WO2020116225A1 - Procédé d'amélioration du corps vivant, et générateur d'hydrogène de type électrolyse pour mettre en œuvre ledit procédé - Google Patents

Procédé d'amélioration du corps vivant, et générateur d'hydrogène de type électrolyse pour mettre en œuvre ledit procédé Download PDF

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Publication number
WO2020116225A1
WO2020116225A1 PCT/JP2019/045959 JP2019045959W WO2020116225A1 WO 2020116225 A1 WO2020116225 A1 WO 2020116225A1 JP 2019045959 W JP2019045959 W JP 2019045959W WO 2020116225 A1 WO2020116225 A1 WO 2020116225A1
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Prior art keywords
hydrogen
electrolysis
battery
positive
hydrogen generator
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PCT/JP2019/045959
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English (en)
Japanese (ja)
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隆 竹原
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隆 竹原
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Priority to JP2020559066A priority Critical patent/JP7485878B2/ja
Publication of WO2020116225A1 publication Critical patent/WO2020116225A1/fr

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    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M15/00Inhalators
    • AHUMAN NECESSITIES
    • A61MEDICAL OR VETERINARY SCIENCE; HYGIENE
    • A61MDEVICES FOR INTRODUCING MEDIA INTO, OR ONTO, THE BODY; DEVICES FOR TRANSDUCING BODY MEDIA OR FOR TAKING MEDIA FROM THE BODY; DEVICES FOR PRODUCING OR ENDING SLEEP OR STUPOR
    • A61M16/00Devices for influencing the respiratory system of patients by gas treatment, e.g. mouth-to-mouth respiration; Tracheal tubes
    • A61M16/10Preparation of respiratory gases or vapours
    • CCHEMISTRY; METALLURGY
    • C25ELECTROLYTIC OR ELECTROPHORETIC PROCESSES; APPARATUS THEREFOR
    • C25BELECTROLYTIC OR ELECTROPHORETIC PROCESSES FOR THE PRODUCTION OF COMPOUNDS OR NON-METALS; APPARATUS THEREFOR
    • C25B1/00Electrolytic production of inorganic compounds or non-metals
    • C25B1/01Products
    • C25B1/02Hydrogen or oxygen
    • C25B1/04Hydrogen or oxygen by electrolysis of water
    • CCHEMISTRY; METALLURGY
    • C25ELECTROLYTIC OR ELECTROPHORETIC PROCESSES; APPARATUS THEREFOR
    • C25BELECTROLYTIC OR ELECTROPHORETIC PROCESSES FOR THE PRODUCTION OF COMPOUNDS OR NON-METALS; APPARATUS THEREFOR
    • C25B15/00Operating or servicing cells
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/30Hydrogen technology
    • Y02E60/36Hydrogen production from non-carbon containing sources, e.g. by water electrolysis

Definitions

  • the present invention relates to a method for improving a living body, which improves a living function and/or a cognitive function by regularly orally or nasally inhaling high-concentration hydrogen-containing air using a portable electrolysis-type hydrogen generator, and It relates to an electrolytic hydrogen generator suitable for carrying out the method.
  • the inventors obtained the knowledge of the reduction of cerebral stress and the improvement of physical function by hydrogen suction as described above, and further applied it to the improvement of cognitive function and the preventive care of a person suspected of having mild cognitive impairment (MCI).
  • MCI mild cognitive impairment
  • JP 2004-41949 A Japanese Patent Application No. 2014-019640 International publication WO2018/151107
  • the present invention was created in view of the above circumstances, and allows middle-aged and elderly people including those suspected of having mild cognitive impairment (MCI) to normally orally or nasally inhale a high-concentration hydrogen-containing air.
  • the present invention aims to provide a living body improving method for improving a living function and/or a cognitive function, and at the same time, to provide an appropriate hydrogen generator (hydrogen suction device) for carrying out the method.
  • a method for improving a living body and/or a cognitive function of the present invention and a portable electrolysis hydrogen generator used for improving a living function and/or a cognitive function are described below. provide.
  • a living body that improves daily life and/or cognitive function by regularly orally or nasally inhaling high-concentration hydrogen-containing air using a portable electrolysis hydrogen generator. Provide an improvement method.
  • the living function and cognitive function can be improved as described later.
  • short-term biological reactions immediately after oral or nasal inhalation of hydrogen have been verified, but this time, as will be described later, regular inhalation of hydrogen, such as inhaling several times every day for several minutes, will lead to a consistent daily life function and life function. It is known that cognitive function is improved and maintained.
  • the high-concentration hydrogen-containing air is aspirated by the present bioimprovement method at intervals of about 15 minutes or more, 5 times or more every day for a predetermined time, and continued for about 4 weeks or more.
  • the suction time can be continuous regardless of the suction time, but it is preferable to open at least about 15 minutes and suction 5 times daily such as "wake up, after breakfast, after lunch, after dinner, before bedtime". It is also an advantage of the present invention that a reliable effect is expected by continuously sucking for about 4 weeks, and that the effect is maintained even after the hydrogen suction is stopped.
  • the second aspect of the present invention is a portable electrolysis-type hydrogen generator used for improving the daily function and/or the cognitive function by inhaling orally or nasally inhaling high-concentration hydrogen-containing air
  • a main body cover member including a battery, a control substrate that controls power supply from the battery, and a pair of positive and negative electrodes that energize or shield the anode and the cathode by the control substrate,
  • a transparent or semi-transparent electrolytic cell which is attached to the main body cover member, in which the pair of positive and negative electrodes is inserted, and which can store water;
  • a mixing section which has a flow path for taking in ambient air while fluidly connecting a nozzle section capable of oral or nasal suction while gripping with one hand and the electrolytic cell,
  • An operating unit that can be operated while holding the electrolytic hydrogen generator with the one hand, Equipped with
  • the control board provides an electrolysis hydrogen generator, which controls the supply and stop of electric power from the battery to the positive and negative electrodes by operating one operating means.
  • the electrolysis-type hydrogen generator of the second aspect of the present invention is a portable hydrogen generator for inhaling orally or nasally inhaling high-concentration hydrogen-containing air as a dedicated product used for improving a living function and/or a cognitive function. is there.
  • a dedicated device that can be achieved in the above, each characteristic configuration is adopted in this electrolysis-type hydrogen generator.
  • the electrolysis-type hydrogen generator is portable and can be operated while grasping with one hand during hydrogen suction, and the electrolysis-type hydrogen generation system is adopted.
  • At least the operation related to hydrogen generation/stopping can be performed with one hand when grasping hydrogen. It adopts a configuration that can be easily operated. Furthermore, in the case of electrolysis type hydrogen generation, bubbles of hydrogen and oxygen are generated in the electrolytic cell, and if the electrolytic cell is made transparent or semi-transparent, the cognitive function deteriorates and the ability to continue one work decreases. Even a user who is doing so can understand the generation state of bubbles and easily recognize that good gas is being sucked. It is also advantageous in this respect (it is easy for a caregiver to understand).
  • this electrolysis-type hydrogen generator is The operating means is a button type that can be pressed, and when it is continuously pressed a plurality of times, it sends an ON/OFF signal of a main power source to the control board, and when the main power source is in an ON state, it is pressed and the pressed state is maintained. It is preferable that the control board supplies electric power from the battery to the positive and negative electrodes and controls so as to stop the electric power supply from the battery to the positive and negative electrodes when the pressed state is released.
  • control board of the electrolysis-type hydrogen generating tool presses the operation button in the main power-on state, and stops the power supply from the battery to the positive and negative electrodes when a preset time elapses in the pressed state. It is preferable to control as follows.
  • the electrolysis-type hydrogen generating device includes an LED for irradiating the electrolytic cell, It is preferable that the control board energize the LED when power is supplied from the battery to the positive and negative electrodes.
  • the electrolytic cell is irradiated while the positive and negative electrodes are energized and hydrogen etc. is being generated, and it is possible to easily recognize the hydrogen generation state and generate bubbles inside. Since it is clearly visible, even if the air contains hydrogen, which is tasteless and odorless, it is possible to admit hydrogen suction. Further, it is advantageous in that it is easy to manage even a caregiver of a user whose cognitive function is deteriorated because even a person who is far from the suction user can understand whether or not the user is in the hydrogen suction state.
  • middle-aged and elderly people including those suspected of having mild cognitive impairment are orally or nasally inhaled high-concentration hydrogen-containing air to improve their living function and/or cognitive function.
  • MCI mild cognitive impairment
  • EN A method for improving a living body is provided, and at the same time, an appropriate hydrogen generator (hydrogen suction device) for carrying out the method is provided.
  • FIG. 4 is a cross-sectional view taken along the line AA of FIG. 3 showing an example of the decomposition type hydrogen generating device.
  • the figure which looked at each direction of the electrolysis-type hydrogen generator shown in FIG. 1 is shown, (a) is a left side view, (b) is a front view, (c) is a right side view, (d) is a bottom view. The figure and (e) have shown the top view.
  • It is an assembly exploded view which illustrates each member of the electrolysis type hydrogen generating tool shown in FIG. 2 is a list of verification test results using the electrolytic hydrogen generator shown in FIG. 1.
  • the living body improving method for improving the living function and/or cognitive function of the present invention and its verification result will be described below.
  • a hydrogen generator for health improvement (generally, an electrolysis-type hydrogen gas suction tool 100 (“Kencos 2” manufactured by Aquabank Co., Ltd., “Kencos 2” (see FIGS. 1 to 3)) described later) is generated. Inhaled the generated hydrogen orally. Specifically, hydrogen generated by the electrolysis-type hydrogen gas suction device 100 is naturally breathed for about 4 weeks, 5 times a day (15 minutes or more if continuously inhaled. Desirably after waking up and breakfast Suck for several minutes (preferably for about 5 minutes) once after, after lunch, after dinner, and before going to bed.
  • an electrolysis-type hydrogen gas suction tool 100 (“Kencos 2” manufactured by Aquabank Co., Ltd., “Kencos 2” (see FIGS. 1 to 3)
  • the amount of hydrogen generated per unit time of the electrolysis hydrogen gas suction tool 100 used in this verification test is 8 cc of hydrogen generated per minute by the electrolysis method (at the same time, 4 cc of oxygen is also generated). 12 cc of mixed gas of oxygen and hydrogen is generated. This mixed gas is sucked under natural respiration. Note that normally, in natural respiration, the maximum amount of mixed gas generated in an exhaled breath is 0.24% (hydrogen 0.18% Oxygen 0.06%) is included.
  • test subject was an elderly person aged 60 years or older who was selected in cooperation with the Health Support Division of Nishinoomote City, Kagoshima Prefecture.
  • test venue the venue attached to the city hall (hereinafter also referred to as "test venue") .) in each group (see questionnaires (1) to (3) and tests (1) to (7) described later)), and each group brought back an electrolysis hydrogen gas suction tool Inhalation was performed for 30 days, and the other group decided not to perform hydrogen aspiration. After 30 days, both groups will conduct the same tests as at the start. After that, the group that had been sucking hydrogen stopped the suction, and conversely, the group that had not sucked hydrogen started sucking hydrogen. After a further 30 days, each group carried out each test again at the start, and the difference in the results was evaluated.
  • MMSE Dementia Confirmation Test This is a test consisting of 11 out of 30 points, including orientation, memory, calculation, verbal ability, and figure ability. A score of 24 or more is normal, and a score of less than 10 is highly inferior, and a score of less than 20 is moderately inferior.
  • SDS Self-rating Depression Scale It consists of 20 questions, all of which are rated on a 4-point scale (always, often, and rarely). Specifically, the depressive state factors are “depression, depression, sadness”, “daytime fluctuation”, “crying”, “sleep”, “appetite”, “sexual desire”, “weight loss”, “constipation”, “promotion of heart”, “fatigue”, “confusion”, and “psychomotor”. It consists of 20 items of "sexual decline”, “psychomotor excitement”, “no hope”, “frustration”, “decision”, “self-underestimation”, “emptiness”, “suicidal ideation”, and “dissatisfaction”.
  • insomnia Insomnia test (Athens Insomnia Scale (AIS)) Consideration is given to self-rating points 1, 2, 3, and 4 for 8 questions related to sleep troubles that have been experienced three or more times a week in the past month, and insomnia is evaluated by the total score.
  • a score of 1 to 3 indicates no worries about sleep disorders, a score of 4 to 5 indicates a slight suspicion of insomnia, and a score of 6 or higher indicates a high possibility of insomnia.
  • Brain age measurement Press the numbers 1 to 25 on the monitor screen as soon as possible without making a mistake. This measurement is performed twice, and the difference between the actual age and the brain age (measuring device: "Raku-Raku Wellness” manufactured by Wellup Co., Ltd.) and the brain activity were evaluated and analyzed by analyzing the correctness rate and reaction time. ..
  • Blood vessel age measurement Acceleration plethysmometer (measurement equipment: Blood vessel age was measured by "Raku-Raku Wellness” Wellup Co., Ltd.), and the difference between the actual age and the blood vessel age, evaluation, and analysis were performed.
  • Determination of brain executive function and measurement of sway of center of gravity Analyze the effects on brain executive function (generally analyze left-right cognition, visual field function, short-term memory, skin sensation, center of gravity balance, etc.) Function meter EF-60" manufactured by Anima Co., Ltd.). Specifically, determine whether the white circle appearing on the computer is on the left or right from the center line, and press the button as soon as possible.Test or determine which of the left and right diaphragms vibrates as soon as possible and press the button. I did a test.
  • each subject's own hydrogen suction and hydrogen suction device For the hydrogen suction of each test subject, an electrolysis type hydrogen gas suction tool 100 (see FIGS. 1 to 3) described later was rented out, and each subject or a caregiver was allowed to do so at home or the like.
  • the subject can take hydrogen generated by the electrolysis-type hydrogen gas suction device 100 under natural breathing for about 4 weeks, 5 times a day (15 minutes or more for continuous inhalation. Desirably after waking up. After breakfast, after lunch, after dinner, and before going to bed, it was inhaled for several minutes (preferably about 5 minutes) and then returned.
  • the subject attaches the nozzle 5 of the electrolysis-type hydrogen gas suction tool 100 to the mouth or nose to suck hydrogen.
  • test results of FIG. 4 are the results of calculating the t-test and the amount of effect (r: correlation coefficient) using the method of the before-and-after comparison test before starting hydrogen aspiration (before the intervention) and after continuous hydrogen aspiration (after the intervention). This is a statistically significant analysis of the effect of continuous hydrogen suction from the difference between the average values before and after the intervention (using IBM SPSS Statistics 25).
  • Fig. 4 is a list of results before and after each of the tests (1) to (7) described above.
  • M is the average value and SD is the standard deviation.
  • the standard deviation is the positive square root of the variance, and is the magnitude of the variation in each test result for each person. The smaller the standard deviation, the smaller the variation and the effectiveness as data.
  • the p-value indicates the significant probability, that is, the probability that the result will occur if hydrogen suction is irrelevant to each test (accidental), and the lower the p-value, the more the hydrogen suction is related to the influence in each test. It can be said that it shows that it is doing.
  • standard deviation SD of community-dwelling elderly people suspected to have MIC after intervention are relatively small
  • the electrolysis-type hydrogen generating tool of the second aspect of the present invention (hereinafter, referred to as “hydrogen generator” as a hydrogen generating apparatus recommended for performing the biological improvement method of improving the daily function and/or cognitive function of the first aspect of the present invention.
  • hydrogen generator as a hydrogen generating apparatus recommended for performing the biological improvement method of improving the daily function and/or cognitive function of the first aspect of the present invention.
  • a typical embodiment of the “electrolytic hydrogen gas suction device” will be described in detail below with reference to FIGS. 1 to 3.
  • the electrolysis hydrogen generator (electrolysis hydrogen gas suction tool 100) of the present invention is not limited to that shown in FIGS. 1 to 3.
  • FIG. 1 shows a sectional view of the electrolytic hydrogen gas suction tool 100 of the present invention taken along line AA of FIG. 3(c).
  • FIG. 2 is an assembly exploded view illustrating each member of the electrolysis-type hydrogen gas suction tool 100.
  • FIG. 3 is a view of the electrolytic hydrogen gas suction tool 100 of FIGS. 1 and 2 as seen from each direction, where (a) is a left side view, (b) is a front view, and (c) is. Right side view, (d) is a bottom view, and (e) is a top view.
  • the vertical direction and the vertical direction mean the vertical direction and the vertical direction of the paper surface of (b), and the width direction, the horizontal direction, and the lateral direction of the (b) horizontal direction and the paper surface when referred to as the side portion. It means the lateral direction and the left and right sides of the paper.
  • FIG. 3 shows a configuration example of each member of the electrolysis hydrogen gas suction device 100.
  • the main body cover 1 is opened upward, and a battery receiving portion 43 into which the entire battery 36 is inserted and built in vertically from the opening, and a reduced diameter portion 45 in the lower portion of the electrolytic cell 10 which is vertically aligned with the battery receiving portion 43.
  • the battery 36 used here is preferably a rechargeable lithium battery.
  • the main body cover 1 has a shape in which the battery receiving portion 43 side is long and the upper part on the electrolytic cell receiving portion 44 side is cut out so as to be inclined sideways.
  • the bottom portion of the main body cover 1 including the battery 36 can be opened and closed with the main body bottom cover 6 as a lid member, and the bottom portion of the battery receiving portion 43 can be opened and closed.
  • the bottom of part 43 is closed.
  • the body bottom cover 6 is closed with a screw 38 having a cross hole.
  • the body cover 1 is provided with a space in which two control boards (electronic boards) 33 and 42 are arranged so as to sandwich the battery 36 in the vertical direction on both sides of the battery receiving portion 43.
  • the control board 33 on the side surface side is a main control board, and the control board 42 on the electrolyzer 10 side that supplies electric power to the suction unit 32 (fragrance generator) and the mesh electrode 17 (electrode plate) and the battery to The power supply from 36 is controlled.
  • a decorative plate 9 is attached to the side surface of the main body cover 1 along the longitudinal side surface, and the decorative plate 9 has a button hole 9a through which the operation button 35 to the control board 33 can be seen in order from above, and light from the LED board 30.
  • An LED hole 9b for irradiation and a charging connector hole 9c for connecting a connector for charging the battery 36 from an external power source are provided.
  • the control board 33 transmits a power supply signal to the control board 42, and the control board 42 causes the power of the battery 36 to pass through the pressure-bonding board 28 to form a pair of mesh electrodes (electrode plates). )17 is ready for supply.
  • the control board 33 transmits a power supply signal to the power supply LED 30 to cause the LED 30 to emit light (white light when the charge amount of the battery 36 is 80% or more, blue light when the charge amount is 20% to 80%, and charging is performed). If the amount is less than 20%, a red light or blinking light is emitted).
  • the mesh electrodes 17 are arranged in parallel in a longitudinal direction in a pair of two, and each form a positive cathode, and correspond to the electric power from the positive cathode of the battery 36.
  • the upper end of the mesh electrode 17 has a shape that is obliquely cut so as to correspond to the boundary line between the reduced diameter portion 45 of the electrolytic cell 10 and the water storage main body portion 46.
  • the rod-shaped titanium electrode 16 is connected to the lower end of the mesh electrode 17 so that it can stand upright on the terminal substrate 28 and be electrically connected thereto.
  • the packing 13 (made of resin such as silicon) mounted on the terminal substrate 28 to shield the mesh substrate 17 and the terminal substrate 28 from water in a state where the mesh electrode 17 is erected, and an O-ring attached to the periphery of the titanium electrode 16 ( Made of resin such as silicon: the same applies to the O-rings hereinafter).
  • the electrolytic cell 10 is a water storage container, and a diameter-reduced portion 45 and a water storage main body portion 46 are integrally formed in order from the bottom, and are fluidly connected to each other inside.
  • the water storage main body portion 46 is opened upward so that water can be poured therein, and is semi-closed by attaching the electrolytic cell lid 12.
  • the electrolytic cell lid 12 penetrates vertically and is provided with a through opening 12a for receiving the umbrella valve 23, the screw cap 14, and the like.
  • the water storage main body portion 46 has an outer portion 46a that forms a laterally substantially flat side wall from the upper end to the lower end and is directly connected to the upper end of the reduced diameter portion 45.
  • the upper portion 46b is formed in parallel to the outer portion 46a from the upper end to the central lower position, and has a bottom portion 46c that is bent and inclined from the central lower position.
  • the bottom portion 46c extends to an intermediate position in the lateral direction and connects to the upper end of the reduced diameter portion 45.
  • the diameter-reduced portion 45 is thinner than the water storage main body portion 46 as described above, and the upper end of the outer side portion 46a on the side wall side is directly attached to the lower end of the outer side portion 46a of the water storage main body portion 46 as shown in FIG. It continuously connects and extends to the lower end, and the upper end of the inner portion 45b of the reduced diameter portion 45 on the main body cover 1 side is bent downward at the position of the tip (edge) of the bottom portion 46c of the water storage main body portion 46 to be connected. And extends to the lower end in parallel with the inner portion 45b.
  • a partition plate 45d is provided which is inclined substantially the same as the bottom portion 46c of the water storage main body portion 46 and extends to the opening 45c.
  • the partition plate 45d extends over the entire inside in the direction perpendicular to the paper surface of FIG. Therefore, even if the amount of stored water is reduced due to electrolysis of the aqueous solution stored in the electrolytic cell 10, water will always be stored in substantially the entire area inside the reduced diameter portion 45.
  • the diameter-reduced portion 45 is thinner than the stored water body 46, in a normal standing state, unless the amount of stored water is significantly reduced.
  • the reduced diameter portion 45 is filled with water and no air layer is generated.
  • the reduced diameter portion 45 is filled with water.
  • the bottom portion 46c serves as a baffle plate and an air layer is formed on the inner portion 46b side of the water storage main body portion 46.
  • the partition plate 45d serves as an obstacle and an air layer is formed only on the outer side 46a side of the water storage body 46. Therefore, the entire mesh electrode 17 disposed in the reduced diameter portion 45 is always in contact with water, and the hydrogen generation amount can always be secured even when the user sucks it sideways.
  • the upper end edge of the mesh electrode 17 is formed by obliquely cutting along the shapes of the reduced diameter portion 45 and the opening 45c so that the entire electrode is immersed in water in the reduced diameter portion 45.
  • the lower end of the electrolytic cell 10 is closed by the electrolytic cell bottom 11, and the electrolytic cell bottom 11 is provided with a pair of through holes into which the mesh electrodes 17 are inserted, and the reduced diameter portion 45 of the electrolytic cell 10 is provided.
  • the mesh electrode 17 passes through the through hole of the electrolytic cell bottom 11 and is positioned in the reduced diameter portion 45.
  • the umbrella valve 23 and the like mounted on the through opening 12a of the electrolytic cell lid 12 at the upper end of the electrolytic cell 10 will be described.
  • a screw cap 14 having an opening on the upper side and penetrating vertically is attached to the through opening 12a.
  • a vent filter 18 is interposed between a hole at the bottom of the screw cap 14 and the bottom of the through opening 12a.
  • the O-ring 21 is inserted around the lower portion of the screw cap 14.
  • the vent filter 18 has a function of waterproofing/dustproofing while adjusting the internal pressure in the opening of the screw cap 14 with a minute hole. Further, the O-ring 21 blocks water between the outer peripheral wall of the opening of the screw cap 14 and the inner peripheral wall of the through opening 12a.
  • an umbrella valve 23 (made of a flexible material such as silicon) that operates in the vertical direction is attached in the opening of the screw cap 14, and when a user sucks the nozzle 5 (described later) and a negative pressure acts upward.
  • the ampule valve 23 moves upward and fluidly connects to the inside of the electrolytic cell 10 through the through hole at the bottom of the screw cap 14 and the through opening 12a of the electrolytic cell lid 12. Therefore, when the nozzle 5 is sucked, the hydrogen gas ascended and stored in the electrolytic cell 10 is released to the outside.
  • the ampulera valve 23 descends, the through hole at the bottom of the screw cap 14 is closed, and the release of hydrogen gas in the electrolytic cell 10 is closed.
  • the mixer 2 is attached from above to the electrolytic cell lid 12 to which the screw cap 14 and the umbrella valve 20 are attached.
  • the mixer 2 has a tubular member 2a extending downward as shown in FIG. 1, and the lower end of the tubular member 2a is inserted into the opening of the screw cap 14 so that the tubular member 2a receives hydrogen from the umbrella valve 23.
  • a flow path is formed to guide the gas upward.
  • An O-ring 20 is provided around the outer peripheral wall of the tubular member 2a, and seals the gap between the inner wall of the opening of the screw cap 14 and the tubular member 2a of the umbrella valve 23.
  • Securing the mixer 2 and the electrolytic cell lid 12 is done by attaching lock buttons 3 and 4.
  • the lock buttons 3 and 4 are respectively sandwiched and snap-fastened in the front-rear direction (the direction perpendicular to the paper surface of FIG. 9) at the vertical gap between the mixer 2 and the electrolytic cell lid 12.
  • the mixer 2 is provided with a flow path 2b in the upper part thereof toward the nozzle 5. This flow path 2b is connected to the flow path formed by the tubular member 2a and guides hydrogen gas as shown by the arrow in FIG.
  • the electrolysis-type hydrogen gas suction tool 100 as a hydrogen generator for carrying out the bioactivation method for promoting the nerve activity and/or blood circulation activity of the living body of the present invention
  • the user can use it on a daily basis.
  • An aroma heater portion 32 for generating aroma air may be provided to satisfy the preference when used.
  • the contact terminal 37 of the battery 36 is inserted into the upper end opening of the battery receiving portion 43 of the main body cover 1.
  • the contact terminal 37 is formed by connecting the bottom of the large-diameter cylinder and the upper part of the small-diameter cylinder, and the bottom is inserted into the opening at the upper end of the battery receiving portion 43 to supply electric power from the battery 36 to the fragrance heater portion 32.
  • the contact terminal 37 is fastened to the joint 7 from above with a screw 38 having a cross hole.
  • the joint 8 is formed by connecting a bottom portion of a small diameter cylinder and a top portion of a large diameter substantially disc shape, and the top portion of the contact terminal 37 and the bottom portion of the joint 38 are fitted in a nested manner.
  • the aroma heater member 32 is placed on the upper surface of the joint 8, and when the mixer 2 is attached, it is sandwiched between the joint 8 and the mixer 2 and fixed to the main body cover 1.
  • the fragrance heater member 32 is a general-purpose device, and when power is supplied, fragranced air is generated inside and is discharged upward.
  • the mixer 2 is provided with a tubular member 2c extending in parallel with the above-mentioned tubular member 2a, and the upper end of the aroma heater portion 32 is connected to the tubular member 2c. Therefore, the fragranced air discharged from the fragrance heater portion 32 passes through the tubular member 2c as shown by the arrow in FIG. 9, and joins with the hydrogen gas flowing through the flow passage 2b through the tubular member 2a. It flows into the nozzle 5 and is discharged into the mouth of the user.
  • the nozzle 5 has a structure in which a large-diameter disk member at the bottom and a tubular member at the top are integrally connected, and the bottom thereof is fluidly connected to the tubular member 2c of the heater 32 of the mixer 2. Mounted on the surface opening. As a result, hydrogen gas from the flow path 2b and/or fragranced air from the tubular member 2c is discharged from the inside of the nozzle 5 to the outside of the upper end. An O-ring 22 is arranged and sealed at the connection between the bottom of the nozzle 5 and the mixer 2.
  • the power supply from the battery 36 is controlled by the control board 33.
  • the power to the mesh substrate 17 is supplied for a predetermined time when the button 35 attached to the main body cover 1 is pressed three times.
  • the contact terminal 37 is connected on condition that the power supply signal to the mesh electrode 17 is not transmitted from the control board 33, and the power from the battery 36 is supplied to the aroma heater 32 for a predetermined time.
  • the living body improving method for improving the living function and/or cognitive function of the present invention and the embodiment of the electrolytic hydrogen generating device (electrolytic hydrogen gas suction device) suitable for carrying out this method are exemplified.
  • the present invention has been described, the present invention is not limited thereto, and those skilled in the art can obtain other modifications and improvements without departing from the spirit and teaching of the claims and the specification. Will understand.
  • MCI mild cognitive impairment
  • Electrolytic hydrogen gas suction tool 1 Body cover 2 Mixer (mixer) 5 Nozzle 10 Electrolytic Bath 12 Electrolytic Bath Lid 14 Screw Cap 17 Mesh Electrode (Cathode) Container Body 22 O Ring 23 Mesh Electrode (Anode) 32 Fragrance heater part (fragrance heater member) 33 battery 42 control board 45 reduced diameter portion 45c partition plate 46 water storage main body portion

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  • Life Sciences & Earth Sciences (AREA)
  • Animal Behavior & Ethology (AREA)
  • Materials Engineering (AREA)
  • Public Health (AREA)
  • Emergency Medicine (AREA)
  • Inorganic Chemistry (AREA)
  • Bioinformatics & Cheminformatics (AREA)
  • Pharmaceuticals Containing Other Organic And Inorganic Compounds (AREA)
  • Electrolytic Production Of Non-Metals, Compounds, Apparatuses Therefor (AREA)

Abstract

Le problème décrit par la présente invention est de fournir un procédé d'amélioration du corps vivant avec lequel la fonction vitale et/ou la fonction cognitive est améliorée par inspiration régulière, à travers la bouche ou le nez, de l'air contenant une concentration élevée d'hydrogène en utilisant un générateur portable d'hydrogène de type électrolyse. La solution selon l'invention porte sur un procédé d'amélioration du corps vivant, par exemple, de l'air contenant une concentration élevée d'hydrogène est inspiré sur une durée prescrite au moins 5 fois par jour par intervalles d'approximativement au moins 15 minutes, et cette inspiration est poursuivie durant approximativement 4 semaines ou plus. Un générateur d'hydrogène de type électrolyse utilisé dans ce procédé est portable, et comprend : une paire d'électrodes positive-négative; une cellule électrolytique transparente ou semi-transparente dans laquelle la paire d'électrodes est insérée et qui est susceptible de stocker de l'eau; une unité de mélange qui établit une connexion fluidique entre la cellule électrolytique et une buse qui permet l'inspiration par voie buccale ou nasale tout en étant saisie d'une main, et qui présente un passage de liquide qui prend l'air de l'environnement; et un moyen d'actionnement qui peut être actionné tandis que le générateur d'hydrogène de type électrolyse est saisi d'une main. Un panneau de commande commande, au moyen d'un actionnement unique du moyen d'actionnement, l'alimentation et l'arrêt de l'alimentation provenant d'une batterie vers les électrodes positive-négative.
PCT/JP2019/045959 2018-12-08 2019-11-25 Procédé d'amélioration du corps vivant, et générateur d'hydrogène de type électrolyse pour mettre en œuvre ledit procédé WO2020116225A1 (fr)

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Cited By (3)

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Publication number Priority date Publication date Assignee Title
WO2021177467A1 (fr) * 2020-03-06 2021-09-10 隆 竹原 Procédé destiné à favoriser l'amélioration du sommeil et générateur d'hydrogène électrolytique utilisé pour ce dernier
WO2023210438A1 (fr) * 2022-04-28 2023-11-02 隆 竹原 Procédé de promotion d'action physiologique et lunettes pour alimentation en hydrogène
WO2024042900A1 (fr) * 2022-08-22 2024-02-29 隆 竹原 Aspirateur d'hydrogène électrolytique ayant une fonction d'aspiration de gaz aromatique de type chauffant

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JP2017099590A (ja) * 2015-12-01 2017-06-08 日本光電工業株式会社 水素ガス供給装置
JP2018030804A (ja) * 2016-08-24 2018-03-01 MiZ株式会社 水素ガスからなる認識機能低下抑制剤
WO2018047889A1 (fr) * 2016-09-11 2018-03-15 隆 竹原 Outil d'aspiration d'hydrogène gazeux de type à électrolyse
WO2018151286A1 (fr) * 2017-02-20 2018-08-23 隆 竹原 Inhalateur de gaz hydrogène et oxygène électrolytique
WO2018151107A1 (fr) * 2017-02-14 2018-08-23 株式会社アクアバンク Procédé de bioactivation pour améliorer l'activité neuronale et l'activité de circulation sanguine d'un corps vivant

Patent Citations (5)

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Publication number Priority date Publication date Assignee Title
JP2017099590A (ja) * 2015-12-01 2017-06-08 日本光電工業株式会社 水素ガス供給装置
JP2018030804A (ja) * 2016-08-24 2018-03-01 MiZ株式会社 水素ガスからなる認識機能低下抑制剤
WO2018047889A1 (fr) * 2016-09-11 2018-03-15 隆 竹原 Outil d'aspiration d'hydrogène gazeux de type à électrolyse
WO2018151107A1 (fr) * 2017-02-14 2018-08-23 株式会社アクアバンク Procédé de bioactivation pour améliorer l'activité neuronale et l'activité de circulation sanguine d'un corps vivant
WO2018151286A1 (fr) * 2017-02-20 2018-08-23 隆 竹原 Inhalateur de gaz hydrogène et oxygène électrolytique

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2021177467A1 (fr) * 2020-03-06 2021-09-10 隆 竹原 Procédé destiné à favoriser l'amélioration du sommeil et générateur d'hydrogène électrolytique utilisé pour ce dernier
WO2023210438A1 (fr) * 2022-04-28 2023-11-02 隆 竹原 Procédé de promotion d'action physiologique et lunettes pour alimentation en hydrogène
WO2024042900A1 (fr) * 2022-08-22 2024-02-29 隆 竹原 Aspirateur d'hydrogène électrolytique ayant une fonction d'aspiration de gaz aromatique de type chauffant

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