A hydrogen-rich water manufacturing device and a method of using the same
By integrating an electrolysis mechanism and a power supply within the cup, combined with a MgH2 hydrogen production mechanism, the limitations of existing devices in terms of application scenarios have been solved, enabling portable, safe, and efficient production of hydrogen-rich water.
Patent Information
- Application Number
- CN202410346812.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-03-25
- Publication Date
- 2025-10-17
- Estimated Expiration
- 2044-03-25
AI Technical Summary
Existing hydrogen-rich water production devices require placement on a base and power supply for use, which limits their application and prevents them from operating independently.
A hydrogen-rich water production device integrating an electrolysis mechanism and a power supply within a cup body was designed. Hydrogen is generated by electrolyzing water using platinum electrodes, and the hydrogen is collected and transported through a water storage box and a gas pump system. Combined with a MgH2 hydrogen production mechanism, two hydrogen generation modes are provided, using MgH2 to react with water to generate hydrogen.
It enables portable hydrogen-rich water production, improves safety, increases hydrogen utilization, extends device life, and is economical and environmentally friendly.
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Figure CN118005145B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of hydrogen-rich water manufacturing, and particularly relates to a hydrogen-rich water manufacturing device and a use method thereof. BACKGROUND
[0002] Hydrogen-rich water is a kind of water containing rich hydrogen, which is a kind of truly small-molecule water, negative potential water and weak alkaline water. The hydrogen-rich water is a kind of good antioxidant and anti-aging water. Hydrogen has strong penetrability, can easily enter cells such as cell nucleus and mitochondria, and can selectively neutralize hydroxyl radicals, nitrite anions and the like. Hydrogen ions combine with active oxygen to be reduced into water and discharged out of the body. After drinking the hydrogen-rich water, trace elements in the hydrogen-rich water can intervene and significantly inhibit the formation of esophageal cancer. Meanwhile, the hydrogen-rich water has the advantages of late tumor formation, low tumor formation rate and small tumor volume, thereby having a beneficial effect on human body.
[0003] According to the search, in the Chinese patent with the publication number CN105174384A and the patent name of an integrated hydrogen-rich water manufacturing device, it is disclosed that the application further comprises a base, a circuit board is arranged in the base, a base contact point electrically connected with the circuit board is arranged on the upper surface of the base, a drinking cup contact point electrically connected with internal electrical devices of the drinking cup is arranged on the bottom surface of the drinking cup corresponding to the base contact point, and the base contact point and the drinking cup contact point are in contact. However, the hydrogen-rich water manufacturing device needs to be placed on the base to be powered on before use, and the electrolysis mechanism cannot work independently in the drinking cup, which has certain limitations for use occasions. Therefore, the present application provides a hydrogen-rich water manufacturing device and a use method thereof to solve the above problems. SUMMARY
[0004] The present application aims to provide a hydrogen-rich water manufacturing device and a use method thereof to solve the problems in the background.
[0005] To achieve the above-mentioned purpose, the present application provides the following technical solutions.
[0006] The application discloses a hydrogen-rich water manufacturing device, which comprises a cup body, a cover body arranged at the top of the cup body, a water storage box arranged at the top of the cup body, a power supply device arranged in the cup body, wherein the top end of the power supply device extends upwards and penetrates through the water storage box, an electrolysis mechanism arranged in the cup body, wherein the electrolysis mechanism comprises an electrolysis container and an electrolysis assembly, the electrolysis assembly comprises an electrode holder fixed in the cup body, an electrode rod arranged at the bottom of the electrode holder, wherein the electrode holder is arranged above the electrolysis container and the electrode rod extends downwards and is inserted into the electrolysis container, a switch two arranged on the outer wall of the cup body and connected with the power supply device and the electrode holder, wherein the power supply device provides power for the electrode holder after the switch two is started, the electrode rod is electrified, the water in the electrolysis container is electrolyzed by the electrode rod, the electrode rod adopts a platinum electrode, the pollution is small, and relatively clean hydrogen can be generated, a first valve arranged between the water storage box and the cup body, wherein the first valve comprises a pipeline penetrating through the water storage box, a plurality of flow guide holes formed in the outer wall of the pipeline and communicated with the internal cavity of the water storage box, a hole plate fixed in the pipeline, a leakage hole arranged at the top of the hole plate, a rotating shaft arranged at the middle of the top of the hole plate, a semicircular baffle arranged on the outer wall of the rotating shaft, and a knob arranged at the top end of the rotating shaft and located at the top of the water storage box, and the bottom end of the pipeline penetrates downwards through the electrode holder and extends above the electrolysis container.
[0007] As a further scheme of the application, an installation groove is formed in the internal cavity of the water storage box, the power supply device is in a cylindrical structure, and the top end of the power supply device is located in the installation groove.
[0008] As a further scheme of the application, an MgH2 hydrogen production mechanism is arranged on one side of the internal cavity of the cup body and close to the electrolysis mechanism, the MgH2 hydrogen production mechanism comprises a reaction container and a heating assembly, one side wall of the cup body is provided with a insertion hole, and the reaction container is inserted into the cup body from the outside of the cup body through the insertion hole.
[0009] As a further scheme of the application, the heating assembly comprises a supporting seat, a heating disc is arranged at the top of the supporting seat, and the bottom of the reaction container is in contact with the top of the heating disc after the reaction container is inserted into the cup body.
[0010] As a further scheme of the application, a supporting plate is arranged below the electrolysis container in the internal cavity of the cup body, and a main gas pump and a secondary gas pump are fixed on the supporting plate.
[0011] As a further scheme of the present application, the air inlet of the main air pump is connected with a main suction pipe, the end of the main suction pipe extends to the inside of the electrolysis container, the air inlet of the auxiliary air pump is connected with an auxiliary suction pipe, the end of the auxiliary suction pipe extends to the inside of the reaction container, the air outlet of the main air pump and the auxiliary air pump is connected with an air outlet pipe, the end of the air outlet pipe is connected with a gas storage box, the bottom of the gas storage box is provided with an exhaust pump, the extending end of the exhaust pump is connected with a guide pipe, and the end of the guide pipe is connected with an exhaust pipe.
[0012] As a further scheme of the present application, the water storage box and the cup body are further provided with a second valve, the structure of the second valve is the same as that of the first valve, the bottom extending end of the second valve extends into the cup body and is located above the reaction container.
[0013] As a further scheme of the present application, the bottom of the cup body is threadedly combined with a base, the base is a silica gel structure, the outer wall of the base is a folding layer, and the base has elasticity. When the base is extruded, it is compressed, and the bottom of the base can be attached to the cup mouth of the external water cup to ensure that after the gas is discharged from the exhaust pipe, the gas directly enters the water in the water cup and cannot leak to the outside of the water cup.
[0014] A method for using a hydrogen-rich water manufacturing device, comprising the following steps:
[0015] S1: First, open the cover body and inject water into the water storage box;
[0016] S2: Use the electrolysis mechanism to generate hydrogen: by opening the first valve, the water in the water storage box enters the electrolysis container through the pipeline of the first valve, and the electrode rod starts to electrolyze water and generate hydrogen and oxygen after being electrified;
[0017] S3: Start the main air pump, which extracts hydrogen and oxygen in the electrolysis container and transports them to the gas storage box;
[0018] S4: The user fills the external water cup with water to be drunk, then aligns the exhaust pipe with the cup mouth of the water cup, and then starts the exhaust pump. Hydrogen and oxygen are pumped by the exhaust pump to the exhaust pipe and sprayed from the exhaust pipe, then injected into the water cup and mixed with water, and the hydrogen-rich water manufacturing is completed;
[0019] S5: Use the MGH2 hydrogen generation mechanism to generate hydrogen: add MGH2 to the reaction container, then insert the reaction container into the cup body from the insertion hole, and then open the second valve. The water in the water storage box enters the reaction container through the second valve;
[0020] S6: After the MGH2 reacts with water to generate hydrogen, start the auxiliary air pump, which extracts hydrogen in the reaction container through the auxiliary suction pipe, and the hydrogen enters the gas storage box;
[0021] S7: start the exhaust pump, the exhaust pump extracts hydrogen in the hydrogen storage box, hydrogen is transported to the exhaust pipe through the pipeline, and then is discharged through the exhaust pipe;
[0022] S8: the user fills the water cup with the water to be drunk, then aims the exhaust pipe at the cup opening of the water cup, and then starts the exhaust pump, hydrogen is pumped to the exhaust pipe by the exhaust pump, and is sprayed from the exhaust pipe, then is injected into the water cup and mixed with the water, completing the preparation of hydrogen-rich water.
[0023] Compared with the prior art, the beneficial effects of the present application are:
[0024] 1、The present application uses the water storage box and the cup body, integrates the electrolysis mechanism and the power supply device in the cup body, the power supply device supplies power to the electrolysis mechanism, the water storage box releases water into the cup body, the water amount in the electrolysis mechanism is controlled, the electrolysis mechanism can electrolyze water, and hydrogen can be generated, the structure is convenient to carry, the water storage box and the electrolysis mechanism are in a separated state, safety is significantly improved, and the hydrogen-rich water manufacturing device is convenient to move and carry.
[0025] 2、The present application uses the MgH2 hydrogen production mechanism arranged in the cup body, so that the hydrogen-rich water manufacturing device has two hydrogen production modes, can be switched according to the needs of the user, the service life of the hydrogen-rich water manufacturing device is also greatly improved, and the hydrogen-rich water manufacturing device can be used for a long time.
[0026] 3、The present application uses the gas storage box arranged in the cup body, the hydrogen and oxygen generated by reaction are extracted into the gas storage box by the gas pump, hydrogen can be quickly saved, hydrogen can be sent to the outside from the gas storage box according to the needs of the user, hydrogen is not wasted, and the hydrogen-rich water manufacturing device is more energy-saving and environment-friendly. DETAILED DESCRIPTION
[0027] Figure 1 It is a structural schematic diagram of the present application.
[0028] Figure 2 It is a perspective view of the present application.
[0029] Figure 3 It is a structural schematic diagram of the water storage box and the cup body of the present application.
[0030] Figure 4 It is a structural schematic diagram of the electrolysis container, the reaction container and the gas storage box of the present application.
[0031] Figure 5 It is Figure 4 It is a state diagram after the electrolysis container and the reaction container are removed;
[0032] Figure 6 It is a structural schematic diagram of the power supply device, the electrolysis assembly and the heating assembly of the present application.
[0033] Figure 7 Fig. 1 is a perspective view of the electrolysis assembly of the present application;
[0034] Figure 8 Fig. 2 is a schematic view of the structure of the water storage box and the second valve of the present application;
[0035] Figure 9 Fig. 3 is a schematic view of the internal structure of the first valve of the present application;
[0036] Figure 10 Fig. 4 is a schematic view of the internal structure of the second valve of the present application; Figure 9 Fig. 5 is an enlarged view of part A in Fig. 4.
[0037] In the figure: 1, water storage box; 2, cover; 3, cup body; 4, power supply device; 5, first valve; 51, knob; 52, rotating shaft; 53, pipeline; 54, flow guide hole; 55, hole plate; 56, baffle; 6, second valve; 7, sealing washer; 8, switch one; 9, base; 10, reaction container; 11, switch two; 12, push plate; 13, exhaust pipe; 14, mounting groove; 15, electrode seat; 151, electrode rod; 16, insertion hole; 17, electrolysis container; 18, supporting plate; 19, fixed plate; 20, gas storage box; 21, exhaust pump; 22, conduit; 23, supporting seat; 24, main suction pipe; 25, main gas pump; 26, auxiliary gas pump; 27, auxiliary suction pipe; 28, gas outlet pipe; 29, wiring base; 30, heating disc. DETAILED DESCRIPTION
[0038] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all the other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.
[0039] Embodiment one: please refer to Figures 1-10The embodiment of the present application discloses a hydrogen-rich water manufacturing device, which comprises a cup body 3, a cover body 2 arranged on the top of the cup body 3, a water injection opening arranged on the top of a water storage box 1, a threaded pipe arranged at the bottom end of the cover body 2, a sealing rubber ring arranged on the outer wall of the threaded pipe, the water storage box 1 arranged on the top of the cup body 3, a power supply device 4 arranged in the cup body 3, and the top end of the power supply device 4 extending upwards and penetrating through the water storage box 1.
[0040] The inside of the cup body 3 is provided with an electrolysis mechanism, which comprises an electrolysis container 17 and an electrolysis assembly, the electrolysis assembly comprises an electrode holder 15 fixed in the cup body 3, the bottom of the electrode holder 15 is provided with an electrode rod 151, the electrode holder 15 is located above the electrolysis container 17, the electrode rod 151 extends downwards and is inserted into the electrolysis container 17, specifically, a switch two 11 is arranged on the outer wall of the cup body 3, the switch two 11 is connected with the power supply device 4 and the electrode holder 15, after the switch two 11 is started, the power supply device 4 provides power for the electrode holder 15, the electrode rod 151 is electrified, the water in the electrolysis container 17 is electrolyzed by the electrode rod 151, the electrode rod 151 adopts platinum electrode, has small pollution and can produce relatively clean hydrogen.
[0041] The first valve 5 is arranged between the water storage box 1 and the cup body 3, and the first valve 5 comprises a pipeline 53 penetrating through the water storage box 1, a plurality of flow guide holes 54 are formed in the outer wall of the pipeline 53, the flow guide holes 54 are communicated with the internal cavity of the water storage box 1, a hole plate 55 is fixed in the pipeline 53, the hole plate 55 is a cylindrical structure, a leakage hole is arranged at the top of the hole plate 55, the leakage hole is located at the one-half position of the top of the hole plate 55, a rotating shaft 52 is arranged at the middle of the top of the hole plate 55, a semicircular baffle 56 is arranged on the outer wall of the rotating shaft 52, the baffle 56 is a semicircular structure, the bottom of the baffle 56 is tightly combined with the top of the hole plate 55, so that there is no gap between the hole plate 55 and the baffle 56, and water in the pipeline 53 cannot easily flow downward, a knob 51 is arranged at the top end of the rotating shaft 52, the knob 51 is located at the top of the water storage box 1, the bottom end of the pipeline 53 penetrates downward through the electrode seat 15 and extends above the electrolytic container 17, and a semicircular groove is formed in the side wall of the electrode seat 15, so as to adapt to the power device 4, facilitate the power device 4 to be inserted in the cup body 3, and ensure that the electrode seat 15 can be kept in a horizontal state in the cup body 3.
[0042] Embodiment two: please refer to Figures 1-10 , the inside of the cup body 3 is provided with an MgH2 hydrogen production mechanism near one side of the electrolysis mechanism, the MgH2 hydrogen production mechanism comprises a reaction container 10 and a heating assembly, a side wall of the cup body 3 is provided with a bushing 16, the reaction container 10 is inserted into the cup body 3 from the outside of the cup body 3 through the bushing 16;
[0043] The second valve 6 is further arranged between the water storage box 1 and the cup body 3, the structure of the second valve 6 is the same as that of the first valve 5, the bottom extension end of the second valve 6 extends into the cup body 3 and is located above the reaction container 10, specifically, the water in the water storage box 1 can be injected into the reaction container 10 by using the same operation method of the first valve 5, two push plates 12 (see Figure 1 ) are further arranged on the outer wall of the reaction container 10, in the process of taking the reaction container 10, the reaction container 10 can be moved by pinching the two push plates 12 with fingers, which is beneficial to the reaction container 10 to separate from the cup body 3, MgH2 refers to magnesium hydride, MgH2 is a hydrogen storage material, when the metal hydride MgH2 is put into water, -1 valence hydrogen ion (H-) can rapidly combine with +1 valence hydrogen ion (H+) ionized in water to generate hydrogen gas, and the chemical reaction equation is: MgH2+2H2O→Mg(OH)2+2H2↑.
[0044] The heating assembly comprises a support seat 23, the top of the support seat 23 is provided with a heating disc 30, after the reaction container 10 is inserted into the cup body 3, the bottom of the reaction container 10 is in contact with the top of the heating disc 30, the inside of the cup body 3 located below the electrolytic container 17 is provided with a supporting plate 18, the supporting plate 18 is fixed with a main air pump 25 and a secondary air pump 26; the air inlet of the main air pump 25 is connected with a main suction pipe 24, the end of the main suction pipe 24 extends to the inside of the electrolytic container 17, the air inlet of the secondary air pump 26 is connected with a secondary suction pipe 27, the end of the secondary suction pipe 27 extends to the reaction container 10, the air outlets of the main air pump 25 and the secondary air pump 26 are both connected with an air outlet pipe 28, the end of the air outlet pipe 28 is connected with a gas storage box 20, the bottom of the gas storage box 20 is provided with an exhaust pump 21, the extension end of the exhaust pump 21 is connected with a guide pipe 22, the end of the guide pipe 22 is connected with an exhaust pipe 13, specifically, the outside of the exhaust pump 21 is provided with a fixed plate 19, the fixed plate 19 is fixed in the inside of the cup body 3, the two ends of the fixed plate 19 are fixed with the cup body 3 through threads, the fixed plate 19 is used for supporting the exhaust pump 21, the outside wall of the cup body 3 is also provided with a switch three, after the switch three is started, the power supply device 4 provides power for the exhaust pump 21, the exhaust pump 21 is electrified to work, the exhaust pump 21 extracts hydrogen and oxygen in the gas storage box 20, the outside wall of the cup body 3 is provided with a switch one 8, the switch one 8 is connected with the terminal block 29 through a cable, after the switch one 8 is started, the power supply device 4 provides power for the heating disc 30, the heating disc 30 generates heat and heats the bottom of the reaction container 10, after the reaction container 10 is heated, the heat is transmitted to the water and MgH2 in the reaction container 10, so as to accelerate the decomposition of MgH2, and hydrogen can be obtained more quickly.
[0045] The bottom of the cup body 3 is threadedly combined with a base 9, the base 9 is a silica gel structure, the outer wall of the base 9 is a folding layer, the base 9 has elasticity, when the base 9 is extruded and compressed, the bottom of the base 9 can be attached to the cup mouth of an external water cup, so that after the gas is discharged from the exhaust pipe 13, the gas directly enters the water in the water cup and cannot leak to the outside of the water cup.
[0046] A use method of a hydrogen-rich water manufacturing device, comprising the following steps:
[0047] S1: first open the cover 2, and inject water into the water storage box 1;
[0048] S2: hydrogen is prepared by using an electrolysis mechanism: after the first valve 5 is opened, the water in the water storage box 1 enters the electrolytic container 17 through the pipeline 53 of the first valve 5, and the electrode rod 151 starts to electrolyze water and generate hydrogen and oxygen after being electrified;
[0049] S3: start the main air pump 25, the main air pump 25 extracts hydrogen and oxygen in the electrolytic container 17 and transports them into the gas storage box 20;
[0050] S4: the user fills the external water cup with water to be drunk, then aligns the exhaust pipe 13 with the cup mouth of the water cup, and then starts the exhaust pump 21, the hydrogen and oxygen are pumped by the exhaust pump 21 to the exhaust pipe 13 and sprayed from the exhaust pipe 13, then injected into the water cup and mixed into the water, and the hydrogen-rich water production is completed;
[0051] S5: hydrogen production using the MgH2 hydrogen production mechanism: MgH2 is added to the reaction container 10, then the reaction container 10 is inserted into the cup body 3 from the insertion hole 16, and the water in the water storage box 1 enters the reaction container 10 by opening the second valve 6;
[0052] S6: the MgH2 reacts with water to generate hydrogen, and the auxiliary gas pump 26 is started, the hydrogen in the reaction container 10 is extracted by the auxiliary gas pump 26 through the auxiliary suction pipe 27, and the hydrogen enters the gas storage box 20;
[0053] S7: the exhaust pump 21 is started, the hydrogen in the gas storage box 20 is extracted by the exhaust pump 21, and the hydrogen is transported to the exhaust pipe 13 through the conduit 22 and then discharged from the exhaust pipe 13;
[0054] S8: the user fills the external water cup with water to be drunk, then aligns the exhaust pipe 13 with the cup mouth of the water cup, and then starts the exhaust pump 21, the hydrogen is pumped by the exhaust pump 21 to the exhaust pipe 13 and sprayed from the exhaust pipe 13, then injected into the water cup and mixed into the water, and the hydrogen-rich water production is completed.
[0055] The working principle of the application is:
[0056] When the application is used, the cover body 2 is pulled upwards, and clean water is injected into the water injection port, the knob 51 of the first valve 5 is rotated, the rotating shaft 52 is driven to rotate by the knob 51, the baffle 56 is driven to rotate by the rotating shaft 52, after the baffle 56 is rotated, the leakage hole at the top of the hole plate 55 is in an open state, the water in the water storage box 1 flows into the pipeline 53 through the flow guide hole 54 and then flows into the electrolysis container 17 through the hole plate 55, the switch 11 is started, and the electrolysis mechanism starts to work, the electrode rod 151 is electrified to perform electrolysis work, and the water in the electrolysis container 17 generates oxygen and hydrogen after electrolysis, the main gas pump 25 is started, the hydrogen and oxygen in the electrolysis container 17 are extracted and transported to the gas storage box 20, the user fills the external glass water cup or the heat preservation water cup with water to be drunk, aligns the exhaust pipe 13 with the cup mouth of the water cup, and then starts the exhaust pump 21, the hydrogen and oxygen are pumped by the exhaust pump 21 to the exhaust pipe 13 and sprayed from the exhaust pipe 13, then injected into the water cup and mixed into the water, and the hydrogen-rich water production is completed.
[0057] The above merely describes preferred specific embodiments of the present application, but the protection scope of the present application is not limited thereto, and any person skilled in the art, according to the technical solution and inventive concept of the present application, makes equivalent replacement or change within the technical range disclosed by the present application, which should be covered within the protection scope of the present application.
Claims
1. A hydrogen-rich water manufacturing device, comprising a cup body (3), a cover body (2) being provided on the top of the cup body (3), characterized in that: A water storage box (1) is provided on the top of the cup body (3), and a power supply device (4) is also provided inside the cup body (3). The top of the power supply device (4) extends upward and passes through the water storage box (1). An electrolysis mechanism is provided inside the cup body (3), and the electrolysis mechanism includes: an electrolysis container (17) and an electrolysis component. The electrolysis component includes: an electrode holder (15) fixed inside the cup body (3), an electrode rod (151) is provided at the bottom of the electrode holder (15), the electrode holder (15) is located above the electrolysis container (17), and the electrode rod (151) extends downward and is inserted into the electrolysis container (17); a first valve (5) is provided between the water storage box (1) and the cup body (3), The first valve (5) comprises: a pipe (53) passing through the water storage box (1); a plurality of guide holes (54) are provided on the outer wall of the pipe (53); the guide holes (54) are communicated with the internal cavity of the water storage box (1); a hole plate (55) is fixed inside the pipe (53); a leak hole is provided on the top of the hole plate (55); a rotating shaft (52) is provided in the middle of the top of the hole plate (55); a semicircular baffle (56) is provided on the outer wall of the rotating shaft (52); a knob (51) is provided on the top of the rotating shaft (52); the knob (51) is located on the top of the water storage box (1); the bottom end of the pipe (53) passes through the electrode holder (15) downward and extends to the top of the electrolysis container (17); An MgH2 hydrogen production mechanism is provided on one side of the cup body (3) near the electrolysis mechanism, and the MgH2 hydrogen production mechanism comprises: a reaction container (10) and a heating assembly; a plug hole (16) is provided on one side wall of the cup body (3); and the reaction container (10) is inserted into the cup body (3) from the outside of the cup body (3) through the plug hole (16); It also includes a main air pump (25) and an auxiliary air pump (26), wherein the air inlet of the main air pump (25) is connected to a main suction pipe (24); the air inlet of the auxiliary air pump (26) is connected to an auxiliary suction pipe (27); A second valve (6) is further provided between the water storage box (1) and the cup body (3). The structure of the second valve (6) is the same as that of the first valve (5). The bottom extension end of the second valve (6) extends into the cup body (3) and is located above the reaction container (10).
2. A hydrogen-rich water production device according to claim 1, characterized in that: The water storage box (1) is provided with a mounting groove (14) inside, and the mounting groove (14) is not communicated with the internal cavity of the water storage box (1). The power supply device (4) is a cylindrical structure, and the top end of the power supply device (4) is located in the mounting groove (14).
3. The hydrogen-rich water production device according to claim 1, characterized in that: The heating assembly comprises: a support seat (23); a heating plate (30) is provided on the top of the support seat (23); after the reaction container (10) is inserted into the cup body (3), the bottom of the reaction container (10) contacts the top of the heating plate (30).
4. The hydrogen-rich water production device according to claim 1, characterized in that: A support plate (18) is provided inside the cup body (3) below the electrolysis container (17), and a main air pump (25) and an auxiliary air pump (26) are fixed on the support plate (18).
5. The hydrogen-rich water production device according to claim 4, characterized in that: The end of the main suction pipe (24) extends into the interior of the electrolysis container (17), and the end of the auxiliary suction pipe (27) extends into the reaction container (10). The air outlets of the main air pump (25) and the auxiliary air pump (26) are both connected to an air outlet pipe (28), and the end of the air outlet pipe (28) is connected to a gas storage box (20). An exhaust pump (21) is provided at the bottom of the gas storage box (20), and an extended end of the exhaust pump (21) is connected to a conduit (22), and the end of the conduit (22) is connected to an exhaust pipe (13).
6. A method for using a hydrogen-rich water production device, used for a hydrogen-rich water production device according to any one of claims 1 to 5, characterized in that: The steps include: S1: First, open the cover (2) and inject water into the water storage box (1); S2: Hydrogen production using an electrolysis mechanism: by opening the first valve (5), the water in the water storage box (1) enters the electrolysis container (17) through the pipe (53) of the first valve (5), and the electrode rod (151) starts electrolyzing the water and produces hydrogen and oxygen after being energized; S3: Start the main air pump (25), which extracts hydrogen and oxygen from the electrolysis container (17) and transports them to the gas storage box (20); S4: The user puts the water to be drunk into the external water cup, then aligns the exhaust pipe (13) with the cup mouth of the water cup, and then starts the exhaust pump (21). The hydrogen and oxygen are pumped into the exhaust pipe (13) by the exhaust pump (21), and ejected from the exhaust pipe (13), and then injected into the water cup and mixed into the water, completing the production of hydrogen-rich water; S5: Producing hydrogen using the MgH2 hydrogen production mechanism: adding MgH2 into the reaction container (10), then inserting the reaction container (10) into the cup body (3) through the insertion hole (16), and opening the second valve (6) so that the water in the water storage box (1) passes through the second valve (6) and then enters the reaction container (10); S6: MgH2 reacts with water to generate hydrogen, and the auxiliary air pump (26) is started. The auxiliary air pump (26) extracts hydrogen from the reaction container (10) through the auxiliary suction pipe (27), and the hydrogen enters the gas storage box (20); S7: starting the exhaust pump (21), the exhaust pump (21) extracts hydrogen from the gas storage box (20), the hydrogen is transported to the exhaust pipe (13) through the conduit (22), and then discharged through the exhaust pipe (13); S8: The user puts the water to be drunk into the external water cup, then aligns the exhaust pipe (13) with the cup mouth of the water cup, and then starts the exhaust pump (21). The hydrogen is pumped into the exhaust pipe (13) by the exhaust pump (21) and ejected from the exhaust pipe (13). The hydrogen is then injected into the water cup and mixed into the water, completing the production of hydrogen-rich water.
Citation Information
Patent Citations
Integrated manufacturing apparatus for hydrogen-enriched water
CN105174384A
Portable controllable hydrolysis hydrogen production device
CN116657190A
Novel cup for preparing hydrogen-rich water
CN214611723U