Waterway system and water production equipment
By designing drinking water supply, hydrogen production, and hydrogen mixing devices within the water system, the problem of low hydrogen solubility in hydrogen water was solved, enabling convenient access to and diversified use of high-concentration hydrogen-rich water.
Patent Information
- Application Number
- CN202520423847.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-11
- Publication Date
- 2026-02-24
- Estimated Expiration
- 2035-03-11
AI Technical Summary
In existing hydrogen water preparation devices, hydrogen exists in the form of bubbles, resulting in a low hydrogen concentration in drinking water and an inability to efficiently combine with hydrogen.
Design a water system including a drinking water supply device, a hydrogen production device, and a hydrogen mixing device. Hydrogen is produced by electrolyzing water and then fully mixed with drinking water in the hydrogen mixing device to form high-concentration hydrogen-rich water. The hydrogen is then evenly dispersed by an aerator to improve dissolution efficiency.
It achieves full dissolution of hydrogen in water, increases hydrogen concentration, and allows users to easily obtain high-concentration hydrogen-rich water, enhancing ease of use and functional versatility, and avoiding the hassle of purchasing multiple devices.
Smart Images

Figure CN223929961U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of water treatment technology, and in particular to a water system and water production equipment. Background Technology
[0002] With the improvement of people's living standards and the enhancement of health awareness, health preservation has gradually become a focus of attention. Hydrogen, as a novel antioxidant, has shown great potential in the field of healthcare in recent years. Studies have shown that hydrogen has selective antioxidant, anti-inflammatory, and anti-apoptotic effects, and has potential therapeutic and preventative effects on various diseases. Therefore, conveniently obtaining hydrogen and applying it to daily life has become a new demand for people pursuing a healthy lifestyle.
[0003] Currently, commercially available hydrogen water preparation devices typically mix water and hydrogen by directly injecting them into a water container. However, this mixing method has the following drawbacks: hydrogen often exists in the form of bubbles, which cannot be efficiently combined with drinking water, resulting in a low hydrogen concentration in the drinking water. Utility Model Content
[0004] This application provides a water system and water purification equipment to solve the problem of low hydrogen concentration in drinking water in related technologies. The technical solution is as follows:
[0005] This application provides a waterway system, including:
[0006] Health-preserving kettle;
[0007] Drinking water supply equipment;
[0008] Hydrogen production apparatus, the hydrogen production apparatus being used to prepare hydrogen gas; and
[0009] A hydrogen mixing device, wherein the inlet of the hydrogen mixing device is connected to the water outlet of the drinking water supply device and the hydrogen outlet of the hydrogen production device, and the outlet of the hydrogen mixing device is connected to the health pot, and the hydrogen mixing device is used to mix drinking water and hydrogen.
[0010] In one embodiment, the water system further includes:
[0011] A wastewater plug, the inlet of which is connected to the outlet of the drinking water supply device, and the outlet of which is connected to the inlet of the hydrogen mixing device.
[0012] In one embodiment, the hydrogen outlet of the hydrogen production device is connected to the health-preserving kettle.
[0013] In one embodiment, the health-preserving kettle is equipped with an aerator, which is connected to the hydrogen outlet of the hydrogen production device and the health-preserving kettle.
[0014] In one embodiment, the water outlet of the drinking water supply device is connected to the health-preserving kettle.
[0015] In one embodiment, the water system further includes:
[0016] The first valve has a first inlet connected to the outlet of the drinking water supply device, a second inlet connected to the hydrogen outlet of the hydrogen production device, and an outlet connected to the inlet of the hydrogen mixing device.
[0017] The second valve has its inlet connected to the outlet of the first valve, and its outlet connected to the health pot.
[0018] In one embodiment, the water system further includes:
[0019] The flow meter has its inlet connected to the outlet of the first valve and its outlet connected to the inlet of the hydrogen mixing device and the inlet of the second valve. The flow meter is used to monitor the water output of the drinking water supply device. When the flow meter detects that the health pot has reached the set water volume, either the first valve or the second valve is turned off.
[0020] In one embodiment, the water system further includes:
[0021] A booster pump is provided, with its inlet connected to the outlet of the first valve and its outlet connected to the inlet of the hydrogen mixing device and the inlet of the second valve. The booster pump is shut off when the flow meter detects that the health pot has reached the set water volume.
[0022] In one embodiment, the water system further includes:
[0023] A pure water tank, the outlet of which is connected to the hydrogen production device.
[0024] In one embodiment, the water system further includes:
[0025] The third valve has its inlet connected to the outlet of the booster pump and its outlet connected to the purified water tank.
[0026] This application also provides a water production device, including the water system described above.
[0027] The advantages or beneficial effects of the above technical solutions include at least the following:
[0028] This utility model's water system provides drinking water through a water supply device. A hydrogen production device generates hydrogen gas through water electrolysis or other hydrogen production technologies. The generated hydrogen gas is supplied to a hydrogen mixing device through the hydrogen outlet of the hydrogen production device. The hydrogen mixing device thoroughly mixes the drinking water and hydrogen gas in a specific ratio, ensuring that the hydrogen gas is fully dissolved in the water, forming hydrogen-rich water with a higher hydrogen concentration. This hydrogen-rich water flows into a health-preserving kettle for user consumption, allowing users to conveniently obtain hydrogen-rich water and improving its usability. Furthermore, users can heat, brew tea, cook porridge, etc., as needed, making its functionality more diverse. Finally, combining the health-preserving kettle and the hydrogen production device avoids the hassle of users purchasing and using multiple separate devices, enhancing the practicality and convenience of the system. In summary, this water system, by integrating a health-preserving kettle, a water supply device, a hydrogen production device, and a hydrogen mixing device, solves the problem of low hydrogen concentration in drinking water provided by existing products on the market. Users can conveniently obtain hydrogen-rich water with a higher hydrogen concentration and enjoy the health benefits of hydrogen.
[0029] The above overview is for illustrative purposes only and is not intended to be limiting in any way. In addition to the illustrative aspects, embodiments, and features described above, further aspects, embodiments, and features of this application will become readily apparent from the accompanying drawings and the following detailed description. Attached Figure Description
[0030] In the accompanying drawings, unless otherwise specified, the same reference numerals throughout the various drawings denote the same or similar parts or elements. These drawings are not necessarily drawn to scale. It should be understood that these drawings depict only some embodiments disclosed in this application and should not be construed as limiting the scope of this application.
[0031] Figure 1 This is a schematic diagram of the waterway structure of the waterway system according to the first embodiment of this utility model;
[0032] Figure 2 This is a schematic diagram of the waterway structure of the waterway system according to the second embodiment of this utility model.
[0033] Figure Labels
[0034] 1. Health-preserving kettle; 2. Drinking water supply device; 3. Hydrogen production device; 4. Hydrogen mixing device; 5. Wastewater plug; 6. Aerator; 7. First valve; 8. Second valve; 9. Flow meter; 10. Booster pump; 20. Pure water tank; 201. Drain outlet; 30. Third valve; 40. Liquid level detection device; 50. Water seal cover; 60. TDS detector; 70. First check valve; 80. Second check valve; 90. Resin filter element; 100. UV lamp. Detailed Implementation
[0035] In the following description, only certain exemplary embodiments are briefly described. As those skilled in the art will recognize, the described embodiments can be modified in various ways without departing from the spirit or scope of this application. Therefore, the drawings and description are considered to be exemplary in nature and not restrictive.
[0036] See Figures 1-2 This invention illustrates a preferred embodiment of a water system comprising:
[0037] Health-preserving kettle 1;
[0038] Drinking water supply device 2;
[0039] Hydrogen production unit 3, used to prepare hydrogen gas; and
[0040] The hydrogen mixing device 4 has its inlet connected to the outlet of the drinking water supply device 2 and the hydrogen outlet of the hydrogen production device 3, and its outlet connected to the health pot 1. The hydrogen mixing device 4 is used to mix drinking water and hydrogen.
[0041] This utility model's water system provides drinking water through a water supply device 2. A hydrogen production device 3 generates hydrogen gas through water electrolysis or other hydrogen production technologies. The generated hydrogen gas is supplied to a hydrogen mixing device 4 through the hydrogen outlet of the hydrogen production device 3. The hydrogen mixing device 4 thoroughly mixes the drinking water and hydrogen gas in a certain proportion, ensuring that the hydrogen gas is fully dissolved in the water, forming hydrogen-rich water with a higher hydrogen concentration. The hydrogen-rich water flows into a health-preserving kettle 1 for user use, allowing users to conveniently obtain hydrogen-rich water and improving its usability. Furthermore, users can heat, brew tea, cook porridge, etc., as needed, making its functionality more diverse. Finally, combining the health-preserving kettle 1 and the hydrogen production device 3 avoids the hassle of users purchasing and using multiple independent devices, improving the practicality and convenience of the equipment. In summary, this water system, by integrating the health-preserving kettle 1, the water supply device 2, the hydrogen production device 3, and the hydrogen mixing device 4, solves the problem of low hydrogen concentration in drinking water provided by existing products on the market. Users can conveniently obtain hydrogen-rich water with a higher hydrogen concentration and enjoy the health benefits of hydrogen.
[0042] In one embodiment, the drinking water supply device 2 can be a bottled water device or other purified water device.
[0043] In one embodiment, the hydrogen production device 3 can be an electrolyzer or other existing hydrogen production equipment.
[0044] See Figures 1-2 In one embodiment, the water system further includes:
[0045] Wastewater plug 5 has its inlet connected to the outlet of the drinking water supply device 2, and its outlet connected to the inlet of the hydrogen mixing device 4. By placing wastewater plug 5 in the connecting pipeline between the outlet of the drinking water supply device 2 and the inlet of the hydrogen mixing device 4, wastewater plug 5 can prevent wastewater or impurities from flowing back to the drinking water supply device 2, ensuring that the drinking water is not contaminated. Secondly, by adjusting the opening and closing degree of wastewater plug 5, the water flow can be controlled to ensure that the hydrogen mixing device 4 obtains stable water pressure and flow rate. Thirdly, when maintenance or repair is required, wastewater plug 5 can cut off the water flow, facilitating operation without affecting other parts. In addition, wastewater plug 5 can filter or block large particulate impurities, protecting the hydrogen mixing device 4 and other equipment from damage.
[0046] See Figures 1-2 In one embodiment, the hydrogen outlet of the hydrogen generating device 3 is connected to the health pot 1 so that the hydrogen generated by the hydrogen generating device 3 can be directly injected into the health pot 1. At the same time, it can also be transported to the health pot 1 through the hydrogen mixing device 4 to increase the hydrogen concentration of the water in the health pot 1.
[0047] See Figures 1-2 In one embodiment, the health-preserving kettle 1 is equipped with an aerator 6, which is connected to the hydrogen outlet of the hydrogen generator 3 and the health-preserving kettle 1. Thus, the aerator 6 evenly disperses the hydrogen generated by the hydrogen generator 3 into the water in the health-preserving kettle 1, ensuring that the hydrogen is fully dissolved and improving the concentration and effect of the hydrogen water. Secondly, the aerator 6 allows the hydrogen to enter the water in the form of tiny bubbles, increasing the contact area between the hydrogen and water, thereby improving the dissolution efficiency of the hydrogen. Furthermore, the aerator 6 generates bubbles, agitating the water and promoting the mixing of hydrogen and water, ensuring a uniform distribution of hydrogen water and avoiding localized excessively high or low concentrations. Additionally, the uniform dispersion and efficient dissolution achieved by the aerator 6 improve the quality of the hydrogen water, making it more suitable for health preservation or tea extraction.
[0048] See Figures 1-2In one embodiment, the outlet of the water supply device 2 is connected to the health pot 1, so that the water output from the water supply device 2 can be directly delivered to the health pot 1, thus directly supplying the health pot 1 with drinking water to meet other usage needs of the health pot 1. Secondly, when using the health pot 1 to brew tea, the water supply device 2 directly supplies water to the health pot 1 until the set water volume is reached, and then the tea brewing program of the health pot 1 is started. At the same time, hydrogen is generated by the hydrogen generator 3 and the generated hydrogen is directly or indirectly delivered to the health pot 1, so that the hydrogen dissolves in the tea water of the health pot 1. Since hydrogen has an antioxidant effect, it can protect the active ingredients in the tea from being oxidized and destroyed, and at the same time promote the release of beneficial components such as polyphenols and amino acids in the tea, which not only improves the taste of the tea soup, but also increases the nutritional value of the tea soup. In summary, this water system, by combining precise control and hydrogen-assisted extraction, effectively solves the problem that traditional health pots cannot fully release the beneficial components of tea during the tea extraction process. This not only improves the taste and nutritional value of the tea soup, but also brings users a more convenient and healthier tea-drinking experience.
[0049] See Figures 1-2 In one embodiment, the water system further includes:
[0050] The first valve 7 has its first inlet connected to the outlet of the drinking water supply device 2, its second inlet connected to the hydrogen outlet of the hydrogen production device 3, and its outlet connected to the inlet of the hydrogen mixing device 4.
[0051] The second valve 8 has its inlet connected to the outlet of the first valve 7, and its outlet connected to the health pot 1. Thus, when the health pot 1's water supply function is activated, the first inlet of the first valve 7 is opened, the second inlet is closed, and the outlet is opened. Simultaneously, both the inlet and outlet of the second valve 8 are opened, allowing the drinking water from the water supply device 2 to be directly supplied to the health pot 1. When the room temperature hydrogen water function is activated, the first inlet, second inlet, and outlet of the first valve 7 are all opened, while both the inlet and outlet of the second valve 8 are closed. This allows the drinking water from the water supply device 2 to be supplied to the hydrogen mixing device 4, and simultaneously allows the hydrogen produced by the hydrogen generator 3 to be supplied to the hydrogen mixing device 4. The hydrogen mixing device 4 then thoroughly mixes the drinking water and hydrogen before supplying it to the health pot 1. In other words, the first valve 7 controls the selective input of drinking water and hydrogen. It can selectively open or close the input channels as needed. For example, when preparing room-temperature hydrogen water, the first valve 7 can open both the drinking water and hydrogen channels simultaneously; when only ordinary drinking water is needed, the hydrogen channel can be closed. Furthermore, by precisely controlling the opening and closing time and flow rate of the first valve 7, it can ensure that drinking water and hydrogen are mixed in an appropriate ratio, thereby guaranteeing that the concentration of hydrogen-containing water meets health requirements. The second valve 8 controls the direct flow of drinking water to the health pot 1.
[0052] See Figures 1-2 In one embodiment, the water system further includes:
[0053] Flow meter 9 is connected to the outlet of the first valve 7 via its inlet. The outlet of flow meter 9 is connected to the inlet of the hydrogen mixing device 4 and the inlet of the second valve 8. Flow meter 9 monitors the water output of the water supply device 2. When flow meter 9 detects that the health pot 1 has reached the set water volume, either the first valve 7 or the second valve 8 is closed. Thus, in the case of preparing hydrogen water, flow meter 9 monitors the water output of the water supply device 2 in real time until the health pot 1 reaches the set water volume, and the water system control device controls the first valve 7 to close based on the feedback information from flow meter 9. When ordinary drinking water is needed, flow meter 9 monitors the water output of the water supply device 2 in real time until the health pot 1 reaches the set water volume, and the water system control device controls the second valve 8 to close based on the feedback information from flow meter 9. In other words, by monitoring the water output of the water supply device 2 in real time through flow meter 9, quantitative water supply is achieved, precisely controlling the amount of water entering the health pot 1, ensuring the operating efficiency of the water system and the quality of the tea.
[0054] See Figures 1-2 In one embodiment, the water system further includes:
[0055] Booster pump 10 has its inlet connected to the outlet of the first valve 7, and its outlet connected to the inlet of the hydrogen mixing device 4 and the inlet of the second valve 8. When the flow meter 9 detects that the health pot 1 has reached the set water volume, booster pump 10 shuts off. Thus, booster pump 10 can deliver water from the drinking water supply device 2 to the health pot 1, ensuring on-demand water delivery and avoiding over- or under-supply. Secondly, by controlling the water flow, booster pump 10 assists the operation of the drinking water supply device 2 and the health pot 1, ensuring the smooth operation of the water system. Furthermore, booster pump 10 can increase water pressure, allowing water to enter the hydrogen mixing device 4 at higher pressure and flow rate, thereby improving water production efficiency and increasing the water output per unit time. Additionally, booster pump 10 can automatically adjust its operating status based on feedback information from the flow meter 9, maintaining stable system pressure and preventing equipment failure or unstable water quality due to pressure fluctuations.
[0056] Of course, in other embodiments, other ordinary water pumps can be used to replace the above-mentioned booster pump 10, as long as they can smoothly deliver the drinking water output from the drinking water supply device 2 to the health pot 1.
[0057] See Figures 1-2 In one embodiment, the water system further includes:
[0058] The purified water tank 20 has its outlet connected to the hydrogen production device 3 to provide a purified water source. Using purified water avoids impurities or minerals in the water from affecting the hydrogen production process, ensuring that the hydrogen production device 3 can produce hydrogen efficiently and stably, thereby improving the purity and quality of the hydrogen produced by the hydrogen production device 3. In addition, purified water can reduce the accumulation of scale and impurities inside the hydrogen production device 3, which helps to extend the service life of the hydrogen production device 3 and other related equipment. Furthermore, since purified water is used in the hydrogen production and tea extraction processes, it ensures the purity and taste of the hydrogen-rich water and tea, improving the quality of the final tea beverage.
[0059] See Figure 2 In one embodiment, the water system further includes:
[0060] The third valve 30 has its inlet connected to the outlet of the booster pump 10 and its outlet connected to the purified water tank 20. The third valve 30 controls the flow of water into the purified water tank 20 by controlling the passage between the outlet of the booster pump 10 and the purified water tank 20.
[0061] See Figure 1In one embodiment, the purified water tank 20 is provided with a detachable sealing cap 50, which can cover the water inlet of the purified water tank 20. The purified water tank 20 is provided with a liquid level detection device 40, which is used to monitor the water level in the purified water tank 20. When the liquid level detection device 40 detects that the purified water tank 20 is at a low liquid level, the control device of the water circuit system controls the water circuit system to issue a water filling reminder message. Thus, when the liquid level detection device 40 detects that the purified water tank 20 is at a low liquid level, the control device issues a water filling reminder message based on the low liquid level feedback information from the liquid level detection device 40, so that the user can open the sealing cap 50 and add water to the purified water tank 20 in time according to the reminder message.
[0062] See Figure 2 In one embodiment, a liquid level detection device 40 is provided on the pure water tank 20, and the liquid level detection device 40 is used to monitor the water level in the pure water tank 20.
[0063] When the liquid level detection device 40 detects that the pure water tank 20 is at a low liquid level, the first inlet and outlet of the first valve 7 are opened, and the inlet and outlet of the booster pump 10 and the third valve 30 are opened, so that the water output by the drinking water supply device 2 can be delivered to the pure water tank 20.
[0064] When the liquid level detection device 40 detects that the pure water tank 20 is at a high liquid level, the first valve 7, the booster pump 10 and the second valve 8 are closed to block the water output from the drinking water supply device 2 from being delivered to the pure water tank 20.
[0065] In one embodiment, the liquid level detection device 40 can be a float-type detection device or a water level gauge.
[0066] See Figure 2 In one embodiment, the pure water tank 20 has a drain outlet 201 for discharging pure water from the pure water tank 20.
[0067] The water system also includes:
[0068] A water-sealing plug (not shown in the figure) is detachably installed at the drain outlet 201. The water-sealing plug can seal the drain outlet 201. Thus, by removing the water-sealing plug, the pure water in the pure water tank 20 can be discharged, making it convenient to change the water in the pure water tank 20.
[0069] See Figures 1-2 In one embodiment, the water system further includes:
[0070] The first one-way valve 70 connects the outlet of the second valve 8 and the health pot 1, ensuring that water flows into the health pot 1 from the second valve 8 in one direction, avoiding water backflow and contamination. In addition, the first one-way valve 70 can also maintain the stability of the internal pressure of the system and prevent pressure fluctuations from affecting the operation of the equipment.
[0071] The second one-way valve 80 connects the hydrogen outlet of the hydrogen generator 3 and the health pot 1, ensuring that hydrogen flows from the hydrogen generator 3 into the health pot 1 in one direction, avoiding the safety hazards caused by hydrogen backflow. In addition, the second one-way valve 80 can also ensure that hydrogen enters the health pot 1 smoothly, maintain the hydrogen concentration in the hydrogen water, and improve the tea extraction effect.
[0072] See Figure 1 In one embodiment, the pure water tank 20 is further provided with a resin filter element 90. The inlet of the resin filter element 90 is connected to the water inlet of the pure water tank 20, and the outlet of the resin filter element 90 is connected to the inner cavity of the pure water tank 20. The resin filter element 90 is used to filter and purify the water entering the pure water tank 20 to improve the purity of the water in the pure water tank 20 so as to meet the hydrogen production requirements of the hydrogen production device 3.
[0073] See Figure 2 In one embodiment, the pure water tank 20 is further provided with a resin filter element 90. The inlet of the resin filter element 90 is connected to the outlet of the third valve 30, and the outlet of the resin filter element 90 is connected to the inner cavity of the pure water tank 20. The resin filter element 90 is used to filter and purify the water entering the pure water tank 20 to improve the purity of the water in the pure water tank 20 so as to meet the hydrogen production requirements of the hydrogen production device 3.
[0074] In one embodiment, the water system further includes:
[0075] The TDS detector 60 is installed in the purified water tank 20. The TDS detector 60 monitors the water quality within the purified water tank 20. When the TDS detector 60 detects that the TDS level in the purified water tank 20 is higher than a set value, the water system issues a filter replacement reminder. Thus, when the TDS detector 60 detects poor water quality in the purified water tank 20 (i.e., the TDS level in the purified water tank 20 is higher than the set value), the control device issues a filter replacement reminder based on the feedback from the TDS detector 60, allowing the user to replace the resin filter 90 in a timely manner and ensuring that the resin filter 90 can effectively filter and purify the water entering the purified water tank 20.
[0076] See Figures 1-2In one embodiment, the inner cavity of the pure water tank 20 is equipped with a UV lamp 100, which is connected to a control device. The UV lamp 100 is used to sterilize and disinfect the water in the pure water tank 20 to ensure the safety of the pure water in the pure water tank and to ensure the normal operation and lifespan of the electrolytic cell.
[0077] See Figure 1 The working principle of the water system in the first embodiment of this utility model is as follows:
[0078] The health pot 1 dispenses water in a measured amount: Under the control of the control device, the second valve 8 is opened (that is, both the inlet and outlet of the second valve 8 are open), the first inlet of the first valve 7 is opened, the outlet of the first valve 7 is opened, the second inlet of the first valve 7 is closed, and the booster pump 10 is turned on. When a certain amount of water passes through the flow meter 9, the second valve 8 is closed, the first valve 7 is closed, and the booster pump 10 is turned off.
[0079] Room temperature hydrogen water: Under the control of the control device, the second valve 8 is closed and the first valve 7 is opened (that is, the first inlet, the second inlet and the outlet of the first valve 7 are all open). The booster pump 10 is turned on, and hydrogen gas enters the water in the health pot 1 through the aerator 6 and the hydrogen mixing device 4 respectively to form high concentration hydrogen water. When a certain amount of water passes through the flow meter 9, the second valve 8 is closed, the first valve 7 is closed, and the booster pump 10 is turned off.
[0080] Hydrogen water tea extraction: Under the control of the control device, the second valve 8 opens, the first inlet of the first valve 7 opens, the first valve 7 opens, the booster pump 10 opens, and the hydrogen generator 3 is started to produce hydrogen. The hydrogen enters the water in the health pot 1 through the aerator 6 and the hydrogen mixing device 4 to form high-concentration hydrogen water. When a certain amount of water passes through the flow meter 9, the second valve 8 closes, the first valve 7 closes, and the booster pump 10 closes. The tea brewing program of the health pot 1 is started, and the hydrogen generator 3 continues to work to continuously produce hydrogen. The hydrogen is dissolved into the water through the aerator 6. When the tea brewing program is completed and the health pot 1 enters the heat preservation program, the hydrogen generator 3 is turned off.
[0081] To refill the purified water tank 20: Unscrew the sealing cap 50 of the purified water tank 20, add a certain amount of purified water (TDS < 10 mg / L), and then tighten the sealing cap 50.
[0082] Water change in purified water tank 20: Open the water seal plug of purified water tank 20, wait for the water in purified water tank 20 to drain out, put the water seal plug back in, unscrew the water seal cap 50 of purified water tank 20, add a certain amount of purified water (TDS < 10 mg / L), and then tighten the water seal cap 50.
[0083] When the liquid level detection device 40 of the pure water tank 20 is at a low water level, the hydrogen generator 3 stops working, and the display screen will continuously alarm when powered on. When the liquid level detection device 40 of the pure water tank 20 is above the low water level, the hydrogen generator 3 resumes working, and the display screen will stop alarming when powered on. When powered on, the UV lamp 100 will remain on.
[0084] See Figure 2 The working principle of the water system in the second embodiment of this utility model is as follows:
[0085] The health pot 1 dispenses water in a measured quantity: Under the control of the control device, the second valve 8 opens, the third valve 30 closes, the first inlet of the first valve 7 opens, the outlet of the first valve 7 opens, the second inlet of the first valve 7 closes, and the booster pump 10 opens. When a certain amount of water passes through the flow meter 9, the second valve 8 closes, the third valve 30 closes, the first valve 7 closes, and the booster pump 10 closes.
[0086] Room temperature hydrogen water: Under the control of the control device, the second valve 8 is closed, the third valve 30 is closed, and the first valve 7 is opened. Hydrogen gas enters the water in the health pot 1 through the aerator 6 and the hydrogen mixing device 4 respectively, forming high-concentration hydrogen water. When a certain amount of water passes through the flow meter 9, the second valve 8 is closed, the third valve 30 is closed, the first valve 7 is closed, and the booster pump 10 is turned off.
[0087] Hydrogen water tea extraction: Under the control of the control device, the second valve 8 opens, the third valve 30 closes, the first valve 7 opens, and the booster pump 10 opens. At the same time, the hydrogen generator 3 is started to produce hydrogen gas. The hydrogen gas enters the water in the health pot 1 through the aerator 6 and the hydrogen mixing device 4 to form high-concentration hydrogen water. When a certain amount of water passes through the flow meter 9, the second valve 8 closes, the third valve 30 closes, the first valve 7 closes, and the booster pump 10 closes. The tea brewing program of the health pot 1 is started. At the same time, the hydrogen generator 3 continues to work to continuously produce hydrogen gas, which is dissolved into the water through the aerator 6. When the tea brewing program is completed and the health pot 1 enters the heat preservation program, the hydrogen generator 3 is turned off.
[0088] Pure water tank 20 water replenishment: When the liquid level detection device 40 in the pure water tank 20 is at a low water level, the second valve 8 is closed, the third valve 30 is open, the first inlet of the first valve 7 is open, the outlet of the first valve 7 is open, the second inlet of the first valve 7 is closed, and the booster pump 10 is turned on. When the liquid level detection device 40 in the pure water tank 20 is at a high water level, the second valve 8 is closed, the third valve 30 is closed, the first valve 7 is closed, and the booster pump 10 is turned off.
[0089] Water change in purified water tank 20: Open the sealing plug of purified water tank 20, wait for the water in purified water tank 20 to drain out, then put the sealing plug back in. Under the control of the control device, the second valve 8 closes, the third valve 30 opens, the first inlet of the first valve 7 opens, the outlet of the first valve 7 opens, the second inlet of the first valve 7 closes, and the booster pump 10 turns on. When the liquid level detection device 40 of purified water tank 20 is at a high water level, the second valve 8 closes, the third valve 30 closes, the first valve 7 closes, and the booster pump 10 turns off.
[0090] When the TDS detector 60 of the purified water tank 20 displays a TDS value greater than the set value, the display screen will remind you to replace the resin filter 90. The UV lamp 100 will remain on when powered on.
[0091] A preferred embodiment of this utility model also provides a water production device, including the above-mentioned water system.
[0092] This utility model's water purification equipment, employing the aforementioned water system, also relies on a drinking water supply device 2 providing a drinking water source. A hydrogen production device 3 generates hydrogen gas through water electrolysis or other hydrogen production technologies. The generated hydrogen gas is supplied to a hydrogen mixing device 4 through the hydrogen outlet of the hydrogen production device 3. The hydrogen mixing device 4 thoroughly mixes the drinking water and hydrogen gas in a certain proportion, forming hydrogen-rich water with a higher hydrogen concentration. This hydrogen-rich water flows into the health pot 1 for user consumption, allowing users to conveniently obtain hydrogen-rich water and improving its usability. Furthermore, users can heat, brew tea, cook porridge, etc., as needed, making its functionality more diverse. Finally, combining the health pot 1 and the hydrogen production device 3 avoids the hassle of users purchasing and using multiple independent devices, enhancing the equipment's practicality and convenience. In summary, this water system, by integrating the health pot 1, drinking water supply device 2, hydrogen production device 3, and hydrogen mixing device 4, solves the problem of low hydrogen concentration in drinking water provided by existing products on the market. Users can conveniently obtain hydrogen-rich water with a higher hydrogen concentration and enjoy the health benefits of hydrogen.
[0093] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of this application. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. Moreover, without contradiction, those skilled in the art can combine and integrate the different embodiments or examples described in this specification, as well as the features of those different embodiments or examples.
[0094] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include at least one of that feature. In the description of this application, "a plurality of" means two or more, unless otherwise explicitly specified.
[0095] The above are merely specific embodiments of this application, but the scope of protection of this application is not limited thereto. Any person skilled in the art can easily conceive of various variations or substitutions within the technical scope disclosed in this application, and these should all be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.
Claims
1. A water system, characterized in that, include: Health-preserving kettle; Drinking water supply equipment; A hydrogen production device, wherein the hydrogen production device is used to prepare hydrogen gas; as well as A hydrogen mixing device, wherein the inlet of the hydrogen mixing device is connected to the water outlet of the drinking water supply device and the hydrogen outlet of the hydrogen production device, and the outlet of the hydrogen mixing device is connected to the health pot, and the hydrogen mixing device is used to mix drinking water and hydrogen.
2. The water system according to claim 1, characterized in that, The waterway system also includes: A wastewater plug, the inlet of which is connected to the outlet of the drinking water supply device, and the outlet of which is connected to the inlet of the hydrogen mixing device.
3. The water system according to claim 1, characterized in that, The hydrogen outlet of the hydrogen production device is connected to the health-preserving kettle.
4. The water system according to claim 3, characterized in that, The health-preserving kettle is equipped with an aerator, which is connected to the hydrogen outlet of the hydrogen production device and the health-preserving kettle.
5. The water system according to claim 4, characterized in that, The water outlet of the drinking water supply device is connected to the health-preserving kettle.
6. The water system according to claim 5, characterized in that, The waterway system also includes: The first valve has a first inlet connected to the outlet of the drinking water supply device, a second inlet connected to the hydrogen outlet of the hydrogen production device, and an outlet connected to the inlet of the hydrogen mixing device. The second valve has its inlet connected to the outlet of the first valve, and its outlet connected to the health pot.
7. The water system according to claim 6, characterized in that, The waterway system also includes: The flow meter has its inlet connected to the outlet of the first valve and its outlet connected to the inlet of the hydrogen mixing device and the inlet of the second valve. The flow meter is used to monitor the water output of the drinking water supply device. When the flow meter detects that the health pot has reached the set water volume, either the first valve or the second valve is turned off.
8. The water system according to claim 7, characterized in that, The waterway system also includes: A booster pump is provided, with its inlet connected to the outlet of the first valve and its outlet connected to the inlet of the hydrogen mixing device and the inlet of the second valve. The booster pump is shut off when the flow meter detects that the health pot has reached the set water volume.
9. The water system according to claim 8, characterized in that, The waterway system also includes: A pure water tank, the outlet of which is connected to the hydrogen production device; The waterway system also includes: The third valve has its inlet connected to the outlet of the booster pump and its outlet connected to the purified water tank.
10. A water purification device, characterized in that, The water system includes any one of claims 1-9.