JPH08192139A - Methods for producing active water, for removing red water by active water, for removing urolith by active water, for stabilizing chlorine concentration in swimming pool by active water, for removing scale in hot spring piping, for rust prevention in boiler, for purifying pond water, and for purifying water in vessel for aquarium fish - Google Patents

Methods for producing active water, for removing red water by active water, for removing urolith by active water, for stabilizing chlorine concentration in swimming pool by active water, for removing scale in hot spring piping, for rust prevention in boiler, for purifying pond water, and for purifying water in vessel for aquarium fish

Info

Publication number
JPH08192139A
JPH08192139A JP3581095A JP3581095A JPH08192139A JP H08192139 A JPH08192139 A JP H08192139A JP 3581095 A JP3581095 A JP 3581095A JP 3581095 A JP3581095 A JP 3581095A JP H08192139 A JPH08192139 A JP H08192139A
Authority
JP
Japan
Prior art keywords
water
treated
ceramic sintered
sintered body
particles
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
JP3581095A
Other languages
Japanese (ja)
Inventor
Junichi Miyawaki
淳一 宮脇
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.)
NIPPON CHISUI KK
Original Assignee
NIPPON CHISUI KK
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 NIPPON CHISUI KK filed Critical NIPPON CHISUI KK
Priority to JP3581095A priority Critical patent/JPH08192139A/en
Publication of JPH08192139A publication Critical patent/JPH08192139A/en
Pending legal-status Critical Current

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  • Farming Of Fish And Shellfish (AREA)
  • Sanitary Device For Flush Toilet (AREA)
  • Domestic Plumbing Installations (AREA)
  • Sink And Installation For Waste Water (AREA)

Abstract

PURPOSE: To appropriately treat water in a relatively short time by passing water through a container filled with spherical sintered ceramic particles of mineral powder composed of silicon and aluminum as main components, and alkali metals, etc. CONSTITUTION: Spherical sintered ceramic particles 4 of mineral powder composed of silicon and aluminum as main components, and alkali metals and/or oxides containing alkali metals are packed in a container 1 for sintered ceramic particles. Water is passed from an inlet 2 in the lower part of the container 1 to an outlet 3 in the upper part through a flow rate controller. In this process, water is passed at a flow rate to enable adequate contact with the surface of the particles 4 so that water is activated into active water. The active water is passed through the existing water supply iron pipe in a building facilities such as mansions to remove red water generated by red rust in the pipe.

Description

【発明の詳細な説明】Detailed Description of the Invention

【0001】[0001]

【産業上の利用分野】本発明は、活性水の生成方法と活
性水による赤水の排除方法と活性水による尿結石の排除
方法と活性水による水泳プールの塩素濃度を安定化する
方法と活性水による温泉の配管のスケールの排除方法と
活性水によるボイラの防錆方法と活性水による池水浄化
方法と活性水による観賞魚飼育用水槽内の水の浄化方法
に関し、本発明は、珪素とアルミニウムを主成分とした
アルカリ金属および/またはアルカリ金属を含有する酸
化物からなる鉱石の粉末の球形セラミック焼結体の粒子
を、セラミック焼結体収容用容器に収容し、そのセラミ
ック焼結体収容用容器の下方の入口から上方の出口に向
けて被処理水を流し、その被処理水を多数の球形セラミ
ック焼結体の粒子の間をくぐり抜けさせながら、被処理
水が多数の球形セラミック焼結体の粒子の表面に十分接
触することが可能な流速で被処理水を流し、その被処理
水を活性化させて活性水にし、その活性水を使用して、
種々の産業分野で処理を必要とする水の有用性を高める
ための活性水による処理方法、即ち活性水による赤水の
排除方法と活性水による尿結石の排除方法と活性水によ
る水泳プールの塩素濃度を安定化する方法と活性水によ
る温泉の配管のスケールの排除方法と活性水によるボイ
ラの防錆方法と活性水による池水浄化方法と活性水によ
る観賞魚飼育用水槽内の水の浄化方法に関する。
BACKGROUND OF THE INVENTION 1. Field of the Invention The present invention relates to a method for generating active water, a method for removing red water with active water, a method for removing urinary stones with active water, a method for stabilizing chlorine concentration in a swimming pool with active water, and active water. The present invention relates to a method for eliminating scale of hot spring piping, a method for rust prevention of a boiler by activated water, a method for purifying pond water by activated water, and a method for purifying water in an ornamental fish tank using activated water. Particles of a spherical ceramic sintered body of an ore powder made of an alkali metal and / or an oxide containing an alkali metal as a main component are stored in a ceramic sintered body storage container, and the ceramic sintered body storage container The water to be treated is made to flow from the lower inlet to the upper outlet, and the water to be treated is passed through between the particles of a large number of spherical ceramic sintered bodies while the treated water is made into a large number of spherical cells. The surfaces of the particles of the electrochromic sintered flowing water to be treated at a flow rate can be sufficiently in contact, the active water by activating the water to be treated, using the activated water,
Treatment method with active water to enhance the usefulness of water requiring treatment in various industrial fields, that is, removal method of red water with active water, removal method of urinary stones with active water, and chlorine concentration of swimming pool with active water The present invention relates to a method for stabilizing water, a method for removing scales of hot spring pipes with active water, a method for rust prevention of boilers with active water, a method for purifying pond water with active water, and a method for purifying water in aquariums for ornamental fish with active water.

【0002】[0002]

【従来の技術】山野に降った雨が、雨水となって、河川
に流れ込み、海に注ぎ、その広い海の水は、太陽の熱に
より熱せられて、蒸発し、雲になり、そして、雨雲にな
って、その雨雲は、雨を降らせ、その雨が、山野に降っ
て、その雨水が、大地を通り抜けて海に注がれるのであ
る。そして、地球の周囲の大気中の水蒸気と地球の表面
の水は、大気と地表と海の間を循環して、人類の存在と
無関係に、山野に植物をを繁茂させ、植物を繁茂させて
きた自然には、水が必要であり、その水が必要な自然に
おいて、水の循環を繰り返しながら、水の浄化が自然に
行なわれてきたことは、従来から、よく知られているこ
とである。ところが、人類が、今世紀に入って化石燃料
を多量に使用し出してから、産業が爆発的に急成長し
て、人口も、増大し、道路網も、通信網も、拡大し、都
市も大規模化して、過密化した状態の都市生活には、安
全な上水の供給と確実な下水の処理をなすことが要求さ
れる。そこで、そのことを充足して健康で文化的な都市
生活を享受することが出来る。ところが、現実には、適
切な水を利用しているとは云えない。最近、特に、環境
保全の一つとして水質汚濁防止のために種々の施策がな
されてきたが、そのすべての施策が成功しているとは云
えない。中でも、その性質を重要視する飲料水や産業用
水などでは、水質の安定を図るために、その関係者の努
力は、はかりしれないものがあった。そして、以前か
ら、水質浄化のために各種の濾過装置を使用して水質浄
化が図られてきた。そして、所望の基準にまで水質を改
善できて、その水質の基準を越え得たとしても、それ
で、十分満足し得る水質の基準値を得たとは云えなかっ
た。
2. Description of the Related Art Rainfall in the mountains turns into rainwater, which flows into rivers and is poured into the sea. The wide seawater is heated by the heat of the sun, evaporates into clouds, and rain clouds. Then, the rain cloud makes it rain, and the rain falls in the mountains, and the rainwater passes through the earth and is poured into the sea. Water vapor in the atmosphere around the earth and water on the surface of the earth circulate between the atmosphere, the surface of the earth, and the sea, making plants grow in the mountains and plants, regardless of the presence of humankind. It is well known that water is required for nature, and that water is naturally purified by repeating water circulation in the nature that requires water. . However, since human beings began to use a large amount of fossil fuels in this century, the industry has exploded explosively, the population has increased, the road network and the communication network have expanded, and the cities have become large. Urban life in a dense and crowded state requires safe water supply and reliable sewage treatment. Therefore, it is possible to satisfy that and enjoy a healthy and cultural city life. However, in reality, it cannot be said that appropriate water is used. Recently, in particular, various measures have been taken to prevent water pollution as one of environmental conservation, but it cannot be said that all of these measures have been successful. In particular, with regard to drinking water and industrial water, which place great importance on their properties, the efforts of the parties concerned have been immeasurable in order to stabilize the water quality. In addition, for some time, various types of filtration devices have been used to purify water. Even if the water quality could be improved to a desired standard and the water quality standard could be exceeded, it could not be said that a sufficiently satisfactory water quality standard value was obtained.

【0003】[0003]

【発明が解決しようとする課題】本発明は、上記の問題
を解決することを第一の目的とする。また、これまで、
本発明者は、各種組成のセラミック質鉱石の素材を焼結
処理して粒子にし、その粒子を利用して被処理水を通し
て、水質改善と水質浄化をしてきた。そして、水質改善
と水質浄化に努力してきたのであるが、水質改善と水質
浄化の成果は、必ずしも、十分とは云えなかった。その
ために、種々の実験を行なう過程で、水の流動現象を活
発に行なうことにより、各種組成のセラミック質鉱石の
素材を焼結処理して得た粒子に激しく接触させることに
より被処理水を、適切に処理し得ることとなり、その結
果、比較的短時間で、被処理水を、処理し得るものと考
えてきた。しかし、幾多の研究の結果、被処理水を、セ
ラミック質鉱石の素材を焼結処理して得た粒子に激しく
接触させることにより、被処理水を、適切に処理し得る
ものではないことが判かってきた。本発明は、比較的短
時間の間に、各種組成のセラミック質鉱石の素材を焼結
処理して得た粒子に被処理水を、激しく接触させること
なく、処理して、被処理水を、適正な時間に適正に処理
して、水質改善をなし得ることを第二の目的とする。
SUMMARY OF THE INVENTION The first object of the present invention is to solve the above problems. Also, so far,
The inventor of the present invention has improved the water quality and purified the water by treating the raw material of the ceramic ore having various compositions into particles and using the particles to pass the water to be treated. Although they have made efforts to improve water quality and purify water, the results of water quality improvement and water purification have not always been sufficient. Therefore, in the course of conducting various experiments, by actively performing the flow phenomenon of water, the water to be treated is vigorously contacted with the particles obtained by sintering the material of the ceramic ore of various compositions, It has been considered that the water can be treated appropriately, and as a result, the water to be treated can be treated in a relatively short time. However, many studies have shown that the water to be treated cannot be appropriately treated by bringing the water to be treated into vigorous contact with particles obtained by sintering the raw material of the ceramic ore. I came. The present invention, in a relatively short time, treated water to the particles obtained by sintering the raw material of the ceramic ore of various compositions, without contacting violently, treated, treated water, The second purpose is to be able to properly improve the water quality by treating it properly at a proper time.

【0004】[0004]

【課題を解決するための手段】本発明は、珪素とアルミ
ニウムを主成分としたアルカリ金属および/またはアル
カリ金属を含有する酸化物からなる鉱石の粉末の球形セ
ラミック焼結体の粒子を、セラミック焼結体収容用容器
に収容し、そのセラミック焼結体収容用容器の下方の入
口から上方の出口に向けて被処理水を流し、その被処理
水を多数の球形セラミック焼結体の粒子の間をくぐり抜
けさせながら、被処理水が多数の球形セラミック焼結体
の粒子の表面に十分接触することが可能な流速で被処理
水を流し、その被処理水を活性化させ得る活性水の生成
方法であり、また、本発明は、珪素とアルミニウムを主
成分としたアルカリ金属および/またはアルカリ金属を
含有する酸化物からなる鉱石の粉末の球形セラミック焼
結体の粒子を、セラミック焼結体収容用容器に収容し、
そのセラミック焼結体収容用容器の下方の入口から上方
の出口に向けて被処理水を流し、その被処理水を多数の
球形セラミック焼結体の粒子の間をくぐり抜けさせなが
ら、被処理水が多数の球形セラミック焼結体の粒子の表
面に十分接触することが可能な流速で被処理水を流し、
その被処理水を活性化させて活性水にし、その活性水
を、ビル、マンションなどの建設施設の既設給水鉄管内
に流して既設給水鉄管内で生じた赤錆によって生じた赤
水を排除し得る活性水による赤水の排除方法であり、ま
た、本発明は、珪素とアルミニウムを主成分としたアル
カリ金属および/またはアルカリ金属を含有する酸化物
からなる鉱石の粉末の球形セラミック焼結体の粒子を、
セラミック焼結体収容用容器に収容し、そのセラミック
焼結体収容用容器の下方の入口から上方の出口に向けて
被処理水を流し、その被処理水を多数の球形セラミック
焼結体の粒子の間をくぐり抜けさせながら、被処理水が
多数の球形セラミック焼結体の粒子の表面に十分接触す
ることが可能な流速で被処理水を流し、その被処理水を
活性化させて活性水にし、その活性水を、男子便所に使
用して小便器とその小便器に接続した排尿管などの付属
配管に付着した尿結石を溶解して離脱させ得る活性水に
よる尿結石の排除方法であり、また、本発明は、珪素と
アルミニウムを主成分としたアルカリ金属および/また
はアルカリ金属を含有する酸化物からなる鉱石の粉末の
球形セラミック焼結体の粒子を、セラミック焼結体収容
用容器に収容し、そのセラミック焼結体収容用容器の下
方の入口から上方の出口に向けて被処理水を流し、その
被処理水を多数の球形セラミック焼結体の粒子の間をく
ぐり抜けさせながら、被処理水が多数の球形セラミック
焼結体の粒子の表面に十分接触することが可能な流速で
被処理水を流し、その被処理水を活性化させて活性水に
し、その活性水を、水泳プールに使用して水泳プールの
塩素濃度を維持するため、その水泳プールの循環用給水
管の部分に供給して塩素成分の残留率を高め、水泳プー
ルの塩素濃度を安定化させ得る活性水による水泳プール
の塩素濃度を安定化する方法であり、また、本発明は、
珪素とアルミニウムを主成分としたアルカリ金属および
/またはアルカリ金属を含有する酸化物からなる鉱石の
粉末の球形セラミック焼結体の粒子を、セラミック焼結
体収容用容器に収容し、そのセラミック焼結体収容用容
器の下方の入口から上方の出口に向けて被処理水を流
し、その被処理水を多数の球形セラミック焼結体の粒子
の間をくぐり抜けさせながら、被処理水が多数の球形セ
ラミック焼結体の粒子の表面に十分接触することが可能
な流速で被処理水を流し、その被処理水を活性化させて
活性水にし、その活性水を、温泉の給湯管から流入させ
て、給湯管や排水管などの配管に付着したスケールを溶
解して離脱させ得る活性水による温泉の配管のスケール
の排除方法であり、また、本発明は、珪素とアルミニウ
ムを主成分としたアルカリ金属および/またはアルカリ
金属を含有する酸化物からなる鉱石の粉末の球形セラミ
ック焼結体の粒子を、セラミック焼結体収容用容器に収
容し、そのセラミック焼結体収容用容器の下方の入口か
ら上方の出口に向けて被処理水を流し、その被処理水を
多数の球形セラミック焼結体の粒子の間をくぐり抜けさ
せながら、被処理水が多数の球形セラミック焼結体の粒
子の表面に十分接触することが可能な流速で被処理水を
流し、その被処理水を活性化させて活性水にし、その活
性水を、ボイラ内に流して、ボイラ内の錆を消失させ得
る活性水によるボイラの防錆方法であり、また、本発明
は、珪素とアルミニウムを主成分としたアルカリ金属お
よび/またはアルカリ金属を含有する酸化物からなる鉱
石の粉末の球形セラミック焼結体の粒子を、セラミック
焼結体収容用容器に収容し、そのセラミック焼結体収容
用容器の下方の入口から上方の出口に向けて被処理水を
流し、その被処理水を多数の球形セラミック焼結体の粒
子の間をくぐり抜けさせながら、被処理水が多数の球形
セラミック焼結体の粒子の表面に十分接触することが可
能な流速で被処理水を流し、その被処理水を活性化させ
て活性水にし、その活性水を、用水池、貯水池、処理水
用池などの池に流して、池水の浄化を可能にした活性水
による池水浄化方法であり、また、本発明は、珪素とア
ルミニウムを主成分としたアルカリ金属および/または
アルカリ金属を含有する酸化物からなる鉱石の粉末の球
形セラミック焼結体の粒子を、セラミック焼結体収容用
容器に収容し、そのセラミック焼結体収容用容器の下方
の入口から上方の出口に向けて被処理水を流し、その被
処理水を多数の球形セラミック焼結体の粒子の間をくぐ
り抜けさせながら、被処理水が多数の球形セラミック焼
結体の粒子の表面に十分接触することが可能な流速で被
処理水を流し、その被処理水を活性化させて活性水に
し、その活性水を、金魚、熱帯魚などの観賞魚飼育用水
槽内の水に流して、観賞魚飼育用水槽内の水の浄化を可
能にした活性水による観賞魚飼育用水槽内の水の浄化方
法である。
DISCLOSURE OF THE INVENTION According to the present invention, particles of a spherical ceramic sintered body of an ore powder made of an alkali metal containing silicon and aluminum as main components and / or an oxide containing an alkali metal are ceramic-fired. The water to be treated is housed in a container for storing a sintered body, and the water to be treated is caused to flow from the lower inlet to the upper outlet of the container for holding the ceramic sintered body, and the water to be treated is distributed between a large number of spherical ceramic sintered body particles. Method for generating active water that allows activated water to flow through the treated water at a flow rate that allows the treated water to sufficiently contact the surfaces of the particles of a large number of spherical ceramic sintered bodies while passing through the water According to the present invention, particles of a spherical ceramic sintered body of an ore powder composed of an alkali metal containing silicon and aluminum as main components and / or an oxide containing an alkali metal are prepared as follows. Housed in a container for Mick sintered body accommodating,
The water to be treated is made to flow from the lower inlet of the container for accommodating the ceramic sintered body toward the upper outlet, and the water to be treated is passed through the particles of the spherical ceramic sintered body while passing through the water to be treated. Flowing the water to be treated at a flow rate that allows sufficient contact with the surfaces of the particles of a large number of spherical ceramic sintered bodies,
Active to activate the treated water to make it active water, and to flush the activated water into the existing water supply pipes of construction facilities such as buildings and condominiums to eliminate the red water generated by the red rust generated in the existing water supply pipes. The present invention is a method for eliminating red water with water, and the present invention provides particles of a spherical ceramic sintered body of a powder of ore composed of an alkali metal containing silicon and aluminum as main components and / or an oxide containing an alkali metal,
It is housed in a container for storing a ceramic sintered body, and water to be treated is made to flow from the lower inlet to the upper outlet of the container for storing a ceramic sintered body, and the water to be treated is a large number of spherical ceramic sintered body particles. While passing through the gap, the water to be treated is made to flow at a flow rate that allows the water to sufficiently contact the surfaces of the particles of the spherical ceramic sintered body, and the water to be treated is activated to become active water. , A method of eliminating urinary stones by active water that can dissolve and remove urinary stones attached to urinals and attached pipes such as a urinal pipe connected to the urinals by using the active water in a men's toilet, Further, according to the present invention, particles of a spherical ceramic sintered body of an ore powder composed of an alkali metal containing silicon and aluminum as main components and / or an oxide containing an alkali metal are stored in a ceramic sintered body storage container. Then The treated water is made to flow from the lower inlet of the ceramic sintered body accommodating container toward the upper outlet, and the treated water is passed through the particles of the spherical ceramic sintered body while passing through the treated water. The treated water is made to flow at a flow velocity that can sufficiently contact the surface of many spherical ceramic sintered body particles, and the treated water is activated to active water, which is used for a swimming pool. In order to maintain the chlorine concentration in the swimming pool, it is supplied to the part of the circulation water supply pipe of the swimming pool to increase the residual rate of chlorine components and stabilize the chlorine concentration in the swimming pool. A method of stabilizing the concentration, and the present invention also provides
Particles of a spherical ceramic sintered body of an ore powder composed of an alkali metal containing silicon and aluminum as main components and / or an oxide containing an alkali metal are housed in a ceramic sintered body housing container, and the ceramic sintered The water to be treated is flowed from the lower inlet to the upper outlet of the body-holding container, and the water to be treated passes through the particles of the large number of spherical ceramic sintered bodies while the water to be treated has a large number of spherical ceramics. Flowing the water to be treated at a flow rate that allows sufficient contact with the surface of the particles of the sintered body, activating the water to be treated into active water, and injecting the active water from the hot water supply pipe of the hot spring, This is a method of removing scales in hot spring pipes by activated water that can dissolve and separate scales adhering to pipes such as hot water supply pipes and drainage pipes. Particles of a spherical ceramic sintered body of an ore powder made of an oxide containing a potassium metal and / or an alkali metal are housed in a container for housing a ceramic sintered body, and an inlet below the container for housing a ceramic sintered body. The water to be treated toward the upper outlet from the above, passing through the particles of the spherical ceramic sintered body through the water to be treated, while the water to be treated is on the surface of the particles of the spherical ceramic sintered body. Flowing the water to be treated at a flow rate that allows sufficient contact, activating the water to be treated to make it active water, and making the active water flow into the boiler to eliminate rust in the boiler. The present invention relates to a method for preventing rust of a boiler, and the present invention provides a spherical ceramic sintered body of ore powder comprising an alkali metal containing silicon and aluminum as main components and / or an oxide containing an alkali metal. In a container for accommodating a ceramic sintered body, and water to be treated is caused to flow from the lower inlet to the upper outlet of the container for accommodating the ceramic sintered body. While passing through the particles of the treated water, the treated water is made to flow at a flow rate that allows the treated water to sufficiently contact the surface of many spherical ceramic sintered body particles, and the treated water is activated and activated. A method for purifying pond water using activated water, which is made into water and is capable of purifying pond water by pouring the activated water into a pond such as a pond, a reservoir, and a treated water pond, and the present invention provides silicon and aluminum. Particles of a spherical ceramic sintered body of an ore powder made of an alkali metal and / or an oxide containing an alkali metal as a main component are stored in a ceramic sintered body storage container, and the ceramic sintered body storage container Below The water to be treated flows from the inlet to the outlet above, and while the water to be treated passes through between the particles of the spherical ceramic sintered body, the surface of the particle of the spherical ceramic sintered body is treated. The treated water at a flow rate that allows sufficient contact with the water to activate the treated water into active water, and then pass the activated water to the water in the aquarium for ornamental fish such as goldfish and tropical fish. , A method for purifying water in an aquarium for fish ornamentation using activated water that enables purification of water in an aquarium for fish ornamentation.

【0005】[0005]

【作用】本発明は、珪素とアルミニウムを主成分とした
アルカリ金属および/またはアルカリ金属を含有する酸
化物からなる鉱石の粉末の球形セラミック焼結体の粒子
を、セラミック焼結体収容用容器に収容し、そのセラミ
ック焼結体収容用容器の下方の入口から上方の出口に向
けて被処理水を流し、その被処理水を多数の球形セラミ
ック焼結体の粒子の間をくぐり抜けさせながら、被処理
水が多数の球形セラミック焼結体の粒子の表面に十分接
触することが可能な流速で被処理水を流し、その被処理
水を活性化させ得る活性水の生成方法であるから、被処
理水を多数の球形セラミック焼結体の粒子の間をくぐり
抜けさせながら、被処理水が多数の球形セラミック焼結
体の粒子の表面に十分接触することが可能な流速で被処
理水を流し、その被処理水を活性化させ得る。また、本
発明は、珪素とアルミニウムを主成分としたアルカリ金
属および/またはアルカリ金属を含有する酸化物からな
る鉱石の粉末の球形セラミック焼結体の粒子を、セラミ
ック焼結体収容用容器に収容し、そのセラミック焼結体
収容用容器の下方の入口から上方の出口に向けて被処理
水を流し、その被処理水を多数の球形セラミック焼結体
の粒子の間をくぐり抜けさせながら、被処理水が多数の
球形セラミック焼結体の粒子の表面に十分接触すること
が可能な流速で被処理水を流し、その被処理水を活性化
させて活性水にし、その活性水を、ビル、マンションな
どの建設施設の既設給水鉄管内に流して既設給水鉄管内
で生じた赤錆によって生じた赤水を排除し得る活性水に
よる赤水の排除方法であるから、セラミック焼結体収容
用容器の下方の入口から上方の出口に向けて被処理水を
流し、その被処理水を多数の球形セラミック焼結体の粒
子の間をくぐり抜けさせながら、被処理水が多数の球形
セラミック焼結体の粒子の表面に十分接触することが可
能な流速で被処理水を流し、その被処理水を活性化させ
て活性水にし、その活性水を、ビル、マンションなどの
建設施設の既設給水鉄管内に流して既設給水鉄管内で生
じた赤錆によって生じた赤水を排除し得る。また、本発
明は、珪素とアルミニウムを主成分としたアルカリ金属
および/またはアルカリ金属を含有する酸化物からなる
鉱石の粉末の球形セラミック焼結体の粒子を、セラミッ
ク焼結体収容用容器に収容し、そのセラミック焼結体収
容用容器の下方の入口から上方の出口に向けて被処理水
を流し、その被処理水を多数の球形セラミック焼結体の
粒子の間をくぐり抜けさせながら、被処理水が多数の球
形セラミック焼結体の粒子の表面に十分接触することが
可能な流速で被処理水を流し、その被処理水を活性化さ
せて活性水にし、その活性水を、男子便所に使用して小
便器とその小便器に接続した排尿管などの付属配管に付
着した尿結石を溶解して離脱させ得る活性水による尿結
石の排除方法であるから、セラミック焼結体収容用容器
の下方の入口から上方の出口に向けて被処理水を流し、
その被処理水を多数の球形セラミック焼結体の粒子の間
をくぐり抜けさせながら、被処理水が多数の球形セラミ
ック焼結体の粒子の表面に十分接触することが可能な流
速で被処理水を流し、その被処理水を活性化させて活性
水にし、その活性水を、男子便所に使用して小便器とそ
の小便器に接続した排尿管などの付属配管に付着した尿
結石を溶解して離脱させ得る。また、本発明は、珪素と
アルミニウムを主成分としたアルカリ金属および/また
はアルカリ金属を含有する酸化物からなる鉱石の粉末の
球形セラミック焼結体の粒子を、セラミック焼結体収容
用容器に収容し、そのセラミック焼結体収容用容器の下
方の入口から上方の出口に向けて被処理水を流し、その
被処理水を多数の球形セラミック焼結体の粒子の間をく
ぐり抜けさせながら、被処理水が多数の球形セラミック
焼結体の粒子の表面に十分接触することが可能な流速で
被処理水を流し、その被処理水を活性化させて活性水に
し、その活性水を、水泳プールに使用して水泳プールの
塩素濃度を維持するため、その水泳プールの循環用給水
管の部分に供給して塩素成分の残留率を高め、水泳プー
ルの塩素濃度を安定化させ得る活性水による水泳プール
の塩素濃度を安定化する方法であるから、セラミック焼
結体収容用容器の下方の入口から上方の出口に向けて被
処理水を流し、その被処理水を多数の球形セラミック焼
結体の粒子の間をくぐり抜けさせながら、被処理水が多
数の球形セラミック焼結体の粒子の表面に十分接触する
ことが可能な流速で被処理水を流し、その被処理水を活
性化させて活性水にし、その活性水を、水泳プールに使
用して水泳プールの塩素濃度を維持するため、その水泳
プールの循環用給水管の部分に供給して塩素成分の残留
率を高め、水泳プールの塩素濃度を安定化させ得る。ま
た、本発明は、珪素とアルミニウムを主成分としたアル
カリ金属および/またはアルカリ金属を含有する酸化物
からなる鉱石の粉末の球形セラミック焼結体の粒子を、
セラミック焼結体収容用容器に収容し、そのセラミック
焼結体収容用容器の下方の入口から上方の出口に向けて
被処理水を流し、その被処理水を多数の球形セラミック
焼結体の粒子の間をくぐり抜けさせながら、被処理水が
多数の球形セラミック焼結体の粒子の表面に十分接触す
ることが可能な流速で被処理水を流し、その被処理水を
活性化させて活性水にし、その活性水を、温泉の給湯管
から流入させて、給湯管や排水管などの配管に付着した
スケールを溶解して離脱させ得る活性水による温泉の配
管のスケールの排除方法であるから、セラミック焼結体
収容用容器の下方の入口から上方の出口に向けて被処理
水を流し、その被処理水を多数の球形セラミック焼結体
の粒子の間をくぐり抜けさせながら、被処理水が多数の
球形セラミック焼結体の粒子の表面に十分接触すること
が可能な流速で被処理水を流し、その被処理水を活性化
させて活性水にし、その活性水を温泉の給湯管から流入
させて、給湯管や排水管などの配管に付着したスケール
を溶解して離脱させ得る。また、本発明は、珪素とアル
ミニウムを主成分としたアルカリ金属および/またはア
ルカリ金属を含有する酸化物からなる鉱石の粉末の球形
セラミック焼結体の粒子を、セラミック焼結体収容用容
器に収容し、そのセラミック焼結体収容用容器の下方の
入口から上方の出口に向けて被処理水を流し、その被処
理水を多数の球形セラミック焼結体の粒子の間をくぐり
抜けさせながら、被処理水が多数の球形セラミック焼結
体の粒子の表面に十分接触することが可能な流速で被処
理水を流し、その被処理水を活性化させて活性水にし、
その活性水を、ボイラ内に流して、ボイラ内の錆を消失
させ得る活性水によるボイラの防錆方法であるから、セ
ラミック焼結体収容用容器に収容し、そのセラミック焼
結体収容用容器の下方の入口から上方の出口に向けて被
処理水を流し、その被処理水を多数の球形セラミック焼
結体の粒子の間をくぐり抜けさせながら、被処理水が多
数の球形セラミック焼結体の粒子の表面に十分接触する
ことが可能な流速で被処理水を流し、その被処理水を活
性化させて活性水にし、その活性水を、ボイラ内に流し
て、ボイラ内の錆を消失させ得る。また、本発明は、珪
素とアルミニウムを主成分としたアルカリ金属および/
またはアルカリ金属を含有する酸化物からなる鉱石の粉
末の球形セラミック焼結体の粒子を、セラミック焼結体
収容用容器に収容し、そのセラミック焼結体収容用容器
の下方の入口から上方の出口に向けて被処理水を流し、
その被処理水を多数の球形セラミック焼結体の粒子の間
をくぐり抜けさせながら、被処理水が多数の球形セラミ
ック焼結体の粒子の表面に十分接触することが可能な流
速で被処理水を流し、その被処理水を活性化させて活性
水にし、その活性水を、用水池、貯水池、処理水用池な
どの池に流して、池水の浄化を可能にした活性水による
池水浄化方法であるから、セラミック焼結体収容用容器
の下方の入口から上方の出口に向けて被処理水を流し、
その被処理水を多数の球形セラミック焼結体の粒子の間
をくぐり抜けさせながら、被処理水が多数の球形セラミ
ック焼結体の粒子の表面に十分接触することが可能な流
速で被処理水を流し、その被処理水を活性化させて活性
水にし、その活性水を、用水池、貯水池、処理水用池な
どの池に流して、池水の浄化を可能にし得る。また、本
発明は、珪素とアルミニウムを主成分としたアルカリ金
属および/またはアルカリ金属を含有する酸化物からな
る鉱石の粉末の球形セラミック焼結体の粒子を、セラミ
ック焼結体収容用容器に収容し、そのセラミック焼結体
収容用容器の下方の入口から上方の出口に向けて被処理
水を流し、その被処理水を多数の球形セラミック焼結体
の粒子の間をくぐり抜けさせながら、被処理水が多数の
球形セラミック焼結体の粒子の表面に十分接触すること
が可能な流速で被処理水を流し、その被処理水を活性化
させて活性水にし、その活性水を、金魚、熱帯魚などの
観賞魚飼育用水槽内の水に流して、観賞魚飼育用水槽内
の水の浄化を可能にした活性水による観賞魚飼育用水槽
内の水の浄化方法であるから、セラミック焼結体収容用
容器の下方の入口から上方の出口に向けて被処理水を流
し、その被処理水を多数の球形セラミック焼結体の粒子
の間をくぐり抜けさせながら、被処理水が多数の球形セ
ラミック焼結体の粒子の表面に十分接触することが可能
な流速で被処理水を流し、その被処理水を活性化させて
活性水にし、その活性水を、金魚、熱帯魚などの観賞魚
飼育用水槽内の水に流して、観賞魚飼育用水槽内の水の
浄化を可能にし得る。
According to the present invention, particles of a spherical ceramic sintered body of an ore powder composed of an alkali metal containing silicon and aluminum as main components and / or an oxide containing an alkali metal are placed in a container for storing a ceramic sintered body. The water to be treated is caused to flow from the lower inlet of the ceramic sintered body accommodating container toward the upper outlet thereof, and the water to be treated is passed through between a number of spherical ceramic sintered body particles, Since the treated water is a method of generating activated water that allows the treated water to be activated by flowing the treated water at a flow rate that allows the treated water to sufficiently contact the surface of many spherical ceramic sintered body particles. While letting water pass between the particles of the large number of spherical ceramic sintered bodies, the water to be treated is made to flow at a flow rate that allows the water to sufficiently contact the surface of the particles of the large number of spherical ceramic sintered bodies. The treated water may activate. Further, according to the present invention, particles of a spherical ceramic sintered body of an ore powder composed of an alkali metal containing silicon and aluminum as main components and / or an oxide containing an alkali metal are stored in a ceramic sintered body storage container. Then, the water to be treated is made to flow from the lower inlet to the upper outlet of the container for accommodating the ceramic sintered body, and the water to be treated is passed through the particles of the spherical ceramic sintered body while being treated. Water to be treated is made to flow at a flow rate that allows water to sufficiently contact the surfaces of a large number of spherical ceramic sintered body particles, and the water to be treated is activated to active water. It is a method of removing red water by activated water that can remove the red water generated by the red rust generated in the existing water supply iron pipe by flowing it into the existing water supply iron pipe of the construction facility. The water to be treated flows from one inlet to the upper outlet, and while the water to be treated passes through between the particles of many spherical ceramic sintered bodies, the water to be treated has many particles of spherical ceramic sintered bodies. The treated water is made to flow at a flow rate that allows sufficient contact with the surface of the building, the activated water is activated into activated water, and the activated water is poured into the existing water supply iron pipes of construction facilities such as buildings and condominiums. The red water generated by the red rust generated in the existing water supply iron pipe can be eliminated. Further, according to the present invention, particles of a spherical ceramic sintered body of an ore powder composed of an alkali metal containing silicon and aluminum as main components and / or an oxide containing an alkali metal are stored in a ceramic sintered body storage container. Then, the water to be treated is made to flow from the lower inlet to the upper outlet of the container for accommodating the ceramic sintered body, and the water to be treated is passed through the particles of the spherical ceramic sintered body while being treated. The water to be treated is made to flow at such a flow rate that water can sufficiently contact the surface of many particles of the spherical ceramic sintered body, and the water to be treated is activated into active water. Because it is a method of eliminating urinary stones with active water that can dissolve and separate urinary stones attached to the urinals and attached tubing connected to the urinals by using it, Downward Flowing water to be treated upwardly outlet from the inlet,
While passing the water to be treated between the particles of the large number of spherical ceramic sintered bodies, the treated water is treated at a flow rate that allows the water to sufficiently contact the surface of the particles of the large number of spherical ceramic sintered bodies. Sink, activate the treated water to make it active water, and use the active water to dissolve the urinary stones attached to the urinals and attached pipes such as the urinary tract connected to the urinals in the men's toilet. Can be released. Further, according to the present invention, particles of a spherical ceramic sintered body of an ore powder composed of an alkali metal containing silicon and aluminum as main components and / or an oxide containing an alkali metal are stored in a ceramic sintered body storage container. Then, the water to be treated is made to flow from the lower inlet to the upper outlet of the container for accommodating the ceramic sintered body, and the water to be treated is passed through the particles of the spherical ceramic sintered body while being treated. The water to be treated is made to flow at a flow rate that allows water to sufficiently contact the surface of many spherical ceramic sintered body particles, and the water to be treated is activated into active water. In order to maintain the chlorine concentration of the swimming pool by using it, swimming with active water that can supply to the part of the water supply pipe for circulation of the swimming pool to increase the residual rate of chlorine components and stabilize the chlorine concentration of the swimming pool Since this is a method of stabilizing the chlorine concentration of the ceramic sintered body, the treated water is made to flow from the lower inlet of the ceramic sintered body accommodating container to the upper outlet, and the treated water is made into a large number of spherical ceramic sintered bodies. While passing through the particles of the treated water, the treated water is made to flow at a flow rate that allows the treated water to sufficiently contact the surface of many spherical ceramic sintered body particles, and the treated water is activated and activated. In order to maintain the chlorine concentration of the swimming pool by making it into water and using the active water in the swimming pool, it is supplied to the part of the water pipe for circulation of the swimming pool to increase the residual rate of chlorine components and to increase the chlorine content of the swimming pool. The concentration can be stabilized. Further, the present invention provides particles of a spherical ceramic sintered body of an ore powder made of an alkali metal containing silicon and aluminum as main components and / or an oxide containing an alkali metal,
It is housed in a container for storing a ceramic sintered body, and water to be treated is made to flow from the lower inlet to the upper outlet of the container for storing a ceramic sintered body, and the water to be treated is a large number of spherical ceramic sintered body particles. While passing through the gap, the water to be treated is made to flow at a flow rate that allows the water to sufficiently contact the surfaces of the particles of the spherical ceramic sintered body, and the water to be treated is activated to become active water. , The activated water is introduced from the hot water supply pipe of the hot spring, and the scale adhering to the pipes such as the hot water supply pipe and drainage pipe can be dissolved and released. The water to be treated is made to flow from the lower inlet of the container for accommodating the sintered body toward the upper outlet, and the water to be treated is passed through between the particles of the large number of spherical ceramic sintered bodies while Spherical ceramic ware The water to be treated is made to flow at a flow rate that allows sufficient contact with the surface of body particles, the water to be treated is activated into active water, and the activated water is made to flow from the hot water supply pipe of the hot spring to The scale attached to a pipe such as a drain pipe can be dissolved and separated. Further, according to the present invention, particles of a spherical ceramic sintered body of an ore powder composed of an alkali metal containing silicon and aluminum as main components and / or an oxide containing an alkali metal are stored in a ceramic sintered body storage container. Then, the water to be treated is made to flow from the lower inlet to the upper outlet of the container for accommodating the ceramic sintered body, and the water to be treated is passed through the particles of the spherical ceramic sintered body while being treated. The water to be treated is caused to flow at a flow rate such that water can sufficiently contact the surfaces of a large number of spherical ceramic sintered body particles, and the water to be treated is activated into active water,
Since the activated water is a method of preventing rust of the boiler by flowing the activated water into the boiler to eliminate the rust in the boiler, it is accommodated in the ceramic sintered body accommodating container, and the ceramic sintered body accommodating container. The treated water flows from the lower inlet to the upper outlet, and while the treated water passes through the particles of the spherical ceramic sintered body, The treated water is made to flow at a flow rate that allows sufficient contact with the surface of the particles, the treated water is activated to make it active water, and the activated water is made to flow in the boiler to eliminate rust in the boiler. obtain. In addition, the present invention provides an alkali metal mainly composed of silicon and aluminum and /
Or, particles of a spherical ceramic sintered body of ore powder made of oxide containing an alkali metal are stored in a ceramic sintered body storage container, and the ceramic sintered body storage container has a lower inlet to an upper outlet. Water to be treated toward
While passing the water to be treated between the particles of the large number of spherical ceramic sintered bodies, the treated water is treated at a flow rate that allows the water to sufficiently contact the surface of the particles of the large number of spherical ceramic sintered bodies. In the pond water purification method using activated water, which makes it possible to purify the pond water, by pouring it, activating the treated water to make it active water, and pouring the activated water into ponds such as water reservoirs, reservoirs, and treated water ponds. Therefore, the water to be treated is caused to flow from the lower inlet of the ceramic sintered body accommodating container toward the upper outlet,
While passing the water to be treated between the particles of the large number of spherical ceramic sintered bodies, the treated water is treated at a flow rate that allows the water to sufficiently contact the surface of the particles of the large number of spherical ceramic sintered bodies. It is possible to purify the pond water by pouring it, activating the water to be treated into active water, and pouring the activated water into a pond such as a water reservoir, a reservoir, or a treated water pond. Further, according to the present invention, particles of a spherical ceramic sintered body of an ore powder composed of an alkali metal containing silicon and aluminum as main components and / or an oxide containing an alkali metal are stored in a ceramic sintered body storage container. Then, the water to be treated is made to flow from the lower inlet to the upper outlet of the container for accommodating the ceramic sintered body, and the water to be treated is passed through the particles of the spherical ceramic sintered body while being treated. Water to be treated is made to flow at a flow rate that allows water to sufficiently contact the surface of many spherical ceramic sintered particles, and the water to be treated is activated to active water. Since it is a method of purifying water in an aquarium for fish ornamentation using activated water that enables the water in the aquarium for aquarium fish to be purified by pouring it into the water in the aquarium for aquarium fish breeding, etc. Under the storage container The water to be treated is flowed from the inlet to the upper outlet, and while the water to be treated passes through between the particles of many spherical ceramic sintered bodies, the water to be treated is The treated water is made to flow at a flow rate that can sufficiently contact the surface, the treated water is activated to make it active water, and the activated water is made to flow into the water in the aquarium for aquarium fish such as goldfish and tropical fish. Thus, it may allow the purification of water in the ornamental fish tank.

【0006】[0006]

【実施例1】本発明は、珪素とアルミニウムを主成分と
したアルカリ金属および/またはアルカリ金属を含有す
る酸化物からなる鉱石の粉末の球形セラミック焼結体の
粒子を、セラミック焼結体収容用容器に収容し、そのセ
ラミック焼結体収容用容器の下方の入口から流速制御器
を介して上方の出口に向けて被処理水を流し、その被処
理水を多数の球形セラミック焼結体の粒子の間をくぐり
抜けさせながら、被処理水が多数の球形セラミック焼結
体の粒子の表面に十分接触することが可能な流速で被処
理水を流し、その被処理水を活性化させて活性水にし、
その活性水を、ビル、マンションなどの建設施設の既設
給水鉄管内に流して既設給水鉄管内で生じた赤錆によっ
て生じた赤水を排除し得る活性水による赤水の排除方法
である。
Example 1 In the present invention, particles of a spherical ceramic sintered body of an ore powder composed of an alkali metal containing silicon and aluminum as main components and / or an oxide containing an alkali metal are used for accommodating the ceramic sintered body. The water to be treated is made to flow from the lower inlet of the container for holding the ceramic sintered body to the upper outlet through the flow velocity controller, and the water to be treated is made into particles of a large number of spherical ceramic sintered bodies. While passing through the gap, the water to be treated is made to flow at a flow rate that allows the water to sufficiently contact the surfaces of the particles of the spherical ceramic sintered body, and the water to be treated is activated to become active water. ,
This is a method of removing red water by active water that can flow the activated water into an existing water supply pipe of a construction facility such as a building or a condominium to eliminate red water generated by red rust generated in the existing water supply pipe.

【0007】[0007]

【実施例2】本発明は、珪素とアルミニウムを主成分と
したアルカリ金属および/またはアルカリ金属を含有す
る酸化物からなる鉱石の粉末の球形セラミック焼結体の
粒子を、セラミック焼結体収容用容器に収容し、そのセ
ラミック焼結体収容用容器の下方の入口から流速制御器
を介して上方の出口に向けて被処理水を流し、その被処
理水を多数の球形セラミック焼結体の粒子の間をくぐり
抜けさせながら、被処理水が多数の球形セラミック焼結
体の粒子の表面に十分接触することが可能な流速で被処
理水を流し、その被処理水を活性化させて活性水にし、
その活性水を、男子便所に使用して小便器とその小便器
に接続した排尿管などの付属配管に付着した尿結石を溶
解して離脱させ得る活性水による尿結石の排除方法であ
る。
Example 2 The present invention is intended for accommodating particles of a spherical ceramic sintered body of an ore powder consisting of an alkali metal containing silicon and aluminum as main components and / or an oxide containing an alkali metal, in the ceramic sintered body. The water to be treated is made to flow from the lower inlet of the container for holding the ceramic sintered body to the upper outlet through the flow velocity controller, and the water to be treated is made into particles of a large number of spherical ceramic sintered bodies. While passing through the gap, the water to be treated is made to flow at a flow rate that allows the water to sufficiently contact the surfaces of the particles of the spherical ceramic sintered body, and the water to be treated is activated to become active water. ,
This is a method of eliminating urinary stones by using active water that can be used in a men's toilet to dissolve and separate urinary stones attached to urinals and attached pipes such as urinary tracts connected to the urinals.

【0008】[0008]

【実施例3】本発明は、珪素とアルミニウムを主成分と
したアルカリ金属および/またはアルカリ金属を含有す
る酸化物からなる鉱石の粉末の球形セラミック焼結体の
粒子を、セラミック焼結体収容用容器に取容し、そのセ
ラミック焼結体収容用容器の下方の入口から流速制御器
を介して上方の出口に向けて被処理水を流し、その被処
理水を多数の球形セラミック焼結体の粒子の間をくぐり
抜けさせながら、被処理水が多数の球形セラミック焼結
体の粒子の表面に十分接触することが可能な流速で被処
理水を流し、その被処理水を活性化させて活性水にし、
その活性水を、水泳プールに使用して水泳プールの塩素
濃度を維持するため、その水泳プールの循環用給水管の
部分に供給して塩素成分の残留率を高め、水泳プールの
塩素濃度を安定化させ得る活性水による水泳プールの塩
素濃度を安定化する方法である。
Example 3 The present invention is intended for accommodating particles of a spherical ceramic sintered body of an ore powder composed of an alkali metal and / or an oxide containing an alkali metal containing silicon and aluminum as main components, in the ceramic sintered body. Contain it in a container, and let the water to be treated flow from the lower inlet of the container for accommodating the ceramic sintered compact toward the upper outlet through the flow rate controller, While passing through the particles, the treated water is made to flow at a flow rate that allows the treated water to come into contact with the surface of many spherical ceramic sintered body particles sufficiently, and the treated water is activated to activate water. West,
The active water is used in the swimming pool to maintain the chlorine concentration in the swimming pool.In order to maintain the chlorine concentration in the swimming pool by supplying it to the circulation water pipe part of the swimming pool, the residual rate of chlorine components is increased. It is a method of stabilizing the chlorine concentration in a swimming pool by using activated water that can be converted.

【0009】[0009]

【実施例4】本発明は、珪素とアルミニウムを主成分と
したアルカリ金属および/またはアルカリ金属を含有す
る酸化物からなる鉱石の粉末の球形セラミック焼結体の
粒子を、セラミック焼結体収容用容器に収容し、そのセ
ラミック焼結体収容用容器の下方の入口から流速制御器
を介して上方の出口に向けて被処理水を流し、その被処
理水を多数の球形セラミック焼結体の粒子の間をくぐり
抜けさせながら、被処理水が多数の球形セラミック焼結
体の粒子の表面に十分接触することが可能な流速で被処
理水を流し、その被処理水を活性化させて活性水にし、
その活性水を、温泉の給湯管から流入させて、給湯管や
排水管などの配管に付着したスケールを溶解して離脱さ
せ得る活性水による温泉の配管のスケールの排除方法で
ある。
[Embodiment 4] According to the present invention, particles of a spherical ceramic sintered body of an ore powder composed of an alkali metal containing silicon and aluminum as main components and / or an oxide containing an alkali metal are used for accommodating the ceramic sintered body. The water to be treated is made to flow from the lower inlet of the container for holding the ceramic sintered body to the upper outlet through the flow velocity controller, and the water to be treated is made into particles of a large number of spherical ceramic sintered bodies. While passing through the gap, the water to be treated is made to flow at a flow rate that allows the water to sufficiently contact the surfaces of the particles of the spherical ceramic sintered body, and the water to be treated is activated to become active water. ,
This is a method of removing the scale of the hot spring pipe by using the active water that allows the activated water to flow in from the hot water supply pipe of the hot spring to dissolve and separate the scale adhering to the pipes such as the hot water supply pipe and the drain pipe.

【0010】[0010]

【実施例5】本発明は、珪素とアルミニウムを主成分と
したアルカリ金属および/またはアルカリ金属を含有す
る酸化物からなる鉱石の粉末の球形セラミック焼結体の
粒子を、セラミック焼結体収容用容器に収容し、そのセ
ラミック焼結体収容用容器の下方の入口から流速制御装
置を介して適切な流速に制御して被処理水を流入させ
て、上方の出口に向けて被処理水を流し、その被処理水
を多数の球形セラミック焼結体の粒子の間をくぐり抜け
させながら、被処理水が多数の球形セラミック焼結体の
粒子の表面に十分接触することが可能な流速で被処理水
を流し、その被処理水を活性化させて活性水にし、その
活性水を、ボイラ内に流して、ボイラ内の錆を消失させ
得る活性水によるボイラの防錆方法である。
Fifth Embodiment The present invention is intended for accommodating particles of a spherical ceramic sintered body of an ore powder composed of an alkali metal and / or an oxide containing an alkali metal mainly containing silicon and aluminum, for accommodating the ceramic sintered body. It is housed in a container, and the water to be treated is caused to flow in from the lower inlet of the ceramic sintered body accommodating container to an appropriate flow rate through the flow velocity control device, and the water to be treated is directed toward the upper outlet. , The water to be treated has a flow rate that allows the water to be treated to sufficiently contact the surfaces of the particles of the spherical ceramic sintered body while passing through the particles of the spherical ceramic sintered body. Is a method of rust-preventing a boiler using active water that can activate the water to be treated to make it active water, and then make the active water flow into the boiler to eliminate rust in the boiler.

【0011】[0011]

【実施例6】本発明は、珪素とアルミニウムを主成分と
したアルカリ金属および/またはアルカリ金属を含有す
る酸化物からなる鉱石の粉末の球形セラミック焼結体の
粒子を、セラミック焼結体収容用容器に収容し、そのセ
ラミック焼結体収容用容器の下方の入口から流速制御装
置を介して適切な流速に制御して被処理水を流入させ
て、上方の出口に向けて被処理水を流し、その被処理水
を多数の球形セラミック焼結体の粒子の間をくぐり抜け
させながら、被処理水が多数の球形セラミック焼結体の
粒子の表面に十分接触することが可能な流速で被処理水
を流し、その被処理水を活性化させて活性水にし、その
活性水を、用水池、貯水池、処理水用池などの池に流し
て、池水の浄化を可能にした活性水による池水浄化方法
である。
[Embodiment 6] According to the present invention, particles of a spherical ceramic sintered body of an ore powder composed of an alkali metal containing silicon and aluminum as main components and / or an oxide containing an alkali metal are used for accommodating the ceramic sintered body. It is housed in a container, and the water to be treated is caused to flow in from the lower inlet of the ceramic sintered body accommodating container to an appropriate flow rate through the flow velocity control device, and the water to be treated is directed toward the upper outlet. , The water to be treated has a flow rate that allows the water to be treated to sufficiently contact the surfaces of the particles of the spherical ceramic sintered body while passing through the particles of the spherical ceramic sintered body. A method for purifying pond water using activated water that enables purification of pond water by pouring water, activating the treated water to make it active water, and then pouring the activated water into ponds such as reservoirs, reservoirs, and treated water ponds. Is.

【0012】[0012]

【実施例7】本発明は、珪素とアルミニウムを主成分と
したアルカリ金属および/またはアルカリ金属を含有す
る酸化物からなる鉱石の粉末の球形セラミック焼結体の
粒子を、セラミック焼結体収容用容器に収容し、そのセ
ラミック焼結体収容用容器の下方の入口から流速制御装
置を介して上方の出口に向けて被処理水を流し、その被
処理水を多数の球形セラミック焼結体の粒子の間をくぐ
り抜けさせながら、被処理水が多数の球形セラミック焼
結体の粒子の表面に十分接触することが可能な流速で被
処理水を流し、その被処理水を活性化させて活性水に
し、その活性水を、金魚、熱帯魚などの観賞魚飼育用水
槽内の水に流して、観賞魚飼育用水槽内の水の浄化を可
能にした活性水による観賞魚飼育用水槽内の水の浄化方
法である。
[Embodiment 7] In the present invention, particles of a spherical ceramic sintered body of an ore powder consisting of an alkali metal and / or an oxide containing an alkali metal containing silicon and aluminum as the main components are used for accommodating the ceramic sintered body. The water to be treated is stored in a container, and the water to be treated is caused to flow from the lower inlet of the container for accommodating the ceramic sintered compact toward the upper outlet through the flow velocity control device, and the water to be treated is formed into particles of a large number of spherical ceramic sintered bodies. While passing through the gap, the water to be treated is made to flow at a flow rate that allows the water to sufficiently contact the surfaces of the particles of the spherical ceramic sintered body, and the water to be treated is activated to become active water. , Purified water in the aquarium for aquarium fish with active water, which made it possible to purify the water in the aquarium for aquarium fish breeding by pouring the activated water into the water in the aquarium for aquarium fish breeding such as goldfish and tropical fish Is the way.

【0013】[0013]

【効果】本発明は、珪素とアルミニウムを主成分とした
アルカリ金属および/またはアルカリ金属を含有する酸
化物からなる鉱石の粉末の球形セラミック焼結体の粒子
を、セラミック焼結体収容用容器に収容し、そのセラミ
ック焼結体収容用容器の下方の入口から上方の出口に向
けて被処理水を流し、その被処理水を多数の球形セラミ
ック焼結体の粒子の間をくぐり抜けさせながら、被処理
水が多数の球形セラミック焼結体の粒子の表面に十分接
触することが可能な流速で被処理水を流し、その被処理
水を活性化させ得る活性水の生成方法であるから、被処
理水を多数の球形セラミック焼結体の粒子の間をくぐり
抜けさせながら、被処理水が多数の球形セラミック焼結
体の粒子の表面に十分接触することが可能な流速で被処
理水を流し、その被処理水を活性化させ得る効果があ
る。また、本発明は、珪素とアルミニウムを主成分とし
たアルカリ金属および/またはアルカリ金属を含有する
酸化物からなる鉱石の粉末の球形セラミック焼結体の粒
子を、セラミック焼結体収容用容器に収容し、そのセラ
ミック焼結体収容用容器の下方の入口から上方の出口に
向けて被処理水を流し、その被処理水を多数の球形セラ
ミック焼結体の粒子の間をくぐり抜けさせながら、被処
理水が多数の球形セラミック焼結体の粒子の表面に十分
接触することが可能な流速で被処理水を流し、その被処
理水を活性化させて活性水にし、その活性水を、ビル、
マンションなどの建設施設の既設給水鉄管内に流して既
設給水鉄管内で生じた赤錆によって生じた赤水を排除し
得る活性水による赤水の排除方法であるから、セラミッ
ク焼結体収容用容器の下方の入口から上方の出口に向け
て被処理水を流し、その被処理水を多数の球形セラミッ
ク焼結体の粒子の間をくぐり抜けさせながら、被処理水
が多数の球形セラミック焼結体の粒子の表面に十分接触
することが可能な流速で被処理水を流し、その被処理水
を活性化させて活性水にし、その活性水を、ビル、マン
ションなどの建設施設の既設給水鉄管内に流して既設給
水鉄管内で生じた赤錆によって生じた赤水を排除し得る
効果がある。また、本発明は、珪素とアルミニウムを主
成分としたアルカリ金属および/またはアルカリ金属を
含有する酸化物からなる鉱石の粉末の球形セラミック焼
結体の粒子を、セラミック焼結体収容用容器に収容し、
そのセラミック焼結体収容用容器の下方の入口から上方
の出口に向けて被処理水を流し、その被処理水を多数の
球形セラミック焼結体の粒子の間をくぐり抜けさせなが
ら、被処理水が多数の球形セラミック焼結体の粒子の表
面に十分接触することが可能な流速で被処理水を流し、
その被処理水を活性化させて活性水にし、その活性水
を、男子便所に使用して小便器とその小便器に接続した
排尿管などの付属配管に付着した尿結石を溶解して離脱
させ得る活性水による尿結石の排除方法であるから、セ
ラミック焼結体収容用容器の下方の入口から上方の出口
に向けて被処理水を流し、その被処理水を多数の球形セ
ラミック焼結体の粒子の間をくぐり抜けさせながら、被
処理水が多数の球形セラミック焼結体の粒子の表面に十
分接触することが可能な流速で被処理水を流し、その被
処理水を活性化させて活性水にし、その活性水を、男子
便所に使用して小便器とその小便器に接続した排尿管な
どの付属配管に付着した尿結石を溶解して離脱させ得る
効果がある。また、本発明は、珪素とアルミニウムを主
成分としたアルカリ金属および/またはアルカリ金属を
含有する酸化物からなる鉱石の粉末の球形セラミック焼
結体の粒子を、セラミック焼結体収容用容器に収容し、
そのセラミック焼結体収容用容器の下方の入口から上方
の出口に向けて被処理水を流し、その被処理水を多数の
球形セラミック焼結体の粒子の間をくぐり抜けさせなが
ら、被処理水が多数の球形セラミック焼結体の粒子の表
面に十分接触することが可能な流速で被処理水を流し、
その被処理水を活性化させて活性水にし、その活性水
を、水泳プールに使用して水泳プールの塩素濃度を維持
するため、その水泳プールの循環用給水管の部分に供給
して塩素成分の残留率を高め、水泳プールの塩素濃度を
安定化させ得る活性水による水泳プールの塩素濃度を安
定化する方法であるから、セラミック焼結体収容用容器
の下方の入口から上方の出口に向けて被処理水を流し、
その被処理水を多数の球形セラミック焼結体の粒子の間
をくぐり抜けさせながら、被処理水が多数の球形セラミ
ック焼結体の粒子の表面に十分接触することが可能な流
速で被処理水を流し、その被処理水を活性化させて活性
水にし、その活性水を、水泳プールに使用して水泳プー
ルの塩素濃度を維持するため、その水泳プールの循環用
給水管の部分に供給して塩素成分の残留率を高め、水泳
プールの塩素濃度を安定化させ得る効果がある。また、
本発明は、珪素とアルミニウムを主成分としたアルカリ
金属および/またはアルカリ金属を含有する酸化物から
なる鉱石の粉末の球形セラミック焼結体の粒子を、セラ
ミック焼結体収容用容器に収容し、そのセラミック焼結
体収容用容器の下方の入口から上方の出口に向けて被処
理水を流し、その被処理水を多数の球形セラミック焼結
体の粒子の間をくぐり抜けさせながら、被処理水が多数
の球形セラミック焼結体の粒子の表面に十分接触するこ
とが可能な流速で被処理水を流し、その被処理水を活性
化させて活性水にし、その活性水を、温泉の給湯管から
流入させて、給湯管や排水管などの配管に付着したスケ
ールを溶解して離脱させ得る活性水による温泉の配管の
スケールの排除方法であるから、セラミック焼結体収容
用容器の下方の入口から上方の出口に向けて被処理水を
流し、その被処理水を多数の球形セラミック焼結体の粒
子の間をくぐり抜けさせながら、被処理水が多数の球形
セラミック焼結体の粒子の表面に十分接触することが可
能な流速で被処理水を流し、その被処理水を活性化させ
て活性水にし、その活性水を温泉の給湯管から流入させ
て、給湯管や排水管などの配管に付着したスケールを溶
解して離脱させ得る効果がある。また、本発明は、珪素
とアルミニウムを主成分としたアルカリ金属および/ま
たはアルカリ金属を含有する酸化物からなる鉱石の粉末
の球形セラミック焼結体の粒子を、セラミック焼結体収
容用容器に収容し、そのセラミック焼結体収容用容器の
下方の入口から上方の出口に向けて被処理水を流し、そ
の被処理水を多数の球形セラミック焼結体の粒子の間を
くぐり抜けさせながら、被処理水が多数の球形セラミッ
ク焼結体の粒子の表面に十分接触することが可能な流速
で被処理水を流し、その被処理水を活性化させて活性水
にし、その活性水を、ボイラ内に流して、ボイラ内の錆
を消失させ得る活性水によるボイラの防錆方法であるか
ら、セラミック焼結体収容用容器に収容し、そのセラミ
ック焼結体収容用容器の下方の入口から上方の出口に向
けて被処理水を流し、その被処理水を多数の球形セラミ
ック焼結体の粒子の間をくぐり抜けさせながら、被処理
水が多数の球形セラミック焼結体の粒子の表面に十分接
触することが可能な流速で被処理水を流し、その被処理
水を活性化させて活性水にし、その活性水を、ボイラ内
に流して、ボイラ内の錆を消失させ得る効果がある。ま
た、本発明は、珪素とアルミニウムを主成分としたアル
カリ金属および/またはアルカリ金属を含有する酸化物
からなる鉱石の粉末の球形セラミック焼結体の粒子を、
セラミック焼結体収容用容器に収容し、そのセラミック
焼結体収容用容器の下方の入口から上方の出口に向けて
被処理水を流し、その被処理水を多数の球形セラミック
焼結体の粒子の間をくぐり抜けさせながら、被処理水が
多数の球形セラミック焼結体の粒子の表面に十分接触す
ることが可能な流速で被処理水を流し、その被処理水を
活性化させて活性水にし、その活性水を、用水池、貯水
池、処理水用池などの池に流して、池水の浄化を可能に
した活性水による池水浄化方法であるから、セラミック
焼結体収容用容器の下方の入口から上方の出口に向けて
被処理水を流し、その被処理水を多数の球形セラミック
焼結体の粒子の間をくぐり抜けさせながら、被処理水が
多数の球形セラミック焼結体の粒子の表面に十分接触す
ることが可能な流速で被処理水を流し、その被処理水を
活性化させて活性水にし、その活性水を、用水池、貯水
池、処理水用池などの池に流して、池水の浄化を可能に
し得る効果がある。また、本発明は、珪素とアルミニウ
ムを主成分としたアルカリ金属および/またはアルカリ
金属を含有する酸化物からなる鉱石の粉末の球形セラミ
ック焼結体の粒子を、セラミック焼結体収容用容器に収
容し、そのセラミック焼結体収容用容器の下方の入口か
ら上方の出口に向けて被処理水を流し、その被処理水を
多数の球形セラミック焼結体の粒子の間をくぐり抜けさ
せながら、被処理水が多数の球形セラミック焼結体の粒
子の表面に十分接触することが可能な流速で被処理水を
流し、その被処理水を活性化させて活性水にし、その活
性水を、金魚、熱帯魚などの観賞魚飼育用水槽内の水に
流して、観賞魚飼育用水槽内の水の浄化を可能にした活
性水による観賞魚飼育用水槽内の水の浄化方法であるか
ら、セラミック焼結体収容用容器の下方の入口から上方
の出口に向けて被処理水を流し、その被処理水を多数の
球形セラミック焼結体の粒子の間をくぐり抜けさせなが
ら、被処理水が多数の球形セラミック焼結体の粒子の表
面に十分接触することが可能な流速で被処理水を流し、
その被処理水を活性化させて活性水にし、その活性水
を、金魚、熱帯魚などの観賞魚飼育用水槽内の水に流し
て観賞魚飼育用水槽内の水の浄化を可能にし得る効果が
ある。
[Effects] The present invention is a container for accommodating a ceramic sintered body containing particles of a spherical ceramic sintered body, which is a powder of an ore composed of an alkali metal and / or an oxide containing an alkali metal mainly containing silicon and aluminum. The water to be treated is caused to flow from the lower inlet of the ceramic sintered body accommodating container toward the upper outlet thereof, and the water to be treated is passed through between a number of spherical ceramic sintered body particles, Since the treated water is a method of generating activated water that allows the treated water to be activated by flowing the treated water at a flow rate that allows the treated water to sufficiently contact the surface of many spherical ceramic sintered body particles. While letting water pass between the particles of the large number of spherical ceramic sintered bodies, the water to be treated is made to flow at a flow rate that allows the water to sufficiently contact the surface of the particles of the large number of spherical ceramic sintered bodies. There are effects that may activate the process water. Further, according to the present invention, particles of a spherical ceramic sintered body of an ore powder composed of an alkali metal containing silicon and aluminum as main components and / or an oxide containing an alkali metal are stored in a ceramic sintered body storage container. Then, the water to be treated is made to flow from the lower inlet to the upper outlet of the container for accommodating the ceramic sintered body, and the water to be treated is passed through the particles of the spherical ceramic sintered body while being treated. The water to be treated is made to flow at a flow rate that allows water to sufficiently contact the surfaces of a large number of spherical ceramic sintered body particles, and the water to be treated is activated into active water.
Since it is a method of removing red water by active water that can be discharged into the existing water supply pipe of an existing construction water supply pipe such as a condominium to remove the red water generated by the red rust generated in the existing water supply pipe, The water to be treated flows from the inlet to the outlet above, and while the water to be treated passes through between the particles of the spherical ceramic sintered body, the surface of the particle of the spherical ceramic sintered body is treated. Water to be treated at a flow rate that allows sufficient contact with the water, activates the water to be activated and makes it active water, and then flows the activated water into the existing water supply pipes of construction facilities such as buildings and condominiums. This has the effect of eliminating the red water generated by the red rust generated in the water supply iron pipe. Further, according to the present invention, particles of a spherical ceramic sintered body of an ore powder composed of an alkali metal containing silicon and aluminum as main components and / or an oxide containing an alkali metal are stored in a ceramic sintered body storage container. Then
The water to be treated is made to flow from the lower inlet of the container for accommodating the ceramic sintered body toward the upper outlet, and the water to be treated is passed through the particles of the spherical ceramic sintered body while passing through the water to be treated. Flowing the water to be treated at a flow rate that allows sufficient contact with the surfaces of the particles of a large number of spherical ceramic sintered bodies,
The water to be treated is activated to make it active water, and the active water is used in a men's toilet to dissolve and separate urine stones adhering to urinals and attached pipes such as a urinal pipe connected to the urinals. Since it is a method of eliminating urinary stones by the activated water obtained, the treated water is made to flow from the lower inlet of the ceramic sintered body accommodating container toward the upper outlet, and the treated water is treated as a large number of spherical ceramic sintered bodies. While passing through the particles, the treated water is made to flow at a flow rate that allows the treated water to come into contact with the surface of many spherical ceramic sintered body particles sufficiently, and the treated water is activated to activate water. The active water has an effect of dissolving the urinary stones attached to the urinal and attached pipes such as the urinary tract connected to the urinal by using the activated water to remove the urine. Further, according to the present invention, particles of a spherical ceramic sintered body of an ore powder composed of an alkali metal containing silicon and aluminum as main components and / or an oxide containing an alkali metal are stored in a ceramic sintered body storage container. Then
The water to be treated is made to flow from the lower inlet of the container for accommodating the ceramic sintered body toward the upper outlet, and the water to be treated is passed through the particles of the spherical ceramic sintered body while passing through the water to be treated. Flowing the water to be treated at a flow rate that allows sufficient contact with the surfaces of the particles of a large number of spherical ceramic sintered bodies,
The water to be treated is activated to make it active water, and the active water is used in the swimming pool to maintain the chlorine concentration in the swimming pool. It is a method of stabilizing the chlorine concentration in the swimming pool with active water that can stabilize the chlorine concentration in the swimming pool. Flow the water to be treated,
While passing the water to be treated between the particles of the large number of spherical ceramic sintered bodies, the treated water is treated at a flow rate that allows the water to sufficiently contact the surface of the particles of the large number of spherical ceramic sintered bodies. The water to be treated is activated and turned into activated water, and the activated water is supplied to the part of the circulation water supply pipe of the swimming pool for use in the swimming pool to maintain the chlorine concentration of the swimming pool. It has the effect of increasing the residual rate of chlorine components and stabilizing the chlorine concentration in the swimming pool. Also,
The present invention stores particles of a spherical ceramic sintered body of an ore powder consisting of an alkali metal containing silicon and aluminum as main components and / or an oxide containing an alkali metal in a ceramic sintered body storage container, The water to be treated is made to flow from the lower inlet of the container for accommodating the ceramic sintered body toward the upper outlet, and the water to be treated is passed through the particles of the spherical ceramic sintered body while passing through the water to be treated. The water to be treated is made to flow at a flow rate that allows sufficient contact with the surface of many spherical ceramic sintered particles, and the water to be treated is activated into active water, which is then fed from the hot water supply pipe of the hot spring. This is a method of removing the scale of the hot spring pipe by activated water that can dissolve and remove the scale adhering to the pipe such as the hot water supply pipe and drainage pipe by inflowing it. The water to be treated toward the upper outlet from the above, passing through the particles of the spherical ceramic sintered body through the water to be treated, while the water to be treated is on the surface of the particles of the spherical ceramic sintered body. Flow the treated water at a flow rate that allows sufficient contact, activate the treated water to make it active water, and let the activated water flow from the hot water supply pipes into hot water supply pipes and drain pipes. It has the effect of dissolving and removing the adhered scale. Further, according to the present invention, particles of a spherical ceramic sintered body of an ore powder composed of an alkali metal containing silicon and aluminum as main components and / or an oxide containing an alkali metal are stored in a ceramic sintered body storage container. Then, the water to be treated is made to flow from the lower inlet to the upper outlet of the container for accommodating the ceramic sintered body, and the water to be treated is passed through the particles of the spherical ceramic sintered body while being treated. The water to be treated is made to flow at such a flow rate that water can sufficiently contact the surfaces of the particles of the spherical ceramic sintered body, and the water to be treated is activated into active water. Since it is a method of rust prevention of the boiler by flowing the activated water that can eliminate the rust in the boiler, it is housed in the ceramic sintered body storage container, and the ceramic sintered body storage container is placed from the lower inlet to the upper outlet. It is possible that the water to be treated is sufficiently contacted with the surface of the particles of the spherical ceramic sintered body while letting the water to be treated flow through the particles of the spherical ceramic sintered body. There is an effect that the treated water is made to flow at a possible flow rate, the treated water is activated to be activated water, and the activated water is caused to flow in the boiler to eliminate rust in the boiler. Further, the present invention provides particles of a spherical ceramic sintered body of an ore powder made of an alkali metal containing silicon and aluminum as main components and / or an oxide containing an alkali metal,
It is housed in a container for storing a ceramic sintered body, and water to be treated is made to flow from the lower inlet to the upper outlet of the container for storing a ceramic sintered body, and the water to be treated is a large number of spherical ceramic sintered body particles. While passing through the gap, the water to be treated is made to flow at a flow rate that allows the water to sufficiently contact the surfaces of the particles of the spherical ceramic sintered body, and the water to be treated is activated to become active water. Since the activated water is a method for purifying pond water by pouring it into a pond such as a water reservoir, a reservoir, or a treated water pond, the inlet below the ceramic sintered body storage container The water to be treated toward the upper outlet from the above, passing through the particles of the spherical ceramic sintered body through the water to be treated, while the water to be treated is on the surface of the particles of the spherical ceramic sintered body. Flow that can make sufficient contact Is used to activate the treated water to make it active water, and then the activated water is made to flow to ponds such as water reservoirs, reservoirs, and treated water ponds, making it possible to purify the pond water. is there. Further, according to the present invention, particles of a spherical ceramic sintered body of an ore powder composed of an alkali metal containing silicon and aluminum as main components and / or an oxide containing an alkali metal are stored in a ceramic sintered body storage container. Then, the water to be treated is caused to flow from the lower inlet to the upper outlet of the ceramic sintered body accommodating container, and the water to be treated is passed through a large number of spherical ceramic sintered body particles to be treated. The water to be treated is made to flow at a flow rate that allows water to sufficiently contact the surfaces of many spherical ceramic sintered body particles, and the water to be treated is activated into active water. Since it is a method of purifying water in the aquarium for aquarium fish with activated water, it can be purified by pouring it into the water in the aquarium for aquarium fish. Under the storage container The water to be treated flows from the inlet to the upper outlet, and the water to be treated passes through between the particles of the spherical ceramic sintered body, while Flow the water to be treated at a flow rate that allows sufficient contact with the surface,
There is an effect that the water to be treated is activated to be activated water, and the activated water can be poured into the water in the aquarium for aquarium fish breeding such as goldfish and tropical fish to purify the water in the aquarium for aquarium fish breeding. is there.

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

【図1】本発明の被処理水を活性化させ得る活性水の生
成方法に使用する球形セラミック焼結体の粒子を収容し
たセラミック焼結体収容用容器の縦断面図である。
FIG. 1 is a vertical cross-sectional view of a container for accommodating a ceramic sintered body, which contains particles of a spherical ceramic sintered body used in a method for producing activated water capable of activating treated water according to the present invention.

【符号の説明】[Explanation of symbols]

1 セラミック焼結体収容用容器 2 セラミック焼結体収容用容器の下方の入口 3 セラミック焼結体収容用容器の上方の出口 4 球形セラミック焼結体の粒子 5 セラミック焼結体収容用容器の上方の出口の下側の
上部仕切り網状体 6 セラミック焼結体収容用容器の下方の入口の上側の
下部仕切り網状体
1 Ceramic Sintered Body Storage Container 2 Lower Entrance of Ceramic Sintered Body Storage Container 3 Upper Exit of Ceramic Sintered Body Storage Container 4 Particles of Spherical Ceramic Sintered Body 5 Upper Side of Ceramic Sintered Body Storage Container Upper partition netting on the lower side of the outlet of the ceramics 6 Lower partition netting on the upper side of the lower inlet of the container for holding the ceramic sintered body

───────────────────────────────────────────────────── フロントページの続き (51)Int.Cl.6 識別記号 庁内整理番号 FI 技術表示箇所 E03D 13/00 F22B 37/48 (54)【発明の名称】 活性水の生成方法と活性水による赤水の排除方法と活性 水による尿結石の排除方法と活性水に よる水泳プールの 塩素濃度を安定化する方法と活性水による温泉の配管の スケールの排除方 法と活性水によるボイラの防錆方法と 活性水による池水浄化方法と活性水による観賞魚飼育用 水槽内の水の浄化方法─────────────────────────────────────────────────── ─── Continuation of the front page (51) Int.Cl. 6 Identification number Office reference number FI Technical indication location E03D 13/00 F22B 37/48 (54) [Title of invention] Activated water generation method and activated water Exclusion method of red water, elimination of urinary stones by activated water, stabilization of chlorine concentration in swimming pool by activated water, elimination of scale of hot spring piping by activated water, and prevention of boiler rust by activated water Method for Purifying Pond Water with Active Water and Purifying Method for Water in Ornamental Fish Tank with Active Water

Claims (8)

【特許請求の範囲】[Claims] 【請求項1】珪素とアルミニウムを主成分としたアルカ
リ金属および/またはアルカリ金属を含有する酸化物か
らなる鉱石の粉末の球形セラミック焼結体の粒子を、セ
ラミック焼結体収容用容器に収容し、そのセラミック焼
結体収容用容器の下方の入口から上方の出口に向けて被
処理水を流し、その被処理水を多数の球形セラミック焼
結体の粒子の間をくぐり抜けさせながら、被処理水が多
数の球形セラミック焼結体の粒子の表面に十分接触する
ことが可能な流速で被処理水を流し、その被処理水を活
性化させ得る活性水の生成方法。
1. Particles of a spherical ceramic sintered body of an ore powder composed of an alkali metal containing silicon and aluminum as main components and / or an oxide containing an alkali metal are stored in a ceramic sintered body storage container. , The water to be treated is caused to flow from the lower inlet of the container for accommodating the ceramic sintered body toward the upper outlet, and the water to be treated is passed through the particles of the spherical ceramic sintered body while passing through the water to be treated. A method of generating activated water, which allows activated water to flow through the treated water at a flow rate that allows sufficient contact with the surface of many spherical ceramic sintered body particles.
【請求項2】珪素とアルミニウムを主成分としたアルカ
リ金属および/またはアルカリ金属を含有する酸化物か
らなる鉱石の粉末の球形セラミック焼結体の粒子を、セ
ラミック焼結体収容用容器に収容し、そのセラミック焼
結体収容用容器の下方の入口から上方の出口に向けて被
処理水を流し、その被処理水を多数の球形セラミック焼
結体の粒子の間をくぐり抜けさせながら、被処理水が多
数の球形セラミック焼結体の粒子の表面に十分接触する
ことが可能な流速で被処理水を流し、その被処理水を活
性化させて活性水にし、その活性水を、ビル、マンショ
ンなどの建設施設の既設給水鉄管内に流して既設給水鉄
管内で生じた赤錆によって生じた赤水を排除し得る請求
項1記載の活性水による赤水の排除方法。
2. Particles of a spherical ceramic sintered body of an ore powder made of an alkali metal containing silicon and aluminum as main components and / or an oxide containing an alkali metal are housed in a ceramic sintered body housing container. , The water to be treated is caused to flow from the lower inlet of the container for accommodating the ceramic sintered body toward the upper outlet, and the water to be treated is passed through the particles of the spherical ceramic sintered body while passing through the water to be treated. Water flows at a flow rate that allows the particles to sufficiently contact the surface of a large number of spherical ceramic sintered body particles, activates the water to be processed and makes it active water, and the active water is converted into buildings, condominiums, etc. 2. The method for removing red water by active water according to claim 1, wherein the red water generated by the red rust generated in the existing water supply iron pipe can be removed by flowing it into the existing water supply iron pipe of the construction facility.
【請求項3】珪素とアルミニウムを主成分としたアルカ
リ金属および/またはアルカリ金属を含有する酸化物か
らなる鉱石の粉末の球形セラミック焼結体の粒子を、セ
ラミック焼結体収容用容器に収容し、そのセラミック焼
結体収容用容器の下方の入口から上方の出口に向けて被
処理水を流し、その被処理水を多数の球形セラミック焼
結体の粒子の間をくぐり抜けさせながら、被処理水が多
数の球形セラミック焼結体の粒子の表面に十分接触する
ことが可能な流速で被処理水を流し、その被処理水を活
性化させて活性水にし、その活性水を、男子便所に使用
して小便器とその小便器に接続した排尿管などの付属配
管に付着した尿結石を溶解して離脱させ得る請求項1記
載の活性水による尿結石の排除方法。
3. Particles of a spherical ceramic sintered body of an ore powder composed of an alkali metal containing silicon and aluminum as main components and / or an oxide containing an alkali metal are housed in a ceramic sintered body housing container. , The water to be treated is caused to flow from the lower inlet of the container for accommodating the ceramic sintered body toward the upper outlet, and the water to be treated is passed through the particles of the spherical ceramic sintered body while passing through the water to be treated. The treated water at a flow rate that allows it to sufficiently contact the surface of many spherical ceramic sintered body particles, activates the treated water to make it active water, and uses the activated water for the men's toilet. 2. The method for removing urinary stones with active water according to claim 1, wherein the urinary stones attached to the urinals and attached pipes such as a urinal pipe connected to the urinals can be dissolved and removed.
【請求項4】珪素とアルミニウムを主成分としたアルカ
リ金属および/またはアルカリ金属を含有する酸化物か
らなる鉱石の粉末の球形セラミック焼結体の粒子を、セ
ラミック焼結体収容用容器に収容し、そのセラミック焼
結体収容用容器の下方の入口から上方の出口に向けて被
処理水を流し、その被処理水を多数の球形セラミック焼
結体の粒子の間をくぐり抜けさせながら、被処理水が多
数の球形セラミック焼結体の粒子の表面に十分接触する
ことが可能な流速で被処理水を流し、その被処理水を活
性化させて活性水にし、その活性水を、水泳プールに使
用して水泳プールの塩素濃度を維持するため、その水泳
プールの循環用給水管の部分に供給して塩素成分の残留
率を高め、水泳プールの塩素濃度を安定化させ得る請求
項1記載の活性水による水泳プールの塩素濃度を安定化
する方法。
4. Particles of a spherical ceramic sintered body of an ore powder made of an alkali metal containing silicon and aluminum as main components and / or an oxide containing an alkali metal are housed in a ceramic sintered body housing container. , The water to be treated is caused to flow from the lower inlet of the container for accommodating the ceramic sintered body toward the upper outlet, and the water to be treated is passed through the particles of the spherical ceramic sintered body while passing through the water to be treated. The treated water is made to flow at a flow rate that allows sufficient contact with the surface of many spherical ceramic sintered body particles to activate the treated water into active water, which is then used in a swimming pool. In order to maintain the chlorine concentration of the swimming pool by supplying it to the portion of the water supply pipe for circulation of the swimming pool, the residual ratio of chlorine components can be increased and the chlorine concentration of the swimming pool can be stabilized. water Method of stabilizing the concentration of chlorine in swimming pools due.
【請求項5】珪素とアルミニウムを主成分としたアルカ
リ金属および/またはアルカリ金属を含有する酸化物か
らなる鉱石の粉末の球形セラミック焼結体の粒子を、セ
ラミック焼結体収容用容器に収容し、そのセラミック焼
結体収容用容器の下方の入口から上方の出口に向けて被
処理水を流し、その被処理水を多数の球形セラミック焼
結体の粒子の間をくぐり抜けさせながら、被処理水が多
数の球形セラミック焼結体の粒子の表面に十分接触する
ことが可能な流速で被処理水を流し、その被処理水を活
性化させて活性水にし、その活性水を、温泉の給湯管か
ら流入させて、給湯管や排水管などの配管に付着したス
ケールを溶解して離脱させ得る請求項1記載の活性水に
よる温泉の配管のスケールの排除方法。
5. Particles of a spherical ceramic sintered body of ore powder composed of an alkali metal containing silicon and aluminum as main components and / or an oxide containing an alkali metal are housed in a ceramic sintered body housing container. , The water to be treated is caused to flow from the lower inlet of the container for accommodating the ceramic sintered body toward the upper outlet, and the water to be treated is passed through the particles of the spherical ceramic sintered body while passing through the water to be treated. The treated water is made to flow at such a flow rate that it can sufficiently contact the surface of many spherical ceramic sintered particles, and the treated water is activated to become activated water, and the activated water is used as a hot water supply pipe for hot springs. 2. The method for removing scales of hot spring pipes according to claim 1, wherein the scale adhering to the pipes such as hot water supply pipes and drainage pipes can be melted and released from the hot water pipes.
【請求項6】珪素とアルミニウムを主成分としたアルカ
リ金属および/またはアルカリ金属を含有する酸化物か
らなる鉱石の粉末の球形セラミック焼結体の粒子を、セ
ラミック焼結体収容用容器に収容し、そのセラミック焼
結体収容用容器の下方の入口から上方の出口に向けて被
処理水を流し、その被処理水を多数の球形セラミック焼
結体の粒子の間をくぐり抜けさせながら、被処理水が多
数の球形セラミック焼結体の粒子の表面に十分接触する
ことが可能な流速で被処理水を流し、その被処理水を活
性化させて活性水にし、その活性水を、ボイラ内に流し
て、ボイラ内の錆を消失させ得る請求項1記載の活性水
によるボイラの防錆方法。
6. Particles of a spherical ceramic sintered body of an ore powder composed of an alkali metal containing silicon and aluminum as main components and / or an oxide containing an alkali metal are housed in a ceramic sintered body housing container. , The water to be treated is caused to flow from the lower inlet of the container for accommodating the ceramic sintered body toward the upper outlet, and the water to be treated is passed through the particles of the spherical ceramic sintered body while passing through the water to be treated. To be treated is made to flow to the surface of the particles of a large number of spherical ceramic sintered bodies at a flow rate that is sufficient to activate the treated water to make it active water, and the activated water is made to flow into the boiler. The method of claim 1, wherein the rust in the boiler can be eliminated by the activated water.
【請求項7】珪素とアルミニウムを主成分としたアルカ
リ金属および/またはアルカリ金属を含有する酸化物か
らなる鉱石の粉末の球形セラミック焼結体の粒子を、セ
ラミック焼結体収容用容器に収容し、そのセラミック焼
結体収容用容器の下方の入口から上方の出口に向けて被
処理水を流し、その被処理水を多数の球形セラミック焼
結体の粒子の間をくぐり抜けさせながら、被処理水が多
数の球形セラミック焼結体の粒子の表面に十分接触する
ことが可能な流速で被処理水を流し、その被処理水を活
性化させて活性水にし、その活性水を、用水池、貯水
池、処理水用池などの池に流して、池水の浄化を可能に
した請求項1記載の活性水による池水浄化方法。
7. Particles of a spherical ceramic sintered body of an ore powder made of an alkali metal containing silicon and aluminum as main components and / or an oxide containing an alkali metal are housed in a ceramic sintered body housing container. , The water to be treated is caused to flow from the lower inlet of the container for accommodating the ceramic sintered body toward the upper outlet, and the water to be treated is passed through the particles of the spherical ceramic sintered body while passing through the water to be treated. Water flows at a flow rate that allows the particles to make sufficient contact with the surface of many spherical ceramic sintered body particles, activates the water to be treated and makes it active water, and the activated water is used as a water reservoir or reservoir. The method for purifying pond water using activated water according to claim 1, wherein the pond water can be purified by pouring it into a pond such as a treated water pond.
【請求項8】珪素とアルミニウムを主成分としたアルカ
リ金属および/またはアルカリ金属を含有する酸化物か
らなる鉱石の粉末の球形セラミック焼結体の粒子を、セ
ラミック焼結体収容用容器に収容し、そのセラミック焼
結体収容用容器の下方の入口から上方の出口に向けて被
処理水を流し、その被処理水を多数の球形セラミック焼
結体の粒子の間をくぐり抜けさせながら、被処理水が多
数の球形セラミック焼結体の粒子の表面に十分接触する
ことが可能な流速で被処理水を流し、その被処理水を活
性化させて活性水にし、その活性水を、金魚、熱帯魚な
どの観賞魚飼育用水槽内の水に流して、観賞魚飼育用水
槽内の水の浄化を可能にした請求項1記載の活性水によ
る観賞魚飼育用水槽内の水の浄化方法。
8. Particles of a spherical ceramic sintered body of an ore powder made of an alkali metal containing silicon and aluminum as main components and / or an oxide containing an alkali metal are stored in a ceramic sintered body storage container. , The water to be treated is caused to flow from the lower inlet of the container for accommodating the ceramic sintered body toward the upper outlet, and the water to be treated is passed through the particles of the spherical ceramic sintered body while passing through the water to be treated. Water flows at a flow rate that allows the particles to make sufficient contact with the surface of many spherical ceramic sintered body particles, activates the water to be treated and makes it active water, and the active water is used as goldfish, tropical fish, etc. 2. The method for purifying water in an ornamental fish tank according to claim 1, wherein the purified water in the ornamental fish tank is poured into water in the ornamental fish tank to purify the water in the ornamental fish tank.
JP3581095A 1995-01-17 1995-01-17 Methods for producing active water, for removing red water by active water, for removing urolith by active water, for stabilizing chlorine concentration in swimming pool by active water, for removing scale in hot spring piping, for rust prevention in boiler, for purifying pond water, and for purifying water in vessel for aquarium fish Pending JPH08192139A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP3581095A JPH08192139A (en) 1995-01-17 1995-01-17 Methods for producing active water, for removing red water by active water, for removing urolith by active water, for stabilizing chlorine concentration in swimming pool by active water, for removing scale in hot spring piping, for rust prevention in boiler, for purifying pond water, and for purifying water in vessel for aquarium fish

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP3581095A JPH08192139A (en) 1995-01-17 1995-01-17 Methods for producing active water, for removing red water by active water, for removing urolith by active water, for stabilizing chlorine concentration in swimming pool by active water, for removing scale in hot spring piping, for rust prevention in boiler, for purifying pond water, and for purifying water in vessel for aquarium fish

Publications (1)

Publication Number Publication Date
JPH08192139A true JPH08192139A (en) 1996-07-30

Family

ID=12452294

Family Applications (1)

Application Number Title Priority Date Filing Date
JP3581095A Pending JPH08192139A (en) 1995-01-17 1995-01-17 Methods for producing active water, for removing red water by active water, for removing urolith by active water, for stabilizing chlorine concentration in swimming pool by active water, for removing scale in hot spring piping, for rust prevention in boiler, for purifying pond water, and for purifying water in vessel for aquarium fish

Country Status (1)

Country Link
JP (1) JPH08192139A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN100336747C (en) * 2003-09-24 2007-09-12 张建平 Small molecule water and its prepn process and preparing activator
CN105254013A (en) * 2015-11-20 2016-01-20 江苏合一水业有限公司 Sewage treatment tank

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN100336747C (en) * 2003-09-24 2007-09-12 张建平 Small molecule water and its prepn process and preparing activator
CN105254013A (en) * 2015-11-20 2016-01-20 江苏合一水业有限公司 Sewage treatment tank

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