Electronic hydrogen atomizer and atomization method
Through the collaborative design of hydrogen storage materials and atomization mechanism, combined with capillary negative pressure driving and multiple filtration, the problem of low hydrogen generation and atomization efficiency of existing electronic cigarette devices is solved, and low energy consumption, high stability hydrogen generation and safe inhalation are achieved.
Patent Information
- Application Number
- CN202510647061.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-20
- Publication Date
- 2025-07-11
AI Technical Summary
When combined with hydrogen function, existing electronic cigarette devices have problems such as high energy consumption, unstable hydrogen production rate, complex structure, low mixing efficiency of hydrogen and atomization components and insufficient safety.
The hydrogen storage material is designed in a coordinated manner with the atomization mechanism, combined with capillary negative pressure driving and multiple filtration, hydrogen is generated through the chemical reaction between the hydrogen storage material and the atomization mechanism, and the capillary is used to accurately control the atomization amount and set up a filter structure to ensure safe inhalation.
It realizes low-energy consumption and high-stability hydrogen generation, and generates hydrogen-containing herbal mist in real time, ensuring safety inhalation and efficient atomization, improving user experience.
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Figure CN120285373A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to electronic atomization technology, and in particular to an electronic hydrogen atomizer and an atomization method. Background Art
[0002] Existing electronic atomization devices (such as e-cigarettes) mainly drive heating elements through lithium batteries to heat e-liquid, nicotine solution or herbal essence to the vaporization temperature to form inhalable aerosols. Their core technologies focus on the optimization of atomization efficiency, temperature control and e-liquid formulation. However, the functions of such devices are single, limited to steam atomization, and lack additional value for user health.
[0003] In traditional technologies, hydrogen has attracted much attention due to its potential health values such as antioxidant and anti-inflammatory properties. There have been some attempts in the combination of hydrogen and e-cigarettes. Representative technologies include:
[0004] Electrolytic water hydrogen production type e-cigarettes (such as CN207306073U, CN215303018U): Hydrogen is generated by electrolyzing water and inhaled by mixing with electronic smoke. For example, CN207306073U adopts a split hydrogen water generator, which generates hydrogen by electrolyzing liquid through an electrode assembly, supporting the mixing or separate use of e-cigarettes and hydrogen; CN215303018U connects a detachable hydrogen production mechanism with an atomization mechanism, generates hydrogen by using an electrolytic sheet and realizes dual-channel inhalation. Although such solutions initially realize the hydrogen function, they rely on electrolytic water hydrogen production, have problems such as high energy consumption, unstable hydrogen production rate, and frequent electrolyte replenishment, and do not solve the deep combination of hydrogen and atomized components.
[0005] Quantitatively controlled hydrogen-rich e-cigarettes (such as CN219593702U): An electrolytic cell is introduced to produce hydrogen, the hydrogen output is quantitatively controlled through a piston mechanism, and an atomization head is added to reduce the flammability of hydrogen. Its advantage is that the amount of hydrogen is controllable, but the structure is complex (requiring a motor to drive the piston), and the inherent defects of electrolytic water hydrogen production (such as by-product treatment and large equipment volume) have not been solved.
[0006] Traditional split atomizers (such as patent CN202022742590) adopt a design with a separated spray head and nozzle. Although it is convenient for disassembly and maintenance, it relies on mechanical components (such as needles and air pumps) to achieve negative pressure atomization, with a complex structure, uneven atomization particles, and low mixing efficiency of hydrogen and liquid medicine, resulting in a lung absorption rate of less than 30%. In summary, although the existing technologies have made breakthroughs in the field of the combination of hydrogen and e-cigarettes, they are limited by the inherent defects of electrolytic water hydrogen production, the inefficiency of the split design, and insufficient safety filtration. Traditional hydrogen supply methods (such as high-pressure hydrogen storage tanks and electrolytic water hydrogen production) have multiple bottlenecks in terms of safety, portability and user experience. Summary of the Invention
[0007] The object of the present invention is to propose an electronic hydrogen atomizer in view of the above problems. Through the collaborative design of a hydrogen storage material and an atomization mechanism, combined with capillary negative pressure drive and multiple filtrations, the electronic hydrogen atomizer realizes the integration of efficient hydrogen production, precise atomization, and safe inhalation.
[0008] It should be noted that in the present invention, unless otherwise specified, the specific meaning of "including" involving compositional limitations and descriptions includes both the open "including", "containing" and their similar meanings, as well as the closed "consisting of", "constituted by" and their similar meanings.
[0009] To achieve the above object, the technical solution adopted by the present invention is: an electronic hydrogen atomizer, including a battery, a herbal solution chamber, an atomization mechanism, and a hydrogen storage material chamber arranged in sequence. The herbal solution chamber is filled with a herbal aqueous solution, and the hydrogen storage material chamber is filled with a hydrogen storage material; the battery is electrically connected to the atomization mechanism, and the herbal solution chamber is communicated with the atomization mechanism through a capillary tube provided therein; the gas outlet of the atomization mechanism is communicated with the inlet of the hydrogen storage material chamber.
[0010] Further, the battery includes, but is not limited to, a lithium battery, which supplies power to the atomization mechanism. The battery and the atomization mechanism are connected by direct plug-in power supply, and the power-on control logic can be button type or air flow induction type. A charging port is provided at one end of the battery away from the herbal solution chamber.
[0011] Further, an air port is provided on the side wall of the herbal solution chamber. The size and number of the air ports can be determined according to actual needs. The air ports are made of air-permeable and liquid-impermeable materials (such as polytetrafluoroethylene PTFE / ePTFE, polyurethane PU film, etc.), so that air can be inhaled forward and the herbal aqueous solution cannot be discharged.
[0012] Further, the herbal aqueous solution is an aqueous solution of Chinese herbal medicine extract, and the Chinese herbal medicine is conventional Chinese herbal medicine, including but not limited to honeysuckle, monk fruit, boat-fruited sterculia, and tea leaves, etc.
[0013] Further, the atomization mechanism adopts an ultrasonic atomizer, a heating atomizer, a mesh atomizer or a microporous atomizer.
[0014] Further, the capillary tube is made of corrosion-resistant glass or polymer, and the inner diameter of the capillary tube is 0.1 - 1 mm.
[0015] Further, the hydrogen storage material chamber is used for hydrogen generation, and the hydrogen storage material filled therein is a magnesium-based hydrogen storage material, a rare earth-based hydrogen storage material, sodium borohydride or ammonia borane. The magnesium-based hydrogen storage material includes but is not limited to magnesium hydride.
[0016] Further, the hydrogen storage material is filled in the form of tablets or powders.
[0017] Further, the hydrogen storage material is mixed with an additive and pressed into tablets. The additive is one or more of citric acid, acetic acid, expanded graphite, and sodium chloride.
[0018] Further, the filling particle size of the hydrogen storage material is 10 - 800 μm, and the filling density is 600 - 900 kg / m 3 , and the filling amount is 0.8 - 2 ml (the addition amount in each electronic hydrogen atomizer).
[0019] Further, a filter tip is connected to the hydrogen outlet of the hydrogen storage material bin.
[0020] Further, the filter tip is made of food-grade stainless steel mesh or ceramic filter element. The filtration accuracy of the filter holes of the filter tip is 5 - 30 μm, and the length of the filter tip is 15 - 30 mm.
[0021] Further, the electronic hydrogen atomizer further includes a control module, and the control module is electrically connected to the battery.
[0022] Another object of the present invention also discloses an electronic hydrogen atomization method, including the following steps:
[0023] S1. When the user sucks, the negative pressure causes the herbal aqueous solution to enter the atomization mechanism through the capillary tube, the battery is started, and the lithium battery powers the atomization mechanism. The herbal aqueous solution generates herbal vapor in the atomization mechanism;
[0024] S2. The herbal vapor contacts the hydrogen storage material, triggering a hydrolysis reaction to generate hydrogen (Mg + 2H2O → Mg(OH)2 + H2↑), forming a hydrogen-containing herbal mist;
[0025] S3. The hydrogen-containing herbal mist is filtered by the filter tip and output from the air outlet.
[0026] Another object of the present invention also discloses an electronic hydrogen atomizer, including a battery, a herbal solution bin, a water-absorbing material accommodation bin, and a hydrogen storage material bin arranged in sequence. The herbal solution bin is filled with herbal essence, the water-absorbing material accommodation bin is filled with a water-rich water-absorbing material, and the hydrogen storage material bin is filled with a hydrogen storage material; a heating structure is arranged in the herbal solution bin, the battery is electrically connected to the heating structure, the herbal solution bin is communicated with the water-absorbing material accommodation bin, and the water-absorbing material accommodation bin is communicated with the hydrogen storage material bin inlet through a capillary tube arranged therein.
[0027] Further, the battery includes, but is not limited to, a lithium battery, which powers the heating structure. The power-on control logic of the battery and the heating structure can adopt a button type or an air flow induction type. A charging port is arranged at one end of the battery away from the herbal solution bin.
[0028] Further, an air inlet is provided on the side wall of the herbal solution chamber. The size and number of the air inlets can be determined according to actual needs. The air inlets are made of a material that allows air to pass through but not the herbal essence liquid (such as polytetrafluoroethylene PTFE / ePTFE, polyurethane PU film, etc.), so that air can be inhaled positively while the herbal essence liquid cannot be discharged.
[0029] Further, the herbal essence liquid is an extract of Chinese herbal medicines, and the Chinese herbal medicines are conventional Chinese herbal medicines, including but not limited to honeysuckle, momordica grosvenori, sterculia lychnophora, and tea leaves, etc.
[0030] Further, the water-rich water-absorbing material is one or more of superabsorbent resin, sisal fiber, and silica gel.
[0031] Further, the capillary tube is made of corrosion-resistant glass or polymer, and the inner diameter of the capillary tube is 0.1 - 1 mm.
[0032] Further, the hydrogen storage material chamber is used for hydrogen generation, and the hydrogen storage material filled therein is a magnesium-based hydrogen storage material, a rare earth-based hydrogen storage material, sodium borohydride, or ammonia borane.
[0033] Further, the hydrogen storage material is filled in the form of tablets or powder.
[0034] Further, the hydrogen storage material is mixed with an additive and pressed into tablets. The additive is one or more of citric acid, acetic acid, expanded graphite, and sodium chloride.
[0035] Further, a filter tip is connected to the hydrogen outlet of the hydrogen storage material chamber.
[0036] Further, the filter tip is made of food-grade stainless steel mesh or ceramic filter element. The filtration accuracy of the filter holes of the filter tip is 5 - 30 μm, and the length of the filter tip is 15 - 30 mm.
[0037] Further, the electronic hydrogen atomizer further includes a control module, and the control module is electrically connected to the battery.
[0038] Another object of the present invention also discloses an electronic hydrogen atomization method, including the following steps:
[0039] N1. When the user sucks, the battery is activated, and the battery supplies power to the heating structure. The heating mechanism heats the herbal essence liquid to form herbal smoke.
[0040] N2. When the user sucks to form a negative pressure, the herbal smoke passes through the water-rich water-absorbing material, and then carries water to form herbal steam.
[0041] N3. The herbal steam flows through the hydrogen storage material chamber, and the hydrogen storage material reacts with water to generate hydrogen (reaction formula: Mg + 2H2O → Mg(OH)2 + H2↑).
[0042] The hydrogen-containing herbal mist is output after the residual powder is intercepted by the filter tip.
[0043] The electronic hydrogen atomizer and atomization method of the present invention have the following advantages compared with the prior art:
[0044] 1) The electronic hydrogen atomizer of the present invention can generate hydrogen efficiently and safely. The present invention abandons the electrolyzed water scheme and adopts the hydrolysis reaction of hydrogen storage materials (Mg + 2H2O → Mg(OH)2 + H2↑) to achieve low-energy consumption and high-stability hydrogen generation.
[0045] 2) The electronic hydrogen atomizer of the present invention generates hydrogen-containing herbal mist in real time through the chemical reaction between the hydrogen storage material and the atomized steam.
[0046] 3) The electronic hydrogen atomizer of the present invention uses the suction negative pressure to drive the liquid into the atomization mechanism / water absorption material accommodation bin, and precisely controls the atomization amount through the capillary design.
[0047] 4) The outlet of the electronic hydrogen atomizer of the present invention is provided with a filter tip structure, which effectively intercepts the unreacted hydrogen storage material powder and ensures the inhalation safety.
[0048] 5) The hydrogen storage material of the present invention is mixed with additives to promote the generation of high-content hydrogen from water and the hydrogen storage material.
[0049] In summary, the electronic hydrogen atomizer of the present invention has good application prospects and large-scale production potential in the field of electronic cigarettes. Description of the Drawings
[0050] Figure 1 It is a schematic structural diagram of the electronic hydrogen atomizer of Example 1;
[0051] Figure 2 It is a schematic structural diagram of the electronic hydrogen atomizer of Example 2. Detailed Embodiments
[0052] Hereinafter, the present invention will be further described with reference to the embodiments. The description of the technical features below is based on the representative embodiments and specific examples of the present invention, but the present invention is not limited to these embodiments and specific examples. It should be noted that:
[0053] Unless otherwise stated, the units used in this specification are all international standard units, and the numerical values and numerical ranges appearing in the present invention should be understood to include the systematic errors that are inevitable in industrial production.
[0054] In this specification, the numerical range represented by "numerical value A to numerical value B" means a range including the end point numerical values A and B.
[0055] In this specification, a numerical range expressed using "above" or "below" means a numerical range including the recited number.
[0056] In this specification, the meaning expressed using "may" includes both the meaning of performing a certain process and not performing a certain process.
[0057] In this specification, the use of "optional" or "optionally" means that certain substances, components, execution steps, applied conditions, and other factors are used or not used.
[0058] In this specification, when using "normal temperature" or "room temperature", the temperature may be 15 - 25 °C.
[0059] In this specification, for reagents or instruments whose manufacturers are not specified, they are all conventional products that can be obtained through commercial purchase.
[0060] Example 1
[0061] This example discloses an electronic hydrogen atomizer, as Figure 1 shown, including a battery 1, a herbal solution chamber 2, an atomization mechanism 3, and a hydrogen storage material chamber 4 arranged in sequence. The herbal solution chamber 2 is filled with an aqueous herbal solution, and the hydrogen storage material chamber 4 is filled with a hydrogen storage material; the battery 1 is electrically connected to the atomization mechanism 3, and the herbal solution chamber 2 is communicated with the atomization mechanism 3 through a capillary 5 arranged therein; the gas outlet of the atomization mechanism 3 is communicated with the inlet of the hydrogen storage material chamber 4.
[0062] The battery 1 is a lithium battery and powers the atomization mechanism 3. The battery 1 and the atomization mechanism 3 are connected by direct plug-in power supply, and the power-on control logic is button type. A charging port is provided at one end of the battery 1 away from the herbal solution chamber 2.
[0063] Two air ports are provided on the side wall of the herbal solution chamber 2. The air ports use polyurethane PU film, so that air can be inhaled forward, and the aqueous herbal solution cannot be discharged.
[0064] The atomization mechanism 3 is an ultrasonic atomizer;
[0065] The capillary 5 is made of corrosion-resistant glass, and the inner diameter of the capillary 5 is 0.5 mm.
[0066] The hydrogen storage material chamber 4 is used for hydrogen generation, and the hydrogen storage material filled therein is magnesium hydride. The hydrogen storage material is filled in powder form. The filling particle size of the hydrogen storage material is 10 - 800 μm, the filling density is 700 kg / m 3 , and the filling amount is 1 ml (the addition amount in each electronic hydrogen atomizer).
[0067] The hydrogen outlet of the hydrogen storage material bin 4 is connected to a filter tip 6. The material of the filter tip 6 is a ceramic filter element, and the filtration accuracy of the filter holes of the filter tip is 10-20 μm, and the length of the filter tip is 20 mm.
[0068] The electronic hydrogen atomizer further includes a control module, and the control module is electrically connected to the battery.
[0069] The traditional Chinese medicine essence is dissolved in water. When a person inhales through the mouth, a negative pressure is formed to drive the aqueous solution to quantitatively enter the atomization mechanism through a corrosion-resistant glass capillary structure with an inner diameter of 0.5 mm; the airflow fluctuation signal controls the lithium battery to supply power to the atomization mechanism, and the traditional Chinese medicine aqueous solution is efficiently turned into a traditional Chinese medicine atomized gas containing water of 20-30 ppm through ultrasonic atomization; it enters the magnesium hydride mixed with citric acid tablet bin, and within 2 s, the water in the traditional Chinese medicine atomized gas reacts with magnesium hydride under normal temperature and pressure conditions to generate 0.0001-0.0005 ml of hydrogen, and then passes through a ceramic filter tip with a length of 20 mm and a filtration accuracy of 10-20 μm to remove powder impurities to form a traditional Chinese medicine atomized gas with a hydrogen content of 10-50 ppm.
[0070] Embodiment 2
[0071] This embodiment discloses an electronic hydrogen atomizer, as Figure 2 shown, including a battery 1, a herbal solution bin 2, a water-absorbing material accommodation bin 7, and a hydrogen storage material bin 4 arranged in sequence. The herbal solution bin 2 is filled with a herbal essence liquid, the water-absorbing material accommodation bin 7 is filled with a water-rich water-absorbing material, and the hydrogen storage material bin 4 is filled with a hydrogen storage material; a heating structure 8 is arranged in the herbal solution bin 2, the battery 1 is electrically connected to the heating structure 8, the herbal solution bin 2 is communicated with the water-absorbing material accommodation bin 7, and the water-absorbing material accommodation bin 7 is communicated with the inlet of the hydrogen storage material bin 4 through a capillary 5 arranged therein.
[0072] The battery 1 is a lithium battery that supplies power to the heating structure 8, and the heating structure 8 is a heating film. The power-on control logic of the battery 1 and the heating structure 8 can adopt a button type or an airflow induction type. A charging port is arranged at one end of the battery 1 away from the herbal solution bin 2.
[0073] Two air ports are arranged on the herbal solution bin 2, and the air ports are made of polytetrafluoroethylene PTFE / ePTFE, so that air can be inhaled forward and the herbal essence liquid cannot be discharged.
[0074] The water-rich water-absorbing material is a superabsorbent resin.
[0075] The capillary 5 is made of corrosion-resistant glass, and the inner diameter of the capillary 5 is 0.8 mm.
[0076] The hydrogen storage material bin 4 is used for hydrogen generation, and the hydrogen storage material filled therein is sodium borohydride. The hydrogen storage material is filled in powder form.
[0077] A filter tip 6 is connected to the hydrogen outlet of the hydrogen storage material bin 4. The material of the filter tip 6 is a ceramic filter element. The filtering accuracy of the filtering holes of the filter tip is 10 - 20 um, and the length of the filter tip is 15 mm.
[0078] The electronic hydrogen atomizer further includes a control module, and the control module is electrically connected to the battery.
[0079] Through a button - type induction signal, the lithium battery is controlled to supply power to the heating diaphragm, and the heating diaphragm is quickly heated to 200 - 300 °C, and the traditional Chinese medicine essence vaporizes to form traditional Chinese medicine atomized gas; when a person inhales through the mouth, a negative pressure is formed to drive the traditional Chinese medicine atomized gas to pass through a highly water - absorbent resin water - absorbing material to form a 20 - 30 ppm water - containing traditional Chinese medicine atomized gas, which quantitatively enters the sodium borohydride material bin through a corrosion - resistant glass capillary structure with an inner diameter of 0.8 mm; within 2 s, the water in the traditional Chinese medicine atomized gas reacts with sodium borohydride under normal temperature and pressure conditions to generate 0.00002 - 0.0001 ml of hydrogen, and the powder impurities are removed through a 15 - mm - long ceramic filter element filter tip with a filtering accuracy of 10 - 20 um to form a traditional Chinese medicine atomized gas with a hydrogen content of 2 - 10 ppm.
[0080] Finally, it should be noted that: the above - mentioned embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it; although the present invention has been described in detail with reference to the foregoing embodiments, those of ordinary skill in the art should understand that: they can still modify the technical solutions recorded in the foregoing embodiments, or perform equivalent replacements on some or all of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the present invention.
Claims
1. An electronic hydrogen atomizer, characterized in that, It includes a battery (1), a herbal solution chamber (2), an atomization mechanism (3), and a hydrogen storage material chamber (4) arranged in sequence. The herbal solution chamber (2) is filled with an aqueous herbal solution, and the hydrogen storage material chamber (4) is filled with a hydrogen storage material; the battery (1) is electrically connected to the atomization mechanism (3), and the herbal solution chamber (2) is communicated with the atomization mechanism (3) through a capillary tube (5) arranged therein; the gas outlet of the atomization mechanism (3) is communicated with the inlet of the hydrogen storage material chamber (4).
2. The electronic hydrogen atomizer according to claim 1, wherein The battery (1) is a lithium battery; And / or, the battery (1) and the atomization mechanism (3) are connected by direct plug-in power supply, and the power-on control logic can be button type or airflow induction type; And / or, a charging port is arranged at one end of the battery (1) away from the herbal solution chamber (2); And / or, an air port is arranged on the side wall of the herbal solution chamber (2), and the air port uses a material that is breathable but not liquid-permeable; And / or, the atomization mechanism (3) is an ultrasonic atomizer, a heating atomizer, a mesh atomizer or a microporous atomizer; And / or, the capillary tube (5) is made of corrosion-resistant glass or polymer; And / or, the inner diameter of the capillary tube (5) is 0.1 - 1 mm; And / or, a filter tip (6) is connected to the hydrogen outlet of the hydrogen storage material chamber (4); the filter tip (6) is made of food-grade stainless steel mesh or ceramic filter element, the filtration accuracy of the filter holes of the filter tip is 5 - 30 μm, and the length of the filter tip is 15 - 30 mm.
3. The electronic hydrogen atomizer according to claim 1, characterized in that, The hydrogen storage material is a magnesium-based hydrogen storage material, a rare earth-based hydrogen storage material, sodium borohydride or ammonia borane; And / or, the hydrogen storage material is filled in the form of tablets or powders; And / or, the filling particle size of the hydrogen storage material is 10 to 800 um, and the filling density is 600 to 900 kg / m 3 , and the filling amount is 0.8 to 2 ml.
4. The electronic hydrogen atomizer according to claim 1, characterized in that, The electronic hydrogen atomizer further includes a control module, and the control module is electrically connected to the battery.
5. An electronic hydrogen atomization method, characterized in that, It includes the following steps: S1. When the user sucks, negative pressure causes the aqueous herbal solution to enter the atomization mechanism through the capillary tube, starts the battery, and the lithium battery powers the atomization mechanism, and the aqueous herbal solution generates herbal vapor in the atomization mechanism; S2. The herbal vapor contacts the hydrogen storage material, triggering a hydrolysis reaction to generate hydrogen, forming a hydrogen-containing herbal mist; S3. The hydrogen-containing herbal mist is filtered by the filter tip and output from the air outlet.
6. An electronic hydrogen atomizer, including a battery (1), a herbal solution chamber (2), a water-absorbing material accommodation chamber (7), and a hydrogen storage material chamber (4) arranged in sequence. The herbal solution chamber (2) is filled with a herbal essence, the water-absorbing material accommodation chamber (7) is filled with a water-rich water-absorbing material, and the hydrogen storage material chamber (4) is filled with a hydrogen storage material; a heating structure (8) is arranged in the herbal solution chamber (2), the battery (1) is electrically connected to the heating structure (8), the herbal solution chamber (2) is communicated with the water-absorbing material accommodation chamber (7), and the water-absorbing material accommodation chamber (7) is communicated with the inlet of the hydrogen storage material chamber (4) through a capillary tube (5) arranged therein.
7. The electronic hydrogen atomizer according to claim 6, wherein The battery (1) is a lithium battery; And / or, the power-on control logic of the battery (1) and the heating structure (8) can be button type or airflow induction type; And / or, a charging port is arranged at one end of the battery (1) away from the herbal solution chamber (2); And / or, an air port is provided on the side wall of the herbal solution chamber (2), and the air port is made of a material that is breathable but impermeable to liquid; And / or, the capillary tube (5) is made of corrosion-resistant glass or polymer, and the inner diameter of the capillary tube (5) is 0.1-1 mm; And / or, a filter tip (6) is connected to the hydrogen outlet of the hydrogen storage material chamber (4), the filter tip is made of food-grade stainless steel mesh or ceramic filter element, the filtration accuracy of the filter holes of the filter tip is 5-30 um, and the length of the filter tip is 15-30 mm.
8. The electronic hydrogen atomizer according to claim 6, wherein The water-rich water-absorbing material is one or more of superabsorbent resin, sisal fiber and silica gel; And / or, the hydrogen storage material is a magnesium-based hydrogen storage material, a rare earth-based hydrogen storage material, sodium borohydride or ammonia borane; And / or, the hydrogen storage material is filled in the form of tablets or powders.
9. The electronic hydrogen atomizer according to claim 6, wherein, The electronic hydrogen atomizer further includes a control module, and the control module is electrically connected to the battery (1).
10. An electronic hydrogen atomization method, characterized in that, Comprising the following steps: N1. When the user sucks, the battery is started, and the battery supplies power to the heating structure, and the heating mechanism heats the herbal essence to form herbal smoke; N2. When the user sucks to form a negative pressure, the herbal smoke passes through the water-rich water-absorbing material, and then carries water to form herbal steam; N3. The herbal steam flows through the hydrogen storage material chamber, and the hydrogen storage material reacts with water to generate hydrogen; N4. The hydrogen-containing herbal mist is output after intercepting the residual powder through the filter tip.
Citation Information
Patent Citations
Hydrogen electron cigarette
CN207306073U
Novel split type atomizer
CN214071756U
Multifunctional atomization device
CN215303018U
Hydrogen-rich electronic cigarette with health care effect
CN219593702U