the right side of a stand column respectively. Supporting plates are arranged on the inner sides of the limiting plates in an array mode, telescopic bags are arranged in the middles of the supporting plates, water outlets are formed in the middles of the supporting plates, hydraulic rods are arranged on the left sides of the motor frames, and pressing plates are arranged on the left sides of the hydraulic rods. The hydraulic pool system can better realize stable and efficient operation, normal operation and treatment effect of the sewage treatment system are guaranteed, suspended solids in water are pressed tightly through the hydraulic motor in the hydraulic pool, internal clear water is discharged, and the clear water is pumped out of the hydraulic pool through the water pump.
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Description

Technical Field

[0001] The utility model belongs to the technical field related to sewage recycling, and particularly relates to a sewage recycling treatment system. Background Art

[0002] The properly treated sewage can be reused. In the fields of agricultural irrigation, industrial production, etc., the reuse of water resources can be realized, fresh water resources can be saved, the recycled water after sewage treatment can be reasonably utilized, the pollution to the surrounding environment can be reduced, the problems of water resource shortage and water pollution can be alleviated. Through sewage recycling treatment, the utilization efficiency of water resources can be improved, the water use cost can be reduced, carbon emissions can be reduced, and the treated recycled water can be applied to different fields such as agriculture, industry, urban greening, etc. to meet various water use requirements. The sewage recycling treatment system conforms to the concept of sustainable development, can effectively recycle resources, and reduce the pressure on the environment, providing sustainable water resource guarantee for the future.

[0003] However, the existing sewage recycling treatment system has a large demand for filter meshes and needs to frequently replace and maintain the filtering device. Frequent maintenance of the filtering device will increase the operation burden of the operation and maintenance personnel, reduce the stability and efficiency of the system operation, and increase the investment in human resources. Summary of the Utility Model

[0004] The purpose of the utility model is to provide a sewage recycling treatment system to solve the problems in the above-mentioned background art that the existing sewage recycling treatment system has a large demand for filter meshes, needs to frequently replace and maintain the filtering device, frequent maintenance of the filtering device will increase the operation burden of the operation and maintenance personnel, reduce the stability and efficiency of the system operation, and increase the investment in human resources.

[0005] To achieve the above purpose, the utility model provides the following technical solution: a sewage recycling treatment system, including a reservoir;

[0006] A sewage pipe is arranged at the top position of the reservoir, a coagulation tank is arranged at the right side position of the reservoir, the reservoir and the coagulation tank are connected through a first connecting pipe in a through manner, a sedimentation tank is arranged at the right side position of the coagulation tank, a first water pump is arranged at the bottom right side position of the coagulation tank, a second connecting pipe is arranged at the left side position of the sedimentation tank, the second connecting pipe is integrally connected with the first water pump, a hydraulic tank is arranged at the right side position of the sedimentation tank, a second water pump is arranged at the bottom position of the sedimentation tank, a third connecting pipe is arranged at the right side position of the second water pump, the third connecting pipe is connected with the hydraulic tank in a through manner, a water outlet pipe is arranged at the upper position of the hydraulic tank, a third water pump is arranged at the bottom position of the hydraulic tank, and the sewage recycling treatment system is powered by an external power supply;

[0007] A sump is provided at the position below the hydraulic pool. Columns are respectively provided at the left and right positions above the hydraulic pool. A hydraulic motor is provided at the right position of the hydraulic pool.

[0008] Preferably, limit plates are respectively provided at the left and right positions of the column, and the limit plates are fixedly connected to the column.

[0009] Preferably, support plates are arranged in an array at the inner position of the limit plate. A telescopic bag is provided at the middle position of the support plate. A water outlet is provided at the middle position of the support plate. The support plate is slidably connected to the hydraulic pool.

[0010] Preferably, a motor frame is provided at the bottom position of the hydraulic motor. A hydraulic rod is provided at the left position of the motor frame. A pressing plate is provided at the left position of the hydraulic rod.

[0011] Preferably, three chemical agent barrels are arranged in an array at the bottom position of the coagulation tank. A stirring motor is provided at the top position of the coagulation tank.

[0012] Preferably, a chemical agent inlet pump is provided at the position above the chemical agent barrel. A chemical agent inlet connection port is provided at the top position of the chemical agent inlet pump. A stirring rod is provided at the bottom position of the stirring motor.

[0013] Preferably, rollers are respectively provided at the left and right positions of the pressing plate, and the rollers and the pressing plate are slidably connected to the limit plate.

[0014] Compared with the prior art, the present utility model provides a sewage recycling treatment system, which has the following

[0015] Beneficial effects:

[0016] 1. Through the advantages of the hydraulic pool, sump, column, hydraulic motor, limit plate, support plate, telescopic bag, water outlet, hydraulic rod and pressing plate, the support plate plays the role of a support component in the hydraulic pool system, stabilizing the structure and ensuring the normal operation of the system. The support plate can bear the pressure in the hydraulic pool system, ensuring the stability and safety of the system. The telescopic bag has telescopic performance and can stretch or contract freely according to needs, adapting to different working states and requirements. The telescopic bag can absorb the vibration and impact generated in the system, reducing the impact on the hydraulic pool system and extending the service life of the equipment. The telescopic bag can reduce the vibration transmission in the hydraulic system, reducing noise and improving the operating stability of the system. The pressing plate can apply pressure to the support plate and the telescopic bag, ensuring the tight connection and normal operation of the system components. The hydraulic pool system can better achieve stable and efficient operation, ensuring the normal operation and treatment effect of the sewage treatment system.

[0017] 2. Through the advantages of the coagulation tank, chemical agent barrel, stirring motor, chemical feeding pump and stirring rod, the stirring motor can evenly dissolve the chemical agent in water through the rotation of the stirring rod, ensuring the effective function of the chemical agent. The stirring motor can promote the contact and mixing of the coagulant and suspended solid particles in the coagulation tank, accelerate the coagulation reaction speed, and improve the coagulation effect. The stirring function of the stirring motor can prevent the sedimentation of suspended solids at the bottom of the coagulation tank, maintain the uniform distribution of suspended solids in the water body, reduce sludge blockage and cleaning work. The chemical agent barrel can be used to store different types of chemical agents, facilitating management and dosing to ensure the continuous supply of the coagulant. The chemical feeding pump installed above the chemical agent barrel can accurately control the dosing amount of the chemical agent by adjusting the flow rate of the chemical feeding pump, ensuring the treatment effect. The chemical agent barrel can effectively seal the chemical agent, preventing environmental pollution or interference from external substances and ensuring the purity of the treatment process. By reasonably setting equipment such as the stirring motor and chemical agent barrel, the treatment efficiency and coagulation effect of the coagulation tank can be effectively improved, ensuring the stable operation of the sewage treatment system and the purification effect of water quality. Brief Description of the Drawings

[0018] Figure 1 is a structural schematic diagram of the present utility model.

[0019] Figure 2 is a structural schematic diagram of the hydraulic tank in the present utility model.

[0020] Figure 3 is a structural schematic diagram of the coagulation tank in the present utility model.

[0021] In the figure: 1. Reservoir; 2. Sewage pipe; 3. First connecting pipe; 4. Second connecting pipe; 5. Sedimentation tank; 6. Third connecting pipe; 7. Outlet pipe; 8. Third water pump; 9. Hydraulic tank; 10. Second water pump; 11. First water pump; 12. Coagulation tank; 13. Collection tank; 14. Outlet; 15. Column; 16. Limiting plate; 17. Telescopic bag; 18. Pressing plate; 19. Roller; 20. Hydraulic rod; 21. Hydraulic motor; 22. Motor frame; 23. Chemical agent barrel; 24. Chemical feeding pump; 25. Chemical feeding connection port; 26. Stirring rod; 27. Stirring motor; 28. Support plate. Detailed Embodiment

[0022] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present utility model.

[0023] The present utility model provides a sewage circulation treatment system as Figures 1-3 shown, including a reservoir 1;

[0024] At the top position of the reservoir 1, a sewage pipe 2 is provided. At the right side position of the reservoir 1, a coagulation tank 12 is provided. The reservoir 1 and the coagulation tank 12 are connected through a first connecting pipe 3. At the right side position of the coagulation tank 12, a sedimentation tank 5 is provided. At the right bottom position of the coagulation tank 12, a first water pump 11 is provided. At the left side position of the sedimentation tank 5, a second connecting pipe 4 is provided. The second connecting pipe 4 is integrally connected with the first water pump 11. At the right side position of the sedimentation tank 5, a hydraulic tank 9 is provided. At the bottom position of the sedimentation tank 5, a second water pump 10 is provided. At the right side position of the second water pump 10, a third connecting pipe 6 is provided. The third connecting pipe 6 is connected through the hydraulic tank 9. At the upper position of the hydraulic tank 9, a water outlet pipe 7 is provided. At the bottom position of the hydraulic tank 9, a third water pump 8 is provided. The sewage circulation treatment system is powered by an external power supply;

[0025] At the lower position of the hydraulic tank 9, a sump 13 is provided. At the upper left and right positions of the hydraulic tank 9, columns 15 are respectively provided. At the right side position of the hydraulic tank 9, a hydraulic motor 21 is provided.

[0026] At the left and right positions of the column 15, limit plates 16 are respectively provided. The limit plates 16 are fixedly connected to the column 15.

[0027] Inside the limit plate 16, support plates 28 are arranged in an array. At the middle position of the support plate 28, a telescopic bag 17 is provided. At the middle position of the support plate 28, a water outlet 14 is provided. The support plate 28 is slidably connected to the hydraulic tank 9.

[0028] At the bottom position of the hydraulic motor 21, a motor frame 22 is provided. At the left side position of the motor frame 22, a hydraulic rod 20 is provided. At the left side position of the hydraulic rod 20, a pressing plate 18 is provided.

[0029] At the bottom position of the coagulation tank 12, three chemical agent barrels 23 are arranged in an array. At the top position of the coagulation tank 12, a stirring motor 27 is provided.

[0030] At the upper position of the chemical agent barrel 23, a chemical agent inlet pump 24 is provided. At the top position of the chemical agent inlet pump 24, a chemical agent inlet connection 25 is provided. At the bottom position of the stirring motor 27, a stirring rod 26 is provided.

[0031] At the left and right positions of the pressing plate 18, rollers 19 are respectively provided. The rollers 19 and the pressing plate 18 are slidably connected to the limit plate 16.

[0032] In this embodiment, the specific implementation steps of a sewage recycling treatment system are as follows: The sewage to be treated is introduced into the reservoir 1 through the sewage pipe 2. Subsequently, the sewage in the reservoir 1 enters the coagulation tank 12 through the first connecting pipe 3. The dosing pump 24 is used to inject the corresponding treatment agent from the agent barrel 23 into the coagulation tank 12. The stirring motor 27 is started, and the sewage and the agent are fully mixed through the stirring rod 26. The coagulated sewage flows into the sedimentation tank 5 through the second connecting pipe 4. In the sedimentation tank 5, the solid particles in the sewage aggregate to form larger flocs, and the suspended substances in the water precipitate, purifying the water quality. The second water pump pumps out the sewage and flows it into the hydraulic tank 9 through the third connecting pipe. The hydraulic motor 21 in the hydraulic tank 9 compresses the suspended solid precipitates in the water and discharges the internal clear water. The third water pump pumps out the clear water from the hydraulic tank 9 for recycling.

[0033] As Figure 1 and Figure 2 shown, a sump 13 is provided at the lower position of the hydraulic tank 9. Columns 15 are respectively provided at the upper left and right positions of the hydraulic tank 9. A hydraulic motor 21 is provided at the right position of the hydraulic tank 9. Limit plates 16 are respectively provided at the left and right positions of the columns 15. The limit plates 16 are fixedly connected to the columns 15. Support plates 28 are arranged in an array at the inner position of the limit plates 16. A telescopic bag 17 is provided at the middle position of the support plates 28. An outlet 14 is provided at the middle position of the support plates 28. The support plates 28 are slidably connected to the hydraulic tank 9. A motor bracket 22 is provided at the bottom position of the hydraulic motor 21. A hydraulic rod 20 is provided at the left position of the motor bracket 22. A pressing plate 18 is provided at the left position of the hydraulic rod 20.

[0034] Preferably, the support plate 28 functions as a support component in the hydraulic tank 9 system, stabilizing the structure and ensuring the normal operation of the system. The support plate 28 can withstand the pressure in the hydraulic tank system, guaranteeing the stability and safety of the system. The telescopic bag 17 has telescopic properties and can stretch or contract freely according to needs, adapting to different working states and requirements. The telescopic bag 17 can absorb the vibrations and impacts generated in the system, reducing the influence on the hydraulic tank 9 system and extending the service life of the equipment. The telescopic bag 17 can reduce the vibration transmission in the hydraulic system, reducing noise and improving the operating stability of the system. The pressing plate 18 can apply pressure to the support plate 28 and the telescopic bag 17, ensuring the tight connection and normal operation of the system components. The hydraulic tank system can better achieve stable and efficient operation, guaranteeing the normal operation and treatment effect of the sewage treatment system.

[0035] As Figure 1 and Figure 3As shown, three reagent barrels 23 are arranged in an array at the bottom of the coagulation tank 12, a stirring motor 27 is arranged at the top of the coagulation tank 12, a drug feed pump 24 is arranged above the reagent barrel 23, a drug feed connection port 25 is arranged at the top of the drug feed pump 24, and a stirring rod 26 is arranged at the bottom of the stirring motor 27.

[0036] Preferably, the stirring motor 27 can dissolve the agent evenly in the water through the rotation of the stirring rod 26, ensuring that the agent plays an effective role. The stirring motor 27 can promote the contact and mixing of the coagulant and the suspended particles in the coagulation tank 9, accelerate the coagulation reaction speed, and improve the coagulation effect. The stirring action of the stirring motor 27 can prevent the suspended matter from settling at the bottom of the coagulation tank, maintain the uniform distribution of suspended matter in the water body, reduce sludge blockage and cleaning work, and the agent barrel 23 can be used to store different types of agents, which is convenient for management and dosage, and ensures the continuous supply of coagulant. The drug feed pump 24 arranged above the drug barrel 23 can accurately control the amount of drug added by adjusting the flow of the drug feed pump 24 to ensure the treatment effect. The drug barrel 23 can effectively seal the drug to avoid drug pollution to the environment or interference from external substances, and ensure the purity of the treatment process. By reasonably setting equipment such as the stirring motor and the drug barrel, the treatment efficiency and coagulation effect of the coagulation tank can be effectively improved, and the stable operation of the sewage treatment system and the water purification effect can be guaranteed.

[0037] like Figures 1-3 As shown, rollers 19 are respectively provided at the left and right sides of the pressing plate 18 , and the rollers 19 and the pressing plate 18 are slidably connected to the limiting plate 16 .

[0038] Optionally, the roller 19 can effectively reduce the friction between the pressure plate 18 and the limit plate 16, making the pressure plate 18 move more smoothly and easily, reducing energy consumption and extending the service life of the equipment. The installation of the roller 19 can provide stable support when the pressure plate 18 moves, avoid unstable factors caused by friction, and ensure the smoothness and reliability of the operation process. The setting of the roller 19 can help the limit plate 16 accurately locate the position of the pressure plate 18, ensuring that the pressure plate can accurately stop at the set position during the movement, affecting the precision and accuracy of the operation.

[0039] Finally, it should be noted that the above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or make equivalent substitutions for some of the technical features therein. Any modifications, equivalent substitutions, improvements, etc. made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. A sewage recycling treatment system, comprising a reservoir (1); At the top position of the reservoir (1), a sewage pipe (2) is provided. At the right side position of the reservoir (1), a coagulation tank (12) is provided. The reservoir (1) and the coagulation tank (12) are connected through a first connecting pipe (3). At the right side position of the coagulation tank (12), a sedimentation tank (5) is provided. At the right bottom position of the coagulation tank (12), a first water pump (11) is provided. At the left side position of the sedimentation tank (5), a second connecting pipe (4) is provided. The second connecting pipe (4) is integrally connected with the first water pump (11). At the right side position of the sedimentation tank (5), a hydraulic tank (9) is provided. At the bottom position of the sedimentation tank (5), a second water pump (10) is provided. At the right side position of the second water pump (10), a third connecting pipe (6) is provided. The third connecting pipe (6) is connected to the hydraulic tank (9) through penetration. At the upper position of the hydraulic tank (9), a water outlet pipe (7) is provided. At the bottom position of the hydraulic tank (9), a third water pump (8) is provided. The sewage recycling treatment system is powered by an external power supply; It is characterized in that: At the lower position of the hydraulic tank (9), a collecting tank (13) is provided. At the upper left and right positions of the hydraulic tank (9), columns (15) are respectively provided. At the right side position of the hydraulic tank (9), a hydraulic motor (21) is provided.

2. The sewage recycling treatment system according to claim 1, characterized in that: At the left and right positions of the column (15), limit plates (16) are respectively provided. The limit plates (16) are fixedly connected to the column (15).

3. A sewage recycling treatment system according to claim 2, characterized in that: Inside the limit plates (16), support plates (28) are arranged in an array. At the middle position of the support plate (28), a telescopic bag (17) is provided. At the middle position of the support plate (28), a water outlet (14) is provided. The support plate (28) is slidably connected to the hydraulic tank (9).

4. A sewage recycling treatment system according to claim 3, characterized in that: At the bottom position of the hydraulic motor (21), a motor frame (22) is provided. At the left side position of the motor frame (22), a hydraulic rod (20) is provided. At the left side position of the hydraulic rod (20), a pressing plate (18) is provided.

5. A sewage recycling treatment system according to claim 1, characterized in that: At the bottom position of the coagulation tank (12), three chemical reagent barrels (23) are arranged in an array. At the top position of the coagulation tank (12), a stirring motor (27) is provided.

6. The sewage recycling treatment system according to claim 5, wherein: At the upper position of the chemical reagent barrel (23), a chemical feeding pump (24) is provided. At the top position of the chemical feeding pump (24), a chemical feeding connection port (25) is provided. At the bottom position of the stirring motor (27), a stirring rod (26) is provided.

7. A sewage recycling treatment system according to claim 4, characterized in that: At the left and right positions of the pressing plate (18), rollers (19) are respectively provided. The rollers (19) and the pressing plate (18) are slidably connected to the limit plates (16).