Hydrogen-rich water production equipment

By integrating purification, hydrogen enrichment, hydrogen mixing, water boiling, and hydrogen and oxygen absorption functions into a water production device, the problem of low utilization rate of hydrogen-rich water production equipment has been solved, achieving multi-functional integration and improving user experience and equipment utilization.

CN223705390UActive Publication Date: 2025-12-23FOSHAN XINYAO ENVIRONMENTAL PROTECTION TECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421923635.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-08
Publication Date
2025-12-23
Estimated Expiration
2034-08-08

AI Technical Summary

Technical Problem

The utilization rate of hydrogen-rich water production equipment is low, and the existing equipment has limited functionality, failing to meet the diverse needs of users.

Method used

A hydrogen-rich water production device integrating a purification module, a hydrogen-rich module, a hydrogen mixing module, a control device, a water heating device, and a hydrogen and oxygen absorption device is designed. The purification module filters and purifies the water, the hydrogen-rich module electrolyzes to generate hydrogen and oxygen, the hydrogen mixing module mixes them to form hydrogen-rich water, the control device controls the linkage of each module, the water heating device heats the water, and the hydrogen and oxygen absorption device provides adsorption for the user.

Benefits of technology

It improves the utilization rate of water purification equipment, realizes the multi-functional integration of hydrogen-rich water, hot water, hydrogen absorption and oxygen absorption, meets the diverse needs of users, reduces purchase costs and floor space, and enhances user experience.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The utility model provides hydrogen-rich water production equipment which comprises a purification module, a water storage module, a water supply module and a water supply module, wherein a water inlet of the purification module is used for communicating with a water supply device; a water inlet of the hydrogen-rich module is communicated with a water outlet of the purification module; a water inlet of the hydrogen mixing module is communicated with a water outlet of the purification module, and a gas inlet of the hydrogen mixing module is communicated with a hydrogen outlet of the hydrogen-rich module; the control device is communicated with the purification module, the hydrogen enrichment module and the hydrogen mixing module; the water boiling device is used for being communicated with the water outlet of the hydrogen mixing module under the control of the control device, and the water boiling device is used for heating the hydrogen-rich water output by the hydrogen mixing module; the hydrogen and oxygen absorption device is provided with a hydrogen absorption port and an oxygen absorption port, the hydrogen absorption port is used for being communicated with the hydrogen outlet of the hydrogen enrichment module under the control of the control device, and the oxygen absorption port is used for being communicated with the oxygen outlet of the hydrogen enrichment module under the control of the control device. The hydrogen-rich water supply function, the hot water supply function, the hydrogen absorption function and the oxygen absorption function are integrated.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of water production, in particular to a hydrogen-rich water production equipment. BACKGROUND

[0002] With the improvement of people's requirements for drinking water quality, water production equipment technology is continuously developing to provide purer and healthier water quality. As a water treatment equipment, hydrogen-rich water production equipment can dissolve high-concentration hydrogen molecules in water by electrolysis technology to produce hydrogen-rich water. Such water is believed to have health benefits such as antioxidant, anti-inflammatory, and skin care, while maintaining the purity and safety of water. Hydrogen-rich water production equipment is usually equipped with an intelligent control system, which can conveniently monitor water quality and equipment status, and is an ideal choice for consumers pursuing a healthy lifestyle.

[0003] At present, hydrogen-rich water is generated by hydrogen-rich water production equipment in the family, and the utilization rate of hydrogen-rich water production equipment is low. CONTENT OF THE UTILITY MODEL

[0004] The embodiment of the present application provides a hydrogen-rich water production equipment to solve the problem of low utilization rate of hydrogen-rich water production equipment in related technologies, and the technical scheme is as follows:

[0005] The embodiment of the present application provides a hydrogen-rich water production equipment, which comprises:

[0006] A purification module, a water inlet of the purification module is used for communication with a water supply device, and the purification module is used for filtering and purifying water input by the water supply device;

[0007] A hydrogen-rich module, a water inlet of the hydrogen-rich module is communicated with a water outlet of the purification module, and the hydrogen-rich module is used for electrolysis to generate hydrogen and oxygen;

[0008] A hydrogen mixing module, a water inlet of the hydrogen mixing module is communicated with a water outlet of the purification module, and a gas inlet of the hydrogen mixing module is communicated with a hydrogen outlet of the hydrogen-rich module, and the hydrogen mixing module is used for mixing purified water output by the purification module and hydrogen output by the hydrogen-rich module to form hydrogen-rich water;

[0009] A control device, the control device is communicated with the purification module, the hydrogen-rich module and the hydrogen mixing module;

[0010] A water heating device, the water heating device is used for communication with a water outlet of the hydrogen mixing module under the control of the control device, and the water heating device is also used for heating water in the water heating device;

[0011] The hydrogen and oxygen suction device has a hydrogen suction port and an oxygen suction port, the hydrogen suction port is used for being communicated with the hydrogen outlet of the hydrogen-rich module under the control of the control device, and the oxygen suction port is used for being communicated with the oxygen outlet of the hydrogen-rich module under the control of the control device.

[0012] In an embodiment, the hydrogen-rich water preparation device further comprises:

[0013] The outer shell is provided with an accommodating groove on the outer side wall, and the hydrogen suction port and the oxygen suction port are located on the groove wall of the accommodating groove.

[0014] The dustproof plug is detachably arranged on the accommodating groove, and covers the hydrogen suction port and / or the oxygen suction port.

[0015] In an embodiment, the water boiling device is a health pot.

[0016] In an embodiment, the hydrogen-rich water preparation device further comprises a pure water pot, the pure water pot is communicated with the control device, the water inlet of the pure water pot is communicated with the water outlet of the purification module, and the water outlet of the pure water pot is communicated with the water inlet of the hydrogen mixing module.

[0017] In an embodiment, the purification module comprises:

[0018] The water inlet of the RO filter core is used for being communicated with a water supply device.

[0019] The water inlet of the mineralization filter core is communicated with the water outlet of the RO filter core, and the water outlet of the mineralization filter core is communicated with the water inlet of the hydrogen-rich module and the water inlet of the hydrogen mixing module.

[0020] In an embodiment, the hydrogen-rich module comprises:

[0021] The water inlet of the resin filter core is communicated with the water outlet of the purification module.

[0022] The water inlet of the electrolytic cell is communicated with the water outlet of the resin filter core, the electrolytic cell is used for generating hydrogen and oxygen by electrolysis, and the electrolytic cell has the hydrogen outlet and the oxygen outlet.

[0023] In an embodiment, the hydrogen-rich module further comprises:

[0024] The pure water tank has a water containing cavity, the water containing cavity is communicated with the water outlet of the resin filter core, and the water outlet of the pure water tank is communicated with the water containing cavity and the water inlet of the electrolytic cell.

[0025] In an embodiment, the resin filter core is located in the water containing cavity.

[0026] In an embodiment, the hydrogen mixing module comprises:

[0027] a waterway plate having a water inlet channel, a hydrogen mixing channel and a water outlet, a water inlet end of the water inlet channel being communicated with a water outlet of the purification module and a hydrogen outlet of the hydrogen enrichment module, a water outlet end of the hydrogen mixing channel being communicated with the water outlet, the water outlet being communicated with the water boiling device;

[0028] a hydrogen mixing pump arranged on the waterway plate, a water inlet of the hydrogen mixing pump being communicated with the water outlet end of the water inlet channel, a water outlet of the hydrogen mixing pump being communicated with a water inlet end of the hydrogen mixing channel.

[0029] In an embodiment, the hydrogen mixing module further comprises:

[0030] a fluidic device, a first inlet of the fluidic device being communicated with the water outlet of the purification module, a second inlet of the fluidic device being communicated with the hydrogen outlet of the hydrogen enrichment module, an outlet of the fluidic device being communicated with the water inlet end of the water inlet channel, the fluidic device being used for accelerating and mixing the water input by the purification module and the hydrogen input by the hydrogen enrichment module.

[0031] The above technical solution has at least the following advantages or beneficial effects:

[0032] The water making device of the utility model, including purification module, hydrogen enrichment module, hydrogen mixing module, control device, water boiling device and hydrogen and oxygen suction device, wherein, purification module can filter and purify the water input by water supply device, hydrogen enrichment module can electrolyze hydrogen and oxygen from the purified water output by purification module, hydrogen mixing module can mix the purified water output by purification module and the hydrogen output by hydrogen enrichment module to form hydrogen-rich water, control device is communicated with purification module, hydrogen enrichment module, hydrogen mixing module, water boiling device and hydrogen and oxygen suction device, water boiling device can be communicated with the water outlet of hydrogen mixing module under the control of control device, so that the hydrogen-rich water output by hydrogen mixing module can be transported to water boiling device for drinking, and water boiling device can heat the water in it to form hot water for drinking, hydrogen suction port can be communicated with the hydrogen outlet of hydrogen enrichment module under the control of control device, so that the hydrogen output by hydrogen enrichment module can be transported to hydrogen suction port for adsorption, and oxygen suction port can be communicated with the oxygen outlet of hydrogen enrichment module under the control of control device, so that the oxygen output by hydrogen enrichment module can be transported to oxygen suction port for adsorption, thereby improving the utilization rate of the water making device, and making the hydrogen and oxygen obtained by water electrolysis not only used for generating hydrogen-rich water, but also supplied to users for hydrogen and oxygen suction. The water making device of the embodiment integrates hydrogen-rich water supply function, hot water supply function, hydrogen suction function and oxygen suction function, has more diversified functions, can meet different use requirements of users, and is more flexible and convenient to use.

[0033] The above summary is intended to illustrate, but not limit, the present application. Further aspects, embodiments and features of the present application will be readily apparent to those skilled in the art from the following detailed description, taken in conjunction with the accompanying drawings and the claims. BRIEF DESCRIPTION OF DRAWINGS

[0034] In the drawings, like numerals refer to like elements throughout the various drawings. The drawings are not necessarily to scale, embodying the principles of the application. It should be understood that these drawings are merely illustrative of certain embodiments of the application, and that numerous other embodiments can be implemented in accordance with the teachings of the application.

[0035] Figure 1 It is a three-dimensional structure schematic view of the water making equipment of the utility model under the first visual angle;

[0036] Figure 2 It is an exploded view of the water making equipment of the utility model;

[0037] Figure 3 It is a three-dimensional structure schematic view of the water making equipment of the utility model under the second visual angle;

[0038] Figure 4 It is a schematic view of the internal structure of the water making equipment of the utility model;

[0039] Figure 5 It is a schematic view of the internal structure of the water making equipment of the utility model;

[0040] Figure 6 It is an assembly drawing of the hydrogen mixing module and the purified water tank in the utility model;

[0041] Figure 7 It is an assembly drawing of the hydrogen mixing module and the purified water tank in the utility model;

[0042] Figure 8 It is a schematic view of the internal structure of the purified water tank in the utility model.

[0043] REFERENCE NUMERALS

[0044] 1, purification module; 11, RO filter core; 12, mineralization filter core; 2, hydrogen-rich module; 21, resin filter core; 22, electrolytic cell; 23, pure water tank; 231, water containing cavity; 24, second water level detection device; 25, second ultraviolet sterilization device; 26, TDS detector; 3, hydrogen mixing module; 31, waterway board; 32, hydrogen mixing pump; 33, jet device; 331, first inlet; 332, second inlet; 4, water boiling device; 5, hydrogen and oxygen absorption device; 51, hydrogen absorption port; 52, oxygen absorption port; 6, shell; 61, accommodating groove; 7, dustproof plug; 8, pure water kettle; 9, raw water tank; 10, booster pump; 20, first ultraviolet sterilization device; 30, refrigeration module; 301, cold water tank; 302, refrigeration assembly. DETAILED DESCRIPTION

[0045] Hereinafter, only certain exemplary embodiments are simply described. As those skilled in the art can recognize, the described embodiments can be modified in various different ways without departing from the spirit or scope of the present application. Therefore, the drawings and the description are considered to be exemplary in nature rather than limiting.

[0046] Reference Figures 1-8 , a hydrogen-rich water production equipment of a preferred embodiment of the present application is shown, comprising:

[0047] The purification module 1 is used for communicating with the water supply device at the water inlet of the purification module 1, and the purification module 1 is used for filtering and purifying the water input by the water supply device;

[0048] The hydrogen-rich module 2 is used for electrolysis to generate hydrogen and oxygen, and the water inlet of the hydrogen-rich module 2 is communicated with the water outlet of the purification module 1;

[0049] The hydrogen mixing module 3 is used for mixing the purified water output by the purification module 1 and the hydrogen output by the hydrogen-rich module 2 to form hydrogen-rich water, and the water inlet of the hydrogen mixing module 3 is communicated with the water outlet of the purification module 1, and the gas inlet of the hydrogen mixing module 3 is communicated with the hydrogen outlet of the hydrogen-rich module 2;

[0050] The control device is communicated with the purification module 1, the hydrogen-rich module 2 and the hydrogen mixing module 3;

[0051] The water boiling device 4 is used for communicating with the water outlet of the hydrogen mixing module 3 under the control of the control device, and the water boiling device 4 is also used for heating the water inside;

[0052] The hydrogen and oxygen absorption device 5 has a hydrogen absorption port 51 and an oxygen absorption port 52, the hydrogen absorption port 51 is used for communicating with the hydrogen outlet of the hydrogen-rich module 2 under the control of the control device, and the oxygen absorption port 52 is used for communicating with the oxygen outlet of the hydrogen-rich module 2 under the control of the control device.

[0053] The utility model discloses a water making equipment, including purifying module 1, hydrogen -rich module 2, mix hydrogen module 3, control device, water heating device 4 and hydrogen and oxygen suction device 5, wherein purifying module 1 can filter purification to the water of water supply device input, hydrogen -rich module 2 can electrolysis hydrogen and oxygen to the purified water of purifying module 1 output, mix hydrogen module 3 can mix hydrogen -rich water to the purified water of purifying module 1 output and the hydrogen of hydrogen -rich module 2 output, control device is connected purifying module 1, hydrogen -rich module 2, mix hydrogen module 3, water heating device 4 and hydrogen and oxygen suction device 5, water heating device 4 can be connected the water outlet of mix hydrogen module 3 under the control of control device, to make mix hydrogen module 3 output hydrogen -rich water can be transported to water heating device 4 for drinking, and water heating device 4 can heat the water in its interior to form hot water for drinking, hydrogen suction mouth 51 can be connected the hydrogen outlet of hydrogen -rich module 2 under the control of control device, to make hydrogen -rich module 2 output hydrogen can be transported to hydrogen suction mouth 51 for adsorption use, and oxygen suction mouth 52 can be connected the oxygen outlet of hydrogen -rich module 2 under the control of control device, to make hydrogen -rich module 2 output oxygen can be transported to oxygen suction mouth 52 for adsorption use, to improve the utilization of water making equipment, make the hydrogen and oxygen of water electrolysis, not only hydrogen for generating hydrogen -rich water, can also supply user hydrogen and oxygen, the water making equipment of this embodiment integrates hydrogen -rich water supply function, hot water supply function, hydrogen suction function and oxygen suction function, and the function is more diversified, can satisfy the different use demand of user, and use is more flexible and convenient.

[0054] In the embodiment, the water inlet of the hydrogen-rich module 2 is communicated with the water outlet of the purifying module 1, so that the purified water output by the purifying module 1 can be transported to the hydrogen-rich module 2, the water quality required for the hydrogen-rich module 2 to work can be ensured, the working performance of the hydrogen-rich module 2 is ensured, and then cleaner hydrogen and oxygen are obtained, and the hydrogen-rich water cleanliness is improved, wherein the hydrogen-rich water and hydrogen-rich cold water are considered to have health benefits such as antioxidant, anti-inflammatory and beauty skin care, and the purity and safety of water are maintained.

[0055] In the embodiment, the water making device can be used as a hydrogen and oxygen making machine. After starting the hydrogen and oxygen making function, the hydrogen suction port 51 is connected with the breathing tube, so that the user can inhale hydrogen through the breathing tube, thereby helping the user to discharge harmful substances in the body, improving human metabolism, and improving the body's immunity. If the user has hypoxia symptoms, the hydrogen inhalation can improve the hypoxia condition to a certain extent. The oxygen suction port 52 is connected with the breathing tube, so that the user can inhale oxygen through the breathing tube. Oxygen inhalation can increase the oxygen content in the blood, improve the hypoxia condition, and relieve the user's discomfort symptoms. In addition, if the user has arrhythmia, myocardial ischemia, or the like, the heart's pumping function may be affected. At this time, the oxygen inhalation can also be improved according to the doctor's advice. The hydrogen and oxygen making machine does not need to be additionally equipped, thereby reducing the use cost. In addition, the user experience of the water making device of the embodiment is improved, the adaptability is wider, and the needs of different users are met.

[0056] In the embodiment, the water making device realizes one machine with multiple functions. Compared with multiple devices with single function of hydrogen-rich water supply function, hot water supply function, hydrogen inhalation function, and oxygen inhalation function, the purchase cost can be greatly reduced. In addition, one machine with multiple functions can greatly save the floor area and be more convenient to store and place.

[0057] In an embodiment, the water supply device can be a water faucet of tap water or other water supply equipment of mineral water and the like.

[0058] In an embodiment, the purification module 1 can be a filter or a filter device composed of multiple filter elements, and the like, which can filter and purify the water output by the water supply device.

[0059] In an embodiment, the hydrogen-rich module 2 can be an electrolytic cell 22 or a combination structure of the electrolytic cell 22 and the pure water tank 23.

[0060] In an embodiment, the control device can be a valve or an electromagnetic valve capable of realizing the control switching function, or can be a device capable of realizing intelligent control.

[0061] In an embodiment, the control device can include a voice wake-up module, so as to control the opening and closing of the water making device through voice control.

[0062] In an embodiment, the control device can include a touch screen, so as to control the opening and closing of the water making device by operating the touch screen.

[0063] Referring to Figures 1-2 In an embodiment, the hydrogen-rich water making device further includes:

[0064] The outer shell 6 is provided with a containing groove 61 on the outer side wall thereof, and the hydrogen suction port 51 and the oxygen suction port 52 are located on the groove wall of the containing groove 61.

[0065] The dustproof plug 7 is detachably arranged on the containing groove 61 and covers the hydrogen suction port 51 and / or the oxygen suction port 52. Since the hydrogen suction port 51 and the oxygen suction port 52 are located outside the outer shell 6, the hydrogen adsorption and the oxygen adsorption can be facilitated by connecting the breathing tube with the hydrogen suction port 51 and / or the oxygen suction port 52. The connection is convenient, and since the dustproof plug 7 is arranged, the containing groove 61 can be blocked by the dustproof plug 7 to cover the hydrogen suction port 51 and the oxygen suction port 52 when the hydrogen adsorption and the oxygen adsorption are not needed, thereby playing a dustproof role and keeping the hydrogen suction port 51 and the oxygen suction port 52 clean and sanitary.

[0066] In an embodiment, the water boiling device 4 is a health-care pot, which has the functions of boiling water, scented tea, boiled eggs, boiled soup, boiled noodles, health-care medicinal diet, five-grain porridge, hot pot, yogurt, boiled wine, hot milk, cooling tea, disinfection, heat preservation, steamed water eggs, coffee, baby water, and milk powder water, etc. The health-care pot can expand the functions of the water preparation device and make the functions more diversified.

[0067] In an embodiment, the water boiling device 4 can also be a common water boiler.

[0068] Referring to Figures 1-5 In an embodiment, the hydrogen-rich water preparation device further comprises a pure water pot 8, which is connected with the control device, the water inlet of the pure water pot 8 is connected with the water outlet of the purification module 1, and the water outlet of the pure water pot 8 is connected with the water inlet of the hydrogen mixing module 3. The pure water pot 8 can store the purified water output by the purification module 1, can realize the purified water supply function, and is convenient for users to take and drink the purified water, thereby making the functions of the water preparation device more diversified. Meanwhile, when the hydrogen-rich water, hydrogen, and oxygen are prepared, the purified water output by the purification module 1 can be stored in the pure water pot 8 in advance, so that when the hydrogen-rich water, hydrogen, and oxygen are prepared, only the hydrogen-rich module 2 needs to be started, the preparation efficiency of the hydrogen-rich water, hydrogen, and oxygen can be improved, thereby shortening the waiting time and improving the use convenience.

[0069] In an embodiment, the hydrogen-rich water preparation device further comprises:

[0070] A first water level detection device (not shown in the figure) is connected with the control device, and the first water level detection device is used to detect the water level of the pure water pot 8. The control device is used to control the purification module 1 to start according to the low water level detection information of the first water level detection device, so that the purification module 1 supplies water to the pure water pot 8. The control device is also used to control the purification module 1 to stop according to the high water level detection information of the first water level detection device, so that the purification module 1 stops supplying water to the pure water pot 8. The automatic water supply of the pure water pot 8 is realized, and the use is more convenient.

[0071] In an embodiment, the first water level detection device can be a float ball type liquid level gauge arranged on the purified water kettle 8, or other types of liquid level gauges arranged outside the purified water kettle 8.

[0072] In an embodiment, a first water pump (not shown in the figure) is arranged on the communication pipeline between the water outlet of the purified water kettle 8 and the water inlet of the hydrogen mixing module 3, the first water pump is arranged on the side close to the purified water kettle 8, and the first water pump is connected to the control device. The first water pump is used to pump water from the purified water kettle 8 to the hydrogen mixing module 3, so that the water output from the purified water kettle 8 can be smoothly and quickly delivered to the hydrogen mixing module 3, thereby improving the efficiency.

[0073] Referring to Figure 4 In an embodiment, the purification module 1 comprises:

[0074] The RO filter element 11 is arranged to communicate with the water supply device at the water inlet thereof, and the RO filter element 11 is used to filter organic matter and heavy metal ions from the water input from the water supply device.

[0075] The mineralization filter element 12 is arranged to communicate with the RO filter element 11 at the water inlet thereof, and the mineralization filter element 12 is arranged to communicate with the hydrogen enrichment module 2 at the water outlet thereof and the hydrogen mixing module 3 at the water inlet thereof. The mineralization filter element 12 is used to perform mineralization treatment on the water input from the RO filter element 11 to form mineralized water, which is helpful to improve the constitution, prevent diseases and cancer, and delay aging.

[0076] Referring to Figure 4 In an embodiment, a first ultraviolet sterilization device 20 is arranged on the communication pipeline of the water outlet of the purification module 1, and the first ultraviolet sterilization device 20 is connected to the control device. The first ultraviolet sterilization device 20 is used to sterilize and disinfect the purified water output from the water outlet of the purification module 1, so as to ensure the hygiene of the water. The control device is used to control the start and stop of the first ultraviolet sterilization device 20, so as to control the start of the first ultraviolet sterilization device 20 when the water production equipment starts to produce water, and control the stop of the first ultraviolet sterilization device 20 when the water production equipment stops to produce water.

[0077] Referring to Figure 8 In an embodiment, the hydrogen enrichment module 2 comprises:

[0078] The resin filter element 21 is arranged to communicate with the water outlet of the purification module 1 at the water inlet thereof, and the resin filter element 21 is used to remove heavy metals, filter impurities, and soften hard water, so as to further improve the water quality.

[0079] The electrolytic tank 22 is communicated with the water outlet of the resin filter 21, and is used for electrolysis to generate hydrogen and oxygen. The hydrogen outlet and the oxygen outlet are provided on the electrolytic tank 22. Since the hydrogen-rich module 2 is provided with the resin filter 21, the resin filter 21 can be used to remove heavy metals, filter impurities and soften hard water, so as to further improve the water quality, ensure the water quality required by the electrolytic tank 22, ensure the working performance of the electrolytic tank 22, and obtain cleaner hydrogen and oxygen, and further improve the cleanliness of the hydrogen-rich water.

[0080] Referring to Figures 6-8 In an embodiment, the hydrogen-rich module 2 further comprises:

[0081] The pure water tank 23 has a water storage cavity 231 communicated with the water outlet of the resin filter 21, and the water outlet of the pure water tank 23 is communicated with the water storage cavity 231 and the water inlet of the electrolytic tank 22. Since the hydrogen-rich module 2 is provided with the pure water tank 23, the pure water tank 23 can be used to store water, so that the water in the pure water tank 23 can be pumped to the electrolytic tank 22 under the control of the control device, without starting the purification module 1, and the preparation efficiency of hydrogen and oxygen can be improved.

[0082] Referring to Figure 8 In an embodiment, the resin filter 21 is located in the water storage cavity 231. The resin filter 21 is arranged in the pure water tank 23, the space utilization of the pure water tank 23 is improved, the hydrogen-rich module 2 does not occupy too much space, the structure of the hydrogen-rich module 2 is more compact, the occupied space is reduced, and the overall volume of the water preparation device can be reduced.

[0083] In an embodiment, the hydrogen-rich module 2 further comprises:

[0084] The second water level detection device 24 (not shown in the figure) is communicated with the control device, and is arranged on the pure water tank 23. The second water level detection device 24 is used to detect the water level of the pure water tank 23. The control device is used to control the purification module 1 to start according to the low water level detection information of the second water level detection device 24, so that the purification module 1 supplies water to the pure water tank 23. The control device is also used to control the purification module 1 to stop according to the high water level detection information of the second water level detection device 24, so that the purification module 1 stops supplying water to the pure water tank 23. The automatic water supply of the pure water tank 23 is realized, and the use is more convenient.

[0085] In an embodiment, the second water level detection device 24 can be a float type liquid level meter, which is arranged on the pure water tank 23, or other types of liquid level meters, which are arranged outside the pure water tank 23.

[0086] Referring to Figure 7 In an embodiment, the hydrogen-rich module 2 further comprises:

[0087] a second ultraviolet sterilization device 25, the second ultraviolet sterilization device 25 being arranged on the purified water tank 23, the second ultraviolet sterilization device 25 being connected to the control device, the second ultraviolet sterilization device 25 being used for sterilizing and disinfecting the water in the purified water tank 23, ensuring the hygiene of the water, the control device being used for controlling the start and stop of the second ultraviolet sterilization device 25, so as to control the start of the second ultraviolet sterilization device 25 when the water making equipment starts to make water, and control the stop of the second ultraviolet sterilization device 25 when the water making equipment stops making water.

[0088] Referring to Figure 7 In an embodiment, the hydrogen-rich module 2 further comprises:

[0089] a TDS detector 26, the TDS detector 26 being arranged on the purified water tank 23, the TDS detector 26 being connected to the control device, the TDS detector 26 being used for detecting the TDS value of the water in the purified water tank 23, the control device being used for issuing alarm information according to the feedback information of the TDS detector 26, reminding the user to change the water in the purified water tank 23, so as to ensure the cleanliness of the water in the purified water tank 23.

[0090] The TDS value represents the concentration of total dissolved solids in water, with the unit of milligrams per liter (mg / L). It mainly reflects the concentration of calcium (Ca2+), magnesium (Mg2+), sodium (Na+), potassium (K+) and other ions in water. The smaller the TDS value, the lower the concentration of these ions in water, and the smaller the electrical conductivity. The TDS value is usually used to measure the purity of purified water, but it should be noted that a small TDS value does not mean that the water quality is necessarily good, and a high TDS value does not mean that the water quality is necessarily poor.

[0091] Referring to Figures 6-7 In an embodiment, the hydrogen-rich module 3 comprises:

[0092] a waterway board 31, the waterway board 31 having a water inlet flow channel, a hydrogen mixing flow channel and a water outlet, the water inlet flow channel being connected to the water outlet of the purification module 1 and the hydrogen outlet of the hydrogen-rich module 2, the water outlet being connected to the water heating device 4;

[0093] The hydrogen mixing pump 32 is arranged on the waterway plate 31, the water inlet of the hydrogen mixing pump 32 is communicated with the water outlet end of the water inlet flow channel, and the water outlet of the hydrogen mixing pump 32 is communicated with the water inlet end of the hydrogen mixing flow channel. In this way, under the control of the control device, the hydrogen mixing pump 32 is started, and the purified water output by the purification module 1 and the hydrogen gas output by the hydrogen enrichment module 2 are first preliminarily mixed in the hydrogen mixing pump 32 under the action of the hydrogen mixing pump 32, and then mixed again through the hydrogen mixing flow channel to form hydrogen-enriched water that is more uniform and saturated in mixture. By using the step-by-step mixing mode, the mixing efficiency of the hydrogen-enriched water can be greatly improved, and the water production is more efficient.

[0094] Referring to Figures 6-7 In an embodiment, the hydrogen mixing module 3 further comprises:

[0095] The injector 33, the first inlet 331 of the injector 33 is communicated with the water outlet of the purification module 1, the second inlet 332 of the injector 33 is communicated with the hydrogen gas outlet of the hydrogen enrichment module 2, and the outlet of the injector 33 is communicated with the water inlet end of the water inlet flow channel. The injector 33 is used for accelerating and mixing the water input by the purification module 1 and the hydrogen gas input by the hydrogen enrichment module 2. In this way, the injector 33 can be used to accelerate and preliminarily mix the water input by the purification module 1 and the hydrogen gas input by the hydrogen enrichment module 2, which helps to further improve the mixing efficiency of the hydrogen-enriched water and make the water production more efficient.

[0096] In an embodiment, a flow meter is arranged on the communication pipeline between the water outlet of the pure water kettle 8 and the water inlet of the hydrogen mixing module 3, the flow meter is communicated with the control device, the flow meter is used for detecting the water outlet flow of the pure water kettle 8, and the control device is used for controlling the first water pump to stop to stop water production according to the feedback information of the flow meter, so as to realize automatic monitoring of the water amount of the water kettle.

[0097] In an embodiment, the water production device further comprises:

[0098] The raw water tank 9, the water inlet of the raw water tank 9 is used for being communicated with the water supply device under the control of the control device, and the water outlet of the raw water tank 9 is communicated with the water inlet of the purification module 1, so as to store water by using the raw water tank 9 and improve the water production efficiency.

[0099] In an embodiment, the water production device further comprises:

[0100] The booster pump 10 is communicated with the control device, the water inlet of the booster pump 10 is communicated with the water outlet of the raw water tank 9, and the water outlet of the booster pump 10 is communicated with the water inlet of the RO filter core 11, so that the water liquid in the raw water tank 9 can be delivered to the RO filter core 11 under the action of the booster pump 10.

[0101] Referring to Figure 4 In an embodiment, the water production device further comprises:

[0102] The refrigeration module 30 is connected to the control device, the water inlet of the refrigeration module 30 is connected to the water outlet of the purification module 1, and the water outlet of the refrigeration module 30 is connected to the water inlet of the hydrogen mixing module 3. The refrigeration module 30 is used for cooling the water purified by the purification module 1.

[0103] The hydrogen mixing module 3 is also used for mixing the cold water output by the refrigeration module 30 and the hydrogen gas output by the hydrogen enrichment module 2 to form hydrogen-enriched cold water. The hydrogen-enriched cold water output by the hydrogen mixing module 3 can be output to the water boiling device 4 for drinking. The water making device also has a hydrogen-enriched cold water supply function, which is more diversified. The user can experience cooling and cooling. The user experience of the water making device of the embodiment is improved, and the adaptability is wider to meet the needs of different users.

[0104] In an embodiment, the water outlet of the refrigeration module 30 is also connected to the water boiling device 4, so that the cold water output by the refrigeration module 30 can be directly delivered to the water boiling device 4 for drinking. The water making device also has a cold water supply function, which is more diversified.

[0105] Referring to Figure 4 In an embodiment, the refrigeration module 30 comprises:

[0106] The cold water tank 301 has a water inlet connected to the water outlet of the purification module 1, and a water outlet connected to the water inlet of the hydrogen mixing module 3.

[0107] The refrigeration assembly 302 is used for cooling the water in the inner cavity of the cold water tank 301. Since the refrigeration module 30 has the cold water tank 301, the cold water tank 301 can store water. The cold water tank 301 can be filled with water before refrigeration, and the refrigeration assembly 302 can be started to cool the water in the cold water tank 301 after the cold water tank 301 is filled with water. Compared with the refrigeration mode of cooling while making water, the refrigeration efficiency can be improved.

[0108] In an embodiment, the refrigeration module 30 further comprises:

[0109] The third water level detection device (not shown in the figure) is connected to the control device, and the third water level detection device is used for detecting the water level of the cold water tank 301. The control device is used for controlling the purification module 1 to start according to the low water level detection information of the third water level detection device, so that the purification module 1 supplies water to the cold water tank 301. The control device is also used for controlling the purification module 1 to close according to the high water level detection information of the third water level detection device, so that the purification module 1 stops supplying water to the cold water tank 301. The automatic water supply of the cold water tank 301 is realized, and the use is more convenient.

[0110] In an embodiment, the third water level detection device can be a float ball type liquid level meter arranged on the cold water tank 301, or other types of liquid level meters arranged outside the cold water tank 301.

[0111] In an embodiment, a second water pump (not shown in the figure) is arranged on the connecting pipeline between the water outlet of the cold water tank 301 and the kettle, the second water pump is arranged on the side close to the cold water tank 301, and the second water pump is connected to the communication control device, and is used to pump water in the cold water tank 301 to the water boiling device 4.

[0112] In an embodiment, the refrigeration assembly 302 comprises:

[0113] a semiconductor refrigeration sheet arranged outside the cold water tank 301;

[0114] a temperature conducting sheet arranged at the cold end of the semiconductor refrigeration sheet, and arranged in the inner cavity of the cold water tank 301. In this way, the temperature of the cold end is reduced by starting the semiconductor refrigeration sheet, and the temperature of the cold end is efficiently transferred to the water in the cold water tank 301 through the temperature conducting sheet, thereby cooling the water in the cold water tank 301. The refrigeration assembly 302 composed of the semiconductor refrigeration sheet and the temperature conducting sheet has a compact structure and occupies less space, and can make the overall structure of the refrigeration module 30 more compact, thereby facilitating the miniaturization of the water making device.

[0115] In an embodiment, the refrigeration assembly 302 can also be a cooling device composed of a compressor, a condenser, an evaporator and an expansion valve.

[0116] In the description of the present specification, the description of the terms "one embodiment", "some embodiments", "an example", "a specific example" or "some examples" means that the specific features, structures, materials or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. Moreover, the specific features, structures, materials or characteristics described can be combined in any appropriate manner in any one or more embodiments or examples. In addition, the person skilled in the art can combine and combine the different embodiments or examples described in the present specification and the features of the different embodiments or examples without contradiction.

[0117] In addition, the terms "first", "second" are only for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined with "first", "second" can explicitly or implicitly include at least one of the features. In the description of the present application, the meaning of "multiple" is two or more, unless otherwise specifically limited.

[0118] The above merely provides the specific implementation of the present application, but the protection scope of the present application is not limited to this. Any person skilled in the art can easily think of various changes or replacements within the technical range disclosed by the present application, and these should be covered in the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.

Claims

1. A hydrogen-rich water production apparatus characterized by comprising: The hydrogen-rich water making device comprises: a purifying module, a water inlet of the purifying module being used for communicating with a water supply device, the purifying module being used for filtering and purifying water input by the water supply device; a hydrogen-rich module, a water inlet of the hydrogen-rich module being communicated with a water outlet of the purifying module, the hydrogen-rich module being used for electrolysis to generate hydrogen and oxygen; a hydrogen mixing module, a water inlet of the hydrogen mixing module being communicated with a water outlet of the purifying module, an air inlet of the hydrogen mixing module being communicated with a hydrogen outlet of the hydrogen-rich module, the hydrogen mixing module being used for mixing water output by the purifying module and hydrogen output by the hydrogen-rich module to form hydrogen-rich water; a control device, the control device being communicated with the purifying module, the hydrogen-rich module and the hydrogen mixing module; a water boiling device, the water boiling device being used for communicating with a water outlet of the hydrogen mixing module under control of the control device, the water boiling device being further used for heating water in the water boiling device; a hydrogen and oxygen absorbing device, the hydrogen and oxygen absorbing device having a hydrogen absorbing port and an oxygen absorbing port, the hydrogen absorbing port being used for communicating with the hydrogen outlet of the hydrogen-rich module under control of the control device, the oxygen absorbing port being used for communicating with the oxygen outlet of the hydrogen-rich module under control of the control device.

2. The hydrogen-rich water preparation apparatus according to claim 1, characterized by The hydrogen-rich water making device further comprises: an outer shell, an outer wall of the outer shell being provided with a receiving groove, the hydrogen absorbing port and the oxygen absorbing port being located on a groove wall of the receiving groove; a dustproof plug, the dustproof plug being detachably arranged on the receiving groove, the dustproof plug covering the hydrogen absorbing port and / or the oxygen absorbing port.

3. The hydrogen-rich water preparation apparatus according to claim 1, characterized by The water boiling device is a health pot.

4. The hydrogen-rich water preparation apparatus according to claim 1, characterized by The hydrogen-rich water making device further comprises a pure water pot, the pure water pot being communicated with the control device, a water inlet of the pure water pot being communicated with a water outlet of the purifying module, a water outlet of the pure water pot being communicated with a water inlet of the hydrogen mixing module.

5. The hydrogen-rich water preparation apparatus according to claim 1, characterized by The purifying module comprises: an RO filter core, a water inlet of the RO filter core being used for communicating with a water supply device; a mineralization filter core, a water inlet of the mineralization filter core being communicated with a water outlet of the RO filter core, a water outlet of the mineralization filter core being communicated with a water inlet of the hydrogen-rich module and a water inlet of the hydrogen mixing module.

6. The hydrogen-rich water preparation apparatus according to claim 1, wherein The hydrogen-rich module comprises: a resin filter core, a water inlet of the resin filter core being communicated with a water outlet of the purifying module; an electrolytic tank, a water inlet of the electrolytic tank being communicated with a water outlet of the resin filter core, the electrolytic tank being used for electrolysis to generate hydrogen and oxygen, the electrolytic tank having the hydrogen outlet and the oxygen outlet.

7. The hydrogen-rich water preparation apparatus according to claim 6, characterized by The hydrogen-rich module further comprises: a pure water tank, the pure water tank having a water containing cavity, the water containing cavity being communicated with the water outlet of the resin filter core, a water outlet of the pure water tank being communicated with the water containing cavity and the water inlet of the electrolytic tank.

8. The hydrogen-rich water preparation apparatus according to claim 7, characterized by The resin filter core is located in the water containing cavity.

9. The hydrogen-rich water preparation apparatus according to claim 1, characterized by The hydrogen mixing module comprises: a water circuit board, the water circuit board having a water inlet flow channel, a hydrogen mixing flow channel and a water outlet, a water inlet end of the water inlet flow channel being communicated with the water outlet of the purifying module and the hydrogen outlet of the hydrogen-rich module, a water outlet end of the hydrogen mixing flow channel being communicated with the water outlet, the water outlet being communicated with the water boiling device; A hydrogen mixing pump is arranged on the waterway board, a water inlet of the hydrogen mixing pump is communicated with a water outlet end of the water inlet flow channel, and a water outlet of the hydrogen mixing pump is communicated with a water inlet end of the hydrogen mixing flow channel.

10. The hydrogen-rich water preparation apparatus according to claim 9, characterized by The hydrogen mixing module further comprises: A fluidic device, a first inlet of the fluidic device is communicated with the water outlet of the purification module, a second inlet of the fluidic device is communicated with the hydrogen outlet of the hydrogen enrichment module, and an outlet of the fluidic device is communicated with the water inlet end of the water inlet flow channel, the fluidic device is used for accelerating and mixing the water input by the purification module and the hydrogen input by the hydrogen enrichment module.

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