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JP2018173159A - Hydrogen gas shower water system - Google Patents

Hydrogen gas shower water system Download PDF

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JP2018173159A
JP2018173159A JP2017073340A JP2017073340A JP2018173159A JP 2018173159 A JP2018173159 A JP 2018173159A JP 2017073340 A JP2017073340 A JP 2017073340A JP 2017073340 A JP2017073340 A JP 2017073340A JP 2018173159 A JP2018173159 A JP 2018173159A
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hydrogen gas
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shower
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hydrogen
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JP6950884B2 (en
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永井 秀明
Hideaki Nagai
秀明 永井
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    • 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
    • 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
    • Y02PCLIMATE CHANGE MITIGATION TECHNOLOGIES IN THE PRODUCTION OR PROCESSING OF GOODS
    • Y02P90/00Enabling technologies with a potential contribution to greenhouse gas [GHG] emissions mitigation
    • Y02P90/45Hydrogen technologies in production processes

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  • Nozzles (AREA)
  • Bathtubs, Showers, And Their Attachments (AREA)
  • Cosmetics (AREA)
  • Pharmaceuticals Containing Other Organic And Inorganic Compounds (AREA)
  • Accessories For Mixers (AREA)
  • Hydrogen, Water And Hydrids (AREA)
  • Filling Or Discharging Of Gas Storage Vessels (AREA)
  • Massaging Devices (AREA)

Abstract

【課題】水素ガスを身体に吸収しやすい方法を提供し健康の増進効果を高めること。【解決手段】本発明は、シャワー用孔を備えたシャワー板、水・水素ガス混合空間、水を導入する水導入空間、および先端が水素ガスを排出する水素ガス排出孔である水素ガスノズルを有するシャワーヘッド、シャワーヘッドの水導入空間へ水を供給する水供給部、並びにシャワーヘッドの水素ガスノズルへ水素ガスを供給する水素ガス供給部を有し、水・水素ガス混合空間は前記シャワー板と仕切板の間に配置され、水導入空間は前記仕切板を挟んで水・水素ガス混合空間と反対側に配置され、仕切板には水導入空間から水・水素ガス混合空間へ水を通す水導通穴が配置され、水導通穴に近接して水素ガスノズルの水素ガス排出孔が配置されて、水素ガスノズルの水素ガス排出孔から水導通穴を通して水素ガスが水・水素ガス混合空間へ排出される水素ガスシャワー水システムである。【選択図】図1PROBLEM TO BE SOLVED: To provide a method of easily absorbing hydrogen gas into the body to enhance the effect of promoting health. The present invention has a shower plate having a shower hole, a water/hydrogen gas mixing space, a water introducing space for introducing water, and a hydrogen gas nozzle whose tip is a hydrogen gas discharging hole for discharging hydrogen gas. It has a shower head, a water supply unit for supplying water to the water introduction space of the shower head, and a hydrogen gas supply unit for supplying hydrogen gas to the hydrogen gas nozzle of the shower head, and the water/hydrogen gas mixing space is partitioned from the shower plate. The water introducing space is arranged between the plates, and the water introducing space is arranged on the opposite side of the water/hydrogen gas mixing space with the partition plate interposed therebetween, and the partition plate has a water conducting hole for passing water from the water introducing space to the water/hydrogen gas mixing space. The hydrogen gas discharge hole of the hydrogen gas nozzle is arranged close to the water conducting hole, and the hydrogen gas is discharged from the hydrogen gas discharging hole of the hydrogen gas nozzle through the water conducting hole to the water/hydrogen gas mixing space. Water system. [Selection diagram] Figure 1

Description

本発明は、水素ガスと水を用いたシャワーに関する。 The present invention relates to a shower using hydrogen gas and water.

近年水素ガスは水素ガス自動車の燃料として注目されているが、水素ガスを水に溶かした水素水が健康増進に有用であることが報告されている。たとえば、水素水を日常的に飲料すると細胞が若返るなどエイジングケアなどとして美容への効果だけでなく、様々な疾患への改善効果が認められ、一部の病院では治療の一環として水素水の摂取等が取り入れられている。また、水素水を製造する方法も種々提案されている。(特許文献1) In recent years, hydrogen gas has attracted attention as a fuel for hydrogen gas vehicles, but it has been reported that hydrogen water in which hydrogen gas is dissolved in water is useful for health promotion. For example, if you drink hydrogen water on a daily basis, cells will rejuvenate and you will not only have an effect on beauty as an aging care, but also an improvement effect on various diseases. Some hospitals take hydrogen water as part of their treatment. Etc. are adopted. Various methods for producing hydrogen water have also been proposed. (Patent Document 1)

特開2013−126650JP2013-126650A

本発明は水素水以上に健康増進に有用な方法を提供することである。水素水と言っても水素の水への溶解度は極めて低く、水素水の効果は限定的である。そこで、本発明の目的は水素を身体に吸収しやすい方法を提供し健康の増進効果を高めることである。特に水(温水やお湯を含む)と一緒に水素ガスをシャワーとして浴びることにより、水素ガスを頭や身体に吸収し、水素ガスによる健康の増進効果を高めることを目的とする。 The present invention provides a more useful method for health promotion than hydrogen water. Even if it is called hydrogen water, the solubility of hydrogen in water is extremely low, and the effect of hydrogen water is limited. Therefore, an object of the present invention is to provide a method that facilitates absorption of hydrogen into the body and enhance the health promotion effect. In particular, by taking hydrogen gas as a shower together with water (including hot water and hot water), it aims to absorb the hydrogen gas into the head and body and enhance the health promotion effect of hydrogen gas.

本発明は、水素ガスをシャワー水とともに身体に浴びる水素ガスシャワー水システムに関するものであり、以下の特徴を有する。
(1)本発明は、シャワー板に備わるシャワー用孔を通して、シャワー水とともに水素ガスを噴出させた水素ガスシャワー水システムであり、複数のシャワー用孔を備えた前記シャワー板、水および水素ガスを混合する水・水素ガス混合空間、水を導入する水導入空間、および先端が水素ガスを排出する水素ガス排出孔である水素ガスノズルを有するシャワーヘッド、前記シャワーヘッドの水導入空間へ水を供給する水供給部、並びに前記シャワーヘッドの水素ガスノズルへ水素ガスを供給する水素ガス供給部を有する水素ガスシャワー水システムであって、前記水・水素ガス混合空間は前記シャワー板と仕切板の間に配置され、前記水導入空間は前記仕切板を挟んで前記水・水素ガス混合空間と反対側に配置され、前記仕切板には前記水導入空間から前記水・水素ガス混合空間へ水を通す穴(水導通穴)が配置され、前記水導通穴に近接して前記水素ガスノズルの水素ガス排出孔が配置されて、前記水素ガスノズルの水素ガス排出孔から前記水導通穴を通して水素ガスが前記水・水素ガス混合空間へ排出される水素ガスシャワー水システムである。
The present invention relates to a hydrogen gas shower water system in which hydrogen gas is put on the body together with shower water, and has the following characteristics.
(1) The present invention is a hydrogen gas shower water system in which hydrogen gas is jetted together with shower water through a shower hole provided in the shower plate, the shower plate having a plurality of shower holes, water and hydrogen gas. A water / hydrogen gas mixing space for mixing, a water introduction space for introducing water, a shower head having a hydrogen gas nozzle that is a hydrogen gas discharge hole at the tip of which discharges hydrogen gas, and water is supplied to the water introduction space of the shower head A hydrogen gas shower water system having a water supply unit and a hydrogen gas supply unit for supplying hydrogen gas to a hydrogen gas nozzle of the shower head, wherein the water / hydrogen gas mixed space is disposed between the shower plate and the partition plate, The water introduction space is disposed on the opposite side of the water / hydrogen gas mixing space across the partition plate, and the water guide is disposed on the partition plate. A hole for passing water from the space to the water / hydrogen gas mixed space (water conduction hole) is disposed, and a hydrogen gas discharge hole of the hydrogen gas nozzle is disposed in proximity to the water conduction hole, and the hydrogen gas of the hydrogen gas nozzle A hydrogen gas shower water system in which hydrogen gas is discharged from a discharge hole through the water conduction hole to the water / hydrogen gas mixed space.

(2)本発明の水素ガスシャワー水システムは、上記(1)に加えて、前記水素ガスノズルは円錐形状であり、前記円錐形状の水素ガスノズルの頂点部に前記水素ガス排出孔が備わり、前記水素ガス排出孔が前記仕切り板に設けた前記水導通穴に近接しており、前記水導入空間へ導入された水が前記水導通穴を通って前記水・水素ガス混合空間へ流れ込むときに生じる負圧により、前記水素ガスノズルの水素ガスが前記水・水素ガス混合空間へ吸引されることを特徴とし、また前記水素ガス供給部は、水素ガス発生装置、水素ガスボンベ、または液体水素であり、さらに前記水素ガスノズルと前記水素ガス供給部を接続する接続ライン(水素ガス接続ライン)には、圧力調整器が備わり、水素ガスの圧力を調整可能であることを特徴とする。 (2) In the hydrogen gas shower water system of the present invention, in addition to the above (1), the hydrogen gas nozzle has a conical shape, the apex of the conical hydrogen gas nozzle is provided with the hydrogen gas discharge hole, A gas discharge hole is close to the water conduction hole provided in the partition plate, and negative gas generated when water introduced into the water introduction space flows into the water / hydrogen gas mixed space through the water conduction hole. The hydrogen gas of the hydrogen gas nozzle is sucked into the water / hydrogen gas mixed space by pressure, and the hydrogen gas supply unit is a hydrogen gas generator, a hydrogen gas cylinder, or liquid hydrogen, and A connection line (hydrogen gas connection line) connecting the hydrogen gas nozzle and the hydrogen gas supply unit is provided with a pressure regulator, and the pressure of the hydrogen gas can be adjusted.

(3)本発明は、シャワー板に備わるシャワー用孔を通して、シャワー水とともに水素ガスを噴出させた水素ガスシャワー水システムであり、水素ガス導入空間を挟んだ2つのシャワー板(第1シャワー板および第2シャワー板)を有するシャワー板、前記第1シャワー板と前記第2シャワー板に挟まれた水素ガス導入空間、および水を導入する水導入空間を有するシャワーヘッド、前記シャワーヘッドの水導入空間へ水を供給する水供給部、並びに前記シャワーヘッドの前記水素ガス導入空間へ水素ガスを供給する水素ガス供給部を有する水素ガスシャワー水システムであって、前記第1シャワー板は複数のシャワー用孔を備え、前記水導入空間から前記第1シャワー板のシャワー用孔を通して前記水素ガス導入空間へ水が排出され、前記第2シャワー板は複数のシャワー用孔を備え、前記水素ガス導入空間から前記第2シャワー板のシャワー用孔を通して水および水素ガスが前記シャワーヘッドの外側へ噴出される、水素ガスシャワー水システムである。
(4)本発明は、シャワー板に備わるシャワー用孔を通して、シャワー水とともに水素ガスを噴出させた水素ガスシャワー水システムであり、前記シャワー水用の水供給部に水素ガス供給部へつながる水素ガス接続ラインが接続し、水素ガスがシャワーへ供給され、前記水素ガス供給ラインが水供給部と接続する部分は円錐形状であり、前記円錐形状の水素ガス接続ライン接続部分の頂点部に水素ガス排出孔が備わり、前記水素ガス排出孔から前記水供給部へ水素が供給されることを特徴とする、水素ガスシャワー水システムである。
(3) The present invention is a hydrogen gas shower water system in which hydrogen gas is jetted together with shower water through a shower hole provided in the shower plate, and includes two shower plates (first shower plate and A shower plate having a second shower plate, a hydrogen gas introduction space sandwiched between the first shower plate and the second shower plate, a shower head having a water introduction space for introducing water, and a water introduction space of the shower head A hydrogen gas shower water system having a water supply part for supplying water to the water and a hydrogen gas supply part for supplying hydrogen gas to the hydrogen gas introduction space of the shower head, wherein the first shower plate is for a plurality of showers. A hole is provided, and water is discharged from the water introduction space to the hydrogen gas introduction space through the shower hole of the first shower plate, The two shower plates have a plurality of shower holes, and are a hydrogen gas shower water system in which water and hydrogen gas are ejected from the hydrogen gas introduction space through the shower holes of the second shower plate to the outside of the shower head. .
(4) The present invention is a hydrogen gas shower water system in which hydrogen gas is jetted together with shower water through a shower hole provided in a shower plate, and the hydrogen gas connected to the hydrogen gas supply unit is connected to the water supply unit for shower water The connecting line is connected, hydrogen gas is supplied to the shower, the portion where the hydrogen gas supply line connects to the water supply part is conical, and the hydrogen gas is discharged at the apex of the conical hydrogen gas connecting line connecting part A hydrogen gas shower water system, comprising a hole, wherein hydrogen is supplied from the hydrogen gas discharge hole to the water supply unit.

(5)本発明の水素ガスシャワー水システムは、上記(3)または(4)に加えて前記水素ガス供給部は、水素ガス発生装置、水素ガスボンベ、または液体水素であり、また、前記水素ガス導入空間と前記水素ガス供給部を接続する接続ライン(水素ガス接続ライン)には、圧力調整器が備わり、水素ガスの圧力を調整可能であり、前記第2シャワー板は取り外し可能であることを特徴とする。 (5) In the hydrogen gas shower water system of the present invention, in addition to the above (3) or (4), the hydrogen gas supply unit is a hydrogen gas generator, a hydrogen gas cylinder, or liquid hydrogen, and the hydrogen gas A connection line (hydrogen gas connection line) connecting the introduction space and the hydrogen gas supply unit is provided with a pressure regulator, the pressure of the hydrogen gas can be adjusted, and the second shower plate can be removed. Features.

(6)本発明の水素ガスシャワー水システムは、上記に加えて前記水素ガス発生装置は、水および水素ガス発生用剤を入れた容器に水素ガス出口を取り付けたものであり、前記水素ガス出口を前記水素ガス接続ラインに接続したものであり、また前記水素ガス発生装置には、複数の水素ガス出口を備え、その少なくとも1つの水素ガス出口を前記水素ガス接続ラインに接続し、その少なくとも1つの水素ガス出口は大気開放としたことを特徴とする。 (6) In the hydrogen gas shower water system of the present invention, in addition to the above, the hydrogen gas generation apparatus is configured such that a hydrogen gas outlet is attached to a container containing water and a hydrogen gas generation agent, and the hydrogen gas outlet Is connected to the hydrogen gas connection line, and the hydrogen gas generator includes a plurality of hydrogen gas outlets, and at least one hydrogen gas outlet is connected to the hydrogen gas connection line, and at least one of the hydrogen gas outlets is connected. One hydrogen gas outlet is open to the atmosphere.

シャワーヘッド内に入った水素ガスと水は、シャワー穴12から噴出して水素ガスシャワー水22となって、頭、髪、顔、ボディ等の身体に浴びさせることができる。水素ガスは分子半径も小さく水と一緒に身体に当たるので、皮膚を通して身体の内部へ浸透し、身体内部を活性化させ、健康増進を推進すると言われている。血流を良くし、毛細血管を活性させ再生する効果もある。また、身体や髪、頭皮、皮膚についた脂分や埃等の汚れを落とす効果もあり、洗剤やシャンプーがなくても十分な洗浄作用もあると言われている。さらに、水素ガスは髪や肌の老化防止にも効果があり、髪や肌のつやも良くなり、長時間保持できる。 The hydrogen gas and water that have entered the shower head are ejected from the shower hole 12 to become hydrogen gas shower water 22, which can be applied to the body such as the head, hair, face, and body. Since hydrogen gas has a small molecular radius and hits the body together with water, it is said to penetrate the inside of the body through the skin, activate the inside of the body, and promote health promotion. It also has the effect of improving blood flow and activating and regenerating capillaries. It is also said to have an effect of removing dirt such as fat and dust on the body, hair, scalp, and skin, and is said to have a sufficient cleaning action even without a detergent or shampoo. Furthermore, hydrogen gas is effective in preventing aging of hair and skin, and the hair and skin become glossy and can be held for a long time.

図1は、本発明の水素ガスシャワー水システムの実施形態を示す図である。FIG. 1 is a diagram showing an embodiment of the hydrogen gas shower water system of the present invention. 図2は、水素ガスを導入するシャワーヘッドの構造を示す実施形態である。FIG. 2 is an embodiment showing a structure of a shower head for introducing hydrogen gas. 図3は、本発明の水素ガスシャワーヘッドの構造を示す別の実施形態である。FIG. 3 is another embodiment showing the structure of the hydrogen gas showerhead of the present invention.

本発明は、水素ガスを水(温水等)と一緒にシャワー状にした水素ガスシャワー水を頭、髪、顔、身体等に浴びて、健康増進を図るものである。図1は、本発明の水素ガスシャワー水(システム)の実施形態を示す図である。本発明の水素ガスシャワー水システムは、水素ガス発生システム8およびシャワー装置9から構成される。シャワー装置9は、水供給部から水(W)を導入するホース21、ホース21が接続しシャワー(水)を噴出するシャワーヘッド11からなり、シャワーヘッド11の出口部に多数のシャワー穴12が空いている。ホース21の他方端は水供給部に接続し、水供給部から水(W)が供給されホース21を通してシャワーヘッド11に水が導入される。ここで、水とは温度調節された温水を含み、接続部には蛇口栓やバルブが取り付けられても良く、水量を調節したり、または水の供給を止めたりすることもできる。また、シャワーヘッド11に水供給を切断したり、水量を調節する調節機構(調整弁等)を備えたりすることもできる。 In the present invention, hydrogen gas shower water in which hydrogen gas is showered together with water (hot water or the like) is bathed on the head, hair, face, body, etc. to promote health. FIG. 1 is a diagram showing an embodiment of the hydrogen gas shower water (system) of the present invention. The hydrogen gas shower water system of the present invention includes a hydrogen gas generation system 8 and a shower device 9. The shower device 9 includes a hose 21 that introduces water (W) from a water supply unit, and a shower head 11 that is connected to the hose 21 and ejects the shower (water). A large number of shower holes 12 are provided at the outlet of the shower head 11. Vacant. The other end of the hose 21 is connected to a water supply unit, water (W) is supplied from the water supply unit, and water is introduced into the shower head 11 through the hose 21. Here, the water includes hot water whose temperature is adjusted, and a faucet plug or a valve may be attached to the connection portion, and the amount of water can be adjusted or the supply of water can be stopped. Moreover, the shower head 11 can be provided with an adjustment mechanism (such as an adjustment valve) for cutting off the water supply or adjusting the amount of water.

水素ガス発生システム8は、水素ガス発生装置10と水素ガス導入管20を含み、水素ガス導入管20の一端は水素ガス発生装置10の水素ガス出口管18に接続し、水素ガス導入管20の他端はシャワーヘッド11に接続する。水素ガス発生装置10は、水素ガス発生容器13内に水素ガス発生剤を入れた水素ガス発生剤ホルダー15を配置する。水素ガス発生剤ホルダー15には、たとえば酸化カルシウム剤(CaO)およびアルミニウム(Al)を入れて、水素ガス発生容器13内に水14を入れると、アルミニウム(Al)が水素ガス発生反応促進剤になり水素ガス(H2)が発生する。(符号16は水素ガス気泡である。)水素ガス発生容器13にはキャップ23で蓋がされている。水素ガス(H2)が発生すると水素ガスは水素ガス発生容器13の上部である蓋(キャップ)13の下部の空間17に集まり、水素ガス発生容器13のキャップ23の下部の空間17の圧力が高まる。キャップ23には水素ガス出口管18が形成されており、水素ガス発生容器13内の空間17の水素ガスは水素ガス出口管18から押し出される。水素ガス出口管18には水素ガス導入管20が接続されているので、水素ガス出口管18から押し出された水素ガスは水素ガス導入管20に入り、シャワーヘッド11内に導かれる。 The hydrogen gas generation system 8 includes a hydrogen gas generation device 10 and a hydrogen gas introduction pipe 20, and one end of the hydrogen gas introduction pipe 20 is connected to the hydrogen gas outlet pipe 18 of the hydrogen gas generation apparatus 10. The other end is connected to the shower head 11. The hydrogen gas generator 10 has a hydrogen gas generator holder 15 in which a hydrogen gas generator is placed in a hydrogen gas generator 13. For example, when calcium oxide agent (CaO) and aluminum (Al) are put in the hydrogen gas generating agent holder 15 and water 14 is put into the hydrogen gas generating container 13, aluminum (Al) becomes the hydrogen gas generating reaction accelerator. And hydrogen gas (H2) is generated. (Reference numeral 16 denotes hydrogen gas bubbles.) The hydrogen gas generation container 13 is covered with a cap 23. When the hydrogen gas (H2) is generated, the hydrogen gas collects in a space 17 below the lid (cap) 13 that is an upper part of the hydrogen gas generation container 13, and the pressure in the space 17 below the cap 23 of the hydrogen gas generation container 13 increases. . A hydrogen gas outlet pipe 18 is formed in the cap 23, and the hydrogen gas in the space 17 in the hydrogen gas generation container 13 is pushed out from the hydrogen gas outlet pipe 18. Since the hydrogen gas inlet pipe 20 is connected to the hydrogen gas outlet pipe 18, the hydrogen gas pushed out from the hydrogen gas outlet pipe 18 enters the hydrogen gas inlet pipe 20 and is guided into the shower head 11.

シャワーヘッド内に入った水素ガスと水は、シャワー穴12から噴出して水素ガスシャワー水22となって、頭、髪、顔、ボディ等の身体に浴びさせることができる。水素ガスシャワー水はマイナスイオンを発生し、健康増進に役立つという効果がある。水素ガスは分子半径も小さく水と一緒に身体に当たるので、皮膚を通して身体の内部へ浸透し、身体内部を活性化させ、健康増進を推進すると言われている。血流を良くし、毛細血管を活性させ再生する効果もある。アトピーや育毛にも効果があると言われている。また、身体や髪、頭皮、皮膚についた脂分や埃等の汚れを落とす効果(界面活性剤効果)もあり、洗剤やシャンプーがなくても十分な洗浄作用や入浴効果もあると言われている。さらに、水素ガスは髪や肌の老化防止にも効果があり、髪や肌のつやも良くなり、その効果も長時間保持できる(トリートメント効果がある)。また、アトピーにも効果があると言われている。 The hydrogen gas and water that have entered the shower head are ejected from the shower hole 12 to become hydrogen gas shower water 22, which can be applied to the body such as the head, hair, face, and body. Hydrogen gas shower water generates negative ions and has the effect of helping to promote health. Since hydrogen gas has a small molecular radius and hits the body together with water, it is said to penetrate the inside of the body through the skin, activate the inside of the body, and promote health promotion. It also has the effect of improving blood flow and activating and regenerating capillaries. It is said to be effective for atopy and hair growth. It also has the effect of removing dirt such as fat and dust on the body, hair, scalp and skin (surfactant effect), and is said to have sufficient cleaning and bathing effects even without detergent or shampoo. Yes. In addition, hydrogen gas is effective in preventing aging of hair and skin, improving the gloss of hair and skin, and maintaining the effect for a long time (effective treatment). It is also said to be effective for atopy.

水素ガス出口管18からの水素ガス放出が遮られたときに、空間17の圧力が高くなってキャップ23が外れたり、水素ガス発生容器13が損傷したりしないようにするために、水素ガス発生容器13の水素ガスの出口として別の水素ガス出口管19を設けることもできる。この水素ガス出口管19に所定圧力以上になると水素ガスが出ていくような逆止弁を備えれば、通常時は水素ガス出口管18からの水素ガスが出ていき、空間17の圧力が高くなると、水素ガス出口管19から水素ガスが抜けていき、上記問題点を解決できる。尚、蓋23と水素容器13の結合や蓋23と水素ガス出口管18、19との結合を強固にし、蓋23や水素容器13の強度を大きくしておけば、水素ガス出口管18、19から水素ガスが出ていかずに、空間17に水素がたまって圧力が増大しても、蓋や23や水素ガス出口管18、19等が外れたり、これらが破損したりすることがないようにすることもできる。その場合、水素ガス出口管18や水素ガス導入管20にバルブや流量計等を設けてシャワーヘッド11への水素ガスの流入をストップさせたり、水素ガスの流量を調節したりすることもできる。 When the hydrogen gas discharge from the hydrogen gas outlet pipe 18 is blocked, the pressure in the space 17 is increased so that the cap 23 is not removed and the hydrogen gas generation vessel 13 is not damaged. Another hydrogen gas outlet pipe 19 can be provided as the hydrogen gas outlet of the container 13. If a check valve is provided in the hydrogen gas outlet pipe 19 so that the hydrogen gas is discharged when the pressure exceeds a predetermined pressure, the hydrogen gas from the hydrogen gas outlet pipe 18 is normally discharged and the pressure in the space 17 is increased. When it becomes higher, hydrogen gas escapes from the hydrogen gas outlet pipe 19 and the above-mentioned problems can be solved. In addition, if the coupling | bonding of the lid | cover 23 and the hydrogen container 13 and the coupling | bonding of the lid | cover 23 and the hydrogen gas outlet pipes 18 and 19 are strengthened and the intensity | strength of the lid | cover 23 and the hydrogen container 13 is enlarged, the hydrogen gas outlet pipes 18 and 19 will be carried out. So that even if the hydrogen gas does not come out of the chamber and hydrogen accumulates in the space 17 and the pressure increases, the lid, the 23, the hydrogen gas outlet pipes 18, 19 and the like will not come off or be damaged. You can also In that case, the hydrogen gas outlet pipe 18 or the hydrogen gas introduction pipe 20 may be provided with a valve, a flow meter or the like to stop the inflow of hydrogen gas into the shower head 11 or to adjust the flow rate of hydrogen gas.

図2は、水素ガスを導入するシャワーヘッド(本体)の構造を模式的に示す実施形態である。シャワーヘッド30は、シャワーヘッド本体31、シャワーヘッド本体31へ水(温水を含む)を導入する水導入接続管40、およびシャワーヘッド本体31へ水素ガスを導入する水素ガス導入接続管38を含む。シャワーヘッド本体31は水をシャワー状に噴出(放出)する部分であり、水導入接続管40に接続し水導入管40から導入される水を貯留する部分である水導入室(水導入部または水導入空間とも呼ぶ)34、水素ガス導入接続管38に接続し水素ガスを貯留する部分である水素ガス導入室(水素ガス導入部または水素ガスノズルとも呼ぶ)36、水導入室(部)34から出てくる水と水素ガス導入室(部)36から出て来る水素ガスを混合する部分である気液混合室(気液混合部または水・水素ガス混合空間とも呼ぶ)33、気液混合室(部)33に接続するかまたは気液混合室(部)の一部を囲んでいる、シャワー水が出る多数のシャワー穴47が空いたシャワー板部50を含む。 FIG. 2 is an embodiment schematically showing the structure of a shower head (main body) for introducing hydrogen gas. The shower head 30 includes a shower head main body 31, a water introduction connecting pipe 40 for introducing water (including hot water) into the shower head main body 31, and a hydrogen gas introduction connecting pipe 38 for introducing hydrogen gas into the shower head main body 31. The shower head main body 31 is a part that ejects (discharges) water in a shower-like manner, and is connected to the water introduction connecting pipe 40 to store water introduced from the water introduction pipe 40 (a water introduction part or a water introduction part). From a hydrogen gas introduction chamber (also referred to as a hydrogen gas introduction part or a hydrogen gas nozzle) 36, which is connected to a hydrogen gas introduction connection pipe 38 and stores hydrogen gas, and a water introduction chamber (part) 34. A gas-liquid mixing chamber (also referred to as a gas-liquid mixing portion or a water / hydrogen gas mixing space) 33, which is a portion for mixing the water coming out and the hydrogen gas coming out from the hydrogen gas introduction chamber (part) 36, a gas-liquid mixing chamber It includes a shower plate part 50 which is connected to the (part) 33 or surrounds a part of the gas-liquid mixing chamber (part) and has a large number of shower holes 47 through which shower water comes out.

水導入室34と気液混合室33は仕切板32で分離されているが、仕切板32の一部に水導通(噴出)孔(穴)37が空いており、水導入室34の水は水導通(噴出)孔37を通して気液混合室33へ水が流れていく。(水の流れを矢印48で示す。)水素ガス導入室36は水導入室34に囲まれており、気液仕切板35によって分離されている。水素ガス導入室36の出口は孔(水素ガス噴出口または水素排出孔とも呼ぶ)43が空いており、水素ガスが押し出されて出ていく。(水素ガスの流れを矢印49で示す。)水素ガス導入接続管38には水素ガス導入接続部39で水素ガス導入管41に接続する。水素ガス導入管41は、たとえば図1で示す水素ガス発生装置10等に接続し、水素ガスが流れていくので、水素ガス導入室36に貯まった水素ガスは押し出されて、水素ガス噴出口43から出ていく。さらに、水素ガス噴出口43は水導通(噴出)孔37に近接して配置されているとともに、水導通(噴出)孔(穴)37は狭いので、水の流れが水導通(噴出)孔(穴)部37でその周辺よりも速くなり、ベルヌイの定理により圧力が低下する(負圧状態になる)ので、水素ガスは水素ガス噴出口43から吸い出されるように噴出され、気液混合室33へ出ていく。(ベンチュリ効果)ここで、水素ガス噴出口43は水導通(噴出)孔37に近接して配置されているということは、たとえば、水素ガス噴出口43の出口サイズは水導通(噴出)孔37のサイズより小さく、水素ガス噴出口43の位置は水導通(噴出)孔37の位置とほぼ同じと考えて良い。水素ガス噴出口43が水導通(噴出)孔37の中に配置されていても良いし、少し離れて配置されていても良い。いずれにしても、水素ガス噴出口43から出ていく水素ガスの殆どは気液混合室33に入っていく。(そのように、水素ガス噴出口43は水導通(噴出)孔37に近接して配置されている。) Although the water introduction chamber 34 and the gas-liquid mixing chamber 33 are separated by a partition plate 32, a water conduction (spout) hole (hole) 37 is formed in a part of the partition plate 32, and the water in the water introduction chamber 34 is Water flows into the gas-liquid mixing chamber 33 through the water conduction (spout) hole 37. (The flow of water is indicated by an arrow 48.) The hydrogen gas introduction chamber 36 is surrounded by the water introduction chamber 34 and separated by a gas-liquid partition plate 35. The outlet of the hydrogen gas introduction chamber 36 has a hole 43 (also referred to as a hydrogen gas outlet or a hydrogen discharge hole), and the hydrogen gas is pushed out. (The flow of hydrogen gas is indicated by an arrow 49.) The hydrogen gas introduction connection pipe 38 is connected to the hydrogen gas introduction pipe 41 through the hydrogen gas introduction connection section 39. The hydrogen gas introduction pipe 41 is connected to, for example, the hydrogen gas generator 10 shown in FIG. 1 and the like, and the hydrogen gas flows. Therefore, the hydrogen gas stored in the hydrogen gas introduction chamber 36 is pushed out, and the hydrogen gas outlet 43 Go out from. Furthermore, since the hydrogen gas outlet 43 is disposed close to the water conduction (spout) hole 37 and the water conduction (spout) hole (hole) 37 is narrow, the flow of water is a water conduction (spout) hole ( Since the hole 37 is faster than its surroundings, and the pressure is reduced (becomes a negative pressure state) by Bernoulli's theorem, hydrogen gas is ejected so as to be sucked out from the hydrogen gas ejection port 43, and the gas-liquid mixing chamber Go out to 33. (Venturi effect) Here, the fact that the hydrogen gas ejection port 43 is disposed in the vicinity of the water conduction (ejection) hole 37 means that, for example, the outlet size of the hydrogen gas ejection port 43 is the water conduction (ejection) hole 37. It can be considered that the position of the hydrogen gas outlet 43 is substantially the same as the position of the water conduction (spout) hole 37. The hydrogen gas outlet 43 may be disposed in the water conduction (spout) hole 37 or may be disposed a little apart. In any case, most of the hydrogen gas exiting from the hydrogen gas outlet 43 enters the gas-liquid mixing chamber 33. (As such, the hydrogen gas ejection port 43 is disposed close to the water conduction (ejection) hole 37.)

気液仕切板35は、図2に示すように水素ガス44の入り口部が広く、水素ガスの出口部である水素ガス噴出口43が狭くなるように配置されても良い。たとえば、気液仕切板35は円錐形状、角錐形状やラッパ形状をして、その頂点部に孔があき、その孔(水素ガス噴出口)から水素ガスが噴出するようにする。この場合、水素ガス導入室36は水導入室34に囲まれており、水導入室34を流れる水は、円錐形状等の仕切板35に当たり、スムーズに水導通(噴出)孔37を通って気液混合室37へ流れていく。また、水素ガスも狭い水素ガス噴出口から出て行くので勢いよく気液混合室37へ入る。 As shown in FIG. 2, the gas-liquid partition plate 35 may be disposed so that the inlet portion of the hydrogen gas 44 is wide and the hydrogen gas outlet 43 that is the outlet portion of the hydrogen gas is narrow. For example, the gas-liquid partition plate 35 has a conical shape, a pyramid shape, or a trumpet shape, and has a hole at the apex, and hydrogen gas is ejected from the hole (hydrogen gas outlet). In this case, the hydrogen gas introduction chamber 36 is surrounded by the water introduction chamber 34, and the water flowing through the water introduction chamber 34 strikes the conical partition plate 35 and smoothly passes through the water conduction (spout) holes 37. It flows into the liquid mixing chamber 37. Moreover, since hydrogen gas also exits from the narrow hydrogen gas outlet, it enters the gas-liquid mixing chamber 37 vigorously.

気液混合室33へ入った水と水素ガスは混合して、水の流れと水素ガスの流れにより押し出されて、シャワー板部50に空いた多数のシャワー穴47から出ていく。水と水素ガスが混合すると言っても、水素ガスは水には殆ど溶けない(1気圧では、約1000gの水に約2/1000gの水素ガスが溶ける)ので、水素ガス51と水52は分離した状態でシャワー穴47から噴出する。図2では、水導通(噴出)孔37は仕切板32の中央部付近に配置されているので、水と水素ガスがほぼ等分にバランス良く気液混合室33に入って混合し、シャワー板部50に配置されてシャワー穴47からできるだけ等分にバランス良く、水と水素ガスがシャワー板50の外側に噴出する。尚、水導通(噴出)孔37は仕切板32の中央部付近および/または他の部分にも複数配置されても良い。その場合、気液混合室33に水と水素ガスをバランス良く配分するために、それらの水導通(噴出)孔37は仕切板32の中央部に対して対称形に配置されると良い。 The water and hydrogen gas that have entered the gas-liquid mixing chamber 33 are mixed, pushed out by the flow of water and the flow of hydrogen gas, and exit from a number of shower holes 47 that are vacant in the shower plate 50. Even if water and hydrogen gas are mixed, hydrogen gas hardly dissolves in water (at 1 atm, about 2/1000 g of hydrogen gas dissolves in about 1000 g of water), so hydrogen gas 51 and water 52 are separated. In a state of being discharged, it is ejected from the shower hole 47. In FIG. 2, the water conduction (spout) hole 37 is disposed near the center of the partition plate 32, so that water and hydrogen gas enter the gas-liquid mixing chamber 33 in a well-balanced manner and mix, and the shower plate The water and hydrogen gas are ejected to the outside of the shower plate 50 from the shower hole 47 in an equally balanced manner as much as possible. A plurality of water conduction (spout) holes 37 may be arranged near the center of the partition plate 32 and / or in other parts. In that case, in order to distribute water and hydrogen gas to the gas-liquid mixing chamber 33 in a well-balanced manner, the water conduction (spout) holes 37 are preferably arranged symmetrically with respect to the central portion of the partition plate 32.

水導入接続管40にはシャワーホース(図1では、21で示される)が接続され、シャワーホースの他端には水供給部(たとえば、温水装置や水道等)が接続され、水や温水が水導入接続管40を通って水導入室34へ入っていく。(水の流れ46)このときに、水導入接続管40の途中に水素ガス導入接続管42を接続して、水素ガスを導入しても良い。このときも、水の流れ46があるので、ベルヌイの法則により、水素ガスが吸い込まれて水の流れ46に入っていく。(水素ガスの流れ45)水素ガスの吸い込みが弱い場合には、水素ガス供給部へつながる水素ガス導入接続管(水素ガス接続ライン)42と水供給部へつながる水導入接続管40との接続口部(矢印55で示す)を狭める(たとえば、先細の円錐形状等で接続する、この場合、円錐形状の水素ガス接続ライン接続部分の頂点部に水素ガス排出孔が備わる)ことにより、水素ガス圧力が増し水素ガスが水素ガス導入接続管42から水導入接続管40へ押し出され、水素ガス排出孔から水供給部へ水素ガスが供給されるので、水の流れ46の中に水素ガスがスムーズに入っていくとともに、水が水素ガス導入接続管42側へ入り込むことを防止することもできる。尚、この場合、シャワーヘッド本体31の中央部から水素ガスを導入しない場合は、当然水素ガス導入室36を設ける必要がなく、また、仕切板32を設ける必要もない。すなわち、水導入室34と気液混合室33は一つとなっても良い。 A shower hose (indicated by 21 in FIG. 1) is connected to the water introduction connecting pipe 40, and a water supply unit (for example, a hot water device or a water supply) is connected to the other end of the shower hose. The water enters the water introduction chamber 34 through the water introduction connecting pipe 40. (Water Flow 46) At this time, hydrogen gas may be introduced by connecting the hydrogen gas introduction connection pipe 42 to the middle of the water introduction connection pipe 40. Also at this time, since there is a water flow 46, hydrogen gas is sucked into the water flow 46 according to Bernoulli's law. (Hydrogen gas flow 45) When the suction of hydrogen gas is weak, a connection port between a hydrogen gas introduction connection pipe (hydrogen gas connection line) 42 connected to the hydrogen gas supply section and a water introduction connection pipe 40 connected to the water supply section Hydrogen gas pressure by narrowing the portion (indicated by arrow 55) (for example, connecting with a tapered conical shape, etc., in this case, the apex of the conical hydrogen gas connection line connecting portion is provided) The hydrogen gas is pushed out from the hydrogen gas introduction connection pipe 42 to the water introduction connection pipe 40, and hydrogen gas is supplied from the hydrogen gas discharge hole to the water supply section, so that the hydrogen gas smoothly flows into the water flow 46. While entering, it is also possible to prevent water from entering the hydrogen gas introduction connecting pipe 42 side. In this case, when hydrogen gas is not introduced from the central portion of the shower head main body 31, it is naturally unnecessary to provide the hydrogen gas introduction chamber 36, and it is not necessary to provide the partition plate 32. That is, the water introduction chamber 34 and the gas-liquid mixing chamber 33 may be one.

以上のように、水素ガスと水は分離して(水素ガスは水に殆ど溶けずに)シャワー穴47から噴出して頭や身体等に注がれる。尚、気液混合室33は、仕切板32、シャワー板部50、およびその他の部分によって囲まれた閉空間(当然、水導通孔37、シャワー穴47は空いている)となっている。水導入室34、気液混合室33を囲む部材、仕切板32やシャワー板の部材は、シャワーとして使用できる程度の強度や耐久性を有する材料で構成される。たとえば、各種プラスチック、各種金属等の部材で作製できる。尚、水素ガスは水に殆ど溶けないが、上記示したように水にも極わずかに溶けて水素水となって、その水素水がシャワー水となって出て行くので、シャワー水による健康増進効果も期待できる。 As described above, hydrogen gas and water are separated (hydrogen gas hardly dissolves in water) and ejected from the shower hole 47 and poured into the head and body. In addition, the gas-liquid mixing chamber 33 is a closed space surrounded by the partition plate 32, the shower plate portion 50, and other parts (of course, the water conduction hole 37 and the shower hole 47 are vacant). The members surrounding the water introduction chamber 34 and the gas-liquid mixing chamber 33, the partition plate 32 and the shower plate are made of a material having strength and durability that can be used as a shower. For example, it can be produced with members such as various plastics and various metals. Although hydrogen gas hardly dissolves in water, as shown above, it dissolves slightly in water to form hydrogen water, and the hydrogen water goes out as shower water. The effect can also be expected.

図3は、本発明の水素ガスシャワーヘッド(本体)の構造を模式的に示す別の実施形態を示す図である。図2のシャワーヘッドと同じ構造の部分は同じ符号を付している。図3に示すシャワーヘッド(本体)60において、水素ガス導入室(水素ガス導入空間とも呼ぶ)61はシャワー板部50の外側に配置される。図2に示す水素ガス導入室36は水導入室(水導入空間とも呼ぶ)34の部分には配置されないので、気液仕切板35も配置されていない。水導入室34の隣には水排出室(水排出空間とも呼ぶ)58が配置されているが、この構造は図2に示すものと殆ど変らず、水排出室58の水はシャワー板部に形成されたシャワー穴47から水が出ていく。(水の流れ52)水導入室34と水排出室58の間には仕切板32が配置され、1つまたは複数の穴(水導通(噴出)孔)が空いており、水導入室34の水がこの水導通(噴出)孔を通して水排出室58へ流れていく。この仕切板32の存在により、水の流れが一様になり、複数のシャワー穴47から噴出されるシャワー水も一様な噴出水となる。尚、仕切板32を設けずに、水導入室34と水排出室58を一緒にすることもできる。その場合、水導入接続管40から直接水排出室58に入るので、複数のシャワー穴47から噴出されるシャワー水は一様にはならないが、特に問題なければ仕切板を設けなくても良いので、単純な構造となり、作製が容易である。 FIG. 3 is a view showing another embodiment schematically showing the structure of the hydrogen gas showerhead (main body) of the present invention. Parts having the same structure as those of the shower head of FIG. In the shower head (main body) 60 shown in FIG. 3, a hydrogen gas introduction chamber (also referred to as a hydrogen gas introduction space) 61 is disposed outside the shower plate portion 50. Since the hydrogen gas introduction chamber 36 shown in FIG. 2 is not disposed in the water introduction chamber (also referred to as a water introduction space) 34, the gas-liquid partition plate 35 is also not disposed. A water discharge chamber (also referred to as a water discharge space) 58 is arranged next to the water introduction chamber 34, but this structure is almost the same as that shown in FIG. 2, and the water in the water discharge chamber 58 is transferred to the shower plate. Water comes out from the formed shower hole 47. (Water flow 52) A partition plate 32 is disposed between the water introduction chamber 34 and the water discharge chamber 58, and one or more holes (water conduction (spout) holes) are formed. Water flows into the water discharge chamber 58 through the water conduction (spout) hole. Due to the presence of the partition plate 32, the flow of water becomes uniform, and the shower water ejected from the plurality of shower holes 47 also becomes uniform ejected water. Note that the water introduction chamber 34 and the water discharge chamber 58 may be combined without providing the partition plate 32. In that case, since the water discharge chamber 58 is directly entered from the water introduction connecting pipe 40, the shower water ejected from the plurality of shower holes 47 is not uniform, but if there is no particular problem, a partition plate may not be provided. It has a simple structure and is easy to manufacture.

水導入室34および水排出室58を囲むように水素ガス導入室外側ケース62が配置され、水素ガス導入室外側ケース62と水導入室34および水排出室58の間に空間(水素ガス導入室)61が形成される。この水素ガス導入室61には水素ガス導入接続管64が接続し、水素ガス導入接続管64は水素ガス導入接続部65で水素ガス導入管41と接続する。従って、水素ガス導入管41から水素ガス(H2)が流れ込み、水素ガス導入室61へ水素ガスが流入する。シャワー板部50が配置されている水素ガス導入室61において、水素ガス導入室61を挟んでシャワー板部50と対面する水素ガス導入室外側ケース62の部分には複数(多数)のシャワー穴(シャワー板部50に空いたシャワー穴47を第1シャワー穴として、こちらを第2シャワー穴と呼ぶ)63が空いており、この第2シャワー穴63から外側へ、水素ガス導入室61に入り込んだ水素ガスが噴出していく。第1シャワー穴47から噴出する水シャワーも第2シャワー穴63へ出ていくので、第2シャワー穴63から水シャワーと水素ガスシャワーが噴出する。すなわち、シャワー板部(第1シャワー板部と呼ぶ)50と、第2シャワー板部(第2シャワー穴が空いた水素ガス導入室外側ケースの部分を第2シャワー板部とする)59に挟まれた水素ガス導入室61の部分(空間)は水と水素ガスが混合する部分である。 A hydrogen gas introduction chamber outer case 62 is disposed so as to surround the water introduction chamber 34 and the water discharge chamber 58, and a space (hydrogen gas introduction chamber) is provided between the hydrogen gas introduction chamber outer case 62, the water introduction chamber 34, and the water discharge chamber 58. ) 61 is formed. A hydrogen gas introduction connection pipe 64 is connected to the hydrogen gas introduction chamber 61, and the hydrogen gas introduction connection pipe 64 is connected to the hydrogen gas introduction pipe 41 at a hydrogen gas introduction connection portion 65. Accordingly, hydrogen gas (H 2) flows from the hydrogen gas introduction pipe 41 and flows into the hydrogen gas introduction chamber 61. In the hydrogen gas introduction chamber 61 in which the shower plate portion 50 is disposed, a plurality of (many) shower holes (a large number of shower holes) are formed in the portion of the hydrogen gas introduction chamber outer case 62 facing the shower plate portion 50 with the hydrogen gas introduction chamber 61 interposed therebetween. A shower hole 47 vacated in the shower plate portion 50 is used as a first shower hole, and this is referred to as a second shower hole.) 63 is vacant, and the hydrogen gas introduction chamber 61 enters from the second shower hole 63 to the outside. Hydrogen gas spouts out. Since the water shower ejected from the first shower hole 47 also exits to the second shower hole 63, a water shower and a hydrogen gas shower are ejected from the second shower hole 63. That is, it is sandwiched between a shower plate portion (referred to as a first shower plate portion) 50 and a second shower plate portion (a portion of the outer case of the hydrogen gas introduction chamber having a second shower hole is used as the second shower plate portion) 59. The portion (space) of the hydrogen gas introduction chamber 61 is a portion where water and hydrogen gas are mixed.

このように、水素ガス導入室61はシャワー板部50の外側に配置することによっても、水素ガスシャワーをシャワーヘッドの外側へ噴出して、頭や身体に注ぐことができる。図3に示す水素ガスシャワー(ヘッド)は通常のシャワーヘッドに水素ガス導入室外側ケース62を被せ、それらの間に水素ガス導入室61を形成したものと考えることができる。水素ガス導入室外側ケース62を取り外しができるようにすれば、既に使用しているか、市販しているかしているシャワーヘッドを用いて水素ガスシャワー水を簡単に浴びることができる。水素ガス導入室外側ケース62を通常のシャワーヘッドに被せる場合に、その接続(被せる)部分にゴム等の弾力性のある部材を使用すれば水素ガス導入室外側ケース62を通常のシャワーヘッドに確実に固定できるとともに、水素ガスが水素ガス導入室外側ケース62と通常のシャワーヘッドとの接続部分から漏れないようにして、第2シャワー板部59に設けた第2シャワー穴だけから水素ガスを噴出するようにできる。 As described above, the hydrogen gas introduction chamber 61 can be sprayed to the outside of the shower head so as to be poured on the head or the body by arranging the hydrogen gas introduction chamber 61 outside the shower plate portion 50. It can be considered that the hydrogen gas shower (head) shown in FIG. 3 is obtained by covering a normal shower head with a hydrogen gas introduction chamber outer case 62 and forming a hydrogen gas introduction chamber 61 therebetween. If the hydrogen gas introduction chamber outer case 62 can be removed, the hydrogen gas shower water can be easily bathed using a shower head that is already used or commercially available. When the outer case 62 of the hydrogen gas introduction chamber is put on a normal shower head, if an elastic member such as rubber is used for the connecting (covering) portion, the outer case 62 of the hydrogen gas introduction chamber can be securely attached to the normal shower head. The hydrogen gas is ejected from only the second shower hole provided in the second shower plate portion 59 so that the hydrogen gas does not leak from the connecting portion between the hydrogen gas introduction chamber outer case 62 and the normal shower head. You can do that.

図1に示す水素ガス発生装置の所で示した水素ガス発生剤の他に、種々の水素ガス発生剤を用いることができる。たとえば、塩酸等の酸とニッケル等の金属を反応させて水素ガスを発生させる方法や、水素ガス化ホウ素金属塩・水素ガス化アルカリ土類金属塩・マグネシウム・アルカリ剤を組み合わせたアルミニウムと水との反応による水素ガス発生方法等が挙げられる。また、これまで、水素ガス発生器(装置)として水素ガス発生剤を使用するものを用いてきたが、その他に、電気分解で発生した水素ガスを用いることもできる。あるいは、高圧水素ガスを入れた水素ガスボンベから水素ガスを供給することもできる。その場合、供給ラインにレギュレータ(圧力調整器または減圧器)を入れて高圧水素ガスの圧力を減圧することもでき、さらにマスフローメーターや流量計を入れて水素ガスの供給量を調整しても良い。液体水素から水素ガスを供給することもできる。その場合、水素ガスの温度が低い場合には、水素ガス供給ラインにヒーターを入れて水素ガスを暖めても良い。水素ガス吸蔵合金から水素ガスを供給することもできる。 Various hydrogen gas generating agents can be used in addition to the hydrogen gas generating agent shown in the hydrogen gas generating apparatus shown in FIG. For example, a method of generating hydrogen gas by reacting an acid such as hydrochloric acid with a metal such as nickel, or a combination of hydrogen and gasified boron metal salt / hydrogen gasified alkaline earth metal salt / magnesium / alkaline agent and water And a method for generating hydrogen gas by the above reaction. In addition, a hydrogen gas generator (apparatus) that uses a hydrogen gas generating agent has been used so far, but hydrogen gas generated by electrolysis can also be used. Alternatively, hydrogen gas can be supplied from a hydrogen gas cylinder containing high-pressure hydrogen gas. In that case, the pressure of the high-pressure hydrogen gas can be reduced by putting a regulator (pressure regulator or pressure reducer) in the supply line, and the supply amount of hydrogen gas may be adjusted by inserting a mass flow meter or a flow meter. . Hydrogen gas can also be supplied from liquid hydrogen. In that case, when the temperature of the hydrogen gas is low, a heater may be installed in the hydrogen gas supply line to warm the hydrogen gas. Hydrogen gas can also be supplied from the hydrogen gas storage alloy.

図1では、ホース付きのシャワーを示したが、ホースを有しないシャワー(たとえばシャワーヘッドを壁等に備えつけたもの)も本発明の範囲に含まれる。また、浴室やシャワー室だけでなく、美容室や理髪店等に洗髪用として備えたシャワーや洗面台に備えたシャワーも本発明の範囲に含まれる。水素ガス供給ラインにはバルブ等やマスフローメーターや流量計を設けて水素ガス供給を切断したり、供給する水素ガス量を調整したりすることもできる。シャワーヘッドに、水素ガス供給を切ったり流したりするスイッチを備えたり、水素ガス供給量を調整する水素ガス流量調節機構を備えても良い。 Although FIG. 1 shows a shower with a hose, a shower without a hose (for example, a shower head provided on a wall or the like) is also included in the scope of the present invention. Moreover, not only a bathroom and a shower room, but also a shower provided for hair washing in a beauty salon, a barber shop, etc. and a shower provided on a wash basin are also included in the scope of the present invention. A hydrogen gas supply line can be provided with a valve or the like, a mass flow meter, or a flow meter to cut off the supply of hydrogen gas or to adjust the amount of hydrogen gas to be supplied. The shower head may be provided with a switch for turning off or flowing the hydrogen gas supply, or with a hydrogen gas flow rate adjusting mechanism for adjusting the hydrogen gas supply amount.

以上詳細に説明したように、本発明は水素ガスと水をシャワーとして身体に浴びる水素ガスシャワー水システムであり(すなわち、水素ガスと(シャワー)水を混合してシャワーとしたものを水素ガスシャワー水と呼ぶ)、この水素ガスシャワー水システムを用いることによって、頭部や顔部を初め身体の各所に水素ガスを供給し身体に吸収させることができる。また、本発明の水素ガスシャワー水システムは電気がなくても水道水を使用できる所ならば実施できる。尚、本明細書において、明細書のある部分に記載し説明した内容について記載しなかった他の部分においても矛盾なく適用できることに関しては、当該他の部分に当該内容を適用できることは言うまでもない。さらに、前記実施形態は一例であり、要旨を逸脱しない範囲内で種々変更して実施でき、本発明の権利範囲が前記実施形態に限定されないことも言うまでもない。 As described above in detail, the present invention is a hydrogen gas shower water system in which hydrogen gas and water are showered on the body (that is, a hydrogen gas shower in which hydrogen gas and (shower) water are mixed to form a shower). By using this hydrogen gas shower water system, hydrogen gas can be supplied to various parts of the body, including the head and face, and absorbed by the body. Further, the hydrogen gas shower water system of the present invention can be implemented in places where tap water can be used without electricity. In addition, in the present specification, regarding the fact that the contents described and explained in a certain part of the specification can be applied without contradiction, it goes without saying that the contents can be applied to the other parts. Furthermore, the above-described embodiment is an example, and various modifications can be made without departing from the scope of the invention. Needless to say, the scope of rights of the present invention is not limited to the above-described embodiment.

水素ガスは分子が小さく身体の皮膚や細胞を通して浸入するので、本発明は身体のすべての部所に供給することによって、健康増進を高めることができる。 Since hydrogen gas is small in molecules and penetrates through the skin and cells of the body, the present invention can enhance health promotion by supplying it to all parts of the body.

8・・・水素ガス発生システム、9・・・シャワー装置、10・・・水素ガス発生装置、
11・・・シャワーヘッド、12・・・シャワー穴、13・・・水素ガス発生容器、
14・・・水、15・・・水素ガス発生剤ホルダー、16・・・水素ガス気泡、
17・・・空間、18・・・水素ガス出口管、19・・・水素ガス出口管、
20・・・水素ガス導入管、21・・・ホース、22・・・水素ガスシャワー水、
23・・・蓋(キャップ)、
30・・・シャワーヘッド30、31・・・シャワーヘッド本体、32・・・仕切板、
33・・・気液混合室、34・・・水導入室、35・・・気液仕切板、
36・・・水素ガス導入室、37・・・水導通(噴出)孔(穴)、
38・・・水素ガス導入接続管、39・・・水素ガス導入接続部、
40・・・水導入接続管、41・・・水素ガス導入管、42・・・水素ガス導入接続管、
43・・・水素ガス噴出口、44・・・水素ガス、45・・・水素ガスの流れ、
46・・・水の流れ、47・・・シャワー穴、48・・・水の流れ、
49・・・水素ガスの流れ、50・・・シャワー板、51・・・水素ガス51、
52・・・水、
58・・・水排出室、59・・・第2シャワー板、60・・・シャワーヘッド、
61・・・水素ガス導入室、62・・・水素ガス導入室外側ケース、
63・・・第2シャワー穴、64・・・水素ガス導入接続管、
65・・・水素ガス導入接続部、
8 ... Hydrogen gas generation system, 9 ... Shower device, 10 ... Hydrogen gas generation device,
11 ... Shower head, 12 ... Shower hole, 13 ... Hydrogen gas generation container,
14 ... water, 15 ... hydrogen gas generator holder, 16 ... hydrogen gas bubbles,
17 ... Space, 18 ... Hydrogen gas outlet pipe, 19 ... Hydrogen gas outlet pipe,
20 ... hydrogen gas introduction pipe, 21 ... hose, 22 ... hydrogen gas shower water,
23 .. lid (cap),
30 ... Shower head 30, 31 ... Shower head body, 32 ... Partition plate,
33 ... Gas-liquid mixing chamber, 34 ... Water introduction chamber, 35 ... Gas-liquid partition plate,
36 ... hydrogen gas introduction chamber, 37 ... water conduction (spout) hole (hole),
38 ... Hydrogen gas introduction connection pipe, 39 ... Hydrogen gas introduction connection part,
40 ... Water introduction connection pipe, 41 ... Hydrogen gas introduction pipe, 42 ... Hydrogen gas introduction connection pipe,
43 ... Hydrogen gas outlet, 44 ... Hydrogen gas, 45 ... Flow of hydrogen gas,
46 ... water flow, 47 ... shower hole, 48 ... water flow,
49 ... Flow of hydrogen gas, 50 ... Shower plate, 51 ... Hydrogen gas 51,
52 ... water,
58 ... water discharge chamber, 59 ... second shower plate, 60 ... shower head,
61 ... Hydrogen gas introduction chamber, 62 ... Hydrogen gas introduction chamber outer case,
63 ... second shower hole, 64 ... hydrogen gas introduction connecting pipe,
65 ... hydrogen gas introduction connection part,

Claims (14)

シャワー板に備わるシャワー用孔を通して、シャワー水とともに水素ガスを噴出させた水素ガスシャワー水システム。 A hydrogen gas shower water system in which hydrogen gas is jetted together with shower water through the shower holes provided in the shower plate. 複数のシャワー用孔を備えた前記シャワー板、水および水素ガスを混合する水・水素ガス混合空間、水を導入する水導入空間、および先端が水素ガスを排出する水素ガス排出孔である水素ガスノズルを有するシャワーヘッド、前記シャワーヘッドの水導入空間へ水を供給する水供給部、並びに前記シャワーヘッドの水素ガスノズルへ水素ガスを供給する水素ガス供給部を有する水素ガスシャワー水システムであって、
前記水・水素ガス混合空間は前記シャワー板と仕切板の間に配置され、
前記水導入空間は前記仕切板を挟んで前記水・水素ガス混合空間と反対側に配置され、
前記仕切板には前記水導入空間から前記水・水素ガス混合空間へ水を通す穴(水導通穴)が配置され、
前記水導通穴に近接して前記水素ガスノズルの水素ガス排出孔が配置されて、前記水素ガスノズルの水素ガス排出孔から前記水導通穴を通して水素ガスが前記水・水素ガス混合空間へ排出される、
請求項1に記載の水素ガスシャワー水システム。
A hydrogen gas nozzle comprising the shower plate having a plurality of shower holes, a water / hydrogen gas mixing space for mixing water and hydrogen gas, a water introduction space for introducing water, and a hydrogen gas discharge hole whose tip discharges hydrogen gas A hydrogen gas shower water system having a shower head having a water supply part for supplying water to a water introduction space of the shower head, and a hydrogen gas supply part for supplying hydrogen gas to a hydrogen gas nozzle of the shower head,
The water / hydrogen gas mixing space is disposed between the shower plate and the partition plate,
The water introduction space is disposed on the opposite side of the water / hydrogen gas mixing space across the partition plate,
A hole (water conduction hole) for passing water from the water introduction space to the water / hydrogen gas mixed space is disposed in the partition plate,
A hydrogen gas discharge hole of the hydrogen gas nozzle is disposed in proximity to the water conduction hole, and hydrogen gas is discharged from the hydrogen gas discharge hole of the hydrogen gas nozzle through the water conduction hole to the water / hydrogen gas mixed space.
The hydrogen gas shower water system according to claim 1.
前記水素ガスノズルは円錐形状であり、前記円錐形状の水素ガスノズルの頂点部に前記水素ガス排出孔が備わり、前記水素ガス排出孔が前記仕切り板に設けた前記水導通穴に近接している、
請求項2に記載の水素ガスシャワー水システム。
The hydrogen gas nozzle has a conical shape, the hydrogen gas discharge hole is provided at the apex of the conical hydrogen gas nozzle, and the hydrogen gas discharge hole is close to the water conduction hole provided in the partition plate,
The hydrogen gas shower water system according to claim 2.
前記水導入空間へ導入された水が前記水導通穴を通って前記水・水素ガス混合空間へ流れ込むときに生じる負圧により、前記水素ガスノズルの水素ガスが前記水・水素ガス混合空間へ吸引されることを特徴とする、請求項2または3に記載の水素ガスシャワー水システム。 Due to the negative pressure generated when water introduced into the water introduction space flows into the water / hydrogen gas mixed space through the water conduction hole, the hydrogen gas of the hydrogen gas nozzle is sucked into the water / hydrogen gas mixed space. The hydrogen gas shower water system according to claim 2 or 3, wherein 前記シャワー水用の水供給部に水素ガス供給部へつながる水素ガス接続ラインが接続し、水素ガスがシャワーへ供給されることを特徴とする、請求項1に記載の水素ガスシャワー水システム。 The hydrogen gas shower water system according to claim 1, wherein a hydrogen gas connection line connected to the hydrogen gas supply unit is connected to the water supply unit for the shower water, and hydrogen gas is supplied to the shower. 前記水素ガス供給ラインが水供給部と接続する部分は円錐形状であり、前記円錐形状の水素ガス接続ライン接続部分の頂点部に水素ガス排出孔が備わり、前記水素ガス排出孔から前記水供給部へ水素が供給されることを特徴とする、請求項5に記載の水素ガスシャワー水システム。 The portion where the hydrogen gas supply line is connected to the water supply portion has a conical shape, a hydrogen gas discharge hole is provided at the apex of the conical hydrogen gas connection line connection portion, and the water supply portion is connected to the hydrogen gas discharge hole. The hydrogen gas shower water system according to claim 5, wherein hydrogen is supplied. 前記水素ガス供給部は、水素ガス発生装置、水素ガスボンベ、または液体水素であることを特徴とする、請求項2〜6のいずれかの項に記載の水素ガスシャワー水システム。 The hydrogen gas shower water system according to any one of claims 2 to 6, wherein the hydrogen gas supply unit is a hydrogen gas generator, a hydrogen gas cylinder, or liquid hydrogen. 前記水素ガスノズルと前記水素ガス供給部を接続する接続ラインまたは前記水素ガス接続ラインには、圧力調整器が備わり、水素ガスの圧力を調整可能であることを特徴とする、請求項7に記載の水素ガスシャワー水システム。 The connection line connecting the hydrogen gas nozzle and the hydrogen gas supply unit or the hydrogen gas connection line is provided with a pressure regulator, and the pressure of the hydrogen gas can be adjusted. Hydrogen gas shower water system. 水素ガス導入空間を挟んだ2つのシャワー板(第1シャワー板および第2シャワー板)を有するシャワー板、前記第1シャワー板と前記第2シャワー板に挟まれた水素ガス導入空間、および水を導入する水導入空間を有するシャワーヘッド、
前記シャワーヘッドの水導入空間へ水を供給する水供給部、並びに
前記シャワーヘッドの前記水素ガス導入空間へ水素ガスを供給する水素ガス供給部を有する水素ガスシャワー水システムであって、
前記第1シャワー板は複数のシャワー用孔を備え、前記水導入空間から前記第1シャワー板のシャワー用孔を通して前記水素ガス導入空間へ水が排出され、
前記第2シャワー板は複数のシャワー用孔を備え、前記水素ガス導入空間から前記第2シャワー板のシャワー用孔を通して水および水素ガスが前記シャワーヘッドの外側へ噴出される、
請求項1に記載の水素ガスシャワー水システム。
A shower plate having two shower plates (a first shower plate and a second shower plate) sandwiching a hydrogen gas introduction space, a hydrogen gas introduction space sandwiched between the first shower plate and the second shower plate, and water A shower head having a water introduction space to be introduced,
A hydrogen gas shower water system having a water supply part for supplying water to the water introduction space of the shower head, and a hydrogen gas supply part for supplying hydrogen gas to the hydrogen gas introduction space of the shower head,
The first shower plate includes a plurality of shower holes, and water is discharged from the water introduction space to the hydrogen gas introduction space through the shower holes of the first shower plate,
The second shower plate includes a plurality of shower holes, and water and hydrogen gas are ejected from the hydrogen gas introduction space to the outside of the shower head through the shower holes of the second shower plate.
The hydrogen gas shower water system according to claim 1.
前記水素ガス供給部は、水素ガス発生装置、水素ガスボンベ、または液体水素であることを特徴とする、請求項9に記載の水素ガスシャワー水システム。 The hydrogen gas shower water system according to claim 9, wherein the hydrogen gas supply unit is a hydrogen gas generator, a hydrogen gas cylinder, or liquid hydrogen. 前記水素ガス導入空間と前記水素ガス供給部を接続する接続ライン(水素ガス接続ライン)には、圧力調整器が備わり、水素ガスの圧力を調整可能であることを特徴とする、請求項10に記載の水素ガスシャワー水システム。 The connection line (hydrogen gas connection line) connecting the hydrogen gas introduction space and the hydrogen gas supply unit is provided with a pressure regulator, and the pressure of the hydrogen gas can be adjusted. The described hydrogen gas shower water system. 前記第2シャワー板は取り外し可能であることを特徴とする、請求項9〜11のいずれかの項に記載の水素ガスシャワー水システム。 The hydrogen gas shower water system according to claim 9, wherein the second shower plate is removable. 前記水素ガス発生装置は、水および水素ガス発生用剤を入れた容器に水素ガス出口を取り付けたものであり、前記水素ガス出口を前記水素ガス接続ラインに接続したものであることを特徴とする、請求項7、8、10〜12のいずれかの項に記載の水素ガスシャワー水システム。 The hydrogen gas generator is a device in which a hydrogen gas outlet is attached to a container containing water and a hydrogen gas generating agent, and the hydrogen gas outlet is connected to the hydrogen gas connection line. The hydrogen gas shower water system according to any one of claims 7, 8, and 10-12. 前記水素ガス発生装置には、複数の水素ガス出口を備え、その少なくとも1つの水素ガス出口を前記水素ガス接続ラインに接続し、その少なくとも1つの水素ガス出口は大気開放としたことを特徴とする、請求項7、8、10〜13のいずれかの項に記載の水素ガスシャワー水システム。
The hydrogen gas generator includes a plurality of hydrogen gas outlets, at least one hydrogen gas outlet is connected to the hydrogen gas connection line, and the at least one hydrogen gas outlet is open to the atmosphere. The hydrogen gas shower water system according to any one of claims 7, 8, and 10-13.
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