JP2005021778A - Reduced water production device - Google Patents

Reduced water production device Download PDF

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JP2005021778A
JP2005021778A JP2003188963A JP2003188963A JP2005021778A JP 2005021778 A JP2005021778 A JP 2005021778A JP 2003188963 A JP2003188963 A JP 2003188963A JP 2003188963 A JP2003188963 A JP 2003188963A JP 2005021778 A JP2005021778 A JP 2005021778A
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reduced water
water
container
manufacturing apparatus
magnetic field
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JP2003188963A
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JP4171843B2 (en
Inventor
Masaji Watanabe
正司 渡邉
Toshinori Maezawa
敏則 前沢
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Abstract

<P>PROBLEM TO BE SOLVED: To provide a very practical and innovative reduced water production device which magnetically activates water to make a reducing material more soluble, and can generate reduced water at a low cost in a short time only by chemical reactions, without using electric energy. <P>SOLUTION: The reduced water production device for producing the reduced water in which minerals are ionized has a magnetic field generation part 1 that generates a magnetic field in a container 3 where water can be introduced in and out, and the reducing material that is dissolved in water to generate the reduced water. <P>COPYRIGHT: (C)2005,JPO&NCIPI

Description

【0001】
【発明の属する技術分野】
本発明は、還元水を生成する還元水製造装置に関するものである。
【0002】
【従来の技術及び発明が解決しようとする課題】
近年、慢性下痢、消化不良、胃腸内異常発酵、制酸性に有効であるマイナスイオンを多く含む還元水(ミネラルがイオン化した水)が注目されている。
【0003】
従来、この還元水を生成するには、単に水に還元材を浸けておくことで該還元材を溶解せしめて生成する方法や、還元材となるミネラルイオンを含む電解膜(所謂イオン交換膜)を介して配置した陽極と陰極により水を電気分解し、陰極側において還元水を生成する方法がある。
【0004】
しかしながら、単に水に還元材を浸けておくことで溶解せしめる方法は、当然この還元材の溶解に時間がかかり、短時間で還元水を得ることはできない。
【0005】
一方、この還元水を電気分解により生成する方法は、単に水に還元材を浸けておく方法より、短時間で還元水を生成することが可能であるが、生成に電力が必要でコスト高となるのは勿論、原理上、陰極側において還元水が生成されると共に陽極側において(一般に不要な)酸化水が生成され、水資源が無駄になることは避けられない。
【0006】
また、前者の単に水に還元材を浸けておくことで該還元材を溶解せしめて生成する方法において、水を撹拌し、この撹拌で生じる対流を利用して還元材の溶解を良好にする方法もあるが、撹拌のための駆動部が必要で装置の大型化は避けられず、前述の電気分解を利用する場合と同様に電力が必要となり、コスト高となることは避けられない。
【0007】
本発明は、上述の問題点を解決したもので、磁気により水を活性化せしめて還元材を溶解しやすくし、電気エネルギーを用いず化学反応のみで短時間で且つコスト安に還元水を生成できる極めて実用性に秀れた画期的な還元水製造装置を提供するものである。
【0008】
【課題を解決するための手段】
添付図面を参照して本発明の要旨を説明する。
【0009】
ミネラルがイオン化した還元水を製造する還元水製造装置であって、水が導出入可能な容体3内に磁界を発生させる磁界発生部1と、水に溶解して還元水を生成する還元材とが設けられていることを特徴とする還元水製造装置に係るものである。
【0010】
また、請求項1記載の還元水製造装置であって、容体3はたまり水中に配設されるものであることを特徴とする還元水製造装置に係るものである。
【0011】
また、請求項1,2のいずれか1項に記載の還元水製造装置において、磁界発生部1は、前記容体3に収納される内体2に設けられていることを特徴とする還元水製造装置に係るものである。
【0012】
また、請求項1〜3のいずれか1項に記載の還元水製造装置において、磁界発生部1は、複数の永久磁石1aで構成されていることを特徴とする還元水製造装置に係るものである。
【0013】
また、請求項1〜4のいずれか1項に記載の還元水製造装置において、容体3には通水部3aが設けられ、水がこの通水部3aから容体3内に流入し得るように構成されていることを特徴とする還元水製造装置に係るものである。
【0014】
また、請求項1〜5のいずれか1項に記載の還元水製造装置において、容体3の内面に、磁界を発生させる磁気材料4若しくは磁化せしめられる磁気材料4を設けたことを特徴とする還元水製造装置に係るものである。
【0015】
また、請求項1〜6のいずれか1項に記載の還元水製造装置において、容体3として筒状のものが採用されていることを特徴とする還元水製造装置に係るものである。
【0016】
また、請求項1〜7のいずれか1項に記載の還元水製造装置において、容体3としてステンレス製のものが採用されていることを特徴とする還元水製造装置に係るものである。
【0017】
また、請求項1〜8のいずれか1項に記載の還元水製造装置において、還元材として、Mg,Ca,K,Na,トルマリン,水晶,医王石若しくは麦飯石等の鉱石またはマイナスイオンセラミック,抗菌セラミック,竹炭セラミック,脱塩素セラミック,遠赤セラミック若しくは多機能セラミック等のセラミックを採用したことを特徴とする還元水製造装置に係るものである。
【0018】
【発明の作用及び効果】
容体3を水に入れた際、磁界発生部1から生じる磁界によりこの水が磁化せしめられ、水中のイオンを取り巻く分子集団(クラスタ)が細分化することで活性化して還元材が溶解しやすくなる。従って、この活性化した水に還元材が接触すると、該還元材が良好に溶解し、よって電気エネルギーを用いることなく短時間で還元水を生成できる。
【0019】
従って、本発明は、短時間で且つコスト安に還元水を生成できる極めて実用性に秀れた画期的な還元水製造装置となる。
【0020】
【発明の実施の形態】
図は本発明の一実施例を図示したものであり、以下に説明する。
【0021】
本実施例は、ミネラルがイオン化した還元水を製造する還元水製造装置であって、水が導出入可能な容体3に、磁界を発生させる磁界発生部1が設けられた内体2と、水に溶解して還元水を生成する還元材とが設けられているものである。
【0022】
各部を具体的に説明する。
【0023】
容体3に配設される内体2は、ステンレス製の円筒体であり、内孔を通水孔2bとしている。この内体2の周面には、前記通水孔2bと連通する挿通孔2cが複数穿設されている。
【0024】
また、この内体2には磁界発生部1を構成する複数の永久磁石1aが内体2の周面と面一に埋設されている。この永久磁石1aとしては、酸化防止のために樹脂でコーティングされたSm−CO系焼結磁石が採用されている。尚、この永久磁石1aとして、他の材料を採用しても良い。また、磁界発生部1として他の構成を採用しても良い。
【0025】
また、本実施例は、前記磁界発生部1を内体2に設けた構成であるが、この内体2を用いずに直接容体3に設けた構成としても良く、この場合には部品点数が少なくなり製作が一層容易且つコスト安となる。
【0026】
内体2の両端部には夫々所定間隔をおいて径大部2aが設けられている。図3中、上側の径大部2aは内体2に二つ設けられ、下側の径大部2aは一つ設けられている。下側の径大部2aと蓋体3bとの間には、円盤体6が設けられている。尚、この円盤体6は前記内体2と一体としても良い。
【0027】
また、この径大部2a及び円盤体6の端面にも前記永久磁石1aが埋設されている。従って、単に筒状の内体2の周面に前記永久磁石1aを設けた場合より、磁界を広範囲に作用させて効率良く水を磁化することができる。
【0028】
更に良好に磁界を作用せしめるため、径大部2aを端部以外の部位、即ち、内体2の周面に設けても良い。
【0029】
尚、簡易な構成とするために径大部2aを設けなくても良い。
【0030】
この永久磁石1aから生じる磁界が水に作用することで、水が磁化せしめられて分子集団が細分化し、この水は活性化した状態、即ち、還元材が溶解しやすい状態となる。
【0031】
容体3は、ステンレス製の円筒状のものが採用されている。この容体3の周面には、通水部3aとして放射方向90度間隔で複数の通水孔が並設されている。また、蓋体3bにして前記内体2の通水孔2bと対向する位置にも同様に通水孔が設けられている。
【0032】
従って、これら多数の通水孔から極めて良好に容体3の内部に水が流入出することになり、水に該容体3を短時間浸けておくだけでも還元水が生成できるのは勿論、水中を通過させる若しくは流水がこの容体3を通過する場合でも前記還元水を生成できる。
【0033】
尚、この通水孔は蓋体3b若しくは容体3の周壁面のいずれか一方にのみ設けた構成としても良く、この場合には加工が一層容易となる。
【0034】
また、この容体3の内面には、磁界を発生する磁気材料4が設けられている。この磁気材料4としては、一般的な磁性体(例えば鉄やフェライト等)を採用しても良いが、本実施例においては、この磁気材料として容体3の内面にも前記磁界発生部1を構成する永久磁石1aと同様の永久磁石1aが採用されている。
【0035】
また、本実施例においては、主に前記容体3内で水を磁化せしめる構成としたが、例えば、前記磁界発生部1を容体3の外部に設けることで、この容体3の外部に磁界を作用させて容体3外部の水を一層磁化せしめる構成としても良く、この場合製作が一層容易となる。
【0036】
また、容体3と内体2との間及び内体2の通水孔2bには還元材(図示省略)が設けられる。
【0037】
また、この容体3の内面には、前記還元材の外部への流出及び外部から異物の流入を阻止するネット5が設けられている。また、前記内体2の挿通孔2cにも同様のネット5を設けても良い。
【0038】
また、還元材としては、Mg,Ca,K,Na,トルマリン,水晶,医王石若しくは麦飯石等の鉱石またはマイナスイオンセラミック,抗菌セラミック,竹炭セラミック,脱塩素セラミック,遠赤外線セラミック若しくは多機能セラミック等のセラミック等を採用すると良い。本実施例においては特に、人体に有用で且つ無味無臭のMg及びマイナスイオンセラミックを採用している。具体的には、このMgが前記内体2の通水孔2aに設けられ、内体2と外体3との間にマイナスイオンセラミックが設けられている。
【0039】
また、鉱石(Mg)とセラミック(マイナスイオンセラミック)とを同一場所に混在状態で設けても良いし、いずれか一方のみを採用しても良い。更に、多種類の鉱石若しくはセラミックを採用しても良い。
【0040】
尚、本実施例においては、還元材を容体3の内部に設けた構成としているが、容体3の外部に付設する構成としても良い。
【0041】
本実施例の磁界発生部1について詳述すると、前記永久磁石1a及び前記容体3の内面に設けた磁気材料4により、この内体2の通水孔2b及び内体2と容体3との間に存する水に磁界が作用し、この水が磁化される。
【0042】
特に、本実施例においては図4に図示したように、対向する永久磁石1aの対向面同志が夫々同極性となるように埋設されている。即ち、この永久磁石1aから生じる磁界はその反発作用により、通水孔2a内だけでなく内体2と容体3との間でも作用するように設定されている。従って、この内体2と容体3との間には容体3の内面に設けた前記磁気材料と永久磁石1aとで作用する磁界に加え、前記永久磁石1a同志の反発作用による磁界も作用するから、この内体2と容体3との間に存する水は、内体2の通水孔2aに存する水より一層磁化される。この際、前述のように磁界に勾配を付けることで前記水には対流が生じ、一層前記還元材が溶解しやすくなる。
【0043】
よって、本実施例においては、溶解しにくいマイナスイオンセラミックを前記内体2と容体3との間に設け、溶解しやすいMgを内体2の通水孔2aに設けた構成としているが、双方が良好に水に溶解せしめられる。
【0044】
本実施例の使用方法は、極めて簡易であり、例えば、ポリタンク等の水が詰入された容器内(水中)に本還元水製造装置を配設することで短時間(従来の単に水に還元材を浸けておく場合に比べ1/3以下の時間)で還元水を得ることができる。
【0045】
尚、(従来の浄水器等と同様に)水道と接続してこの水道を通る流水が本還元水製造装置を通過するようにしても還元水を得ることができる。
【0046】
上述のような構成の還元水製造装置を容器に溜めた水(水道水)に配設したところ、Mg+2HO→Mg(OH)+Hという化学反応を生じて水道水が還元水となり、その特性値が以下のように変化することが確認された。
【0047】

Figure 2005021778
この還元水は、マイナスイオンを多く含み(弱アルカリ性水)、Clが除去され、しかも、ミネラル(マグネシウム)及び水素が増加(一般的な水の20〜50倍)し、水分子集団が細分化(クラスタが小さい)する等の特徴があることが確認された。
【0048】
即ち、本還元水製造装置を用いて生成した還元水は、電気分解を利用して生成した還元水と同等の極めて秀れた特性を示すが、特に、大量のマグネシウムが含まれる点と、非常に安いコストで生成できる点が、前記電気分解を使用して生成した場合には得られない本還元水製造装置により生成される還元水の特長である。
【0049】
本実施例は、上述のように構成したから、容体3を水が溜められた容器に入れた際、磁界発生部1から生じる磁界によりこの水が磁化せしめられ、水中のイオンを取り巻く分子集団(クラスタ)が細分化することで活性化して還元材が溶解しやすくなるから、この活性化した水に還元材が良好に溶解し、よって電気分解を用いることなく短時間で還元水を生成できる。
【0050】
また、前記磁界発生部1を内体2に設け、容体3内に磁気材料を設けた構成であるから、この内体2と容体3との間で一層強い磁界を作用させることができ、より短時間で還元水を生成できることになる。
【0051】
更に、容体3及び内体2はステンレス製としたから、水中に配設する際良好に沈んで確実に還元水を生成できることは勿論、水によっても錆びないため、極めて良好に使用できる。
【0052】
その上、容体3には多数の通水孔を設けた構成であるから、極めて良好に容体3の内部に水が流入することになり、水にしばらく浸け置く必要なく、単に水がこの容体3を通過するだけでも還元水を生成できる極めて実用性に秀れたものとなる。
【0053】
また、前記容体3の蓋体3bを外すことで容易に前記還元材を交換することができ、一層実用性に秀れたものとなる。
【0054】
従って、本実施例は、短時間で且つコスト安に還元水を生成できる極めて実用性に秀れた画期的な還元水製造装置となる。
【図面の簡単な説明】
【図1】本実施例の説明斜視図である。
【図2】本実施例の内体の説明斜視図である。
【図3】本実施例の説明断面図である。
【図4】本実施例の磁界発生部の概略説明図である。
【符号の説明】
1 磁界発生部
1a 永久磁石
2 内体
3 容体
3a 通水部
4 磁気材料[0001]
BACKGROUND OF THE INVENTION
The present invention relates to a reduced water production apparatus that generates reduced water.
[0002]
[Prior art and problems to be solved by the invention]
In recent years, attention has been drawn to reduced water (water in which minerals are ionized) containing a large amount of negative ions effective for chronic diarrhea, indigestion, abnormal fermentation in the gastrointestinal tract, and antacidity.
[0003]
Conventionally, in order to generate this reduced water, a method of dissolving the reducing material simply by immersing the reducing material in water and an electrolytic membrane (so-called ion exchange membrane) containing mineral ions as the reducing material There is a method in which water is electrolyzed by an anode and a cathode disposed via a cathode to generate reduced water on the cathode side.
[0004]
However, in the method of dissolving by simply immersing the reducing material in water, it naturally takes time to dissolve the reducing material, and reduced water cannot be obtained in a short time.
[0005]
On the other hand, the method of generating reduced water by electrolysis can generate reduced water in a shorter time than the method of simply immersing the reducing material in water. Of course, in principle, it is inevitable that water resources are wasted because reduced water is generated on the cathode side and oxidized water (generally unnecessary) is generated on the anode side.
[0006]
Further, in the former method in which the reducing material is dissolved by immersing the reducing material in water, the water is agitated and the method for improving the dissolution of the reducing material by using the convection generated by this agitation. However, since a drive unit for stirring is necessary, an increase in the size of the apparatus is inevitable, and electric power is required as in the case of using the above-described electrolysis, which inevitably increases costs.
[0007]
The present invention solves the above-mentioned problems, activates water by magnetism, makes it easy to dissolve the reducing material, and produces reduced water in a short time and at a low cost only by chemical reaction without using electric energy. The present invention provides an epoch-making reduced water production apparatus that is extremely practical and capable.
[0008]
[Means for Solving the Problems]
The gist of the present invention will be described with reference to the accompanying drawings.
[0009]
A reduced water production apparatus for producing reduced water in which minerals are ionized, wherein a magnetic field generating unit 1 generates a magnetic field in a container 3 into which water can be introduced and introduced, and a reducing material that dissolves in water to generate reduced water The present invention relates to a device for producing reduced water, characterized in that
[0010]
Moreover, it is a reducing water manufacturing apparatus of Claim 1, Comprising: The container 3 is arrange | positioned in accumulation water, It concerns on the reducing water manufacturing apparatus characterized by the above-mentioned.
[0011]
Moreover, the reduced water manufacturing apparatus of any one of Claims 1 and 2 WHEREIN: The magnetic field generation | occurrence | production part 1 is provided in the inner body 2 accommodated in the said container 3, The reduced water manufacturing characterized by the above-mentioned. It concerns the device.
[0012]
Moreover, the reduced water manufacturing apparatus of any one of Claims 1-3 WHEREIN: The magnetic field generation | occurrence | production part 1 concerns on the reduced water manufacturing apparatus characterized by comprising the some permanent magnet 1a. is there.
[0013]
Further, in the reduced water production apparatus according to any one of claims 1 to 4, the water body 3 is provided with a water passage portion 3a so that water can flow into the water body 3 from the water passage portion 3a. The present invention relates to a reduced water production apparatus that is configured.
[0014]
Moreover, the reduced water manufacturing apparatus of any one of Claims 1-5 WHEREIN: The magnetic material 4 which generates a magnetic field, or the magnetized magnetic material 4 was provided in the inner surface of the container 3, The reduction | restoration characterized by the above-mentioned. It relates to water production equipment.
[0015]
Moreover, the reduced water manufacturing apparatus of any one of Claims 1-6 concerns on the reduced water manufacturing apparatus characterized by the cylindrical thing being employ | adopted as the container 3. As shown in FIG.
[0016]
Moreover, the reduced water manufacturing apparatus of any one of Claims 1-7 concerns on the reduced water manufacturing apparatus characterized by the thing made from stainless steel being employ | adopted as the container 3. As shown in FIG.
[0017]
Moreover, in the reduced water manufacturing apparatus of any one of Claims 1-8, ore or negative ion ceramics, such as Mg, Ca, K, Na, tourmaline, quartz crystal, Ioishi stone, or barley stone, as a reducing material, The present invention relates to a device for producing reduced water characterized by employing ceramics such as antibacterial ceramic, bamboo charcoal ceramic, dechlorinated ceramic, far-red ceramic, or multifunctional ceramic.
[0018]
Operation and effect of the invention
When the container 3 is put in water, the water is magnetized by the magnetic field generated from the magnetic field generator 1, and the molecular groups (clusters) surrounding the ions in the water are subdivided to activate and easily dissolve the reducing material. . Therefore, when the reducing material comes into contact with the activated water, the reducing material dissolves well, and thus reduced water can be generated in a short time without using electric energy.
[0019]
Therefore, the present invention provides an innovative reduced water production apparatus with excellent practicality that can generate reduced water in a short time and at a low cost.
[0020]
DETAILED DESCRIPTION OF THE INVENTION
The figure illustrates one embodiment of the present invention and is described below.
[0021]
This embodiment is a reduced water production apparatus for producing reduced water in which minerals are ionized, and an inner body 2 in which a magnetic field generator 1 for generating a magnetic field is provided in a container 3 into which water can be introduced and introduced, and water. And a reducing material that dissolves to produce reduced water.
[0022]
Each part will be specifically described.
[0023]
The inner body 2 disposed in the container 3 is a stainless steel cylindrical body and has an inner hole as a water passage hole 2b. A plurality of insertion holes 2 c communicating with the water passage holes 2 b are formed in the peripheral surface of the inner body 2.
[0024]
In addition, a plurality of permanent magnets 1 a constituting the magnetic field generating unit 1 are embedded in the inner body 2 so as to be flush with the peripheral surface of the inner body 2. As the permanent magnet 1a, an Sm-CO based sintered magnet coated with a resin for preventing oxidation is employed. In addition, you may employ | adopt another material as this permanent magnet 1a. Other configurations may be adopted as the magnetic field generator 1.
[0025]
In this embodiment, the magnetic field generator 1 is provided on the inner body 2. However, the inner body 2 may be directly provided on the container 3 without using the inner body 2, and in this case, the number of parts may be increased. The production is easier and the cost is lower.
[0026]
Large-diameter portions 2a are provided at both ends of the inner body 2 at predetermined intervals. In FIG. 3, two upper large diameter portions 2 a are provided in the inner body 2, and one lower large diameter portion 2 a is provided. A disc body 6 is provided between the lower large diameter portion 2a and the lid body 3b. The disc body 6 may be integrated with the inner body 2.
[0027]
Further, the permanent magnet 1 a is embedded in the large diameter portion 2 a and the end face of the disk body 6. Therefore, water can be efficiently magnetized by applying a magnetic field over a wider range than when the permanent magnet 1a is simply provided on the peripheral surface of the cylindrical inner body 2.
[0028]
In order to make the magnetic field act more satisfactorily, the large-diameter portion 2a may be provided on a portion other than the end portion, that is, on the peripheral surface of the inner body 2.
[0029]
Note that the large-diameter portion 2a may not be provided for a simple configuration.
[0030]
When the magnetic field generated from the permanent magnet 1a acts on the water, the water is magnetized and the molecular group is subdivided, and the water is activated, that is, the reducing material is easily dissolved.
[0031]
The container 3 is made of a stainless steel cylinder. On the peripheral surface of the container 3, a plurality of water passage holes are juxtaposed at intervals of 90 degrees in the radial direction as the water passage portions 3 a. Similarly, a water passage hole is provided at a position facing the water passage hole 2b of the inner body 2 as the lid 3b.
[0032]
Accordingly, water flows into and out of the container 3 very well from these many water holes, and reduced water can be generated by just immersing the container 3 in water for a short time. The reduced water can be generated even when passing or flowing water passes through the container 3.
[0033]
The water passage hole may be provided only on either the lid 3b or the peripheral wall surface of the container 3, and in this case, the processing becomes easier.
[0034]
A magnetic material 4 for generating a magnetic field is provided on the inner surface of the container 3. The magnetic material 4 may be a general magnetic material (for example, iron or ferrite). In this embodiment, the magnetic field generating unit 1 is also formed on the inner surface of the container 3 as the magnetic material. A permanent magnet 1a similar to the permanent magnet 1a is employed.
[0035]
In this embodiment, water is mainly magnetized in the container 3. For example, the magnetic field generator 1 is provided outside the container 3 so that a magnetic field is applied to the outside of the container 3. In this case, it is possible to make the water outside the container 3 more magnetized, and in this case, the manufacture becomes easier.
[0036]
Further, a reducing material (not shown) is provided between the container 3 and the inner body 2 and in the water passage hole 2 b of the inner body 2.
[0037]
A net 5 is provided on the inner surface of the container 3 to prevent the reducing material from flowing out and foreign substances from flowing in from the outside. A similar net 5 may be provided in the insertion hole 2c of the inner body 2.
[0038]
In addition, as the reducing material, Mg, Ca, K, Na, tourmaline, quartz, ore such as Io stone or barleystone, anion ceramic, antibacterial ceramic, bamboo charcoal ceramic, dechlorinated ceramic, far infrared ceramic, multifunctional ceramic, etc. It is recommended to use ceramics. In this embodiment, Mg and negative ion ceramics that are useful for the human body and tasteless and odorless are employed. Specifically, this Mg is provided in the water passage hole 2 a of the inner body 2, and a negative ion ceramic is provided between the inner body 2 and the outer body 3.
[0039]
Ores (Mg) and ceramics (negative ion ceramics) may be provided in the same location in a mixed state, or only one of them may be employed. Furthermore, many types of ores or ceramics may be employed.
[0040]
In the present embodiment, the reducing material is provided inside the container 3. However, the reducing material may be provided outside the container 3.
[0041]
The magnetic field generator 1 of the present embodiment will be described in detail. By the magnetic material 4 provided on the inner surfaces of the permanent magnet 1a and the container 3, the water passage hole 2b of the inner body 2 and the space between the inner body 2 and the container 3 are described. A magnetic field acts on the water present in the water, and this water is magnetized.
[0042]
In particular, in this embodiment, as shown in FIG. 4, the opposing surfaces of the opposing permanent magnets 1a are embedded so as to have the same polarity. That is, the magnetic field generated from the permanent magnet 1a is set so as to act not only in the water passage hole 2a but also between the inner body 2 and the container 3 due to the repulsive action. Therefore, between the inner body 2 and the container 3, in addition to the magnetic field that acts between the magnetic material provided on the inner surface of the container 3 and the permanent magnet 1a, a magnetic field due to the repulsive action between the permanent magnets 1a also acts. The water existing between the inner body 2 and the container 3 is magnetized more than the water existing in the water passage hole 2 a of the inner body 2. At this time, by adding a gradient to the magnetic field as described above, convection occurs in the water, and the reducing material is more easily dissolved.
[0043]
Therefore, in this embodiment, a negative ion ceramic that is difficult to dissolve is provided between the inner body 2 and the container 3, and Mg that is easily dissolved is provided in the water passage hole 2a of the inner body 2. Is well dissolved in water.
[0044]
The method of use of this embodiment is extremely simple. For example, the reduced water production apparatus is disposed in a container (in water) filled with water such as a polytank, so that it can be reduced to a simple amount of water (conventional simply reduced to water). Reduced water can be obtained in 1/3 or less of the time when the material is immersed.
[0045]
In addition, even if it connects with water supply (similar to the conventional water purifier etc.) and the flowing water which passes along this water supply passes through this reduced water manufacturing apparatus, reduced water can be obtained.
[0046]
When the reduced water production apparatus having the above-described configuration is disposed in water (tap water) stored in a container, a chemical reaction of Mg + 2H 2 O → Mg (OH) 2 + H 2 occurs, and tap water becomes reduced water. It was confirmed that the characteristic value changes as follows.
[0047]
Figure 2005021778
This reduced water contains a lot of negative ions (weak alkaline water), Cl is removed, minerals (magnesium) and hydrogen increase (general water 20-50 times), and the water molecule population is subdivided. It was confirmed that there are features such as (small clusters).
[0048]
That is, the reduced water produced using this reduced water production apparatus exhibits extremely excellent characteristics equivalent to the reduced water produced using electrolysis, but in particular, contains a large amount of magnesium, A feature that can be produced at a low cost is the feature of the reduced water produced by the reduced water production apparatus that cannot be obtained when produced using the electrolysis.
[0049]
Since the present embodiment is configured as described above, when the container 3 is placed in a container in which water is stored, the water is magnetized by the magnetic field generated from the magnetic field generator 1, and the molecular group surrounding ions in the water ( When the cluster is subdivided, it is activated and the reducing material is easily dissolved. Therefore, the reducing material dissolves well in the activated water, and thus reduced water can be generated in a short time without using electrolysis.
[0050]
In addition, since the magnetic field generator 1 is provided in the inner body 2 and a magnetic material is provided in the container 3, a stronger magnetic field can be applied between the inner body 2 and the container 3, Reduced water can be generated in a short time.
[0051]
Furthermore, since the container 3 and the inner body 2 are made of stainless steel, they can be satisfactorily sunk when disposed in water to reliably generate reduced water, and can be used very well because they are not rusted by water.
[0052]
In addition, since the container 3 is provided with a large number of water passage holes, water will flow into the container 3 very well, and it is not necessary to immerse in water for a while. Even if it passes through the water, it can produce reduced water and is extremely practical.
[0053]
Further, the reducing material can be easily replaced by removing the lid 3b of the container 3, and the practicality is further improved.
[0054]
Therefore, this embodiment is an epoch-making reduced water production apparatus that is extremely practical and capable of producing reduced water in a short time and at a low cost.
[Brief description of the drawings]
FIG. 1 is an explanatory perspective view of an embodiment.
FIG. 2 is an explanatory perspective view of an inner body of the present embodiment.
FIG. 3 is an explanatory sectional view of the present embodiment.
FIG. 4 is a schematic explanatory diagram of a magnetic field generator of the present embodiment.
[Explanation of symbols]
DESCRIPTION OF SYMBOLS 1 Magnetic field generation | occurrence | production part 1a Permanent magnet 2 Inner body 3 Container 3a Water flow part 4 Magnetic material

Claims (9)

ミネラルがイオン化した還元水を製造する還元水製造装置であって、水が導出入可能な容体内に磁界を発生させる磁界発生部と、水に溶解して還元水を生成する還元材とが設けられていることを特徴とする還元水製造装置。A reduced water production apparatus for producing reduced water in which minerals are ionized, comprising: a magnetic field generating unit that generates a magnetic field in a container into which water can be introduced and introduced; and a reducing material that dissolves in water to generate reduced water. Reduced water production apparatus characterized by being made. 請求項1記載の還元水製造装置であって、容体はたまり水中に配設されるものであることを特徴とする還元水製造装置。2. The reduced water production apparatus according to claim 1, wherein the container is accumulated in water. 請求項1,2のいずれか1項に記載の還元水製造装置において、磁界発生部は、前記容体に収納される内体に設けられていることを特徴とする還元水製造装置。The reduced water manufacturing apparatus of any one of Claims 1 and 2 WHEREIN: A magnetic field generation | occurrence | production part is provided in the inner body accommodated in the said container, The reduced water manufacturing apparatus characterized by the above-mentioned. 請求項1〜3のいずれか1項に記載の還元水製造装置において、磁界発生部は、複数の永久磁石で構成されていることを特徴とする還元水製造装置。The reduced water manufacturing apparatus of any one of Claims 1-3 WHEREIN: The magnetic field generation | occurrence | production part is comprised with the some permanent magnet, The reduced water manufacturing apparatus characterized by the above-mentioned. 請求項1〜4のいずれか1項に記載の還元水製造装置において、容体には通水部が設けられ、水がこの通水部から容体内に流入し得るように構成されていることを特徴とする還元水製造装置。In the reduced water manufacturing apparatus of any one of Claims 1-4, it is comprised so that a water flow part may be provided in a container and water may flow in into a container from this water flow part. A reduced water production apparatus. 請求項1〜5のいずれか1項に記載の還元水製造装置において、容体の内面に、磁界を発生させる磁気材料若しくは磁化せしめられる磁気材料を設けたことを特徴とする還元水製造装置。The reduced water manufacturing apparatus of any one of Claims 1-5 WHEREIN: The magnetic material which generates a magnetic field, or the magnetized magnetic material was provided in the inner surface of the container, The reduced water manufacturing apparatus characterized by the above-mentioned. 請求項1〜6のいずれか1項に記載の還元水製造装置において、容体として筒状のものが採用されていることを特徴とする還元水製造装置。The reduced water manufacturing apparatus of any one of Claims 1-6 WHEREIN: The cylindrical thing is employ | adopted as a container, The reduced water manufacturing apparatus characterized by the above-mentioned. 請求項1〜7のいずれか1項に記載の還元水製造装置において、容体としてステンレス製のものが採用されていることを特徴とする還元水製造装置。The reduced water manufacturing apparatus of any one of Claims 1-7 WHEREIN: The thing made from stainless steel is employ | adopted as a container, The reduced water manufacturing apparatus characterized by the above-mentioned. 請求項1〜8のいずれか1項に記載の還元水製造装置において、還元材として、Mg,Ca,K,Na,トルマリン,水晶,医王石若しくは麦飯石等の鉱石またはマイナスイオンセラミック,抗菌セラミック,竹炭セラミック,脱塩素セラミック,遠赤セラミック若しくは多機能セラミック等のセラミックを採用したことを特徴とする還元水製造装置。The reduced water manufacturing apparatus of any one of Claims 1-8 WHEREIN: As a reducing material, ores, such as Mg, Ca, K, Na, a tourmaline, a crystal | crystallization, an ioishi or a barley stone, a negative ion ceramic, an antibacterial ceramic , Reduced water production equipment using ceramics such as bamboo charcoal ceramics, dechlorinated ceramics, far-red ceramics or multifunctional ceramics.
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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPWO2008044264A1 (en) * 2006-10-05 2010-02-04 田村 喜久雄 Active water module, active water module pipe combining the same, and active water device using the same
KR101830276B1 (en) * 2016-08-03 2018-03-29 이십일세기이엔지 주식회사 Colored Dissolved oxygen device for nutrient solution culture

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KR101874108B1 (en) * 2017-04-20 2018-07-03 주식회사 아이티엠코퍼레이션 Hydrogen-water Generator for Water Bottle

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPWO2008044264A1 (en) * 2006-10-05 2010-02-04 田村 喜久雄 Active water module, active water module pipe combining the same, and active water device using the same
KR101830276B1 (en) * 2016-08-03 2018-03-29 이십일세기이엔지 주식회사 Colored Dissolved oxygen device for nutrient solution culture

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