JPS5919582A - Liquid refining system by magnetic resonance - Google Patents

Liquid refining system by magnetic resonance

Info

Publication number
JPS5919582A
JPS5919582A JP12497582A JP12497582A JPS5919582A JP S5919582 A JPS5919582 A JP S5919582A JP 12497582 A JP12497582 A JP 12497582A JP 12497582 A JP12497582 A JP 12497582A JP S5919582 A JPS5919582 A JP S5919582A
Authority
JP
Japan
Prior art keywords
magnetic resonance
liquid
particles
water
purification system
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
JP12497582A
Other languages
Japanese (ja)
Inventor
マルコス・ピネル・ヒメネス
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.)
Individual
Original Assignee
Individual
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 Individual filed Critical Individual
Publication of JPS5919582A publication Critical patent/JPS5919582A/en
Pending legal-status Critical Current

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Classifications

    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/48Treatment of water, waste water, or sewage with magnetic or electric fields
    • C02F1/488Treatment of water, waste water, or sewage with magnetic or electric fields for separation of magnetic materials, e.g. magnetic flocculation
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/48Treatment of water, waste water, or sewage with magnetic or electric fields

Landscapes

  • Chemical & Material Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Hydrology & Water Resources (AREA)
  • Engineering & Computer Science (AREA)
  • Environmental & Geological Engineering (AREA)
  • Water Supply & Treatment (AREA)
  • Organic Chemistry (AREA)
  • Analytical Chemistry (AREA)
  • Water Treatment By Electricity Or Magnetism (AREA)
  • Investigating Or Analyzing Materials By The Use Of Electric Means (AREA)

Abstract

(57)【要約】本公報は電子出願前の出願データであるた
め要約のデータは記録されません。
(57) [Summary] This bulletin contains application data before electronic filing, so abstract data is not recorded.

Description

【発明の詳細な説明】 この発明は、磁気共鳴による液体精製システムに関する
ものである。
DETAILED DESCRIPTION OF THE INVENTION The present invention relates to a liquid purification system using magnetic resonance.

液体精製の主要な応用分野は、環境および水の不断の悪
化と腐敗を決定する汚染物質を除去するための、人の消
゛緒のためまたは河川もしくは海洋に投棄される廃水処
理のための水処理にある。
The main field of application of liquid purification is the treatment of wastewater for human consumption or for wastewater disposal into rivers or oceans, for the removal of pollutants that determine the constant deterioration and decay of the environment and water. It's in the process.

現在上に使用される方法としては、水を4J11々のρ
過手段で処理する方法または汚染された水と反応する特
殊な化学製品を添加する方法があり、また蒸発、遠心分
離等の高価につく処理を用いる方法もある。
The method currently used is to add water to 4J11
Treatment methods include filtration, the addition of special chemicals that react with the contaminated water, and expensive treatments such as evaporation and centrifugation.

これに対して、この発明によるシステムは、最も進歩し
た電子工学技術を用いるものであって、精製すべき水中
に溶解もしくはけんた゛くした固体粒子の磁気共鳴を起
すために、水粒子およびその中に溶解もしくはけんだく
した固体の゛電界を検出し、その′電界の!質を分析し
、その後で、種々の振動数の振動の導入による電子「掃
引」を実施するものである。上記粒子が磁気共鳴に入る
と、そ、!1らは、捕捉のために設けられかつ粒子が共
鳴する磁極に対応している電極に捕捉され得る。
In contrast, the system according to the present invention uses the most advanced electronic technology to generate magnetic resonance in solid particles dissolved or dispersed in the water to be purified. Detects the ``electric field'' of a dissolved or suspended solid, and detects the ``electric field'' of the solid. It analyzes the quality and then performs an electronic "sweep" by introducing vibrations of various frequencies. When the above particle enters magnetic resonance,...! 1 can be captured on an electrode provided for capture and corresponding to the magnetic pole at which the particles resonate.

こうして、この装置により捕捉された溶解固;木は捕捉
膚極に向かって沈澱し、引続いて各電極により発生し存
続する電界の作用半径内に保有され、N極性溶解粒子は
結晶化し同時にS極性溶i+r〆粒子は粘土状または泥
状の状態で保持される。
Thus, the dissolved solids captured by this device precipitate towards the captured skin poles and are subsequently retained within the radius of action of the electric field generated and sustained by each electrode, while the N-polar dissolved particles crystallize and the S Polar dissolved i+r particles are retained in a clay-like or mud-like state.

研究されてはいないが、溶解成分または少なくともその
一部は分子構造が変化するという徴候がある。ある成分
は極性に関して中性のまま、その粒子が結合してグルー
プになり沈澱する。
Although not studied, there are indications that the dissolved components, or at least some of them, change in molecular structure. Some components remain neutral in terms of polarity, and their particles combine into groups and precipitate.

この発明のシステムを実施すると、溶解またはけんだ゛
くした固体を全く含まない水か得られ、その水はバクテ
リアおよびバチルスを含まなくなっている。
Practicing the system of the present invention results in water that is free of any dissolved or suspended solids and is free of bacteria and bacillus.

この精製システムは、液体汚染ネ)γ子の電界を評価す
る手段の存在に基づくものであり、その評価手段は、精
製すべき液体中に生じた甫気振動が神々の汚染粒子の磁
気共鳴を起すように、発振ブロックが作用すべき特徴的
な振動数を決定する。電界の評価は対応する検電器に結
合された電極によつ°C行なわれ、その結果、電界が検
出され評価されると、それはプログラムされた処理装置
中に存在するデータバンクと比較され、比較結果か上記
振動の振幅と振動数を定める役目をする。
This purification system is based on the existence of a means for evaluating the electric field of liquid contaminant particles, which is based on the fact that the electromagnetic vibrations generated in the liquid to be purified cause the magnetic resonance of the divine contaminant particles. Determine the characteristic frequency at which the oscillation block should act to cause the oscillation to occur. The evaluation of the electric field is carried out by means of electrodes coupled to the corresponding electroscope, so that once the electric field has been detected and evaluated, it is compared with the data bank present in the programmed processing device and the comparison The result serves to determine the amplitude and frequency of the above vibrations.

雷界検出雷極は、正雷界用検出用極群と負宙界用検出雷
極群とからなり、従って、このシステムによる一般回路
は上記1Fjfff界および」−記負雷界を処理するた
めに2重にされている。
The lightning field detection lightning pole consists of a positive lightning field detection pole group and a negative space detection pole group.Therefore, the general circuit according to this system is for processing the above 1Fjfff field and the negative lightning field. It is doubled.

つきに、前述のプログラムさね、た処理装置は、種々の
物質の11界を考慮した、該物殉の11佇気共鳴の振動
数に関する情報を備えており、そ打放、心切な振動を必
然的に生じさせるところの比較が極めて容易となってい
る。
In addition, the processing device described above is equipped with information on the vibration frequencies of the 11 physical resonances of the material, taking into account the 11 realms of various substances, and is able to release and release the vibrations. It is extremely easy to compare things that inevitably occur.

このシステムは、特に、高濃度のカルシウム、マグネジ
・クム等を含む硬水、廃水、鉱水、湖水、および一般に
汚染物を含むあらゆるタイプの水の精製に適用できる。
This system is particularly applicable to the purification of hard water, waste water, mineral water, lake water, and all types of water containing pollutants in general, including high concentrations of calcium, magnesi cum, etc.

また放射能も除去する。それ故、必要条件はその水がタ
ンク、池等の容器内で動くことである。さらに、河川水
のような遊離水も単にその進路に沿い水の速度によって
定められる距離で一定数の電極を設置することにより処
理することができる。
It also removes radioactivity. Therefore, the requirement is that the water moves within a container such as a tank, pond, etc. Furthermore, free water such as river water can be treated simply by placing a certain number of electrodes along its path at a distance determined by the speed of the water.

+1JPの記載を桶川しての発明の理解を容易にするた
めに、必要な図面をこの明細書に添・目し、以下の説明
を行なうが、この説明は発明を限定する趣旨ではない。
In order to facilitate understanding of the invention based on the description of +1JP, necessary drawings are attached to this specification and the following explanation is provided, but this explanation is not intended to limit the invention.

第1図はこの発明のシステムをり1式的に示す線図であ
り、精製すべき水を含むタンクまたは容器は貯水槽1で
示されている。
FIG. 1 is a schematic diagram of the system of the invention, in which the tank or container containing the water to be purified is designated by water tank 1.

第2図はこの発明の実施に用いる電子ブロックの線図を
示し、図かられかるように、正極をもつ電界と負極をも
つ電界の両者を分析する必要かあるため、2重に設けら
れている。
Figure 2 shows a diagram of the electronic block used to implement this invention, and as can be seen from the diagram, it is necessary to analyze both the electric field with the positive electrode and the electric field with the negative electrode, so the electronic block is designed in duplicate. There is.

第3図は、精製されるべき水に1、…包けんたくまたは
溶解している種々の物体の@7気共鳴の振動数を示すグ
ラフである。
FIG. 3 is a graph showing the frequency of the @7 resonance of various objects contained or dissolved in the water to be purified.

上記図面かられかるように、磁気共鳴による液体精製シ
ステムは、タンク、池等の任意の特徴を有する貯水槽1
の内部に容れられた液体環中に溶解またはけんたくして
いる汚染粒子の小異を検出することからなり、貯水槽内
では、外部との液体交流はないが、しかし貯水槽1内の
水が内部の動きにより影響され、その結果システムのJ
HQ々の部品の囲壁に近接した領域だけでなく液体全体
をaじて精製処理が起ることが必要である。この内部の
動きは、磁気ポンプまたは他の同様な方法によって得ら
れる。
As can be seen from the above drawings, the liquid purification system by magnetic resonance includes a water storage tank 1 having any features such as a tank or a pond.
The method consists of detecting small particles of contaminants dissolved or suspended in the liquid ring contained inside the tank.Inside the water tank, there is no liquid exchange with the outside, but the is affected by the internal movements and as a result the J of the system
It is necessary that the purification process occur throughout the liquid and not just in the area adjacent to the enclosure of the HQ components. This internal movement is obtained by a magnetic pump or other similar method.

粒子の電界を検出するために、それらは成環の内部に置
か石、一連の検出電極2および3が対にされ、そのうち
一方かけんたく粒子の正′電界を検出し、他方の電極が
負電界を検出する。第1図には1対の捕捉電極のみを示
したが、これに1堀定されるものではなく、精製される
べき水の計により要求されるだけの多数の電極対を設置
することかてき、電極は並列に煮かれ同様な極性をもつ
To detect the electric field of the particles, they are placed inside the ring, and a series of sensing electrodes 2 and 3 are paired, one of which detects the positive electric field of the particles and the other electrode is negative. Detect electric field. Although only one pair of capture electrodes is shown in Figure 1, it is possible to install as many pairs of electrodes as required by the meter of water to be purified. , the electrodes are arranged in parallel and have similar polarity.

これらの検出電極2および3と共に、P@5数対の捕捉
電極4および5か設けら彊、そこて汚染1′ケ子が沈積
する。
Together with these detection electrodes 2 and 3, several pairs of capture electrodes 4 and 5 are provided, on which the contamination particles are deposited.

これら電極2および3は、第2図にブロツ先弾図さして
示した濱子回路により互いに結合され、汚染粒子に固有
の粛界を楡出し、上記車枠2および3により送られた電
気的シグナルを分析し胛価する検電器6および6′に適
切な情報を送る。これら電極の各々または゛小極群は、
第2図の線1″2]に示すように、ブロックの連鎖に連
結さね、その連鎖の一方が正電圧を分析し、他方の連鎖
が負よ1王を分析するが、これら連鎖は同一であるから
その一方を説明すねは庁りる。
These electrodes 2 and 3 are connected to each other by a Hamako circuit shown in FIG. Appropriate information is sent to electroscopes 6 and 6' for analysis and evaluation. Each of these electrodes or ``miniature groups'' is
As shown in Figure 2, line 1''2], the blocks are connected in a chain, one chain analyzes positive voltage and the other chain analyzes negative voltage, but these chains are identical. Therefore, I would like to explain the other side.

すなわち、検出ブロック6で検出され分析さねたシグナ
ルは、第3図に示したグラフに一致する3ように引き出
された一1車のデータに従っCプログラムさ21ている
処理装置7へ、変炉を加えるこ七なく送られるので、入
力出1)が分析されると、処理装置は振動計を知り、し
たがって、分析した電気的シグナルに係る元の粒子を6
住気共1児させるために、発射すべきシグナルの波長を
知る。
That is, the signals detected and unanalyzed by the detection block 6 are transferred to the processing unit 7, which is programmed 21 according to the data of the 11 cars drawn in a manner consistent with the graph shown in FIG. When the input and output 1) are analyzed, the processor knows the vibrometer and therefore determines the original particle associated with the analyzed electrical signal.
Know the wavelength of the signal that should be emitted in order to have one child.

処理装置は、処411装置7により送られた命令に一致
する#l;勅を生成する公知の発振器8の朴・能を制御
し、この発振器81」捕提湖イゆ4または5に結合さ1
1ている。前述の振動か発射さ杓る畠1上は、異なる枠
骨のために検出された粒子の市1]−と一致しなりれは
ならない。
The processing unit controls the output of a known oscillator 8 which corresponds to the instructions sent by the processor 411 device 7; 1
There are 1. The vibrations mentioned above must be consistent with the particles detected for the different frames.

第3図に示すグラフ(A1 ある成分の粒子に適合し、
その結果粒子がI+#;気共吠7に入り、i’i’: 
T−の到達する6に’k 4@ii件か、該粒子を一方
または111毛方0捕1)7宙極4または5の何れに向
わせるかを決めるような振動数および波長を示す。
The graph shown in Figure 3 (A1 suitable for particles of a certain component,
As a result, the particle enters I+#; 7, i'i':
Indicates the frequency and wavelength that determine whether the particle is directed to one side or to the 7 cosmic poles 4 or 5 when T- reaches 6. .

処理水が亮い塩類含有率をもつ場合には、捕捉電極4ま
たは5は図示されている抵抗9を介して互いに結合さI
]、抵抗9は適当な塩iN a度か与えら11ない場合
には除去される。この抵(Wは随意のものであるか、し
かしそれは好ましく fJいrliを除くので、会での
水に対して設けるこ吉が推奨される。
If the treated water has a high salt content, the capture electrodes 4 or 5 are connected to each other via the resistor 9 shown.
], resistor 9 is removed if the appropriate salt iNa degree is not given. This resistor (W is optional, but it is preferable to exclude fJirli, so it is recommended to set up for water at the meeting.

完全な′射手設備10は図中に数字11で示さ才する安
定な直流源により給電される。
The complete shooter installation 10 is powered by a stable DC source, indicated by the numeral 11 in the figure.

そのほか、医学i1.Ii究によると、電極に保持され
る負極をもつ%”<f子は明らかに人の((1を康によ
いので、ある場合には、精製さイまたl夜体中にこれら
の粒子を再l容扇ヒするこ七に興味がもたれる。それに
は、上記電極の極性を逆転するだけて充分てあり、そ才
1によって粒子は解放され1面体に7mされる。この操
作の前に、汚染れ粒子の担い手である正m極4を水から
引き−1−げるべきである。
In addition, medical i1. Studies have shown that particles with negative electrodes retained in the electrodes are apparently good for human health, and in some cases, it may be difficult to purify them or to have these particles in the body at night. We are interested in the re-induction of the fan.To do this, it is sufficient to reverse the polarity of the electrodes mentioned above, and the particles are released and made into a monohedron by 7m.Before this operation, The positive electrode 4, which is a carrier of contamination particles, should be removed from the water.

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

第i l!v:はこの発、明のンステムを図式的に示す
線図、第2図はこの発明の実施に用いる山手ブロックの
線図、加73図は精製されるべき水にけんだくまたは溶
解している旬・々のI’:粒子の7りt気共鳴を示すグ
ラフである。 各ビ(において、1は貯水4917.2および3は検出
電極、4および5は捕捉電極、6および6′は検電器、
7は処理装置、8(オ発振器、9は抵抗、10は電子設
備、11は直流供給源である。 特許出願人 マルコス・ピネル・ヒメネス代理人   
弁理士 青 山 葆  外1名図面の洋書(内′4に変
り!なし) FIG、2 FIG、3 λ 手続補正書けた 昭和57年11月2411 昭和57年特許願第  124975  号2発明の名
称 磁気共鳴による液体精製システム 3補正をする者 事件との関係 特許出願人 住所  スペイン国セビーリャ5、マルケス・デ・ピン
クマン40番 氏名  マルクス・ピネル・ヒメネス 4代理人
No.1! v: is a diagram schematically showing the system of this invention, Figure 2 is a diagram of the Yamate block used for carrying out this invention, and Figure 73 is a diagram showing the system suspended or dissolved in the water to be purified. I': A graph showing the 7-t resonance of particles. In each bi(, 1 is a water storage 4917.2 and 3 are detection electrodes, 4 and 5 are capture electrodes, 6 and 6' are electroscopes,
7 is a processing device, 8 is an oscillator, 9 is a resistor, 10 is an electronic equipment, and 11 is a DC supply source. Patent applicant Marcos Pinel Jimenez Agent
Foreign book with drawings by one patent attorney, Aoyama Aoyama (inside '4! No change) FIG, 2 FIG, 3 λ Procedural amendment was written November 2411 1982 Patent Application No. 124975 2 Name of the invention Magnetic Relation to the Resonant Liquid Purification System 3 Amendment Case Patent Applicant Address: Marques de Pinkman 40, Seville 5, Spain Name: Marcus Pinel Jimenez 4 Agent

Claims (3)

【特許請求の範囲】[Claims] (1)水粒子およびけんだく粒子の電界検出手段、」二
記電界の評価手段、該評価手段により制御された振動数
を変化できる発振手段、および振動の発射手段からなり
、検出手段は、対応する検電器に結合された電極の対か
らなり、比較ユニット、データ貯蔵ブロック、および発
信手段に結合された決定部門を有するプログラムされた
処理装置を備えており、発信手段の振動数は評価手段か
ら受取ったシグナルに応じて変えることができ、発射手
段は、精製されるべき液体中に浸漬された複数対の粒子
捕捉電極により支配されることを特徴とする、磁気共鳴
による液体精製システム。
(1) means for detecting electric fields of water particles and particles, and (2) means for evaluating electric fields, oscillating means capable of changing the frequency controlled by the evaluating means, and means for emitting vibrations, and the detecting means corresponds to comprising a comparison unit, a data storage block, and a programmed processing device having a determination section coupled to the transmitting means, the frequency of the transmitting means being determined from the evaluating means. A liquid purification system by magnetic resonance, which can be varied in response to a received signal and is characterized in that the firing means are dominated by pairs of particle capture electrodes immersed in the liquid to be purified.
(2)検出手段が正極検出電極群と負極検出−極群とか
ら形成され、上記群の各々は、評価手段、発振手段およ
び発射手段からなる対応酊子回1?にに結合され、粒子
捕捉南極は、異なる磁極をもった2群の南極により支配
されることを特徴とする特許請求の範囲第1項記載の磁
気共鳴による液体精製システム。
(2) The detection means is formed of a positive detection electrode group and a negative detection electrode group, and each of the above groups has a corresponding one consisting of an evaluation means, an oscillation means and a firing means. 2. The liquid purification system by magnetic resonance according to claim 1, wherein the particle-trapping south pole is dominated by two groups of south poles having different magnetic poles.
(3)プログラムされた処理装置が、精製されるべき液
体に溶解している可能性がある種々の物質の磁気共鳴の
振動数に関する情報を備えていることを特徴とする特許
請求の範囲第1項または第2項記載の磁気共鳴による液
体精製システム。 14)捕捉両極対が、塩分濃変の高い水を精製するため
に電気抵抗によって互いに結合されていることを特徴と
する特許請求の範囲第1.2または3項記載の磁気共鳴
による液体積りンステム。
(3) The programmed processing device is provided with information regarding the magnetic resonance frequencies of various substances that may be dissolved in the liquid to be purified. A liquid purification system using magnetic resonance according to item 1 or 2. 14) A liquid loading system by magnetic resonance according to claim 1.2 or 3, characterized in that the trapping pole pairs are coupled to each other by electrical resistance for purifying water with high salinity. .
JP12497582A 1982-07-09 1982-07-16 Liquid refining system by magnetic resonance Pending JPS5919582A (en)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE19823225806 DE3225806A1 (en) 1982-07-09 1982-07-09 System for cleaning liquids by means of magnetic resonance

Publications (1)

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JPS5919582A true JPS5919582A (en) 1984-02-01

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ID=6168096

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Application Number Title Priority Date Filing Date
JP12497582A Pending JPS5919582A (en) 1982-07-09 1982-07-16 Liquid refining system by magnetic resonance

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JP (1) JPS5919582A (en)
DE (1) DE3225806A1 (en)
FR (1) FR2529803A1 (en)
GB (1) GB2123399A (en)
NL (1) NL8204095A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH025962A (en) * 1988-01-27 1990-01-10 Apex Medical Technol Inc Preventive sheath having reinforced rim
WO2018043427A1 (en) 2016-09-01 2018-03-08 テルモ株式会社 Introducer sheath

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
NL8802179A (en) * 1988-09-02 1990-04-02 B & D Ingenieursburo DEVICE FOR TREATING LIQUID FOR PREVENTING AND / OR REMOVING CASTLE DEPOSITS.
GB2246725B (en) * 1990-07-11 1995-03-08 Daniel Stefanini Water conditioners
WO2013077780A1 (en) * 2011-11-22 2013-05-30 Hans Giertz Method and apparatus for purifying aqueous solutions by shielding or subjecting chemical substances to low frequency electromagnetic radiation

Family Cites Families (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB957295A (en) * 1959-04-23 1964-05-06 Frances Ruskin A process and apparatus for concentrating and separating a component of a fluid mixture
AU495329B2 (en) * 1975-12-10 1978-04-06 Robert Alexander Rigby Algae growth control

Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPH025962A (en) * 1988-01-27 1990-01-10 Apex Medical Technol Inc Preventive sheath having reinforced rim
JPH0523787B2 (en) * 1988-01-27 1993-04-05 Apetsukusu Medeikaru Tekunorojiizu Inc
WO2018043427A1 (en) 2016-09-01 2018-03-08 テルモ株式会社 Introducer sheath

Also Published As

Publication number Publication date
NL8204095A (en) 1984-05-16
GB2123399A (en) 1984-02-01
DE3225806A1 (en) 1984-01-12
FR2529803A1 (en) 1984-01-13

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