Hydrogen-rich water machine adopting gas-water separation hydrogen melting technology

By combining a multi-stage filtration structure with activated carbon and resin filter elements in a PEM electrolysis cell, the problem of poor mineralization effect in existing hydrogen-rich water machines has been solved, achieving efficient purification and mineralization, and outputting hydrogen-rich water to meet consumer demand.

CN223973951UActive Publication Date: 2026-03-06GUANGDONG HYDROGEN & ENVIRONMENTAL PROTECTION TECHNOLOGY CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-02
Publication Date
2026-03-06

AI Technical Summary

Technical Problem

Existing hydrogen-rich water machines have poor mineralization and limited filtration effects during the water treatment process, failing to meet consumers' diverse needs for healthy water.

Method used

It adopts a multi-stage filtration structure, including a first purification module, a mineralization module, a magnetization module and a hydrogen melting module connected in sequence, and a hydrogen production module connected in parallel. It uses a variety of activated carbon filter cartridges and resin filter cartridges for multi-stage filtration and mineralization, and combines it with a PEM electrolyzer to generate hydrogen, thereby enhancing the water purification and mineralization effect.

Benefits of technology

It achieves multi-stage filtration and mineralization, improving water purity and mineral dissolution efficiency, and outputs healthy drinking water rich in hydrogen. It is easy to operate and has a single input source.

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Abstract

The utility model relates to the technical field of water dispensers, and discloses a hydrogen-rich water machine adopting a gas-water separation hydrogen melting technology, which comprises a first purification module, a mineralization module, a magnetization module and a hydrogen melting module which are connected in sequence, the hydrogen production module is connected between the first purification module and the hydrogen melting module in parallel; the mineralization module comprises a first activated carbon filter element, a second activated carbon filter element, a PP cotton composite filter element and a carbon rod filter element which are connected in sequence; the first activated carbon filter element is not subjected to acid pickling; the second activated carbon filter element is subjected to acid pickling. The hydrogen-rich water machine for providing the gas-water separation hydrogen melting technology, provided by the utility model, can be used for carrying out multi-section filtration and improving the mineralization effect.
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Description

Technical Field

[0001] This utility model relates to the field of water dispenser technology, and in particular to a hydrogen-rich water dispenser using gas-water separation and hydrogen melting technology. Background Technology

[0002] In recent years, with the increasing awareness of health, hydrogen-rich water machines using gas-water separation and hydrogen dissolution technology have received widespread attention because they can produce drinking water rich in hydrogen and with potential antioxidant effects on the human body. Traditional drinking water purification equipment mainly focuses on removing impurities, odors, residual chlorine, and some harmful substances, but its ability to mineralize, activate, and dissolve hydrogen in water is relatively limited, failing to meet consumers' diverse needs for healthy water.

[0003] In existing technologies, some hydrogen-rich water machines using gas-water separation and hydrogen melting technology often employ a single filtration structure and mineralization module during the water treatment process. As a result, the mineralized drinking water still contains impurities, and the filtration and mineralization effects are not ideal. Utility Model Content

[0004] The purpose of this invention is to provide a hydrogen-rich water machine with gas-water separation and hydrogen melting technology, which can perform multi-stage filtration and increase the mineralization effect.

[0005] To achieve the above objectives, this utility model provides a hydrogen-rich water machine using gas-water separation and hydrogen melting technology, comprising:

[0006] The first purification module, mineralization module, magnetization module, and hydrogen melting module are connected in sequence.

[0007] A hydrogen production module, wherein the hydrogen production module is connected in parallel between the first purification module and the hydrogen melting module;

[0008] The mineralization module includes a first activated carbon filter element, a second activated carbon filter element, a PP cotton composite filter element, and a carbon rod filter element connected in sequence.

[0009] The first activated carbon filter element was not acid-washed;

[0010] The second activated carbon filter element is acid washed.

[0011] Furthermore, the hydrogen-rich water machine using the gas-water separation hydrogen melting technology also includes a water pump. The first purification module includes a PP cotton filter, a third activated carbon filter, and an RO reverse osmosis filter connected in sequence, and the water pump is connected between the third activated carbon filter and the RO reverse osmosis filter.

[0012] Furthermore, the hydrogen production module includes a resin filter element and an electrolyzer connected in sequence. The water outlet of the resin filter element is connected to the water inlet of the RO reverse osmosis filter element, and the hydrogen output end of the electrolyzer is connected to the hydrogen melting module.

[0013] Furthermore, the electrolytic cell is a PEM electrolytic cell.

[0014] Furthermore, the hydrogen-rich water machine using the gas-water separation hydrogen melting technology also includes a pressure tank, which is connected in parallel between the first purification module and the mineralization module.

[0015] Furthermore, the hydrogen-rich water machine of the gas-water separation hydrogen melting technology also includes a water storage tank, which is connected in series between the magnetization module and the hydrogen melting module. An ice tank and an ice water valve are connected in sequence between the water storage tank and the hydrogen melting module, and a normal temperature valve is connected in parallel between the water storage tank and the hydrogen melting module.

[0016] Furthermore, the output end of the hydrogen melting module is connected to a water outlet pipeline, and a first water outlet valve and a flow valve are sequentially arranged along the liquid flow direction on the water outlet pipeline. A second water outlet valve and a heating module are connected in parallel to the first water outlet valve.

[0017] Compared with existing technologies, the hydrogen-rich water machine based on the gas-water separation hydrogen melting technology of this utility model has the following advantages: The first purification module removes large particulate impurities and some organic pollutants from the water through primary filtration, providing pure raw water for subsequent treatment; the mineralization module, through a combination of a first activated carbon filter and a second activated carbon filter, simultaneously achieves efficient adsorption of impurities and optimizes water quality, with multi-stage filtration and purification to improve water purity; the second activated carbon filter, through acid washing treatment, removes impurities that may affect water quality, while creating a more stable environment for the mineralization filter. The acidic environment enhances mineral dissolution efficiency; the addition of PP cotton composite filter and carbon rod filter further filters out minute impurities that may be introduced during the mineralization process and mineralizes the flowing water, ensuring that the mineralized water is purer; the hydrogen production module is connected in parallel between the first purification module and the hydrogen melting module. The raw water entering the hydrogen-rich water machine with this gas-water separation hydrogen melting technology is partially filtered and purified, and partially used to produce hydrogen. The hydrogen-rich water machine with this gas-water separation hydrogen melting technology can output hydrogen-rich water with only raw water input. Its input source is singular, and it does not require multiple input sources, making operation more convenient. Attached Figure Description

[0018] Figure 1 This is a system circuit diagram of a hydrogen-rich water machine based on the gas-water separation and hydrogen melting technology of this utility model embodiment;

[0019] Figure 2 This is a schematic diagram of the overall structure of the hydrogen-rich water machine based on the gas-water separation and hydrogen melting technology of this utility model embodiment;

[0020] In the diagram, 1 is the first purification module; 101 is the PP cotton filter element; 102 is the third activated carbon filter element; and 103 is the RO reverse osmosis filter element.

[0021] 2. Mineralization module; 201. First activated carbon filter element; 202. Second activated carbon filter element; 203. PP cotton composite filter element; 204. Carbon rod filter element;

[0022] 3. Magnetization module;

[0023] 4. Hydrogen melting module;

[0024] 5. Hydrogen production module; 501. Resin filter element; 502. Electrolyzer;

[0025] 6. Pressure tank;

[0026] 7. Water storage tank; 701. Ice tank; 702. Ice water valve; 703. Normal temperature valve;

[0027] 8. Water outlet pipe; 801. First water outlet valve; 802. Flow valve; 803. Second water outlet valve; 804. Heating module;

[0028] 9. Water pump. Detailed Implementation

[0029] The specific embodiments of this utility model will be further described in detail below with reference to the accompanying drawings and examples. The following examples are used to illustrate this utility model, but are not intended to limit the scope of this utility model.

[0030] In this description of the utility model, the terms "upper," "lower," "left," "right," "front," "rear," "inner," "outer," "lateral," and "longitudinal," etc., indicating orientations or positional relationships, are based on the orientations or positional relationships shown in the accompanying drawings. They are used solely for the convenience of describing the utility model and for simplifying the description, and are not intended to limit the indicated device, element, or component to having a specific orientation, or to be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on the utility model. Those skilled in the art can understand the specific meaning of these terms in this utility model according to the specific circumstances.

[0031] In this description of the utility model, the terms "provided with," "set up," "connected," and "placed" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral structure; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium, or an internal connection between two devices, components, or components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.

[0032] Furthermore, the terms "first," "second," etc., are primarily used to distinguish different devices, elements, or components (which may be the same or different in specific type and construction), and are not intended to indicate or imply the relative importance or quantity of the indicated devices, elements, or components. Unless otherwise stated, "a plurality of" means two or more.

[0033] The technical solution of this utility model will be further described below with reference to the embodiments and accompanying drawings.

[0034] like Figure 1 , 2 As shown in the figure, a hydrogen-rich water machine using gas-water separation and hydrogen melting technology according to an embodiment of this utility model includes:

[0035] The first purification module 1, mineralization module 2, magnetization module 3, and hydrogen melting module 4 are connected in sequence.

[0036] Hydrogen production module 5 is connected in parallel between the first purification module 1 and the hydrogen melting module 4.

[0037] The mineralization module 2 includes a first activated carbon filter element 201, a second activated carbon filter element 202, a PP cotton composite filter element 203, and a carbon rod filter element 204 connected in sequence.

[0038] The first activated carbon filter element 201 was not acid-washed;

[0039] The second activated carbon filter element 202 is acid-washed.

[0040] Based on the above technical solution, the first purification module 1 removes large particulate impurities and some organic pollutants from the water through primary filtration, providing pure raw water for subsequent treatment; the mineralization module 2, through the combination of the first activated carbon filter element 201 and the second activated carbon filter element 202, simultaneously achieves efficient adsorption of impurities and optimizes water quality, providing multi-stage filtration and purification to improve water purity; the second activated carbon filter element 202, through acid washing treatment, removes impurities that may affect water quality, while creating a more stable acidic environment for the mineralization filter element, thereby enhancing mineralization. Dissolution efficiency; the addition of PP cotton composite filter element 203 and carbon rod filter element 204 further filters out tiny impurities that may be introduced during the mineralization process, and mineralizes the flowing water to ensure that the mineralized water is purer; the hydrogen production module 5 is connected in parallel between the first purification module 1 and the hydrogen melting module 4. The raw water entering the hydrogen-rich water machine of this gas-water separation hydrogen melting technology is partially filtered and purified, and partially used for hydrogen production. The hydrogen-rich water machine of this gas-water separation hydrogen melting technology can output hydrogen-rich water with only raw water input. Its input source is single and does not require multiple input sources, making operation more convenient.

[0041] Preferably, the hydrogen-rich water machine using the gas-water separation hydrogen melting technology also includes a water pump 9. The first purification module 1 includes a PP cotton filter element 101, a third activated carbon filter element 102, and an RO reverse osmosis filter element 103 connected in sequence. The water pump 9 is connected between the third activated carbon filter element 102 and the RO reverse osmosis filter element 103.

[0042] PP cotton filter cartridge 101, as the first layer of filtration material, effectively removes large particulate impurities from the water, providing a preliminary purification foundation for subsequent filtration. The third activated carbon filter cartridge 102 further adsorbs odors, residual chlorine, and organic pollutants from the water, significantly improving the taste and protecting subsequent fine filtration units from contamination. The RO reverse osmosis filter cartridge 103 removes the vast majority of heavy metals, bacteria, viruses, and dissolved salts, providing highly pure drinking water. A water pump 9 is positioned between the third activated carbon filter cartridge 102 and the RO reverse osmosis filter cartridge 103. The third activated carbon filter cartridge 102 can naturally adsorb most impurities, pre-treating the water for the RO reverse osmosis filter cartridge 103 and reducing its workload. The water pump 9 increases the pressure, ensuring the RO reverse osmosis filter cartridge 103 filters under the set working pressure. Furthermore, the placement of the water pump 9 in this position reduces the impact of the raw water before filtration on the pump 9, extending its service life.

[0043] Preferably, the hydrogen production module 5 includes a resin filter element 501 and an electrolyzer 502 connected in sequence. The outlet of the resin filter element 501 is connected to the inlet of the RO reverse osmosis filter element 103, and the hydrogen output of the electrolyzer 502 is connected to the hydrogen dissolving module 4. The resin filter element 501 removes hardness components such as calcium and magnesium ions from the water through ion exchange technology, effectively reducing the hardness of the water and preventing scaling problems in the electrolyzer 502 after electrolysis. Softening the water can improve the hydrogen production efficiency and extend the service life of the electrolyzer 502.

[0044] More preferably, the electrolyzer 502 is a PEM electrolyzer 502. The PEM electrolyzer 502 directly generates hydrogen using a proton exchange membrane, avoiding side reaction problems; the PEM electrolyzer 502 has low requirements for influent water and is durable, and when used in conjunction with the resin filter 501, it can provide a high-quality water source, avoiding frequent replacement of the filter or maintenance of the electrolyzer 502.

[0045] Preferably, the hydrogen-rich water machine using gas-liquid separation hydrogen melting technology also includes a pressure tank 6, which is connected in parallel between the first purification module 1 and the mineralization module 2. The pressure tank 6 serves a water storage function, providing a buffer for subsequent water use and preventing water interruptions due to insufficient water flow during peak usage periods, thus ensuring the continuity and stability of the water flow. It also alleviates system pressure fluctuations; in cases of unstable inlet water pressure, the pressure tank 6 can output a stable water flow to supplement and stabilize the inlet water pressure, ensuring the normal operation of the subsequent mineralization module 2 and magnetization module 3.

[0046] Preferably, the hydrogen-rich water machine using gas-water separation and hydrogen melting technology also includes a water storage tank 7. The water storage tank 7 is connected in series between the magnetization module 3 and the hydrogen melting module 4. An ice tank 701 and an ice water valve 702 are connected sequentially between the water storage tank 7 and the hydrogen melting module 4. A room temperature valve 703 is connected in parallel between the water storage tank 7 and the hydrogen melting module 4. The combination of the ice tank 701 and the ice water valve 702 can quickly cool the water in the water storage tank 7, providing users with cool hydrogen-rich drinking water to meet diverse water needs. The room temperature valve 703, connected in parallel between the water storage tank 7 and the hydrogen melting module 4, allows users to choose room temperature water or cold water to suit different drinking scenarios.

[0047] Preferably, the output end of the hydrogen melting module 4 is connected to a water outlet pipe 8. A first water outlet valve 801 and a flow valve 802 are sequentially arranged on the water outlet pipe 8 along the liquid flow direction. A second water outlet valve 803 and a heating module 804 are connected in parallel to the first water outlet valve 801. The second water outlet valve 803 is connected in parallel to the first water outlet valve 801, allowing users to flexibly switch between regular water outlet and heated water outlet to meet the water needs of different scenarios.

[0048] In summary, this utility model embodiment provides a hydrogen-rich water machine using gas-water separation hydrogen melting technology. Its first purification module 1 removes large particulate impurities and some organic pollutants from the water through primary filtration, providing pure raw water for subsequent treatment. The mineralization module 2, through a combination of a first activated carbon filter element 201 and a second activated carbon filter element 202, simultaneously achieves efficient adsorption of impurities and optimizes water quality, providing multi-stage filtration and purification to improve water purity. The second activated carbon filter element 202 undergoes acid washing treatment to remove impurities that may affect water quality, while simultaneously creating a more stable acidity for the mineralization filter element. The addition of PP cotton composite filter element 203 and carbon rod filter element 204 further filters out tiny impurities that may be introduced during the mineralization process and mineralizes the flowing water, ensuring that the mineralized water is purer. The hydrogen production module 5 is connected in parallel between the first purification module 1 and the hydrogen melting module 4. The raw water entering the hydrogen-rich water machine of this gas-water separation hydrogen melting technology is partially filtered and purified, and partially used to produce hydrogen. The hydrogen-rich water machine of this gas-water separation hydrogen melting technology can output hydrogen-rich water with only raw water input. Its input source is single and does not require multiple sources, making the operation more convenient.

[0049] The above description is only a preferred embodiment of the present utility model. It should be noted that for those skilled in the art, several improvements and substitutions can be made without departing from the technical principles of the present utility model, and these improvements and substitutions should also be considered within the protection scope of the present utility model.

Claims

1. A hydrogen-rich water machine of gas-water separation hydrogen fusion technology, characterized in that, Comprise: First purification module (1), mineralization module (2), magnetization module (3) and hydrogen fusion module (4) are connected in turn; Hydrogen production module (5), the hydrogen production module (5) is parallelly connected between the first purification module (1) and the hydrogen fusion module (4); The mineralization module (2) comprises first activated carbon filter element (201), second activated carbon filter element (202), PP cotton composite filter element (203) and carbon rod filter element (204) connected in turn; The first activated carbon filter element (201) is not pickled; The second activated carbon filter element (202) is pickled.

2. The hydrogen-rich water machine of claim 1, wherein Further comprising water pump (9), the first purification module (1) comprises PP cotton filter element (101), third activated carbon filter element (102) and RO reverse osmosis filter element (103) connected in turn, and the water pump (9) is connected between the third activated carbon filter element (102) and the RO reverse osmosis filter element (103).

3. The hydrogen-rich water machine of claim 1, wherein The hydrogen production module (5) comprises resin filter element (501) and electrolytic cell (502) connected in turn, the water outlet end of the resin filter element (501) is connected with the water inlet end of the RO reverse osmosis filter element (103), and the hydrogen output end of the electrolytic cell (502) is connected with the hydrogen fusion module (4).

4. The hydrogen-rich water machine of claim 3, wherein the hydrogen fusion technology is a gas-water separation hydrogen fusion technology. The electrolytic cell (502) is a PEM electrolytic cell.

5. The hydrogen-rich water machine of claim 1, wherein Further comprising pressure barrel (6), the pressure barrel (6) is parallelly connected between the first purification module (1) and the mineralization module (2).

6. The hydrogen-rich water machine of the gas-water separation hydrogen fusion technology according to claim 1, characterized in that, Further comprising water storage tank (7), the water storage tank (7) is connected between the magnetization module (3) and the hydrogen fusion module (4), and the water storage tank (7) is connected with ice tank (701) and ice water valve (702) in turn between the hydrogen fusion module (4), and the water storage tank (7) is parallelly connected with normal temperature valve (703) between the hydrogen fusion module (4).

7. The hydrogen-rich water machine of the gas-water separation hydrogen fusion technology according to claim 1, characterized in that, The output end of the hydrogen fusion module (4) is connected with water outlet pipeline (8), the first water outlet valve (801) and flow valve (802) are arranged in turn on the water outlet pipeline (8) along the liquid flow direction, and the second water outlet valve (803) and heating module (804) are parallelly connected on the first water outlet valve (801).

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