Water resource purification device
The water purification device, designed with multiple pipes and multiple purification boxes, combined with ozone and ultraviolet treatment, solves the problem of unsustainable water purification in existing technologies and achieves continuous and efficient purification without disinfectants.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-27
- Publication Date
- 2026-03-13
AI Technical Summary
Existing water purification methods mostly involve adding disinfectants or using ultraviolet light and ozone, but these methods cannot achieve continuous and efficient purification and also result in excessive use of disinfectants.
It adopts a multi-pipe and multi-purification box design, combined with ozone diversion pipes and ultraviolet irradiation lamps, to continuously purify water resources with ozone. Multiple S-shaped diversion pipes are used to increase the contact time between water and ozone, and ultraviolet irradiation is used to achieve continuous purification.
It achieves continuous and efficient purification of water resources without the participation of disinfectants, improves purification efficiency, reduces the use of disinfectants, and is suitable for continuous water resource treatment.
Smart Images

Figure CN223990973U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the technical field of water purification equipment, specifically to a water purification device. Background Technology
[0002] Water resources are natural freshwater that can be directly used by humans and is constantly renewed, mainly referring to surface water and groundwater on land. The annual replenishment of freshwater bodies is usually used as a quantitative indicator of water resources.
[0003] In the process of water resource treatment, water purification is often required. Existing technologies often involve adding disinfectants, but this requires a relatively large amount of additives. Ultraviolet light and ozone purification are also options, but these require a long treatment time and can only be used for batch purification, making it impossible to carry out continuous and efficient purification operations. Utility Model Content
[0004] The technical problem to be solved by this utility model is to provide a highly efficient water purification device, addressing the shortcomings mentioned in the background art.
[0005] To solve the above-mentioned technical problems, the technical solution provided by this utility model is as follows: a water purification device, including a treatment tank body and a control cabinet, wherein an inlet pipe is connected to the end of the treatment tank body, and multiple purification tanks are connected inside the treatment tank body, wherein a diversion pipe is connected to the inlet pipe extending into the treatment tank body, and multiple first S-shaped guide pipes extending to the bottom of the purification tank near one end of the inlet pipe are connected to the diversion pipe.
[0006] Multiple second S-shaped guide pipes are connected between the multiple purification boxes. The water inlet end of the second S-shaped guide pipe is connected to the top of the purification box, and the water outlet end of the second S-shaped guide pipe extends to the bottom of the purification box. A drain pipe is connected to the rear end of the purification box away from the water inlet pipe.
[0007] The bottom of the main body of the treatment box is connected to multiple ozone diversion pipes. The ozone diversion pipes are connected to multiple air guide pipes that communicate with the bottom of the first S-shaped guide pipe, the bottom of the second S-shaped guide pipe, and the bottom of the purification box. A main one-way valve is connected to the air guide pipe, and an exhaust valve pipe is connected to the top of the purification box.
[0008] Furthermore, the ozone diversion pipe extends to the outside and is connected to an ozone input pipe, on which a first flow control valve is connected to facilitate control of the ozone input.
[0009] Furthermore, water guide pipes are connected to the bottom of the first S-shaped guide pipe, the bottom of the second S-shaped guide pipe, and the bottom of the purification box. An electric control valve is connected to the water guide pipe. A drainage and sewage pipe is connected to the bottom of multiple water guide pipes. The drainage and sewage pipe is connected to a main drainage pipe extending to the outside. A main drainage valve is connected to the main drainage pipe to facilitate drainage and sewage discharge operations.
[0010] Furthermore, a second flow control valve is connected to the water inlet pipe to facilitate control of the water inlet volume.
[0011] Furthermore, a maintenance door is connected to one side of the main body of the processing box, and a sealed observation glass is connected to the maintenance door to facilitate maintenance operations.
[0012] Furthermore, an ultraviolet irradiation lamp is connected to the top of the purification box to facilitate internal ultraviolet irradiation.
[0013] The advantages of this water purification device compared with the prior art are as follows: This device, through the setting of multiple pipes and multiple purification boxes, can perform flowing ozone disinfection on the water resources to be purified, and can carry out water purification operations without the participation of disinfectants, thereby enabling continuous and efficient water purification operations. Attached Figure Description
[0014] Figure 1 This is a schematic diagram of the first structure of a water purification device;
[0015] Figure 2 This is a schematic diagram of the second structure of a water purification device;
[0016] Figure 3 This is a side sectional view of a water purification device.
[0017] As shown in the figure: 1. Treatment tank body; 2. Water inlet pipe; 3. Purification tank; 4. First S-shaped guide pipe; 5. Second S-shaped guide pipe; 6. Drain pipe; 7. Diversion pipe; 8. Ozone diversion pipe; 9. Gas guide pipe; 10. Main check valve; 11. Exhaust valve pipe; 12. Ozone input pipe; 13. First flow control valve; 14. Drainage and sewage pipe; 15. Water guide pipe; 16. Electrically controlled valve; 17. Main drainage pipe; 18. Main drainage valve; 19. Control cabinet; 20. Maintenance door; 21. Sealed observation glass; 22. Ultraviolet irradiation lamp; 23. Second flow control valve. Detailed Implementation
[0018] The present invention will now be described in further detail with reference to the accompanying drawings.
[0019] Combined with appendix Figure 1-3A water purification device includes a treatment tank body 1 and a control cabinet 19. A water inlet pipe 2 is connected to the end of the treatment tank body 1, and a second flow control valve 23 is connected to the water inlet pipe 2. The second flow control valve 23 controls the water flow rate. Multiple purification tanks 3 are connected inside the treatment tank body 1. An ultraviolet (UV) irradiation lamp 22 is connected to the top of each purification tank 3, allowing for prolonged UV irradiation of the inside of the purification tank 3. In practical design, the treatment tank body 1 and the top of the purification tanks 3 can be detachable for easy maintenance and repair of the UV irradiation lamp 22. The UV irradiation lamp 22 needs to be waterproof and moisture-proof, i.e., a transparent waterproof and moisture-proof cover is installed at the bottom of the UV irradiation lamp 22. The water inlet pipe... A diversion pipe 7 is connected to the main body 1 of the treatment tank. The diversion pipe 7 is connected to multiple first S-shaped guide pipes 4 that extend to the bottom of the purification tank 3 near one end of the inlet pipe 2. Multiple second S-shaped guide pipes 5 are connected between the multiple purification tanks 3. The inlet end of the second S-shaped guide pipe 5 is connected to the top of the purification tank 3, and the outlet end of the second S-shaped guide pipe 5 extends to the bottom of the purification tank 3. A drain pipe 6 is connected to the rear end of the purification tank 3 away from the inlet pipe 2. That is, the inlet pipe 2 continuously inputs water for purification. The water passes through multiple first S-shaped guide pipes 4, purification tank 3 and second S-shaped guide pipes 5 in sequence, thereby ensuring that the contact time between the water and the subsequent ozone is increased, so that the water resource purification operation can be carried out continuously and efficiently. Then, the internal ozone continuously purifies the water.
[0020] The bottom of the main body 1 of the treatment tank is connected to multiple ozone diversion pipes 8. Each ozone diversion pipe 8 is connected to multiple air guide pipes 9 that communicate with the bottom of the first S-shaped guide pipe 4, the bottom of the second S-shaped guide pipe 5, and the bottom of the purification tank 3. The connection between the bottom of the first S-shaped guide pipe 4 and the bottom of the second S-shaped guide pipe 5 is set at the bottom bend of the S-shaped guide pipe. A main one-way valve 10 is connected to each air guide pipe 9. An exhaust valve pipe 11 is connected to the top of the purification tank 3, that is, ozone is introduced from the bottom and discharged from the top, thereby purifying the flowing water with ozone. The ozone diversion pipes 8 extend to the outside and are connected to an ozone input pipe 12. A first flow control valve 13 is connected to the ozone input pipe 12. In actual design, the ozone input pipe 12 needs to be externally connected to an ozone generator. The power of the ozone generator needs to be matched with the actual design size of the treatment equipment to ensure that the residual ozone concentration in the water is maintained at 0.1-0.5 mg / L.
[0021] The bottom of the first S-shaped guide pipe 4, the bottom of the second S-shaped guide pipe 5, and the bottom of the purification box 3 are all connected to water guide pipes 15. An electric control valve 16 is connected to the water guide pipe 15. The bottom of multiple water guide pipes 15 are connected to a drainage and sewage pipe 14. The drainage and sewage pipe 14 is connected to a main drainage pipe 17 extending to the outside. A main drainage valve 18 is connected to the main drainage pipe 17. Although most ozone purification processes involve water filtration, some impurities still accumulate over time. Therefore, the drainage and sewage operations are carried out by setting up water guide pipes 15, drainage and sewage pipes 14, and main drainage pipe 17 at the bottom.
[0022] The processing box body 1 is provided with a maintenance door 20 on one side, and a sealed observation glass 21 is provided on the maintenance door 20.
[0023] The present invention and its embodiments have been described above. This description is not restrictive, and the accompanying drawings are only one embodiment of the present invention; the actual structure is not limited thereto. In conclusion, if those skilled in the art are inspired by this description and design similar structures and embodiments without departing from the inventive spirit of the present invention, such designs should fall within the protection scope of the present invention.
Claims
1. A water resource purification device, comprising a treatment box main body (1) and a control cabinet (19), the end of the treatment box main body (1) is connected with a water inlet pipe (2), characterized in that: The processing box body (1) is connected with a plurality of purification boxes (3), the water inlet pipe (2) extends to the processing box body (1) and is connected with a shunt pipe (7), the shunt pipe (7) is connected with a plurality of first S-shaped guide pipes (4) extending to the bottom of the purification box (3) near one end of the water inlet pipe (2); A plurality of second S-shaped guide pipes (5) are connected between the plurality of purification boxes (3), the water inlet end of the second S-shaped guide pipe (5) is in communication with the top of the purification box (3), and the water outlet end of the second S-shaped guide pipe (5) extends to the bottom of the purification box (3) and is connected with a drain pipe (6) at the rear end of the purification box (3) away from one end of the water inlet pipe (2); The bottom of the processing box body (1) is connected with a plurality of ozone shunt pipes (8), the ozone shunt pipe (8) is connected with a plurality of gas guide pipes (9) in communication with the bottom of the first S-shaped guide pipe (4), the bottom of the second S-shaped guide pipe (5) and the bottom of the purification box (3), the gas guide pipe (9) is connected with a main one-way valve (10), and the top of the purification box (3) is connected with an exhaust valve pipe (11).
2. A water resource purification apparatus as claimed in claim 1, wherein: The ozone shunt pipe (8) extends to the outside and is connected with an ozone input pipe (12), and the ozone input pipe (12) is connected with a first flow control valve (13).
3. A water resource purification apparatus as claimed in claim 1, wherein: The bottom of the first S-shaped guide pipe (4), the bottom of the second S-shaped guide pipe (5) and the bottom of the purification box (3) are all connected with a water guide pipe (15), and the water guide pipe (15) is connected with an electric control valve (16), the bottoms of a plurality of water guide pipes (15) are jointly connected with a drain and sewage pipe (14), the drain and sewage pipe (14) is connected with a drain main pipe (17) extending to the outside, and the drain main pipe (17) is connected with a drain main valve (18).
4. A water resource purification apparatus as claimed in claim 1, wherein: The water inlet pipe (2) is connected with a second flow control valve (23).
5. A water resource purification apparatus as claimed in claim 1, wherein: One side of the processing box body (1) is connected with a maintenance door (20), and the maintenance door (20) is connected with a sealing observation glass (21).
6. A water resource purification apparatus as claimed in claim 1, wherein: The top of the purification box (3) is connected with an ultraviolet irradiation lamp (22).