Integrated waterway system with micro-nano bubble generator
By integrating PAC filter cartridges, booster pumps, and gas-liquid mixers into the water system, the problem of slow water flow rate in micro-nano bubble generators has been solved, resulting in increased water flow rate and improved efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-20
- Publication Date
- 2026-03-24
AI Technical Summary
Existing micro-nano bubble generators have a slow water flow rate during use, which cannot keep up with the operating speed and affects work efficiency.
An integrated water circuit system with a micro-nano bubble generator was designed. By combining a PAC filter, a booster pump, and a gas-liquid mixer, bubble water is generated to increase the water flow rate. The system includes components such as gas-liquid mixer one and gas-liquid mixer two, booster pump one and two, and a bubble water high-pressure switch to increase the water flow.
By increasing the water pressure, the water flow rate is improved, thus enhancing efficiency and meeting the needs of daily life and drinking water.
Smart Images

Figure CN224030817U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the micro nano bubble generator technical field, specifically is a kind of integrated waterway system with micro nano bubble generator. BACKGROUND
[0002] Micro nano bubble generator is a kind of equipment for improving domestic tap water quality, removes impurities, peculiar smell, residual chlorine, heavy metal, bacteria, virus and other harmful substances in water by filtration, adsorption, reverse osmosis and other technologies, to provide healthier, purer drinking water;
[0003] In the prior art, the micro nano bubble generator is used by guiding tap water into the waterway board in the micro nano bubble generator, and the water quality in the tap water is purified by the plurality of filter cartridges arranged inside, so that the water quality meets the standard of drinking water.However, the water flow rate after the internal purification of the micro nano bubble generator in the prior art is relatively slow, which cannot keep up with the use speed during use, and thus a certain time is needed to discharge water, thereby affecting the work efficiency of personnel, and thus improvement is needed. UTILITY MODEL CONTENT
[0004] To solve the problems in the above background art, the utility model provides an integrated waterway system with micro nano bubble generator.
[0005] To achieve the above purpose, the utility model provides the following technical scheme: an integrated waterway system with micro nano bubble generator, comprising a plate body, the plate body top is sequentially provided with raw water inlet, purified water outlet, blowdown and pure water outlet, the raw water inlet end is connected with PAC filter cartridge, the PAC filter cartridge water outlet is sequentially connected with water inlet solenoid valve two and booster pump one, the booster pump one outside is sequentially connected with air chamber air inlet valve and check valve one, the booster pump one water outlet is connected with check valve two, the check valve two outside is respectively provided with gas-liquid mixer one and gas-liquid mixer two, the gas-liquid mixer one and gas-liquid mixer two outside are connected with bubble water high pressure switch, the bubble water high pressure switch water outlet is provided with bubble water outlet solenoid valve, the bubble water outlet solenoid valve water outlet is communicated with purified water outlet, the air chamber drainage solenoid valve water outlet is communicated with pure water outlet.
[0006] Preferably, the PAC filter cartridge water outlet is also connected with water inlet solenoid valve one, the water inlet solenoid valve one other end is installed with booster pump two, the booster pump two water outlet is connected with RO membrane water inlet solenoid valve, the RO membrane water inlet solenoid valve outside is connected with RO membrane, the RO membrane outside is provided with post carbon filter cartridge.
[0007] Preferably, the post carbon filter core water outlet is connected with a pure water check valve, the pure water check valve water outlet is connected with a pure water high pressure switch, the pure water high pressure switch outer side is connected with a pure water outlet electromagnetic valve, and the pure water outlet electromagnetic valve is connected with a pure water outlet.
[0008] Preferably, the post carbon filter core outer side is communicated with a pure water membrane washing electromagnetic valve, the pure water membrane washing electromagnetic valve other side is communicated with a booster pump two, the RO membrane outer side is connected with a blowdown electromagnetic valve, and the blowdown electromagnetic valve other end is connected with a blowdown outlet.
[0009] Preferably, the bubble water high pressure switch water outlet is also provided with a gas chamber drainage electromagnetic valve, and the gas chamber drainage electromagnetic valve water outlet is communicated with the pure water outlet.
[0010] Preferably, the raw water inlet and the PAC filter core are respectively provided with a leakage protection valve and a pressure relief protection electromagnetic valve.
[0011] Preferably, the PAC filter core water inlet is connected with a raw water TDS probe source water TDS probe, and the RO membrane and the post carbon filter core are provided with a pure water probe pure water TDS probe.
[0012] Compared with the prior art, the utility model has the advantages that:
[0013] The utility model discloses a gas-liquid mixer one, gas-liquid mixer two and water purification outlet, and raw water is transported to the waterway pipeline on the plate body through the raw water inlet, and the transported raw water is purified and pressurized through the PAC filter core and booster pump one, and the raw water is mixed with the gas entered through the gas chamber inlet valve through the gas-liquid mixer one and gas-liquid mixer two to form bubble water, and then the bubble water is discharged and used for daily life, because the pressure of the bubble water in the waterway plate is large, the water flow increases when releasing, the flow rate is improved, personnel life is convenient, and the working efficiency is improved. ACCURATE DRAWINGS
[0014] Figure 1 It is the whole structure schematic view of the utility model;
[0015] Figure 2 It is the structure schematic view of the side of the utility model;
[0016] Figure 3 It is the structure schematic view of the top of the utility model;
[0017] Figure 4 It is the structure schematic view of the front of the plate body of the utility model;
[0018] Figure 5 It is the structure schematic view of the back of the plate body of the utility model;
[0019] Figure 6This is a block diagram illustrating the overall operation of this utility model.
[0020] In the diagram: 1. Plate; 2. Raw water inlet; 3. Clean water outlet; 4. Sewage outlet; 5. Pure water outlet; 6. PAC filter element; 7. Raw water TDS probe; 8. Booster pump one; 9. Air chamber inlet valve; 10. Check valve one; 11. Check valve two; 12. Gas-liquid mixer one; 13. Gas-liquid mixer two; 14. Aerated water high-pressure switch; 15. Aerated water outlet solenoid valve; 16. Air chamber drain solenoid valve; 17. Inlet solenoid valve one; 18. Booster pump two; 19. RO membrane inlet solenoid valve; 20. RO membrane; 21. Post-carbon filter element; 22. Pure water check valve; 23. Pure water high-pressure switch; 24. Pure water outlet solenoid valve; 25. Pure water membrane washing solenoid valve; 26. Sewage discharge solenoid valve; 27. Inlet solenoid valve two; 28. Leakage protection valve; 29. Pressure relief protection solenoid valve; 30. Pure water TDS probe. Detailed Implementation
[0021] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.
[0022] Example 1
[0023] like Figures 1 to 5 As shown, this is the first embodiment of the present invention, providing an integrated water system with a micro-nano bubble generator, including a plate 1. The top of the plate 1 is sequentially equipped with a raw water inlet 2, a clean water outlet 3, a sewage outlet 4, and a pure water outlet 5. The end of the raw water inlet 2 is connected to a PAC filter element 6. The outlet of the PAC filter element 6 is sequentially connected to an inlet solenoid valve 27 and a booster pump 8. The outside of the booster pump 8 is sequentially connected to an air chamber inlet valve 9 and a one-way valve 10. The outlet of the booster pump 8 is connected to a one-way valve 11. The outside of the one-way valve 11 is respectively provided with a gas-liquid mixer 12 and a gas-liquid mixer 13. The outside of the gas-liquid mixer 12 and the gas-liquid mixer 13 is connected to a bubble water high-pressure switch 14. The outlet of the bubble water high-pressure switch 14 is provided with a bubble water outlet solenoid valve 15. The outlet of the bubble water outlet solenoid valve 15 is connected to the clean water outlet 3. The outlet of the air chamber drain solenoid valve 16 is connected to the pure water outlet 5.
[0024] Tap water is introduced into the water circuit board through raw water inlet 2. The tap water is filtered by PAC filter element 6 to purify the water source. Then, the raw water is pressurized by booster pump 8. At the same time, gas is introduced into the raw water through air chamber inlet valve 9 and one-way valve 10. The raw water and gas flow into gas-liquid mixer 12 and gas-liquid mixer 13 through one-way valve 21. Gas-liquid mixer 12 and gas-liquid mixer 213 mix the raw water and gas components to form sparkling water. The sparkling water is introduced into the pipeline through sparkling water high-pressure switch 14. Sparkling water outlet solenoid valve 15 controls the opening and closing of sparkling water and flows out through the clean water outlet 3 through the faucet for daily use. By changing the raw water into sparkling water, the pressure in the water flow increases, thereby increasing the water flow and flow rate when released, which is convenient for people's daily use and improves work efficiency.
[0025] Example 2
[0026] like Figures 2 to 5 As shown, this embodiment includes the features of embodiment 1. The distinguishing technical feature is that the outlet of the PAC filter element 6 is also connected to an inlet solenoid valve 17. A booster pump 18 is installed at the other end of the inlet solenoid valve 17. The outlet of the booster pump 18 is connected to an RO membrane inlet solenoid valve 19. An RO membrane 20 is connected to the outside of the RO membrane inlet solenoid valve 19. A post-carbon filter element 21 is provided on the outside of the RO membrane 20.
[0027] The raw water purified by PAC filter 6 is divided into two streams. One stream flows into gas-liquid mixer 12 and gas-liquid mixer 23, while the other stream enters the post-carbon filter 21. The raw water is pressurized by booster pump 218. The pressurized raw water is further purified by RO membrane 20 and post-carbon filter 21 to achieve pure water quality for daily drinking water use.
[0028] Among them, the outlet of the post-carbon filter 21 is connected to a pure water one-way valve 22, the outlet of the pure water one-way valve 22 is connected to a pure water high-pressure switch 23, the outside of the pure water high-pressure switch 23 is connected to a pure water outlet solenoid valve 24, and the pure water outlet solenoid valve 24 is connected to the pure water outlet 5.
[0029] The tap water is purified by PAC filter 6, RO membrane 20 and post-carbon filter 21 to reach drinking water quality. The purified water is then controlled by pure water check valve 22 and pure water high pressure switch 23. Finally, the pure water is discharged from the tap through pure water outlet solenoid valve 24 and pure water outlet 5 for people's daily use.
[0030] The back carbon filter element 21 is connected with a pure water membrane washing electromagnetic valve 25 on the outside, the other side of the pure water membrane washing electromagnetic valve 25 is connected with a booster pump two 18, the RO membrane 20 is connected with a blowdown electromagnetic valve 26 on the outside, and the other end of the blowdown electromagnetic valve 26 is connected with a blowdown port 4;
[0031] When the RO membrane 20 is cleaned, the pure water one-way valve 22 is closed, then the pure water membrane washing electromagnetic valve 25 and the blowdown electromagnetic valve 26 are opened, and the water source pressurized by the booster pump two 18 is used to clean the RO membrane 20, so that the water source that cannot enter the inside of the RO membrane 20 is discharged through the blowdown electromagnetic valve 26 and the blowdown port 4, and part of the water source enters the inside of the booster pump two 18 through the RO membrane 20, the back carbon filter element 21 and the pure water membrane washing electromagnetic valve 25, is re-pressurized by the booster pump two 18, and is cleaned again, until the water source used for cleaning is discharged, so that the RO membrane 20 is continuously cleaned in a reflux mode, the water source used for cleaning is saved, and the cleaning effect is improved.
[0032] The water outlet of the bubble water high-pressure switch 14 is further provided with an air chamber drainage electromagnetic valve 16, and the water outlet of the air chamber drainage electromagnetic valve 16 is connected with a pure water outlet 5 in communication;
[0033] By closing the bubble water outlet electromagnetic valve 15, the water inlet electromagnetic valve one 17 and the air chamber air inlet valve 9, the water source is introduced into the PAC filter element 6 through the raw water inlet 2, the water source enters the air-liquid mixer one 12 and the air-liquid mixer two 13 through the PAC filter element 6, and the water source in the air-liquid mixer one 12 and the air-liquid mixer two 13 is discharged through the air chamber drainage electromagnetic valve 16 and the blowdown port 4, so as to avoid the use of residual water source in the waterway board.
[0034] Embodiment 3
[0035] As shown in Figure 4 and Figure 5 , the embodiment includes the features of embodiment 1, and the difference is that a water leakage protection valve 28 and a pressure relief protection electromagnetic valve 29 are arranged between the raw water inlet 2 and the PAC filter element 6 respectively;
[0036] The water leakage protection valve 28 and the pressure relief protection electromagnetic valve 29 prevent the pipe connected between the raw water inlet 2 and the PAC filter element 6 from leaking and having too high water pressure, so as to affect the water use efficiency of personnel.
[0037] The PAC filter element 6 is connected with a raw water TDS probe 7 at the water inlet, and a pure water TDS probe 30 is arranged between the RO membrane 20 and the back carbon filter element 21;
[0038] The TDS value of the raw water after being filtered by the PAC filter element 6 is detected by the raw water TDS probe 7, then the raw water is further purified by the RO membrane 20 when using pure water, and the TDS value of the purified water is detected by the pure water TDS probe 30, the two TDS value data are directly outputted and displayed to inform the user by comparing the two groups of data, and the filtration comparison is realized.
[0039] The components of the plate body 1 are connected with each other by water pipes.
[0040] The water source is transported by the water pipes, without the need of additional pipes, so that miniaturization and integration are realized, and the volume of the micro-nano bubble generator is effectively reduced.
[0041] It should be noted that, in the present document, relational terms such as first and second and the like can be used solely to distinguish one entity or action from another entity or action without necessarily requiring or implying any actual such relationship or order between such entities or actions. Moreover, the terms "comprises", "comprising", or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.
[0042] Although the embodiments of the present application have been shown and described, it is to be understood that various changes, modifications, substitutions and variations can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.
Claims
1. An integrated water system with a micro / nano bubble generator, comprising a plate (1) and a gas chamber drain solenoid valve (16), characterized in that: The top of the plate (1) is sequentially equipped with a raw water inlet (2), a purified water outlet (3), a sewage outlet (4), and a pure water outlet (5). A PAC filter element (6) is connected to the end of the raw water inlet (2). A second inlet solenoid valve (31) and a booster pump (8) are sequentially connected to the outlet of the PAC filter element (6). An air chamber inlet valve (9) and a check valve (10) are sequentially connected to the outside of the booster pump (8). A second check valve (11) is connected to the outlet of the booster pump (8). Gas-liquid mixer 1 (12) and gas-liquid mixer 2 (13) are respectively provided on the outside of the one-way valve 2 (11). Gas-liquid mixer 1 (12) and gas-liquid mixer 2 (13) are connected to the outside of the gas-liquid mixer 1 (12) and gas-liquid mixer 2 (13). A bubble water high-pressure switch (14) is provided at the outlet of the bubble water high-pressure switch (14). The outlet of the bubble water outlet solenoid valve (15) is connected to the purified water outlet (3). The outlet of the air chamber drain solenoid valve (16) is connected to the pure water outlet (5).
2. The integrated water system with a micro / nano bubble generator according to claim 1, characterized in that: The outlet of the PAC filter element (6) is also connected to an inlet solenoid valve (17). The other end of the inlet solenoid valve (17) is equipped with a booster pump (18). The outlet of the booster pump (18) is connected to an RO membrane inlet solenoid valve (19). An RO membrane (20) is connected to the outside of the RO membrane inlet solenoid valve (19). A post-carbon filter element (21) is installed on the outside of the RO membrane (20).
3. The integrated water system with a micro / nano bubble generator according to claim 2, characterized in that: The outlet of the post-carbon filter (21) is connected to a pure water check valve (22), the outlet of the pure water check valve (22) is connected to a pure water high-pressure switch (23), the outside of the pure water high-pressure switch (23) is connected to a pure water outlet solenoid valve (24), and the pure water outlet solenoid valve (24) is connected to the pure water outlet (5).
4. The integrated water system with a micro / nano bubble generator according to claim 2, characterized in that: The outer side of the post-carbon filter element (21) is connected to a pure water washing membrane solenoid valve (25), and the other side of the pure water washing membrane solenoid valve (25) is connected to a booster pump (18). The outer side of the RO membrane (20) is connected to a drain solenoid valve (26), and the other end of the drain solenoid valve (26) is connected to the drain port (4).
5. An integrated water system with a micro / nano bubble generator according to claim 1, characterized in that: The outlet of the high-pressure switch (14) for the bubble water is also equipped with a gas chamber drain solenoid valve (16), and the outlet of the gas chamber drain solenoid valve (16) is connected to the pure water outlet (5).
6. The integrated water system with a micro / nano bubble generator according to claim 1, characterized in that: A water leakage protection valve (28) and a pressure relief protection solenoid valve (29) are respectively installed between the raw water inlet (2) and the PAC filter element (6).
7. An integrated water system with a micro / nano bubble generator according to claim 2, characterized in that: A source water TDS probe (7) is connected to the inlet of the PAC filter element (6), and a pure water probe (30) is provided between the RO membrane (20) and the post-carbon filter element (21).