JPH03224680A - Electrolytic magnetization method of water and device therefor - Google Patents

Electrolytic magnetization method of water and device therefor

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Publication number
JPH03224680A
JPH03224680A JP2117890A JP2117890A JPH03224680A JP H03224680 A JPH03224680 A JP H03224680A JP 2117890 A JP2117890 A JP 2117890A JP 2117890 A JP2117890 A JP 2117890A JP H03224680 A JPH03224680 A JP H03224680A
Authority
JP
Japan
Prior art keywords
water
electrolytic
hollow
electrode
magnetic fields
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.)
Pending
Application number
JP2117890A
Other languages
Japanese (ja)
Inventor
Sunao Aizawa
直 相澤
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Kyoei Kogyo Co Ltd
Original Assignee
Kyoei Kogyo Co Ltd
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 by Kyoei Kogyo Co Ltd filed Critical Kyoei Kogyo Co Ltd
Priority to JP2117890A priority Critical patent/JPH03224680A/en
Publication of JPH03224680A publication Critical patent/JPH03224680A/en
Pending legal-status Critical Current

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  • Water Treatment By Electricity Or Magnetism (AREA)

Abstract

PURPOSE:To additionally effectively reform the components in electrolytic water by forming hollow magnetic fields in an electrode for electrolyzing water and forming the water flow crossing the magnetic fields in these hollow magnetic fields during the electrolysis process. CONSTITUTION:The electrolytic hollow electrode 3 of a cylindrical type consisting of a nonmagnetic conductive material having a water flow port 2 is housed in an electrolytic cell 1. Magnets 4 of doughnut type are fitted in multiple stages to this electrolytic hollow electrode 3. The water flow is sent by a pump 5 to the water flow port 2 and is circulated. Namely, the hollow magnetic fields are formed into the electrode 3 for electrolyzing the water and the water flow crossing the magnetic fields in these hollow magnetic fields is formed during the electrolysis process. As a result, the alkaline ionized water or acidic water formed by the electrolytic treatment of the water is further reformed. The water is thus reformed to the magnetized electrolytic water which is additionally enhanced in the effect of promoting the growth of animals and plants and the effect of maintaining freshness.

Description

【発明の詳細な説明】 〔産業上の利用分野〕 本発明は水道水等の水を直流によって電気分解すること
により、その陰極側にアルカリイオン水を、またその陽
極側に酸性水を生成するように構成した、水を電解水に
改質する方法およびその装置において、水を電解する電
極中に中空磁界を形成すると共に、該中空磁界中に磁界
を横切る水流を形成することによって、前記電解水中の
成分を一層効果的に改質するようにした、水の電解磁化
方法およびその装置に関するものである。
[Detailed Description of the Invention] [Field of Industrial Application] The present invention electrolyzes water such as tap water using direct current to generate alkaline ionized water on the cathode side and acidic water on the anode side. In the method and apparatus for reforming water into electrolyzed water, the electrolysis is performed by forming a hollow magnetic field in an electrode for electrolyzing water and forming a water flow across the magnetic field in the hollow magnetic field. The present invention relates to a method for electrolytically magnetizing water and an apparatus therefor, which more effectively modifies components in water.

(従来の技術〕 予じめ水を電解処理して得たアルカリイオン水や酸性水
に磁気を作用して更にこれを改質させる電解磁化手段の
従来技術としては、例えば特開平1−218682号電
解水調整方法及び装置等がある。
(Prior art) As a prior art of an electrolytic magnetization means for further modifying alkaline ionized water or acidic water obtained by electrolytic treatment of water by applying magnetism to it, for example, Japanese Patent Laid-Open No. 1-218682 discloses There are methods and devices for preparing electrolyzed water.

(発明が解決しようとする課題) 然しながら、上記従来技術による電解磁化手段は、水の
磁化処理が水の電解の後工程において各別に行われるも
のであり、少くとも水の電解過程において水の磁化処理
が同一の場所で同時に行われるものではなかったので、
それぞれに処理場所と処理機器を単独に要して不経済、
非能率であったばかりでなく、特に水の磁化処理には磁
界中を水が積極的に流動することによって、始めて磁界
を横切る水の磁化作用が電気磁気学的に生起されて、そ
の水の成分も一層改質させることができる、本来の水の
流動による磁化作用を、前記従来技術のものは予じめ水
を電解処理して得た電解水を使用する時だけ一時的、一
方向に流動させるのみで、常時はこれを循環流動させる
ことがなかったので、その磁化作用は大幅に削減されて
不完全なものとなる難点があったものである。
(Problems to be Solved by the Invention) However, in the electrolytic magnetization means according to the above-mentioned prior art, the magnetization treatment of water is carried out separately in the post-process of water electrolysis, and at least the magnetization of water is performed in the water electrolysis process. Because the processing was not done at the same place and at the same time,
Separate processing locations and processing equipment are required for each, making it uneconomical.
Not only was it inefficient, but especially in the magnetization process of water, when the water actively flows through the magnetic field, the magnetization effect of the water that crosses the magnetic field is generated electromagnetically, and the components of the water are In contrast to the magnetizing effect caused by the original flow of water, which can further improve the quality of water, the conventional technology described above only temporarily and unidirectionally flows when using electrolyzed water obtained by electrolyzing water in advance. However, since it was not constantly circulated, the magnetizing effect was greatly reduced and became incomplete.

よって本発明は、上記従来技術による電解磁化手段の、
相互の有機的関連に欠けた磁化処理の難点を払拭すると
共に、その磁化処理の際に磁界を横切る水流を電解過程
に同時に形成して、電解されたアルカリイオン水や酸性
水等の電解水の成分を一層効果的に改質するようにした
、水の電解磁化方法およびその装置の提供を目的とした
ものである。
Therefore, the present invention provides the electrolytic magnetization means according to the above-mentioned prior art,
In addition to eliminating the difficulty of magnetization treatment that lacks mutual organic relationships, a water flow that crosses the magnetic field is simultaneously formed in the electrolysis process during magnetization treatment, and electrolyzed water such as alkaline ionized water and acidic water is The object of the present invention is to provide a method for electrolytically magnetizing water and an apparatus for the same, which modifies components more effectively.

(課題を解決するための手段) 本発明は上記目的を達成するため、水の電解磁化方法に
ついて、次のような一連の処理手段を採用した。
(Means for Solving the Problems) In order to achieve the above object, the present invention employs the following series of treatment means for the electrolytic magnetization method of water.

a)水を電解する電極中に中空磁界を形成したことと、 b)該中空磁界中に磁界を横切る水流を電解過程に形成
したこと。
a) A hollow magnetic field was formed in the electrode for electrolyzing water, and b) A water flow was formed in the hollow magnetic field to cross the magnetic field during the electrolysis process.

また本発明の水の電解磁化装置については、次のような
一連の処理手段を採用した。
Further, for the water electrolytic magnetization device of the present invention, the following series of processing means were adopted.

C)水の電[1と、 d)該電解槽に収納した流水口を備えた非磁性導電材料
からなる筒型の電解中空電極と、e)該電解中空電極に
多段に嵌装したドーナツ型の磁石と、 f)前記流水口に水流を送って循環させるポンプ。
C) Water electricity [1; d) A cylindrical electrolytic hollow electrode made of a non-magnetic conductive material and equipped with a water outlet housed in the electrolytic tank; and e) A donut-shaped electrolytic hollow electrode fitted in multiple stages in the electrolytic hollow electrode. f) a pump that sends and circulates a water flow to the water outlet.

(作 用) 本発明は上記のように構成された一連の処理手段からな
る水の電解磁化方法およびその装置であって、水道水等
の水を直流によって電気分解することにより、その陰極
側にアルカリイオン水を、またその陽極側に酸性水を生
成するように構成した、水を電解水に改質する方法およ
びその装置において、水を電解する電極中に中空磁界を
形成すると共に、該中空磁界中に水を循環流動させて、
磁界を横切る水流を形成することによって、前配水の電
気磁気学理論による磁化作用がその電解過程で同時に、
また繰返し生起されるように構成したものである。
(Function) The present invention is a water electrolytic magnetization method and apparatus comprising a series of treatment means configured as described above, and includes a method for electrolyzing water such as tap water by electrolyzing it with direct current. In a method and apparatus for reforming water into electrolyzed water, which is configured to produce alkaline ionized water and acidic water on the anode side, a hollow magnetic field is formed in an electrode for electrolyzing water, and the hollow magnetic field is By circulating water in a magnetic field,
By forming a water flow across the magnetic field, the magnetization effect according to the electromagnetic theory of pre-distribution water is simultaneously caused in the electrolysis process.
It is also configured to occur repeatedly.

即ち本発明における前記磁界を横切る水流の電解過程で
の同時形成手段は、合成樹脂等からなる絶縁材料を成型
して得た電解槽中にセラミックス等の電解隔膜を介して
陰極側の電解槽とi極側の電解槽に区分すると共に、そ
れぞれの電解槽に陰電極と陽電極を対峙し、且つ画電極
に直流電圧を印加することによって、前記それぞれの電
解槽中に注入した水道水等の水を電気分解し、以って前
記陰極側の電解槽中にアルカリイオン水を、また前記陽
極側の電解槽中に酸性水を生成させるようにした電解水
製造装置の片側または両側の電極を、通常はカルシウム
等のミネラル成分が増加して飲用に好適なPH8,6乃
至10程度のアルカリイオン水を生成できる陰極側の電
極を主たる対象にして、該電極をステンレスパイプ等の
非磁性導電材料からなる筒型の電解中空電極に構成する
と共に、該電解中空電極に多段にドーナツ型の磁石を嵌
装することによって、直立状に多段に堆積された中空磁
界を形成する。また前記中空磁界を形成する前記筒型の
電解中空電極の一側、通常上側には、該電解中空電極の
筒内に水流を形成する流水口を付設し、更に該流水口に
ポンプを接続して電解槽内の水を循環流送することによ
って、電解過程の水が前記電解中空電極に多段に嵌装さ
れているドーナツ型の磁石が形成する強力な中空磁界中
を流通してこれを横切るので、前記電解過程の水の電気
磁気学理論による液体の磁化作用が電解過程に同時に、
また繰返し生起されるようになって、水の電解磁化作用
が連続して行われるから、前記水の電解処理によって生
成されるアルカリイオン水や酸性水を更に改質した、動
物や植物の成長促進効果や鮮度保持効果を一層高めた磁
化電解水に改質出来たものである。
That is, in the present invention, the means for simultaneously forming a water flow across the magnetic field during the electrolysis process is to form an electrolytic cell on the cathode side through an electrolytic diaphragm made of ceramics or the like in an electrolytic cell obtained by molding an insulating material made of synthetic resin or the like. By dividing the electrolytic cells into i-electrode side electrolytic cells, placing a negative electrode and a positive electrode facing each other in each electrolytic cell, and applying a DC voltage to the picture electrode, the tap water etc. injected into each electrolytic cell is An electrode on one or both sides of an electrolyzed water production device that electrolyzes water to produce alkaline ionized water in the electrolytic cell on the cathode side and acidic water in the electrolytic cell on the anode side. Usually, the main target is the cathode side electrode, which can produce alkaline ionized water with an increase in mineral components such as calcium and a pH of about 8.6 to 10, which is suitable for drinking.The electrode is made of a non-magnetic conductive material such as a stainless steel pipe. By constructing a cylindrical electrolytic hollow electrode consisting of a cylindrical electrolytic hollow electrode, and fitting donut-shaped magnets in multiple stages into the electrolytic hollow electrode, a hollow magnetic field stacked upright in multiple stages is formed. Further, on one side (usually the upper side) of the cylindrical electrolytic hollow electrode that forms the hollow magnetic field, a water outlet that forms a water flow inside the cylinder of the electrolytic hollow electrode is attached, and a pump is further connected to the water outlet. By circulating the water in the electrolytic tank, the water in the electrolytic process flows through and crosses a strong hollow magnetic field formed by donut-shaped magnets fitted in multiple stages in the electrolytic hollow electrode. Therefore, the magnetization effect of the liquid according to the electromagnetic theory of water in the electrolytic process simultaneously occurs in the electrolytic process.
In addition, since the electrolytic magnetization of water occurs repeatedly, the alkaline ionized water and acidic water produced by the electrolytic treatment of water are further modified to promote the growth of animals and plants. It has been modified into magnetized electrolyzed water that has even greater effectiveness and freshness retention.

(実施例) 図面は本発明の水の電解磁化方法およびその装置の実施
例を示すものであって、セラミックス等の電解隔111
6を介して陰極側の電解槽1aと陽極側の電解槽1bに
区分した電解槽1中に水通水等の水を注入して、前記陰
極側の電解槽1aと前記陽極側の電解槽1bにそれぞれ
対峙した陰電極7aと陽電極7bに100乃至300ボ
ルト程度の直流電圧を印加することによって、前記陰電
極7a側の電解槽1aにPH8,6乃至10程度のアル
カリイオン水を、また前記陽電極7b側の電解槽1bに
PH7以下の酸性水を生成させるようにした電解水製造
装置8の、前記陰電極7a側をステンレスパイプ等の非
磁性導電材料からなる筒型の1乃至複数の電解中空電極
3に構成すると共に、該電解中空電極3にドーナツ型の
異方性または等方性の中心磁力8OOガウス程度の永久
磁石等からなる磁石4を非磁性材料のステンレスパイプ
等からなるスペーサー9を介して図示のように異極同士
が串型に積み重なるように多段に嵌装して堆積するか、
または異極と同極が交互に直列に積み重なるように多段
に嵌装して堆積することによって、直立状に多段に堆積
された中空磁界を形成する。
(Example) The drawings show an example of the electrolytic magnetization method of water and its device according to the present invention.
Water such as water is injected into the electrolytic cell 1 which is divided into the electrolytic cell 1a on the cathode side and the electrolytic cell 1b on the anode side through the electrolytic cell 1a on the cathode side and the electrolytic cell 1b on the anode side. By applying a DC voltage of about 100 to 300 volts to the negative electrode 7a and positive electrode 7b facing each other, alkaline ionized water with a pH of about 8.6 to 10 is supplied to the electrolytic cell 1a on the negative electrode 7a side. The electrolyzed water production device 8 is configured to generate acidic water with a pH of 7 or less in the electrolytic cell 1b on the positive electrode 7b side, and the negative electrode 7a side is one or more cylindrical tubes made of a non-magnetic conductive material such as a stainless steel pipe. An electrolytic hollow electrode 3 is constructed, and a magnet 4 made of a donut-shaped anisotropic or isotropic permanent magnet with a central magnetic force of about 80 Gauss is attached to the electrolytic hollow electrode 3. Either the different polarities are stacked in a skewer shape in multiple stages as shown in the figure through the spacer 9, or they are stacked together.
Alternatively, by stacking and stacking different poles and same poles in multiple stages so that they are alternately stacked in series, a hollow magnetic field is formed in which the magnetic fields are vertically stacked in multiple stages.

また前記中空磁界を形成する前記筒型の電解中空電極3
の一側、通常上側には、該電解中空電極3の筒内に流水
を形成する流水口2を付設し、更に該流水口2の周辺に
電解過程の水を循環して流通させるための集水口10と
ポンプ5を配設して、該ポンプ5に接続された供給パイ
プ11により、前記1乃至複数の電解中空電極3の流水
口2にそれぞれ電解過程の水を流通自在に構成されてい
る。更にまた前記電解水製造装置8の前記陽電極7b側
にもこれを適用する場合は、電極の崩壊現象に耐え得る
非磁性導電材料を選定する他は前記陰電極7a側と略同
様に構成して、該陽電極7b側の電解槽1bに生成され
る酸性水にも同様の磁化作用を行うように構成すること
もできるが、実施例の場合は陽極側はこれを省略して、
図示のようにソリッド型のカーボン電極12を前記電解
中空電極3に対峙させて、専ら陰極側のアルカリイオン
水の製造にのみこれを使用するように構成したものであ
る。
Further, the cylindrical electrolytic hollow electrode 3 that forms the hollow magnetic field
On one side (usually the upper side), a water outlet 2 is attached to form a flowing water inside the cylinder of the electrolytic hollow electrode 3, and a collection is provided around the water outlet 2 for circulating and distributing water during the electrolysis process. A water inlet 10 and a pump 5 are arranged, and water in the electrolysis process can be freely distributed to the water inlets 2 of the one or more electrolytic hollow electrodes 3 through a supply pipe 11 connected to the pump 5. . Furthermore, when this is applied to the positive electrode 7b side of the electrolyzed water production device 8, the structure is substantially the same as the negative electrode 7a side, except that a non-magnetic conductive material that can withstand the collapse phenomenon of the electrode is selected. It is also possible to perform a similar magnetization effect on the acidic water generated in the electrolytic cell 1b on the anode 7b side, but in the case of the embodiment, this is omitted on the anode side.
As shown in the figure, a solid carbon electrode 12 is placed opposite the electrolytic hollow electrode 3, and is configured to be used exclusively for producing alkaline ionized water on the cathode side.

籾で、以上のように構成した電解磁化装置に前記ポンプ
5により電解過程の水を前記筒型の電解中空電極3内に
循環流送すれば、前記電解中空電極3に多段に嵌装され
ているドーナツ型の磁石4が形成する強力な中空磁界中
を水が流通してこれを横切るので、前記電解過程の水の
電気磁気学理論による液体の磁化作用がその電解過程で
同時に、また繰返し生起されるようになって、水の電解
磁化作用が連続して行われるから、前記水の電解処理に
よって生成されるアルカリイオン水や酸性水を更に改質
した、動物や植物の成長促進効果や鮮度保持効果を一層
高めた磁化電解水に改質出来たものである。
If the water from the electrolytic process of rice is circulated through the electrolytic magnetization device configured as described above into the cylindrical electrolytic hollow electrode 3 by the pump 5, the electrolytic hollow electrode 3 will be fitted in multiple stages. Since the water flows through and crosses the strong hollow magnetic field formed by the donut-shaped magnet 4, the magnetization of the liquid according to the electromagnetic theory of water during the electrolysis process occurs simultaneously and repeatedly during the electrolysis process. Since the electrolytic magnetization effect of water is carried out continuously, the alkaline ionized water and acidic water produced by the electrolytic treatment of water are further modified to improve the growth promotion effect and freshness of animals and plants. It has been modified into magnetized electrolyzed water with even higher retention effects.

(発明の効果) 本発明は以上に説明したように、従来技術による電解磁
化手段の、相互の有機的関連に欠けた磁化処理の難点を
払拭すると共に、その磁化処理の際に磁界を横切る水流
を電解過程に同時に形成して、電解されたアルカリイオ
ン水や酸性水の成分を一層効果的に改質するようにした
、水の電解磁化方法およびその装置であるから、従来技
術の難点であった、水の電解過程に水の磁化処理が同一
の場所で同時に行われなかったため、それぞれに処理場
所と処理機器を単独に要して不経済、非能率なものであ
った難点や、特に水の磁化処理に重要な、磁界中を積極
的に循環流動させる磁化処理を繰返すことによって、始
めて所望の磁化作用を効果的に達成することが出来る本
来の水の流動による磁化作用が、従来技術では電解水を
使用する時だけ一時的、−方向に流動させるのみで、常
時はこれを循環流動させることがなかったので、前記本
来の水の流動による磁化作用が大幅に削減されて不完全
なものとなる難点等を悉く払拭し得たものであり、本発
明による時は水の電解処理によって生成されるアルカリ
イオン水や酸性水を飲用水や化粧水に適用させ得るばか
りでなく、更にその用途を拡大して、動物や植物の成長
促進効果や鮮度保持効果を一層高められる磁化電解水の
能率的、経済的な大量生産手段を構築することが始めて
出来た、実施効果の決めて顕著な発明である。
(Effects of the Invention) As described above, the present invention eliminates the drawbacks of the magnetization process of the conventional electrolytic magnetization means which lacks mutual organic relationship, and also enables water flow to cross the magnetic field during the magnetization process. This is a water electrolytic magnetization method and device in which the components of electrolyzed alkaline ionized water and acidic water are formed simultaneously during the electrolysis process to more effectively modify the components of electrolyzed alkaline ionized water and acidic water. In addition, since the magnetization treatment of water was not carried out simultaneously in the same place during the water electrolysis process, separate treatment places and treatment equipment were required for each process, which was uneconomical and inefficient. By repeating the magnetization process of actively circulating water in a magnetic field, which is important for the magnetization process of water, the desired magnetization effect can be effectively achieved for the first time. When electrolyzed water was used, it was only temporarily allowed to flow in the negative direction, and it was not constantly circulated, so the magnetizing effect of the original water flow was greatly reduced, making it incomplete. According to the present invention, alkaline ionized water and acidic water produced by electrolytic treatment of water can not only be applied to drinking water and lotion, but also have various uses. This is an invention that has a remarkable implementation effect and is the first to create an efficient and economical means of mass production of magnetized electrolyzed water that can further enhance the growth promotion effect and freshness preservation effect of animals and plants. It is.

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

第1図は電解磁化装置の実施の一例を示す一部切欠側面
図、第2図は第1図A−A線における横断平面図である
。 1・・・電解槽、2・・・流水口、3・・・電解中空電
極、4・・・磁石、5・・・ポンプ。
FIG. 1 is a partially cutaway side view showing an example of an implementation of an electrolytic magnetization device, and FIG. 2 is a cross-sectional plan view taken along the line A--A in FIG. 1... Electrolytic tank, 2... Water outlet, 3... Electrolytic hollow electrode, 4... Magnet, 5... Pump.

Claims (1)

【特許請求の範囲】 1、水を電解する電極中に中空磁界を形成すると共に、
該中空磁界中に磁界を横切る水流を電解過程に形成する
ようにしたことを特徴とする水の電解磁化方法。 2、水の電解槽(1)と、該電解槽(1)に収納した流
水口(2)を備えた非磁性導電材料からなる筒型の電解
中空電極(3)と、該電解中空電極(3)に多段に嵌装
したドーナツ型の磁石(4)と、前記流水口(2)に水
流を送つて循環させるポンプ(5)とからなることを特
徴とする水の電解磁化装置。
[Claims] 1. Forming a hollow magnetic field in an electrode for electrolyzing water,
A method for electrolytically magnetizing water, characterized in that a water flow crossing the magnetic field is formed in the hollow magnetic field during the electrolysis process. 2. A water electrolytic cell (1), a cylindrical electrolytic hollow electrode (3) made of a non-magnetic conductive material and equipped with a water outlet (2) housed in the electrolytic cell (1), and the electrolytic hollow electrode ( 3) A water electrolytic magnetization device comprising: donut-shaped magnets (4) fitted in multiple stages; and a pump (5) that sends and circulates water to the water outlet (2).
JP2117890A 1990-01-31 1990-01-31 Electrolytic magnetization method of water and device therefor Pending JPH03224680A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP2117890A JPH03224680A (en) 1990-01-31 1990-01-31 Electrolytic magnetization method of water and device therefor

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP2117890A JPH03224680A (en) 1990-01-31 1990-01-31 Electrolytic magnetization method of water and device therefor

Publications (1)

Publication Number Publication Date
JPH03224680A true JPH03224680A (en) 1991-10-03

Family

ID=12047684

Family Applications (1)

Application Number Title Priority Date Filing Date
JP2117890A Pending JPH03224680A (en) 1990-01-31 1990-01-31 Electrolytic magnetization method of water and device therefor

Country Status (1)

Country Link
JP (1) JPH03224680A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2009266155A (en) * 2008-04-30 2009-11-12 Toshiba Corp Apparatus and method for mobile object tracking
JP2012040489A (en) * 2010-08-18 2012-03-01 E-Plan Ltd Method and device for generating electrolytic ion water

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2009266155A (en) * 2008-04-30 2009-11-12 Toshiba Corp Apparatus and method for mobile object tracking
JP2012040489A (en) * 2010-08-18 2012-03-01 E-Plan Ltd Method and device for generating electrolytic ion water

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