Multifunctional water production equipment

By integrating purification, magnetization, instant heating, hydrogen production, and hydrogen mixing functions, the multifunctional water production equipment solves the problem of the single function of existing equipment and realizes the water supply needs of multiple water use modes, especially the hot hydrogen-rich water with a higher hydrogen content.

CN224105683UActive Publication Date: 2026-04-10FOSHAN XINYAO ENVIRONMENTAL PROTECTION TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
FOSHAN XINYAO ENVIRONMENTAL PROTECTION TECHNOLOGY CO LTD
Filing Date
2024-10-09
Publication Date
2026-04-10

AI Technical Summary

Technical Problem

Existing magnetized water production equipment and hydrogen-rich water production equipment have limited functions and cannot meet the diverse water needs of users.

Method used

Design a multifunctional water production device that integrates purification, magnetization, instant heating, hydrogen production, and hydrogen mixing functions. The purification device filters and purifies the water, the magnetization device magnetizes the purified water, the instant heating device heats the magnetized water, the hydrogen production device generates hydrogen and oxygen, and the hydrogen mixing device mixes them to form room temperature hydrogen-rich water or hot hydrogen-rich water, which is then supplied for drinking through a water outlet device.

Benefits of technology

It enables multi-functional water supply of room temperature magnetized water, hot magnetized water, room temperature hydrogen-rich water and hot hydrogen-rich water, improving the utilization rate of the equipment and the water selection of users. In particular, the hot hydrogen-rich water has a higher hydrogen content, meeting different water needs.

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Abstract

The utility model provides multifunctional water production equipment which comprises a purification device, a water supply device and a water supply device. A water inlet of the magnetizing device is communicated with a water outlet of the purifying device; an instant heating device; the hydrogen production device is communicated with a water outlet of the purification device or is used for being communicated with a water supply device, and the hydrogen production device is used for electrolyzing the purified water to generate hydrogen and oxygen; a water inlet of the hydrogen mixing device is communicated with a water outlet of the instant heating device and a hydrogen outlet of the hydrogen production device; a water inlet of the water outlet device is communicated with a water outlet of the instant heating device and a water outlet of the hydrogen mixing device. The hydrogen-rich water heating device has a normal-temperature water magnetizing function, a thermal water magnetizing function, a normal-temperature hydrogen-rich water function and a hot hydrogen-rich water function, integrates multiple functions, can meet different water demands of users, and in addition, due to the fact that the hot hydrogen-rich water is prepared by firstly heating normal-temperature water and then mixing hydrogen and hot water, the hydrogen content of the hot hydrogen-rich water is higher.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of water production, and in particular to a multifunctional water production device. 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 device, the magnetized water production equipment generates a strong magnetic field through magnetization technology to change the polarity of water when it passes through. This polarity change makes the molecular structure of water more ordered, thereby changing the physical and chemical properties of water. The dissolved oxygen content of magnetized water increases, the activity is enhanced, and it is easier for the human body to absorb and utilize. As a water treatment device, the hydrogen-rich water production equipment decomposes water molecules into hydrogen and oxygen through electrolysis technology, thereby dissolving high-concentration hydrogen molecules in water to generate hydrogen-rich water, maintaining the purity and safety of water.

[0003] Currently, the generation of magnetized water is realized by a magnetized water production equipment in the family, and the generation of hydrogen-rich water is realized by a hydrogen-rich water production equipment. Both the magnetized water production equipment and the hydrogen-rich water production equipment have the problem of single function. CONTENT OF THE INVENTION

[0004] The embodiment of the present application provides a multifunctional water production device to solve the problem of single function in the related art, and the technical scheme is as follows:

[0005] The embodiment of the present application provides a multifunctional water production device, which comprises:

[0006] A purification device, a water inlet of the purification device is used for being communicated with a water supply device, and the purification device is used for filtering and purifying water output by the water supply device;

[0007] A magnetization device, a water inlet of the magnetization device is communicated with a water outlet of the purification device, and the magnetization device is used for magnetizing purified water output by the purification device;

[0008] An instant heating device, a water inlet of the instant heating device is communicated with a water outlet of the magnetization device, and the instant heating device is used for heating magnetized water output by the magnetization device;

[0009] A hydrogen production device, the hydrogen production device is communicated with the water outlet of the purification device, or the hydrogen production device is used for being communicated with the water supply device, and the hydrogen production device is used for electrolyzing purified water to generate hydrogen and oxygen;

[0010] a hydrogen mixing device, a water inlet of the hydrogen mixing device being communicated with a water outlet of the instant heating device and a hydrogen outlet of the hydrogen production device, the hydrogen mixing device being used for mixing water output by the instant heating device and hydrogen output by the hydrogen production device to form normal-temperature hydrogen-rich water or hot hydrogen-rich water; and

[0011] a water outlet device, a water inlet of the water outlet device being communicated with the water outlet of the instant heating device and the water outlet of the hydrogen mixing device.

[0012] In an embodiment, the multifunctional water making device further comprises:

[0013] a raw water tank, the raw water tank being used for storing raw water;

[0014] a first pump body, a water inlet of the first pump body being communicated with a water outlet of the raw water tank, a water outlet of the first pump body being communicated with a water inlet of the purification device, the first pump body being used for providing power for water output by the raw water tank.

[0015] In an embodiment, the multifunctional water making device further comprises:

[0016] a first valve body, a first water inlet of the first valve body being communicated with a water outlet of the raw water tank, a second water inlet of the first valve body being used for being communicated with a water outlet of a bottled water tank, a water outlet of the first valve body being communicated with a water inlet of the first pump body.

[0017] In an embodiment, the multifunctional water making device further comprises:

[0018] a first purified water tank, a water inlet of the first purified water tank being communicated with a water outlet of the magnetization device;

[0019] a second pump body, a water inlet of the second pump body being communicated with a water outlet of the first purified water tank, a water outlet of the second pump body being communicated with a water inlet of the instant heating device, the second pump body being used for providing power for water output by the first purified water tank.

[0020] In an embodiment, the multifunctional water making device further comprises:

[0021] a second purified water tank, the second purified water tank being used for storing purified water, a water outlet of the second purified water tank being communicated with a water inlet of the hydrogen production device.

[0022] In an embodiment, the multifunctional water making device further comprises:

[0023] a resin filter core, a water inlet of the resin filter core being communicated with a water outlet of the purification device, a water outlet of the resin filter core being communicated with a water inlet of the second purified water tank.

[0024] In one embodiment, the purification device comprises:

[0025] a first filter element, a water inlet of the first filter element being configured to communicate with the water supply device, the first filter element being configured to remove large-particle impurities and odor from water output by the water supply device; and

[0026] a second filter element, a water inlet of the second filter element being configured to communicate with a water outlet of the first filter element, a water outlet of the second filter element being configured to communicate with a water inlet of the instant heating device and a water inlet of the resin filter element, the second filter element being configured to adsorb and remove organic matter and heavy metals from water output by the first filter element.

[0027] In one embodiment, the first filter element and the second filter element are arranged along a first lateral direction of the multifunctional water production apparatus.

[0028] the first purified water tank and the resin filter element are arranged along a first lateral direction of the multifunctional water production apparatus, and the first purified water tank and the second filter element are arranged along a second lateral direction of the multifunctional water production apparatus, the resin filter element and the first filter element are arranged along the second lateral direction of the multifunctional water production apparatus, the second lateral direction being perpendicular to the first lateral direction.

[0029] In one embodiment, the second purified water tank is located on a side of the resin filter element away from the first filter element, the instant heating device and the hydrogen production device are both located below the second purified water tank, and the instant heating device and the hydrogen production device are arranged along the first lateral direction of the multifunctional water production apparatus.

[0030] In one embodiment, the hydrogen mixing device comprises:

[0031] a hydrogen mixing pump, a water inlet of the hydrogen mixing pump being configured to communicate with a water outlet of the instant heating device and a hydrogen outlet of the hydrogen production device, the hydrogen mixing pump being configured to mix water output by the instant heating device and hydrogen output by the hydrogen production device to form normal-temperature hydrogen-rich water or hot hydrogen-rich water;

[0032] a hydrogen mixer, the hydrogen mixer having a hydrogen mixing cavity, a water inlet of the hydrogen mixing cavity being configured to communicate with a water outlet of the hydrogen mixing pump, a water outlet of the hydrogen mixing cavity being configured to communicate with the water outlet device, the hydrogen mixing cavity being configured to mix hydrogen in hydrogen-rich water output by the hydrogen mixing pump and purified water under pressure built up by the hydrogen mixing pump; a first water stopper, the first water stopper being arranged in the hydrogen mixing cavity and located on a side close to the water outlet of the hydrogen mixing cavity, the first water stopper having a first water passing channel, the first water passing channel being configured to communicate the hydrogen mixing cavity and the water outlet of the hydrogen mixing cavity, the first water passing channel having a cross-sectional area smaller than that of the hydrogen mixing cavity; and

[0033] A second water stopper is inserted into the water inlet of the hydrogen mixing cavity, and has a second water passing channel which is in communication with the water outlet of the hydrogen mixing pump and the hydrogen mixing cavity, and the cross-sectional area of the second water passing channel is smaller than that of the hydrogen mixing cavity.

[0034] The advantages or beneficial effects of the above technical solutions at least include:

[0035] The multifunctional water making equipment of the utility model, including purifier, magnetizing device, instant heating device, hydrogen production device, hydrogen mixing device and water outlet device, wherein, the purifier can filter and purify the water output by the water supply device, the magnetizing device can magnetize the purified water output by the purifier to obtain magnetized water, the instant heating device can heat the magnetized water output by the magnetizing device, the hydrogen production device can electrolyze the purified water to generate hydrogen and oxygen, the hydrogen mixing device can mix the water output by the instant heating device and the hydrogen output by the hydrogen production device to form normal temperature hydrogen-rich water or hot hydrogen-rich water, the water outlet of the instant heating device and the water outlet of the hydrogen mixing device are both in communication with the water inlet of the water outlet device, so that the normal temperature magnetized water, hot magnetized water output by the instant heating device and the normal temperature hydrogen-rich water and hot hydrogen-rich water output by the hydrogen mixing device can all be delivered to the water outlet device for drinking, and the multifunctional water making equipment has normal temperature magnetized water function, hot magnetized water function, normal temperature hydrogen-rich water function and hot hydrogen-rich water function, integrates multiple functions, can meet different water demand of users, improves the utilization rate of the multifunctional water making equipment, and the preparation method of the hot hydrogen-rich water is to heat normal temperature water first and then mix hydrogen and hot water to form hot hydrogen-rich water, so the hot hydrogen-rich water has higher hydrogen content.

[0036] The above summary is intended to illustrate only and is not intended to be limiting in any way. Further aspects, implementations, and features of the present application will be apparent from the drawings and the following detailed description. BRIEF DESCRIPTION OF DRAWINGS

[0037] In the drawings, like reference numerals will be used to indicate like or similar elements throughout the several views. The drawings are not necessarily to scale. It should be understood that the drawings only depict some embodiments in accordance with the disclosure and should not be considered limiting in any way.

[0038] Figure 1 FIG. 1 is a schematic view of a water path structure of a multifunctional water making equipment according to a first embodiment of the utility model;

[0039] Figure 2 FIG. 2 is a schematic view of a water path structure of a multifunctional water making equipment according to a second embodiment of the utility model;

[0040] Figure 3The structure schematic view that the hydrogen production device, the hydrogen mixing device and the waterway integrator of the utility model are assembled together.

[0041] Figure 4 The structure schematic view that the hydrogen production device, the hydrogen mixing device and the waterway integrator of the utility model are assembled together.

[0042] Reference signs

[0043] 1, purification device; 11, first stage filter element; 12, second stage filter element; 2, magnetization device; 3, instant heating device; 4, hydrogen production device; 5, hydrogen mixing device; 51, hydrogen mixing pump; 52, hydrogen mixer; 521, hydrogen mixing cavity; 53, first water stopper; 54, second water stopper; 55, jet device; 6, water outlet device; 7, raw water tank; 8, first pump body; 9, first valve body; 10, first purified water tank; 20, second pump body; 30, second purified water tank; 40, resin filter element; 50, waterway integrator; 501, purified water inlet; 502, first water flow channel; 503, second water flow channel; 504, comprehensive outlet; 60, second valve body. DETAILED DESCRIPTION

[0044] In the following, 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.

[0045] Reference signs Figures 1-4 , show a multifunctional water making equipment of a preferred embodiment of the utility model, including:

[0046] The water inlet of purification device 1 is used for communicating with water supply device, and purification device 1 is used for filtering and purifying the water output by water supply device;

[0047] Magnetization device 2, the water inlet of magnetization device 2 communicates the water outlet of purification device 1, and magnetization device 2 is used for magnetizing the purified water output by purification device 1;

[0048] Instant heating device 3, the water inlet of instant heating device 3 communicates the water outlet of magnetization device 2, and instant heating device 3 is used for heating the magnetized water output by magnetization device 2;

[0049] Hydrogen production device 4, hydrogen production device 4 communicates the water outlet of purification device 1, or hydrogen production device is used for communicating with water supply device, and hydrogen production device 4 is used for electrolyzing purified water to generate hydrogen and oxygen;

[0050] The hydrogen mixing device 5 is connected with the water outlet of the instant heating device 3 and the hydrogen outlet of the hydrogen production device 4, and is used for mixing the water output by the instant heating device 3 and the hydrogen output by the hydrogen production device 4 to form normal-temperature hydrogen-rich water or hot hydrogen-rich water.

[0051] The water outlet device 6 is connected with the water outlet of the instant heating device 3 and the water outlet of the hydrogen mixing device 5.

[0052] The multifunctional water making equipment can meet different water demands of users, meanwhile, the utilization rate of the multifunctional water making equipment is improved, in addition, since the preparation method of the hot hydrogen-rich water is that the normal-temperature water is heated first, and then the hydrogen and the hot water are mixed to form the hot hydrogen-rich water, the hot hydrogen-rich water has a higher hydrogen content.

[0053] Referring to Figures 1-2 In an embodiment, the multifunctional water making equipment further comprises:

[0054] The raw water tank 7 is arranged outside the multifunctional water making equipment, and is used for storing raw water.

[0055] The first pump body 8 is connected with the water outlet of the raw water tank 7, and is connected with the water inlet of the purification device 1, and is used for providing power for the water output by the raw water tank 7.

[0056] Referring to Figures 1-2 In an embodiment, the multifunctional water making equipment further comprises:

[0057] The first valve body 9 has a first water inlet connected to the water outlet of the raw water tank 7, a second water inlet connected to the water outlet of the bottled water tank, and a water outlet connected to the water inlet of the first pump body 8. In this way, the water outlet of the raw water tank 7, the water outlet of the bottled water tank, and the water inlet of the first pump body 8 are connected through the first valve body 9, which simplifies the water path structure of the multifunctional water making device. In addition, the second water inlet of the first valve body 9 can be connected to the water outlet of the bottled water tank, so that the multifunctional water making device can supply water through the raw water tank 7 and the bottled water tank, which makes the water supply mode more diversified and can meet different use requirements of users.

[0058] Referring to Figures 1-2 In an embodiment, the multifunctional water making device further comprises:

[0059] The first purified water tank 10 has a water inlet connected to the water outlet of the magnetization device 2.

[0060] The second pump body 20 has a water inlet connected to the water outlet of the first purified water tank 10, and a water outlet connected to the water inlet of the instant heating device 3. The second pump body 20 is used to provide power for the water output by the first purified water tank 10. Since the water inlet of the first purified water tank 10 is connected to the water outlet of the magnetization device 2, the first purified water tank 10 can be used to store magnetized water in advance. In addition, since the water inlet of the second pump body 20 is connected to the water outlet of the first purified water tank 10, and the water outlet of the second pump body 20 is connected to the water inlet of the instant heating device 3, when using normal temperature magnetized water, hot magnetized water, normal temperature hydrogen-rich water, and hot hydrogen-rich water, the purification device 1 does not need to be started, and only the second pump body 20 needs to be started and used to draw the purified water in the first purified water tank 10 to the instant heating device 3, so that the water use efficiency can be improved.

[0061] Referring to Figures 1-2 In an embodiment, the multifunctional water making device further comprises:

[0062] The second purified water tank 30 is used to store purified water. The water outlet of the second purified water tank 30 is connected to the water inlet of the hydrogen production device 4, so as to provide water source for the hydrogen production device 4, and the hydrogen production device 4 does not need to be connected to an external water source. Therefore, the multifunctional water making device is not limited to be placed near a water source, which further improves the use convenience of the multifunctional water making device.

[0063] Referring to Figure 1 In an embodiment, the multifunctional water making device further comprises:

[0064] The resin filter 40 has a water inlet connected to the water outlet of the purifier 1 and a water outlet connected to the water inlet of the second purified water tank 30. In this way, the resin filter 40 can adsorb and remove organic substances and heavy metals in the purified water output by the purifier 1, so as to ensure the water quality required by the hydrogen production device 4, thereby ensuring the working performance of the hydrogen production device 4, and obtaining cleaner hydrogen and oxygen, and further improving the cleanliness of the normal-temperature hydrogen-rich water and the hot hydrogen-rich water.

[0065] Referring to Figure 2 Of course, in other embodiments, the second purified water tank 30 can be provided with purified water by an external water source or manually added by hand.

[0066] Referring to Figures 1-2 In an embodiment, the purifier 1 comprises:

[0067] The first-stage filter 11 has a water inlet connected to a water supply device and is used to remove large-particle impurities and odors in the water output by the water supply device; and

[0068] The second-stage filter 12 has a water inlet connected to the water outlet of the first-stage filter 11 and a water outlet connected to the water inlet of the instant heater 3 and the water inlet of the resin filter 40. The second-stage filter 12 is used to adsorb and remove organic substances and heavy metals in the water output by the first-stage filter 11, so as to improve the water quality.

[0069] In an embodiment, the first-stage filter 11 and the second-stage filter 12 are arranged along a first transverse direction of the multifunctional water production device.

[0070] The first purified water tank 10 and the resin filter 40 are arranged along a first transverse direction of the multifunctional water production device, and the first purified water tank 10 and the second-stage filter 12 are arranged along a second transverse direction of the multifunctional water production device, and the resin filter 40 and the first-stage filter 11 are arranged along the second transverse direction of the multifunctional water production device. The second transverse direction is perpendicular to the first transverse direction, so that the first-stage filter 11, the second-stage filter 12, the first purified water tank 10 and the resin filter 40 are arranged regularly and reasonably, thereby improving the transverse space utilization of the multifunctional water production device, so that the overall structure of the multifunctional water production device is more compact, the occupied space is reduced, and the transportation and installation are more convenient.

[0071] In an embodiment, the second purified water tank 30 is located on the side of the resin filter core 40 away from the first filter core 11, i.e. the instant heating device 3 and the hydrogen production device 4 are both located below the second purified water tank 30, and the instant heating device 3 and the hydrogen production device 4 are arranged along the first lateral direction of the multifunctional water production apparatus, so that the second purified water tank 30, the instant heating device 3 and the hydrogen production device 4 are arranged more regularly and reasonably, the vertical and lateral space utilization of the multifunctional water production apparatus is improved, and the overall structure of the multifunctional water production apparatus is more compact.

[0072] Referring to Figures 1-4 In an embodiment, the hydrogen mixing device 5 comprises:

[0073] a hydrogen mixing pump 51, the water inlet of the hydrogen mixing pump 51 being communicated with the water outlet of the instant heating device 3 and the hydrogen outlet of the hydrogen production device 4, and the hydrogen mixing pump 51 being used for mixing the water output by the instant heating device 3 and the hydrogen output by the hydrogen production device 4 to form normal-temperature hydrogen-rich water or hot hydrogen-rich water;

[0074] a hydrogen mixer 52, the hydrogen mixer 52 having a hydrogen mixing cavity 521, the water inlet of the hydrogen mixing cavity 521 being communicated with the water outlet of the hydrogen mixing pump 51, and the water outlet of the hydrogen mixing cavity 521 being communicated with the water outlet device 6, and the hydrogen mixing cavity 521 being used for mixing the hydrogen in the hydrogen-rich water output by the hydrogen mixing pump 51 and the purified water under the pressure built by the hydrogen mixing pump 51;

[0075] a first water stopper 53, the first water stopper 53 being arranged in the hydrogen mixing cavity 521 and located on the side close to the water outlet of the hydrogen mixing cavity 521, the first water stopper 53 having a first water passing channel, the first water passing channel being communicated with the hydrogen mixing cavity 521 and the water outlet of the hydrogen mixing cavity 521, and the cross-sectional area of the first water passing channel being smaller than that of the hydrogen mixing cavity 521; and

[0076] The second water stopper 54 is inserted into the water inlet of the hydrogen mixing cavity 521, and has a second water passing channel. The second water passing channel is connected with the water outlet of the hydrogen mixing pump 51 and the hydrogen mixing cavity 521, and the cross-sectional area of the second water passing channel is smaller than that of the hydrogen mixing cavity 521. In this way, when the water output by the instant heating device 3 and the hydrogen output by the hydrogen production device 4 are mixed, the water and the hydrogen first enter the hydrogen mixing pump 51, and under the action of the hydrogen mixing pump 51, the water and the hydrogen are mixed to form hydrogen water. Then, the hydrogen water is transported into the hydrogen mixing cavity 521 by the hydrogen mixing pump 51. The hydrogen water in the hydrogen mixing cavity 521 is rolled in the hydrogen mixing cavity 521 under the pressure of the hydrogen mixing pump 51, so that the water and the hydrogen in the hydrogen water are further mixed to obtain hydrogen-rich water with a higher hydrogen concentration. Since the cross-sectional area of the first water passing channel is smaller than that of the hydrogen mixing cavity 521, the water flow rate can be reduced, the pressure holding time can be increased, and the water and the hydrogen in the hydrogen-rich water can be mixed more uniformly and sufficiently to obtain hydrogen-rich water with a higher hydrogen concentration. At the same time, since the cross-sectional area of the second water passing channel is smaller than that of the hydrogen mixing cavity 521, the water in the hydrogen mixing cavity 521 can be prevented from flowing back to the hydrogen mixing pump 51 from the water inlet of the hydrogen mixing cavity 521, so that the water and the hydrogen in the hydrogen mixing cavity 521 can be fully mixed to obtain hydrogen-rich water with a higher hydrogen concentration.

[0077] Referring to Figure 1 In an embodiment, the hydrogen mixing device 5 further comprises:

[0078] The water inlet of the ejector 55 is connected with the water outlet of the instant heating device 3, the gas inlet of the ejector 55 is connected with the hydrogen outlet of the hydrogen production device 4, and the water outlet of the ejector 55 is connected with the water inlet of the hydrogen mixing pump 51. The ejector 55 is used to suck in the water output by the instant heating device 3 and the hydrogen output by the hydrogen production device 4 and mix the hydrogen and the water. In this way, the hydrogen and the water can be initially mixed, and the hydrogen and the water can be mixed more uniformly, so that the hydrogen concentration in the obtained hydrogen-rich water is higher.

[0079] Referring to Figure 2 In an embodiment, the hydrogen mixing device 5 further comprises:

[0080] The water inlet of the ejector 55 is connected with the water outlet of the instant heating device 3, the gas inlet of the ejector 55 is connected with the hydrogen outlet of the hydrogen production device 4, and the water outlet of the ejector 55 is connected with the water inlet of the hydrogen mixing pump 51. The ejector 55 is used to suck in the water output by the instant heating device 3 and the hydrogen output by the hydrogen production device 4 and mix the hydrogen and the water. In this way, the hydrogen and the water can be initially mixed, and the hydrogen and the water can be mixed more uniformly, so that the hydrogen concentration in the obtained hydrogen-rich water is higher.

[0081] Referring to Figures 3-4 In an embodiment, the multifunctional water making equipment further comprises:

[0082] The water path integrator 50 has a pure water inlet 501, a first water flow path 502, a second water flow path 503, a hydrogen mixing cavity 521 and a comprehensive outlet 504. The pure water inlet 501 is connected to the water outlet of the instant heating device 3. The comprehensive outlet 504 is connected to the water inlet of the instant heating device. The first water flow path 502 is connected to the pure water inlet 501 and the comprehensive outlet 504. The pure water inlet 501 and the first water flow path 502 are both connected to the water inlet of the second water flow path 503. The water outlet of the second water flow path 503 is connected to the water inlet of the hydrogen mixing pump 51. The water outlet of the hydrogen mixing cavity 521 is connected to the comprehensive outlet 504.

[0083] The second valve body 60 is arranged on the water path integrator 50. The second valve body 60 is connected to the first water flow path 502 and is used to control the opening and closing of the first water flow path 502. The arrangement of the water path integrator 50 can integrate the second valve body 60, the hydrogen mixing pump 51, the hydrogen mixing device 52 and the water outlet device 6 together, so as to facilitate the integrated installation of the second valve body 60, the hydrogen mixing pump 51, the hydrogen mixing device 52 and the water outlet device 6 on the multifunctional water making equipment, thereby reducing the occupied space and making the overall structure of the multifunctional water making equipment more compact.

[0084] In an embodiment, the multifunctional water making equipment further comprises:

[0085] The through-flow UV device has a water inlet connected to the water outlet of the magnetization device 2 and a water outlet connected to the water inlet of the instant heating device 3. The through-flow UV device is used to sterilize the magnetized water output by the magnetization device 2, thereby achieving the disinfection function and making the magnetized water meet the drinking standard.

[0086] In an embodiment, the second pure water tank 30 is provided with a UV sterilization device for sterilizing and disinfecting the water in the second pure water tank 30.

[0087] In an embodiment, the water supply device can be a tap water source device or an external purification device 1.

[0088] In an embodiment, the hydrogen production device 4 can be an electrolytic cell to reduce the use cost, or can be other applicable hydrogen production structure.

[0089] In an embodiment, the water outlet device 6 can be a water outlet nozzle, a water outlet faucet or other water outlet structure.

[0090] In the description of the present specification, the description of the terms "one embodiment", "some embodiments", "an example", "a specific example", or "some examples" and the like 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. Also, the specific features, structures, materials or characteristics described can be combined in an 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.

[0091] 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 technical features indicated. 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 "a plurality of" is two or more, unless otherwise specifically limited.

[0092] The above is only a specific embodiment of the present application, but the protection scope of the present application is not limited thereto, and any person skilled in the art can easily think of various changes or replacements within the technical scope disclosed in the present application, which should be covered within 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 multi-functional water producing apparatus, characterized by comprising: The multifunctional water making device comprises: a purifying device, a water inlet of which is used for being communicated with a water supply device, the purifying device being used for filtering and purifying water output by the water supply device; a magnetizing device, a water inlet of which is communicated with a water outlet of the purifying device, the magnetizing device being used for magnetizing purified water output by the purifying device; an instant heating device, a water inlet of which is communicated with a water outlet of the magnetizing device, the instant heating device being used for heating magnetized water output by the magnetizing device; a hydrogen generating device, which is communicated with the water outlet of the purifying device or is used for being communicated with the water supply device, the hydrogen generating device being used for electrolyzing purified water to generate hydrogen and oxygen; a hydrogen mixing device, a water inlet of which is communicated with a water outlet of the instant heating device and a hydrogen outlet of the hydrogen generating device, the hydrogen mixing device being used for mixing water output by the instant heating device and hydrogen output by the hydrogen generating device to form normal-temperature hydrogen-rich water or hot hydrogen-rich water; and a water outlet device, a water inlet of which is communicated with the water outlet of the instant heating device and a water outlet of the hydrogen mixing device. The multifunctional water making device further comprises:

2. The multi-functional water producing apparatus according to claim 1, wherein a raw water tank, which is arranged outside the multifunctional water making device and is used for storing raw water; a first pump body, a water inlet of which is communicated with a water outlet of the raw water tank, and a water outlet of which is communicated with a water inlet of the purifying device, the first pump body being used for providing power for water output by the raw water tank. The multifunctional water making device further comprises:

3. The multi-functional water producing apparatus according to claim 2, wherein a first valve body, a first water inlet of which is communicated with a water outlet of the raw water tank, a second water inlet of which is used for being communicated with a water outlet of a bottled water tank, and a water outlet of which is communicated with a water inlet of the first pump body. The multifunctional water making device further comprises:

4. The multi-functional water producing apparatus according to claim 1, wherein a first purified water tank, a water inlet of which is communicated with a water outlet of the magnetizing device; a second pump body, a water inlet of which is communicated with a water outlet of the first purified water tank, and a water outlet of which is communicated with a water inlet of the instant heating device, the second pump body being used for providing power for water output by the first purified water tank. The multifunctional water making device further comprises:

5. The multi-functional water producing apparatus according to claim 4, wherein a second purified water tank, which is used for storing purified water, and a water outlet of which is communicated with a water inlet of the hydrogen generating device. The multifunctional water making device further comprises:

6. The multi-functional water producing apparatus according to claim 5, wherein a resin filter core, a water inlet of which is communicated with a water outlet of the purifying device, and a water outlet of which is communicated with a water inlet of the second purified water tank. The purifying device comprises:

7. The multi-functional water producing apparatus according to claim 6, wherein a first filter core, a water inlet of which is used for being communicated with a water supply device, the first filter core being used for removing large-particle impurities and peculiar smell in water output by the water supply device; and a second filter core, a water inlet of which is communicated with a water outlet of the first filter core, and a water outlet of which is communicated with a water inlet of the instant heating device and a water inlet of the resin filter core, the second filter core being used for adsorbing and removing organic matter and heavy metals in water output by the first filter core. ​ 8. The multi-functional water producing apparatus according to claim 7, wherein The first-stage filter element and the second-stage filter element are arranged along a first transverse direction of the multifunctional water making device; The first purified water tank and the resin filter element are arranged along a first transverse direction of the multifunctional water making device, and the first purified water tank and the second-stage filter element are arranged along a second transverse direction of the multifunctional water making device, and the resin filter element and the first-stage filter element are arranged along the second transverse direction of the multifunctional water making device, and the second transverse direction is perpendicular to the first transverse direction.

9. The multi-functional water producing apparatus according to claim 8, wherein The second purified water tank is located on a side of the resin filter element away from the first-stage filter element, and the instant heating device and the hydrogen production device are both located below the second purified water tank, and the instant heating device and the hydrogen production device are arranged along the first transverse direction of the multifunctional water making device.

10. The multi-functional water producing apparatus as claimed in claim 1, wherein The hydrogen mixing device comprises: a hydrogen mixing pump, a water inlet of the hydrogen mixing pump being communicated with a water outlet of the instant heating device and a hydrogen outlet of the hydrogen production device, the hydrogen mixing pump being used for mixing water output by the instant heating device and hydrogen output by the hydrogen production device to form normal-temperature hydrogen-rich water or hot hydrogen-rich water; a hydrogen mixing device, the hydrogen mixing device having a hydrogen mixing cavity, a water inlet of the hydrogen mixing cavity being communicated with a water outlet of the hydrogen mixing pump, and a water outlet of the hydrogen mixing cavity being communicated with the water outlet device, the hydrogen mixing cavity being used for mixing hydrogen in hydrogen-rich water output by the hydrogen mixing pump and purified water under the pressure build-up of the hydrogen mixing pump; a first water stopper, the first water stopper being arranged in the hydrogen mixing cavity and located on a side close to the water outlet of the hydrogen mixing cavity, the first water stopper having a first water passing channel, the first water passing channel being communicated with the hydrogen mixing cavity and the water outlet of the hydrogen mixing cavity, and a cross-sectional area of the first water passing channel being smaller than that of the hydrogen mixing cavity; and a second water stopper, the second water stopper being inserted into the water inlet of the hydrogen mixing cavity, the second water stopper having a second water passing channel, the second water passing channel being communicated with the water outlet of the hydrogen mixing pump and the hydrogen mixing cavity, and a cross-sectional area of the second water passing channel being smaller than that of the hydrogen mixing cavity.