JPH046878Y2 - - Google Patents

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Publication number
JPH046878Y2
JPH046878Y2 JP9107086U JP9107086U JPH046878Y2 JP H046878 Y2 JPH046878 Y2 JP H046878Y2 JP 9107086 U JP9107086 U JP 9107086U JP 9107086 U JP9107086 U JP 9107086U JP H046878 Y2 JPH046878 Y2 JP H046878Y2
Authority
JP
Japan
Prior art keywords
water
water purification
partition plates
ceramic
ceramic block
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Expired
Application number
JP9107086U
Other languages
Japanese (ja)
Other versions
JPS62202397U (en
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed filed Critical
Priority to JP9107086U priority Critical patent/JPH046878Y2/ja
Publication of JPS62202397U publication Critical patent/JPS62202397U/ja
Application granted granted Critical
Publication of JPH046878Y2 publication Critical patent/JPH046878Y2/ja
Expired legal-status Critical Current

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Description

【考案の詳細な説明】[Detailed explanation of the idea]

[産業上の利用分野] 本考案は家庭或いは食品工場等で用いられる浄
水装置に関する。 [従来技術] 浄水用セラミツクブロツクを設けた浄水装置と
して、同一出願人は特願昭60−100216号に係る浄
水装置を提案している。この浄水装置は通水路の
内壁に多数の浄水用セラミツクブロツクを突出し
て配設したものであり、通水路の流水が多数の浄
水用セラミツクブロツクに接触しながら通過して
浄水用セラミツクブロツクから放射する遠赤外線
の作用により、水が浄化するというものである。 [従来の技術の問題点] ところで、このような浄水装置においては浄水
用セラミツクブロツクを管体の内壁に装着しなけ
ればならないため、その取付けが極めて煩雑にな
ると共に、正確な位置に取付けにくいという問題
点が懸念されている。 [問題点を解決するための手段] 本考案は通水管の内側に多数の浄水用セラミツ
クブロツクを設けた浄水装置において、通水孔を
有する複数の仕切り板を中間筒体を介して前記通
水管に配設すると共に、これら仕切り板に前記浄
活性用セラミツクを設けることである。 [作用] 組立時においては、中間筒体と浄水用セラミツ
クブロツクを設けた仕切り板を交互に通水管に挿
入することによつて、多数の浄水用セラミツクブ
ロツクを正確に配設できる。 [実施例] 図面は本考案の一実施例を示しており、通水管
一はステンレス製管体2と、この両側に連通する
ステンレス或いは塩化ビニール等のレジユーサ3
から構成され、これらのレジユーサ3の端部には
流入口4と流出口5を各々突設する。この通水管
1には浄水用セラミツクブロツク6を固定し、通
水孔7を有する複数の第1及び第2仕切り板1
0,11と、これら仕切り板10,11間に介在
する中間筒体9を内設する。 前記浄水用セラミツクブロツク6の成分は SiO2 70〜80% 好ましくは76% Al2O3 10〜20% 好ましくは16% Fe2O3 3〜9% 好ましくは6% ZrO2 5%以下 好ましくは2% から成る固形物(商標名 ベイオセラミカ)であ
る。 この浄水用セラミツクブロツク6は円盤状の第
1浄水用セラミツクブロツク6bと円柱状の第2
浄水用セラミツクブロツク6aの2種類用いてい
る。これら浄水用セラミツクブロツク6は前述し
た左右一対のステンレス製第1,2仕切り板1
0,11に固定すると共に、これら第1,2仕切
り板10,11には通水孔12を形成する。そし
て第1,2仕切り板10,11の中間に第1浄水
用セラミツクブロツク6bを挾着すると共に、第
1ステンレス結束線13により第1,2仕切り板
10,11と共に固定する。さらに、第1,2仕
切り板10,11の外側に第2浄水用セラミツク
ブロツク6aを第2ステンレス結束線15により
固定する。これら第1,2浄水用セラミツクブロ
ツク6b,6a及び第1,2仕切り板10,11
によつて第1浄水用ユニツト16を形成する。こ
の第1浄水用ユニツト16を通水管1の内部に間
隔をおいて複数配設すると共に、これら第1浄水
用ユニツト16間には前記中間筒体9を介在す
る。この中間筒体9はその縁部9aを径小に形成
し、第1,2仕切り板10,11の縁部より内側
に当接する。このように縁部9aを径小にするこ
とによつて、確実に第1,2仕切り板10,11
に当接して中間筒体9を所定位置に固定できる。
また流入口4、流出口5側に各々配置する第2浄
水用ユニツト19は第3ステンレス結束線22に
より第1浄水用セラミツクブロツク6bと共に固
定した左右一対の第3,4仕切り板20,21
と、第4仕切り板20の内側に第4ステンレス結
束線23により固定した第2浄水用セラミツクブ
ロツク6aから構成される。9bは半割状中間筒
体である。 次に、前記構成につき、その作用を説明する。 まず組立時においては、レジユーサ3を固定す
る前に、管体2に半割状中間筒体9b、第2浄水
用ユニツト19を挿入した後、中間筒体9、第1
浄水用ユニツト16、中間筒体9……そして最後
に第2浄水用ユニツト19、半割状中間筒体9b
を挿入して、浄水用セラミツクブロツク6を組込
む。そして、水道の蛇口25にホース26を連結
し、このホース26の先端を取付け用アダプター
27に接続する。この取付け用アダプター27は
流入側を略ホース26の径とし、流出側を流入口
4と嵌合できるようにしたものである。そして水
道水Wを流すと、水道水Wは浄水用セラミツクブ
ロツク6の放射する遠赤外線により活性化でき
る。 すなわち水Wが浄水用セラミツクブロツク6か
ら放射させる不可視熱線、所謂4〜50μm、特に
8〜14μmの遠赤外線の影響によりスムーズに伝
わり、活性化する。これは赤外線の周波数が物質
を構成している水分子の固有の振動数とだいたい
同じ程度の範囲にあたるため、物質に遠赤外線が
当ると電磁的な共振が起り、このエネルギーが特
に液体等の遠赤外線を吸収しやすいものにむだな
く吸収される。このように水分子が激しく振動
し、活性化できる。 また、浄水用セラミツクブロツク6の成分であ
るSiO2の陽イオンが湯の陽イオンと簡単に変換
されやすく、Al2O3,Fe2O3がアンモニア類と中
和するためにアルミニウムイオンとの置換が行わ
れやすくなるため水の浄水効果が得られる。この
ように活性化された水Wによつて漬物、炊飯等料
理或いは食品の洗浄を行うと遠赤外線の効果によ
つて、御飯等の食品を美味しく作ることができ
る。 次表は本考案に係る浄化活性用セラミツクを水
道水に入れ、その各成分を経時的にあらわしたも
のである。
[Industrial Application Field] The present invention relates to a water purification device used in homes, food factories, etc. [Prior Art] As a water purification device equipped with a ceramic block for water purification, the same applicant has proposed a water purification device according to Japanese Patent Application No. 100216/1983. This water purification device has a large number of water purifying ceramic blocks protruding from the inner wall of a water passage, and the flowing water in the water passage passes through contact with the many water purifying ceramic blocks and is radiated from the water purifying ceramic blocks. Water is purified by the action of far infrared rays. [Problems with the conventional technology] By the way, in such water purification devices, the ceramic block for water purification must be attached to the inner wall of the pipe body, which makes the installation extremely complicated and also makes it difficult to mount it in an accurate position. There are concerns about the problems. [Means for Solving the Problems] The present invention provides a water purification device in which a large number of ceramic blocks for water purification are provided inside a water pipe, in which a plurality of partition plates having water passage holes are connected to the water pipe through an intermediate cylindrical body. and at the same time, the above-mentioned purifying ceramic is provided on these partition plates. [Function] During assembly, a large number of water purifying ceramic blocks can be accurately arranged by alternately inserting the intermediate cylinder and the partition plates provided with the water purifying ceramic blocks into the water pipe. [Embodiment] The drawing shows an embodiment of the present invention, in which a water pipe 1 has a stainless steel pipe body 2 and a reducer 3 made of stainless steel or vinyl chloride, etc. communicating with both sides of the pipe body 2.
An inflow port 4 and an outflow port 5 are provided projecting from the ends of these reducers 3, respectively. A ceramic block 6 for water purification is fixed to the water pipe 1, and a plurality of first and second partition plates 1 each having a water passage hole 7 are provided.
0 and 11, and an intermediate cylindrical body 9 interposed between these partition plates 10 and 11. The components of the ceramic block 6 for water purification are: SiO 2 70-80%, preferably 76% Al 2 O 3 10-20%, preferably 16% Fe 2 O 3 3-9%, preferably 6% ZrO 2 5% or less, preferably 2% (trade name: Baioceramica). This water purification ceramic block 6 includes a disc-shaped first water purification ceramic block 6b and a cylindrical second ceramic block 6b.
Two types of water purifying ceramic blocks 6a are used. These ceramic blocks 6 for water purification are the pair of left and right stainless steel partition plates 1 described above.
0 and 11, and water holes 12 are formed in these first and second partition plates 10 and 11. Then, the first water purifying ceramic block 6b is clamped between the first and second partition plates 10 and 11, and is fixed together with the first and second partition plates 10 and 11 using the first stainless steel binding wire 13. Further, a second water purifying ceramic block 6a is fixed to the outside of the first and second partition plates 10 and 11 using a second stainless steel binding wire 15. These first and second water purification ceramic blocks 6b and 6a and first and second partition plates 10 and 11
The first water purification unit 16 is formed by the following steps. A plurality of first water purifying units 16 are arranged at intervals inside the water pipe 1, and the intermediate cylinder 9 is interposed between these first water purifying units 16. This intermediate cylindrical body 9 has an edge 9a having a small diameter and abuts on the inner side of the edges of the first and second partition plates 10 and 11. By reducing the diameter of the edge 9a in this way, it is possible to ensure that the first and second partition plates 10, 11
The intermediate cylindrical body 9 can be fixed in a predetermined position by coming into contact with it.
Further, the second water purification unit 19 disposed on the inlet 4 and outlet 5 sides is connected to a pair of left and right third and fourth partition plates 20 and 21 fixed together with the first water purification ceramic block 6b by a third stainless steel binding wire 22.
and a second water purifying ceramic block 6a fixed to the inside of the fourth partition plate 20 with a fourth stainless steel binding wire 23. 9b is a half-split intermediate cylinder. Next, the operation of the above structure will be explained. First, during assembly, before fixing the reducer 3, the half-split intermediate cylinder 9b and the second water purification unit 19 are inserted into the pipe body 2, and then the intermediate cylinder 9 and the first
The water purification unit 16, the intermediate cylinder 9... and finally the second water purification unit 19, the half-split intermediate cylinder 9b.
and assemble the water purifying ceramic block 6. Then, a hose 26 is connected to the water faucet 25, and the tip of this hose 26 is connected to an adapter 27 for attachment. This attachment adapter 27 has an inflow side approximately the same diameter as the hose 26, and an outflow side that can be fitted to the inlet 4. When the tap water W is run, the tap water W can be activated by far infrared rays emitted from the water purifying ceramic block 6. That is, the water W is smoothly transmitted and activated by the influence of invisible heat rays, so-called far infrared rays of 4 to 50 μm, particularly 8 to 14 μm, emitted from the water purifying ceramic block 6. This is because the frequency of infrared rays is approximately in the same range as the natural frequency of the water molecules that make up the material, so when far infrared rays hit a material, electromagnetic resonance occurs, and this energy is transferred especially to far-field materials such as liquids. Infrared rays are absorbed by objects that easily absorb them. In this way, water molecules vibrate violently and can be activated. In addition, the cations of SiO 2 , which is a component of the ceramic block 6 for water purification, are easily converted into the cations of hot water, and Al 2 O 3 and Fe 2 O 3 are combined with aluminum ions to neutralize ammonia. The water purification effect can be obtained because the substitution is facilitated. If the activated water W is used to cook food such as pickles and cooked rice, or to wash food, food such as rice can be made delicious due to the effect of far infrared rays. The following table shows the contents of each component over time when the ceramic for purifying activity according to the present invention was added to tap water.

【表】【table】

【表】 このように、ミネラル成分としてのCa,Mg,
K,Na,Si等も増加する。 [考案の効果] 本考案は通水管の内側に多数の浄水用セラミツ
クブロツクを設けた浄水装置において、通水孔を
有する複数の仕切り板を中間筒体を介して前記通
水管に配設すると共に、これら仕切り板に前記浄
活性用セラミツクを設けることであり、従来技術
に比較して水を活性化できると共に、浄水用セラ
ミツクブロツクの通水管への取付けも容易に、し
かも正確に取付けることができる。
[Table] As shown above, Ca, Mg,
K, Na, Si, etc. also increase. [Effects of the invention] The present invention provides a water purification device in which a large number of ceramic blocks for water purification are provided inside a water pipe, in which a plurality of partition plates having water passage holes are arranged in the water pipe through an intermediate cylinder, and By providing the above-mentioned ceramic blocks for water purification activation on these partition plates, the water can be activated compared to the conventional technology, and the ceramic blocks for water purification can be easily and accurately attached to the water pipes. .

【図面の簡単な説明】[Brief explanation of the drawing]

第1図は縦断面図、第2図は要部の拡大断面
図、第3図は第1,2浄水ユニツトの側面図、第
4図は中間筒体の側面図、第5図は使用状態を示
す斜視図である。 1……通水管、4……流入口、5……流出口、
6……浄水用セラミツクブロツク、10,11,
20,21……仕切り板、12……通水孔、W…
…水。
Figure 1 is a longitudinal sectional view, Figure 2 is an enlarged sectional view of the main parts, Figure 3 is a side view of the first and second water purification units, Figure 4 is a side view of the intermediate cylinder, and Figure 5 is the state in use. FIG. 1... Water pipe, 4... Inlet, 5... Outlet,
6... Ceramic block for water purification, 10, 11,
20, 21... Partition plate, 12... Water hole, W...
…water.

Claims (1)

【実用新案登録請求の範囲】[Scope of utility model registration request] 通水管の内側に多数の浄水用セラミツクブロツ
クを設けた浄水装置において、通水孔を有する複
数の仕切り板を中間筒体を介して前記通水管に配
設すると共に、これら仕切り板に前記浄活性用セ
ラミツクを設けることを特徴とする浄水装置。
In a water purification device in which a large number of ceramic blocks for water purification are provided inside a water pipe, a plurality of partition plates having water passage holes are arranged in the water pipe via an intermediate cylindrical body, and the partition plates are provided with the purifying activity. A water purification device characterized by being equipped with ceramics.
JP9107086U 1986-06-14 1986-06-14 Expired JPH046878Y2 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP9107086U JPH046878Y2 (en) 1986-06-14 1986-06-14

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP9107086U JPH046878Y2 (en) 1986-06-14 1986-06-14

Publications (2)

Publication Number Publication Date
JPS62202397U JPS62202397U (en) 1987-12-23
JPH046878Y2 true JPH046878Y2 (en) 1992-02-25

Family

ID=30951515

Family Applications (1)

Application Number Title Priority Date Filing Date
JP9107086U Expired JPH046878Y2 (en) 1986-06-14 1986-06-14

Country Status (1)

Country Link
JP (1) JPH046878Y2 (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US10516580B2 (en) 2008-12-22 2019-12-24 Panduit Corp. Physical infrastructure management system

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US10516580B2 (en) 2008-12-22 2019-12-24 Panduit Corp. Physical infrastructure management system

Also Published As

Publication number Publication date
JPS62202397U (en) 1987-12-23

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