JP3196171U - Water-permeable battery working water generator - Google Patents

Water-permeable battery working water generator Download PDF

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JP3196171U
JP3196171U JP2014006667U JP2014006667U JP3196171U JP 3196171 U JP3196171 U JP 3196171U JP 2014006667 U JP2014006667 U JP 2014006667U JP 2014006667 U JP2014006667 U JP 2014006667U JP 3196171 U JP3196171 U JP 3196171U
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洋二 早川
洋二 早川
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洋二 早川
洋二 早川
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Abstract

【課題】貯水タンクの出口や、水道メータの出口等の通水環境中であっても、水、及び溶存酸素を媒介とした異種金属間の電池反応によって水酸化物イオン水を生成する通水型電池作用水生成装置を提供する。【解決手段】内部空間を有するとともに、前記内部空間の上部に外部から給水するための給水口20、及び外部へ排水するための排水口30を設けた容器40と、前記容器40の内部空間に設置される水環境電池部材50を備え、前記容器40内に通水することで、前記水環境電池部材50を水が通過し、当該水を前記水環境電池部材50により電池作用水へと変性するとともに、前記電池作用水を前記排水口30から外部に排水することを特徴とする。【選択図】図1Water flow that generates hydroxide ion water by a battery reaction between different metals using water and dissolved oxygen as a medium, even in a water flow environment such as an outlet of a water storage tank or an outlet of a water meter. A type battery working water generating device is provided. A container 40 having an internal space and provided with a water supply port 20 for supplying water from the outside at the top of the internal space and a water discharge port 30 for draining to the outside, and an internal space of the container 40 A water environment battery member 50 is provided, and water is passed through the container 40 so that water passes through the water environment battery member 50 and the water environment battery member 50 denatures the water into battery working water. In addition, the battery working water is drained from the drain port 30 to the outside. [Selection] Figure 1

Description

本考案は、貯水タンクの出口や、水道メータの出口等の通水環境中において水酸化物イオン水を生成する通水型電池作用水生成装置に関し、特に、電源を必要とすることなく、水、及び溶存酸素を媒介とした異種金属間の電池反応によって水酸化物イオン水を生成する通水型電池作用水生成装置に関する。  The present invention relates to a water-flowing battery-acting water generating device that generates hydroxide ion water in a water-flowing environment such as an outlet of a water storage tank or an outlet of a water meter. Further, the present invention relates to a water-permeable battery working water generating device that generates hydroxide ion water by a battery reaction between different metals mediated by dissolved oxygen.

出願人らは、水回り製品開発技術と表面処理技術の知見から、水中ではイオン化傾向の近接している金属を合金化した場合、金属表面の電子配列が乱れる事により、ミクロ腐食電池が均一に起こり、粒状に溶出せずイオンとなって溶出する現象を見つけ、これを水環境電池に応用できると考えた。  Based on the knowledge of water product development technology and surface treatment technology, the applicants found that when the metal that is close to ionization in water is alloyed, the micro-corrosion battery is made uniform by disturbing the electronic arrangement of the metal surface. We found a phenomenon that occurred and eluted in the form of ions instead of eluting in a granular form, and thought that this could be applied to water environment batteries.

具体的には、イオン化傾向を利用した水環境電池により金属イオン、及び活性酸素を水中に溶出した電池作用水を生成して、貯水容器内において、殺菌効果、除菌効果、防虫・害虫忌避効果等の各種有用な機能を付与する貯水型電池作用水生成装置(特許文献1)が開示されている。  Specifically, the water environment battery using ionization tendency generates battery action water that elutes metal ions and active oxygen into water, and in the water storage container, sterilization effect, sanitization effect, insect repellent, insect repellent effect A water storage battery working water generator (Patent Document 1) that provides various useful functions such as the above is disclosed.

実用新案登録第3170753号  Utility model registration No. 3170753

特許文献1に係る貯水型電池作用水生成装置は、飽くまでも貯水環境中において、異種金属を浸漬配置することで、長期にわたって安定して水酸化物イオン水等の電池作用水を生成することができる貯水型電池作用水生成装置であって、貯水環境では無い場所、例えば、貯水タンクの出口や、水道メータの出口等の通水環境中では使用することができなかった。  The storage-type battery working water generating device according to Patent Document 1 can generate battery working water such as hydroxide ion water stably over a long period of time by immersing dissimilar metals in the water storage environment. It is a water storage type battery-acting water generating device, and cannot be used in a place that is not a water storage environment, for example, in a water flow environment such as an outlet of a water storage tank or an outlet of a water meter.

本考案の目的は、貯水タンクの出口や、水道メータの出口等の通水環境中であっても、水、及び溶存酸素を媒介とした異種金属間の電池反応によって水酸化物イオン水を生成する通水型電池作用水生成装置を提供することにある。  The purpose of the present invention is to generate hydroxide ion water by a battery reaction between different metals using water and dissolved oxygen even in a flowing water environment such as the outlet of a water storage tank or the outlet of a water meter. An object of the present invention is to provide a water-flowing battery working water generating device.

上記課題を解決するために、請求項1に記載した考案は、内部空間を有するとともに、前記内部空間の上部に外部から給水するための給水口、及び外部へ排水するための排水口を設けた容器と、前記容器の内部空間に設置される水環境電池部材を備え、前記容器内に通水することで、前記水環境電池部材を水が通過し、当該水を前記水環境電池部材により電池作用水へと変性するとともに、前記電作用水を前記排水口から外部に排水することを特徴とする通水型電池作用水生成装置であることを特徴とするものである。  In order to solve the above-mentioned problem, the invention described in claim 1 has an internal space, and a water supply port for supplying water from the outside and a drain port for discharging water to the outside are provided in the upper part of the internal space. A water environment battery member installed in an inner space of the container and the container, and by passing water through the container, water passes through the water environment battery member, and the water is batteryed by the water environment battery member. While being denatured into working water, the electric working water is drained to the outside from the drain port, and is a water-permeable battery working water generating device.

請求項2に記載した考案は、請求項1に記載した考案において、前記水環境電池部材は、
マグネシウム体を筒状としてなる外側金属体と、前記外側金属体の内周面の全面に所定間隔を置いて対向するよう同軸状に配置されたステンレス鋼製の筒状の中間金属体と、前記中間金属体の内周面の全面に所定間隔を置いて対向するよう同軸状に配置された亜鉛体からなる円柱状の内側金属体を備える通水型電池作用水生成装置であることを特徴とするものである。
The device described in claim 2 is the device described in claim 1, wherein the water environment battery member is
An outer metal body having a cylindrical magnesium body, a cylindrical intermediate metal body made of stainless steel disposed coaxially so as to face the entire inner peripheral surface of the outer metal body at a predetermined interval; and It is a water-permeable battery-operated water generating device comprising a cylindrical inner metal body made of a zinc body that is coaxially disposed so as to face the entire inner peripheral surface of the intermediate metal body at a predetermined interval. To do.

本願に係る考案によれば、電源を全く使用することなく、水環境電池を設置した容器を配置するだけで、貯水タンクの出口や、水道メータの出口等の通水環境中であっても、水、及び溶存酸素を媒介とした異種金属間の電池反応によって水酸化物イオン水を生成することで、殺菌効果、除菌効果、防虫・害虫忌避効果等の各種有用な機能を付与する通水型電池作用水生成装置を提供することができるようになった。しかも、長期にわたって安定して水酸化物イオン水等の電池作用水を生成することができ、装置の構成を非常にシンプルなものとして、安定した品質の確保や使用に伴う保守等を容易に行うことができ、そのための労力や手間やコストを必要とせず、かつ、電力使用によるコストも完全に削減することができるようになった。  According to the device according to the present application, without using a power source at all, just by placing a container with a water environment battery installed, even in a water flow environment such as an outlet of a water storage tank or an outlet of a water meter, Water and water that gives various useful functions such as bactericidal effect, sterilizing effect, insect repellent and insect repellent effect by generating hydroxide ion water by battery reaction between different metals mediated by water and dissolved oxygen A type battery working water generator can be provided. Moreover, it is possible to stably generate battery water, such as hydroxide ion water, over a long period of time, making the configuration of the device very simple, and ensuring stable quality and easy maintenance, etc. Therefore, it does not require labor, labor, and cost for that, and the cost of using electric power can be completely reduced.

通水型電池作用水生成装置の全体図である。It is a general view of a water flow type battery action water production | generation apparatus. 水環境電池部材を示す分解斜視図である。It is a disassembled perspective view which shows a water environment battery member.

<通水型電池作用水生成装置の構造>
以下、本考案に係る通水型電池作用水生成装置10について、図1〜図2を参照しつつ詳細に説明する。図1は、本考案に係る通水型電池作用水生成装置10の全体図である。本考案に係る通水型電池作用水生成装置10は、水環境電池部材50を収納するための内部空間を有するとともに、前記内部空間の上部に外部から給水するための給水口20、及び外部へ排水するための排水口30(給水口20の対面に設置)を設けた容器40と、水環境電池部材50からなっている。
<Structure of water-permeable battery working water generator>
Hereinafter, the water flow type battery action water production | generation apparatus 10 which concerns on this invention is demonstrated in detail, referring FIGS. 1-2. FIG. 1 is an overall view of a water-permeable battery working water generator 10 according to the present invention. A water-permeable battery working water generator 10 according to the present invention has an internal space for housing a water-environment battery member 50, a water supply port 20 for supplying water from the outside to the upper part of the internal space, and the outside. It consists of a container 40 provided with a drain port 30 (installed opposite to the water supply port 20) for draining, and a water environment battery member 50.

図2は、本考案に係る通水型電池作用水生成装置10の重要部である水環境電池部材50を示す分解斜視図である。容器40の内部空間に、外側金属体60を挿入し、外側金属体60の内部に中間金属体70を挿入し、さらに、中間金属体70の内部に内側金属体80を挿入することで、容器40内に3種類の金属体(外側金属体60、中間金属体70、内側金属体80)が順に収納された水環境電池部材50を形成する。即ち、本考案に係る通水型電池作用水生成装置10の水環境電池部材50は、外側金属体60、中間金属体70、内側金属体80による三層構造になっている。  FIG. 2 is an exploded perspective view showing a water-environment battery member 50 that is an important part of the water-permeable battery action water generator 10 according to the present invention. The outer metal body 60 is inserted into the inner space of the container 40, the intermediate metal body 70 is inserted into the outer metal body 60, and the inner metal body 80 is inserted into the inner metal body 70. A water environment battery member 50 in which three types of metal bodies (an outer metal body 60, an intermediate metal body 70, and an inner metal body 80) are sequentially housed in 40 is formed. That is, the water environment battery member 50 of the water-permeable battery action water generator 10 according to the present invention has a three-layer structure including the outer metal body 60, the intermediate metal body 70, and the inner metal body 80.

外側金属体60は、マグネシウム体と、外周側間隔保持突部(図示しない)と、底面側間隔保持突部(図示しない)と、内周側間隔保持突部(図示しない)とを備えている。マグネシウム体は、容器40の内径と略同一の所定の外径と所定の内径とを有する所定厚み(10mm程度)の厚肉状の単純円筒状をなす。また、本明細書において、マグネシウム体とは、(ステンレス鋼からなる)容器40、及び中間金属体60に対して卑な金属となるマグネシウム(Mg)100%のマグネシウム単体、または、マグネシウムに所定の金属を添加したマグネシウム合金のことを言う。  The outer metal body 60 includes a magnesium body, an outer circumferential side spacing holding projection (not shown), a bottom side spacing holding projection (not shown), and an inner circumferential side spacing projection (not shown). . The magnesium body has a thick simple cylindrical shape with a predetermined thickness (about 10 mm) having a predetermined outer diameter and a predetermined inner diameter substantially the same as the inner diameter of the container 40. Further, in this specification, the magnesium body is a simple substance of magnesium (Mg) 100% magnesium which is a base metal with respect to the container 40 (made of stainless steel) and the intermediate metal body 60, or a predetermined amount of magnesium. This refers to a magnesium alloy with added metal.

中間金属体70は、マグネシウム体の内径と略同一の所定の外径と所定の内径とを有する所定厚み(1mm程度の厚み)の薄肉状の単純円筒状をなす。中間金属体70は、外側金属体60のマグネシウム体に対して貴な金属となるステンレス鋼(SUS304等)からなる。  The intermediate metal body 70 has a thin simple cylindrical shape with a predetermined thickness (about 1 mm) having a predetermined outer diameter and a predetermined inner diameter that are substantially the same as the inner diameter of the magnesium body. The intermediate metal body 70 is made of stainless steel (SUS304 or the like) that is a noble metal with respect to the magnesium body of the outer metal body 60.

内側金属体80は、亜鉛体と、外周側間隔保持突部(図示しない)と、底面側間隔保持突部(図示しない)とを備えている。亜鉛体は、中間金属体70の内径と略同一の所定の外径を有する所定直径(23〜25mm程度)の単純円柱状をなす。また、本明細書において、亜鉛体とは、容器40、及び中間金属体70に対して卑な金属となる亜鉛(Zn)100%の亜鉛単体、または、亜鉛に所定の金属を添加した亜鉛合金のことを言う。  The inner metal body 80 includes a zinc body, an outer peripheral side interval holding projection (not shown), and a bottom side interval holding projection (not shown). The zinc body has a simple cylindrical shape with a predetermined diameter (about 23 to 25 mm) having a predetermined outer diameter substantially the same as the inner diameter of the intermediate metal body 70. Further, in this specification, the zinc body is a simple substance of zinc (Zn) 100%, which is a base metal for the container 40 and the intermediate metal body 70, or a zinc alloy in which a predetermined metal is added to zinc. Say that.

<通水型電池作用水生成装置の動作原理>
通水型電池作用水生成装置10の重要部である水環境電池部材50の基本構造は、外側金属体60、中間金属体70、内側金属体80からなる三層構造になっている。即ち、外側金属体60、中間金属体70、内側金属体80は、それぞれ均一な隙間空間を介して同軸上に重ね合わせることにより水環境電池部材50を形成している。
<Principle of operation of water flow type battery action water generator>
The basic structure of the water environment battery member 50, which is an important part of the water-permeable battery action water generating device 10, has a three-layer structure including an outer metal body 60, an intermediate metal body 70, and an inner metal body 80. In other words, the outer metal body 60, the intermediate metal body 70, and the inner metal body 80 form the water environment battery member 50 by overlapping each other coaxially through a uniform gap space.

外側金属体60と中間金属体70の間の外側隙間空間では、それぞれ、マグネシウム体のMg表面、又はMg合金表面とSUS304ステンレス鋼材表面との間で、通水中の水分子(HO)及び溶存酸素(O)を利用した電池反応が生起する。この電池反応は、水、及び溶存酸素のみを媒介とした(イオン化傾向の異なる)異種金属体間での電池反応であり、流電陽極法のように、異種金属間の直接接触(電気的接触)や、導電線等の導電体を介した異種金属間の電気的接続を全く設けることなく、異種金属間の隙間空間において所定電圧(イオン化傾向の差に応じた電圧であって、マグネシウム体とSUS製の中間金属体70の標準電極電位差に応じた電圧)の直流電流を水中に発生するものである。In the outer gap space between the outer metal body 60 and the intermediate metal body 70, water molecules (H 2 O) in water flow and Mg surface of the magnesium body or between the Mg alloy surface and the SUS304 stainless steel material surface, respectively, and A battery reaction using dissolved oxygen (O 2 ) occurs. This battery reaction is a battery reaction between dissimilar metal bodies mediated only by water and dissolved oxygen (different ionization tendency), and direct contact (electrical contact) between dissimilar metals as in the galvanic anode method. ) Or a predetermined voltage (a voltage corresponding to a difference in ionization tendency) in a gap space between different metals without providing any electrical connection between different metals via a conductor such as a conductive wire, DC current of a voltage corresponding to the standard electrode potential difference of the SUS intermediate metal body 70 is generated in water.

この際、プラス電極としての中間金属体70(SUS304ステンレス鋼材)に対するマイナス電極としてのマグネシウム体が、Mg合金により形成されている場合、例えば、MgZn合金より形成されている場合は、SUS表面との間での上記電池作用に加えて、マグネシウム体の表面自体においても、Mg原子及びZn原子の原子配列が乱れることにより、無数のプラス極とマイナス極とがランダムに形成され、マグネシウム体の周囲の水と当該水中の溶存酸素とによって、ミクロ電池が時間と共に消滅と形成とを位置を替えて繰り返すことで、次々とミクロ電池による電池作用を生起する。  At this time, when the magnesium body as the negative electrode with respect to the intermediate metal body 70 (SUS304 stainless steel material) as the positive electrode is formed of an Mg alloy, for example, when it is formed of an MgZn alloy, In addition to the above-described battery action, the atomic arrangement of Mg atoms and Zn atoms is disturbed on the surface of the magnesium body itself, so that innumerable positive and negative poles are randomly formed. The battery action by the micro battery is caused one after another by repeating the disappearance and formation of the micro battery over time by water and dissolved oxygen in the water.

マグネシウム体の表面から電流がより均一に流れ出し、電池反応もより均一に形成されることで、完全イオン化状態となったMgイオン、Znイオンが水中に流出すると共に、下記の亜鉛体について説明するように、活性酸素種が生成された後、最終的には、電池作用水の一種としとしての所定の機能水(水酸化物イオン水生成を主要効能とする第1の種類の機能水)が生成される。  As the current flows out more uniformly from the surface of the magnesium body and the battery reaction is also formed more uniformly, Mg ions and Zn ions that are in a fully ionized state flow out into the water, and the following zinc body is described. In addition, after the generation of the active oxygen species, finally, a predetermined functional water (a first type of functional water whose main effect is the production of hydroxide ion water) is generated as a kind of battery working water. Is done.

一方、中間金属体60と内側金属体70との間の内側隙間空間では、亜鉛体のZn表面またはZn合金表面とSUS304ステンレス鋼材表面との間で、通水中の水分子(HO)及び溶存酸素(O)を利用した電池反応が生起する。この電池反応は、マグネシウム体の場合と同様の反応による電池反応であって、亜鉛体と中間金属体70(SUS304ステンレス鋼材)の標準電極電位差に応じた電圧の直流電流を水中に発生するものである。On the other hand, in the inner gap space between the intermediate metal body 60 and the inner metal body 70, water molecules (H 2 O) and water passing through between the Zn surface or the Zn alloy surface of the zinc body and the SUS304 stainless steel material surface and A battery reaction using dissolved oxygen (O 2 ) occurs. This battery reaction is a battery reaction by the same reaction as that of the magnesium body, and generates a direct current of a voltage corresponding to the standard electrode potential difference between the zinc body and the intermediate metal body 70 (SUS304 stainless steel material) in water. is there.

この際、上記マグネシウム体をMg合金により形成した場合と同様、亜鉛体が亜鉛合金、例えば、ZnMg合金により形成されている場合は、亜鉛体の表面から電流がより均一に流れ出す。そして、完全イオン化状態となったZnイオン、Mgイオンが水中に流出すると共に、活性酸素種が生成され、これにより、電池作用水の他の一種としての所定の機能水(殺菌を主要効能とする第2の種類の機能水)が生成される。  At this time, as in the case where the magnesium body is formed of an Mg alloy, when the zinc body is formed of a zinc alloy, for example, a ZnMg alloy, current flows more uniformly from the surface of the zinc body. Then, Zn ions and Mg ions that are in a fully ionized state flow out into the water, and active oxygen species are generated, whereby predetermined functional water as another type of battery action water (with sterilization as the main effect) A second type of functional water) is generated.

<通水型電池作用水生成装置の効果、及び適用例>
本実施例によれば、電源を全く使用することなく、容器40内に水環境電池部材50を配置するだけで、貯水タンクの出口や、水道メータの出口等の通水環境中であっても、水、及び溶存酸素を媒介とした異種金属間の電池反応によって水酸化物イオン水(水酸化物イオン水生成を主要効能とする第1の種類の機能水、及び殺菌を主要効能とする第2の種類の機能水)を生成することができるようになった。
<Effects of water-permeable battery working water generator and application examples>
According to the present embodiment, even if the water environment battery member 50 is disposed in the container 40 without using any power source, even in a water flow environment such as an outlet of a water storage tank or an outlet of a water meter. Hydroxide ion water (the first type of functional water whose main effect is hydroxide ion water generation and the first effect whose main effect is sterilization) by the cell reaction between different metals mediated by water, dissolved oxygen and water Two types of functional water) can be generated.

即ち、これまでに見られなかった殺菌効果、除菌効果、防虫・害虫忌避効果等の各種有用な機能を付与する通水型電池作用水生成装置10を提供することができるようになった。しかも、貯水型電池作用水生成装置と同様に、長期にわたって安定して水酸化物イオン水等の電池作用水を生成することができ、装置の構成を非常にシンプルなものとして、安定した品質の確保や使用に伴う保守等を容易に行うことができ、そのための労力や手間やコストを必要とせず、かつ、電力使用によるコストも完全に削減することができるようになった。  That is, it has become possible to provide a water-permeable type battery-acting water generating device 10 that imparts various useful functions such as a bactericidal effect, a sterilizing effect, and an insect repellent / pest repellent effect that have not been seen so far. Moreover, as with the water storage battery working water generator, battery working water such as hydroxide ion water can be generated stably over a long period of time. Maintenance, etc. associated with securing and use can be easily performed, so that labor, labor, and cost are not required, and the cost of using electric power can be completely reduced.

本考案に係る通水型電池作用水生成装置10の適用例として、家屋に入る前に設置されている水道メータの先に取り付ければ、家屋全体で使用する水を全て浄水することができるし、台所のアンダーシンクや、洗濯機に取り付けることで、個別に浄化効果が期待できる。さらに、循環水を使う箇所への取り付けによる効果として、例えば、農業用としての野菜工場等に取り付ければ、野菜に虫がつかないという効果もあるし、工業用として、プラスチック工場や鋳造工場等に取り付ければ、冷却用循環水中のバイオフィルムを取り除くという効果が期待できる。  As an application example of the flow-through battery working water generating device 10 according to the present invention, if it is attached to the tip of a water meter installed before entering the house, all the water used in the entire house can be purified, By attaching to an undersink in the kitchen or a washing machine, individual purification effects can be expected. In addition, as an effect of attaching to the place where circulating water is used, for example, if it is attached to a vegetable factory for agriculture, etc., there is also an effect that insects do not get on the vegetables, and for industrial use, such as plastic factory or casting factory If installed, the effect of removing the biofilm in the circulating water for cooling can be expected.

<通水型電池作用水生成装置の変更例>
本考案に係る通水型電池作用水生成装置10の構成は、上記実施形態の態様に何ら限定されるものではなく、給水口20、排水口30、容器40、水環境電池50、外側金属体60、中間金属体70、内側金属体80等の構成を、本発明の趣旨を逸脱しない範囲で、必要に応じて適宜変更することができる。
<Modification example of water-permeable battery action water generator>
The configuration of the water flow type battery working water generating device 10 according to the present invention is not limited to the aspect of the above embodiment, and the water supply port 20, the drain port 30, the container 40, the water environment battery 50, the outer metal body. 60, the intermediate metal body 70, the inner metal body 80, and the like can be appropriately changed as necessary without departing from the spirit of the present invention.

例えば、容器40を減圧することができるような仕組みにして、負圧により、給水口20から取り入れた水が、容器40内を循環し易くして(必ず、水環境電池部材50内を貫通するようにして)、排水口30から排水されるようにしても良い。さらに、通水型電池作用水生成装置10の給水口30を容器40の下部に設置し、排水口30を容器40の上部に設置することで、通水が水環境電池部材50内を貫通するようにしても良い。  For example, the container 40 can be depressurized so that the water taken in from the water supply port 20 can be easily circulated in the container 40 by the negative pressure (be sure to pass through the water environment battery member 50). In other words, the water may be drained from the drain port 30. Furthermore, the water supply port 30 of the water flow type battery action water generating device 10 is installed in the lower part of the container 40, and the water discharge port 30 is installed in the upper part of the container 40, so that water passes through the water environment battery member 50. You may do it.

本考案に係る通水型電池作用水生成装置は、上記の如く優れた効果を奏するものであるので、貯水タンクの出口や、水道メータの出口等の通水環境中で使用する通水型の電池作用水生成装置として好適に用いることができる。  Since the water-flowing battery-operated water generating device according to the present invention has excellent effects as described above, it is a water-flowing type used in a water-flowing environment such as the outlet of a water storage tank or the outlet of a water meter. It can use suitably as a battery action water production | generation apparatus.

10・・通水型電池作用水生成装置
20・・給水口
30・・排水口
40・・容器
50・・水環境電池部材
60・・外側金属体
70・・中間金属体
80・・内側金属体
10. Water-flow type battery working water generation device 20 Water inlet 30 Water drain 40 Container 50 Water battery member 60 Outer metal body 70 Intermediate metal body 80 Inner metal body

Claims (2)

内部空間を有するとともに、前記内部空間の上部に外部から給水するための給水口、及び外部へ排水するための排水口を設けた容器と、
前記容器の内部空間に設置される水環境電池部材を備え、
前記容器内に通水することで、前記水環境電池部材を水が通過し、当該水を前記水環境電池部材により電池作用水へと変性するとともに、
前記電作用水を前記排水口から外部に排水することを特徴とする通水型電池作用水生成装置。
A container having an internal space, a water supply port for supplying water from the outside to the upper part of the internal space, and a drain port for draining to the outside;
A water environment battery member installed in the internal space of the container,
By passing water into the container, water passes through the water environment battery member, and the water is denatured into battery working water by the water environment battery member.
The battery-operated water generating device for water flow type, wherein the electric water is discharged from the drain port to the outside.
前記水環境電池部材は、
マグネシウム体を筒状としてなる外側金属体と、
前記外側金属体の内周面の全面に所定間隔を置いて対向するよう同軸状に配置されたステンレス鋼製の筒状の中間金属体と、
前記中間金属体の内周面の全面に所定間隔を置いて対向するよう同軸状に配置された亜鉛体からなる円柱状の内側金属体を備えることを特徴とする請求項1に記載の通水型電池作用水生成装置。
The water environmental battery member is:
An outer metal body having a cylindrical magnesium body;
A cylindrical intermediate metal body made of stainless steel disposed coaxially so as to face the entire inner peripheral surface of the outer metal body at a predetermined interval;
2. The water flow passage according to claim 1, further comprising a cylindrical inner metal body made of a zinc body disposed coaxially so as to face the entire inner peripheral surface of the intermediate metal body at a predetermined interval. Type battery working water generator.
JP2014006667U 2014-11-28 2014-11-28 Water-permeable battery working water generator Expired - Fee Related JP3196171U (en)

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2020059171A1 (en) * 2018-09-18 2020-03-26 日立化成株式会社 Method for producing functional water, and functional water generator

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
WO2020059171A1 (en) * 2018-09-18 2020-03-26 日立化成株式会社 Method for producing functional water, and functional water generator
JPWO2020059171A1 (en) * 2018-09-18 2021-08-30 昭和電工マテリアルズ株式会社 Fuctional water production method and fuctional water generator

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