JPH0615789U - Electrolytic promotion device for ionized water generator - Google Patents

Electrolytic promotion device for ionized water generator

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Publication number
JPH0615789U
JPH0615789U JP5810792U JP5810792U JPH0615789U JP H0615789 U JPH0615789 U JP H0615789U JP 5810792 U JP5810792 U JP 5810792U JP 5810792 U JP5810792 U JP 5810792U JP H0615789 U JPH0615789 U JP H0615789U
Authority
JP
Japan
Prior art keywords
electrolysis
water
electrolytic
power source
high frequency
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
JP5810792U
Other languages
Japanese (ja)
Inventor
田 清 稔 日
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.)
Funai Electric Co Ltd
Original Assignee
Funai Electric Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Funai Electric Co Ltd filed Critical Funai Electric Co Ltd
Priority to JP5810792U priority Critical patent/JPH0615789U/en
Publication of JPH0615789U publication Critical patent/JPH0615789U/en
Pending legal-status Critical Current

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Abstract

(57)【要約】 【目的】 イオン水装置の電解能力をアクセータ槽を使
用しないで、改善する。 【構成】 電解槽1に水が流入したら、CPU5は電解
電源6と、高周波電源2をリレー3,4により交互に電
解槽に印加して、水を活性化して電解能力を高める。
(57) [Summary] [Purpose] To improve the electrolysis capacity of ionized water equipment without using an accelerator tank. [Structure] When water flows into the electrolytic cell 1, the CPU 5 alternately applies the electrolytic power source 6 and the high frequency power source 2 to the electrolytic cell by the relays 3 and 4 to activate the water and enhance the electrolytic ability.

Description

【考案の詳細な説明】[Detailed description of the device]

【0001】[0001]

【産業上の利用分野】[Industrial applications]

本考案は、イオン水生成器に関し、詳しくはイオン水生成器の電解効率を改善 する装置に関する。 The present invention relates to an ion water generator, and more particularly, to a device for improving electrolysis efficiency of an ion water generator.

【0002】[0002]

【従来の技術】[Prior art]

図2は、従来のイオン水生成器の構造図である。 流入する水道水は浄水器100内の活性炭等の濾材で濾過された後、アクセレ ータ102に流入する。 FIG. 2 is a structural diagram of a conventional ion water generator. The tap water that flows in is filtered by a filter material such as activated carbon in the water purifier 100, and then flows into the accelerator 102.

【0003】 アクセレータ102内の電極103,104には電解促進用の高周波電源10 5から高周波が印加される。高周波電源105の出力は出力制御部106を介し てON・OFF等の制御をCPUが行っている。 CPUから指定される一定時間、アクセレータでイオン活性化された流入水は 、電解槽107内で電解され、酸性水とアルカリイオン水が生成される。A high frequency is applied to the electrodes 103 and 104 in the accelerator 102 from a high frequency power supply 105 for promoting electrolysis. The output of the high frequency power supply 105 is controlled by the CPU via an output control unit 106 such as ON / OFF. The inflow water ion-activated by the accelerator for a certain time designated by the CPU is electrolyzed in the electrolytic cell 107 to generate acidic water and alkaline ionized water.

【0004】 図3は電解槽の電解時の電流特性曲線図であり、アクセータ処理水と未処理水 を比較したものである。 明らかにアクセータ処理水の場合の方が導電度が高くなり、生成アルカリイオ ン水のPH値が高くなる。これは、アクセレータ102に印加される高周波電源 による電界振動によって、水の長分子構造が変化して小分子化され、イオンが活 性化され導電度が変わって、電解され易い状態に変化するためである。FIG. 3 is a current characteristic curve diagram at the time of electrolysis of the electrolytic cell, which compares the water treated with the accelerator and the water not treated. Obviously, the conductivity of the water treated with the accelerator is higher, and the pH value of the produced alkaline ion water is higher. This is because the electric field vibration of the high frequency power source applied to the accelerator 102 changes the long molecule structure of water into small molecules, which activates the ions, changes the conductivity, and changes the state of being easily electrolyzed. Is.

【0005】[0005]

【考案が解決しようとする課題】[Problems to be solved by the device]

しかしながら、図2に示す従来例においては、浄水器100と電解槽107の 間にアクセレータ槽102装置を別に設けているために、電解槽107とアクセ レータ槽102と屋上屋を重ねる様な構造となり、装置の構成上好ましくないと いう問題があった。 However, in the conventional example shown in FIG. 2, since the accelerator tank 102 device is separately provided between the water purifier 100 and the electrolytic tank 107, the structure is such that the electrolytic tank 107, the accelerator tank 102 and the rooftop are stacked. However, there is a problem in that it is not preferable due to the configuration of the device.

【0006】 本考案は上述の問題点に鑑みてなされたものであり、電解槽の電極に電解電源 と高周波電源の高周波を交互に印加して水をイオン化し、アクセレータ槽を使用 しないで電解効率を改善できるイオン水生成器の電解促進装置を提供することを 目的としている。The present invention has been made in view of the above-mentioned problems, and the high frequency of the electrolytic power source and the high frequency power source are alternately applied to the electrodes of the electrolytic cell to ionize the water, and the electrolytic efficiency is improved without using the accelerator tank. It is an object of the present invention to provide an electrolysis promoting device for an ionized water generator that can improve the above.

【0007】[0007]

【課題を解決するための手段】[Means for Solving the Problems]

上記目的を達成するため、本考案は、電解槽の電極間に電解電源を印加してア ルカリイオン水と酸性水を生成するイオン水生成器において、前記電解槽の電極 に電解電源と交互に印加される高周波を発生する高周波電源と、予め設定される CPUからのタイミング信号により前記電解電源をON・OFFする第1のリレ ーと、前記高周波電源をON・OFFする第2のリレーを備えている。 In order to achieve the above object, the present invention provides an ion water generator that applies an electrolytic power supply between electrodes of an electrolytic cell to generate alkaline ionized water and acidic water, and alternately applies the electrolytic power supply to the electrodes of the electrolytic cell. A high frequency power source for generating high frequency, a first relay for turning on / off the electrolytic power source according to a preset timing signal from the CPU, and a second relay for turning on / off the high frequency power source. There is.

【0008】[0008]

【作用】[Action]

上記構成とすることにより、電解槽への水の流入を確認してCPUが電解電源 ON・OFF用の第1のリレーをONさせ、電解槽に電解電源を印加して電解を 開始する。予め設定した一定時間後、第1のリレーをOFFして、第2のリレー をONさせ電解槽に高周波電源を印加して流入水に電界振動を加える。 第2のリレーをOFFしたら、再び電解電源に切り替えて、電解槽に電解電源 と高周波電源を交互に印加するので、別個のアクセレータ槽を使用せずに、同一 電解槽内でアクセレータと電解動作を行うことによって電解効率を改善できる。 With the above structure, the CPU checks the inflow of water into the electrolytic cell and turns on the first relay for turning on / off the electrolytic power source, and the electrolytic power source is applied to the electrolytic cell to start electrolysis. After a preset period of time, the first relay is turned off, the second relay is turned on, and a high frequency power source is applied to the electrolytic cell to apply electric field vibration to the inflow water. When the second relay is turned off, the electrolysis power supply is switched again and the electrolysis power supply and the high frequency power supply are alternately applied to the electrolyzer. Therefore, the accelerator and electrolysis operation can be performed in the same electrolysis tank without using a separate accelerator tank. By doing so, the electrolysis efficiency can be improved.

【0009】[0009]

【実施例】【Example】

以下、本考案の一実施例について図を参照して背地名する。 図1は本考案の一実施例によるイオン水生成器の電解促進装置の構成図である 。 図1において、1は電解電源6と高周波電源2を交互に印加して電解を行う電 解槽、3は電解電源6のON/OFF用リレースイッチであり、4は高周波電源 2のON/OFF用リレースイッチである。 Hereinafter, an embodiment of the present invention will be named with reference to the drawings. 1 is a block diagram of an electrolysis promoting apparatus for an ionized water generator according to an embodiment of the present invention. In FIG. 1, 1 is an electrolytic cell for applying electrolysis 6 and high frequency power 2 alternately for electrolysis, 3 is an ON / OFF relay switch for electrolysis power 6, and 4 is ON / OFF for high frequency power 2. Relay switch.

【0010】 5は一定のタイミングでON/OFF信号を送出してリレースイッチ3,4を ON/OFFすると共に、システム全体を制御するCPUであり、7,8は電解 槽1の電極であり、9は流入水量を検出する水圧センサー、10は水温センサー 、11はPH値を検出するPHセンサーである。Reference numeral 5 is a CPU that sends ON / OFF signals at a fixed timing to turn ON / OFF the relay switches 3 and 4 and controls the entire system, and 7 and 8 are electrodes of the electrolytic cell 1. Reference numeral 9 is a water pressure sensor for detecting the amount of inflow water, 10 is a water temperature sensor, and 11 is a PH sensor for detecting a PH value.

【0011】 次に、動作について説明する。 浄水器100で濾過した水道水が電解槽1に流入すると、CPU5は電解電源 ON信号を送出してリレースイッチ3をONし、電解を開始する。一定時間経過 後(電解時間の設定は水圧センサ9の流入水の流量検出データ、温度センサー1 0の水温データ,PHセンサー11によるPH値データを判断して行う)、CP U5から電解電源OFF信号を送出してリレースイッチ3をOFFし、高周波電 源ON信号を送出してリレースイッチをONし、電解槽1に高周波電源2を印加 する。このように、電解と高周波電源印加を交互に行う。スタートの電解と高周 波電源印加の順序はスタート時PHが高くなるので電解を先にしたが、逆にして も構わない。Next, the operation will be described. When the tap water filtered by the water purifier 100 flows into the electrolysis tank 1, the CPU 5 sends an electrolysis power ON signal to turn on the relay switch 3 to start electrolysis. After a certain time has elapsed (the electrolysis time is set by judging the flow rate detection data of the inflow water of the water pressure sensor 9, the water temperature data of the temperature sensor 10 and the PH value data of the PH sensor 11), the electrolysis power OFF signal from the CPU5. Is transmitted to turn off the relay switch 3, a high frequency power source ON signal is transmitted to turn on the relay switch, and the high frequency power source 2 is applied to the electrolytic cell 1. In this way, electrolysis and high-frequency power source application are performed alternately. The order of the electrolysis at the start and the application of the high-frequency power source was the electrolysis first because the PH becomes high at the start, but the order may be reversed.

【0012】 高周波電源2は通常のウィーンブリッジ等による正弦波を用い、約100KH z前後の周波数の高周波を使用する。 元来、水の性質として、氷の溶けた状態のときの水が、いわゆるイオン化され た状態の水であり、それが、時間経過と共に水の分子同志の結合数、結合度が大 となり長分子構造の科学的にも安定した形態となってしまう。これが普通の水道 水の状態であるから、アクセレータとして高周波電源を印加することにより、長 分子結合を破壊して、反応の起こり易い電子活動が活発な元の活性化の状態に戻 してやれば、図3に示したように活性化水の導電度が変化するので、電解槽1内 での電解反応が速く、電解時間を短縮できると共に、電解電源電力も削減できる 。The high frequency power source 2 uses a sine wave by a normal Wien bridge or the like, and uses a high frequency of about 100 KHz. Originally, as the property of water, water in the state of melting ice is water in a so-called ionized state, and with the passage of time, the number of bonds of water molecules and the degree of bonding increase, and long molecules The structure will be scientifically stable. Since this is the state of ordinary tap water, if a high-frequency power source is applied as an accelerator, the long-molecule bonds are broken and the electron activity in which reaction easily occurs is restored to the original activated state. Since the conductivity of the activated water changes as shown in Fig. 3, the electrolytic reaction in the electrolytic cell 1 is fast, the electrolysis time can be shortened, and the electrolysis power supply power can be reduced.

【0013】[0013]

【考案の効果】 以上説明したように、本考案によれば、電解槽の電極に電解電源と交互に印加 される高周波を発生する高周波電源と、CPUからのタイミング信号により電解 電源をON/OFFする第1のリレーと、高周波電源をON/OFFする第2の リレーを備えたので、別に設置する形のアクセレータ槽を使用しないで、水を活 性化して電解効率を改善する効果がある。As described above, according to the present invention, a high frequency power source that generates a high frequency that is alternately applied to an electrode of an electrolytic cell with an electrolytic power source, and a timing signal from a CPU turns the electrolytic power source on / off. Since it has a first relay that operates and a second relay that turns on and off the high frequency power, it has the effect of activating water and improving electrolysis efficiency without using an accelerator tank that is separately installed.

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

【図1】本考案の一実施例によるイオン水生成器の電解
促進装置の構成図である。
FIG. 1 is a schematic diagram of an electrolysis promoting apparatus for an ionized water generator according to an embodiment of the present invention.

【図2】従来のアルカリイオン水生成器の構成図であ
る。
FIG. 2 is a configuration diagram of a conventional alkaline ionized water generator.

【図3】図2に示す電解槽の電解時の電流特性曲線図で
ある。
3 is a current characteristic curve diagram during electrolysis of the electrolytic cell shown in FIG.

【符号の説明】[Explanation of symbols]

1 電解槽 2 高周波電源 3,4 リレースイッチ 5 CPU 6 電解電源 7,8 電極 8,9,10 センサー 1 Electrolyzer 2 High-frequency power source 3,4 Relay switch 5 CPU 6 Electrolytic power source 7,8 Electrode 8,9,10 Sensor

Claims (1)

【実用新案登録請求の範囲】[Scope of utility model registration request] 【請求項1】 電解槽の電極間に電解電源を印加してア
ルカリイオン水と酸性水を生成するイオン水生成器にお
いて、 前記電解槽の電極に電解電源と交互に印加される高周波
を発生する高周波電源と、予め設定されるCPUからの
タイミング信号により前記電解電源をON・OFFする
第1のリレーと、前記高周波電源をON・OFFする第
2のリレーを備えたことを特徴とするイオン水生成器の
電解促進装置。
1. An ion water generator that generates an alkaline ionized water and an acidic water by applying an electrolysis power supply between electrodes of an electrolysis cell to generate a high frequency that is alternately applied to the electrodes of the electrolysis cell with the electrolysis power supply. Ion water comprising a high frequency power source, a first relay for turning on / off the electrolytic power source according to a preset timing signal from a CPU, and a second relay for turning on / off the high frequency power source. Electrolysis promoting device of generator.
JP5810792U 1992-07-27 1992-07-27 Electrolytic promotion device for ionized water generator Pending JPH0615789U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP5810792U JPH0615789U (en) 1992-07-27 1992-07-27 Electrolytic promotion device for ionized water generator

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP5810792U JPH0615789U (en) 1992-07-27 1992-07-27 Electrolytic promotion device for ionized water generator

Publications (1)

Publication Number Publication Date
JPH0615789U true JPH0615789U (en) 1994-03-01

Family

ID=13074751

Family Applications (1)

Application Number Title Priority Date Filing Date
JP5810792U Pending JPH0615789U (en) 1992-07-27 1992-07-27 Electrolytic promotion device for ionized water generator

Country Status (1)

Country Link
JP (1) JPH0615789U (en)

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2015107481A (en) * 2013-10-25 2015-06-11 パナソニックIpマネジメント株式会社 Liquid treatment apparatus and liquid treatment method

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2015107481A (en) * 2013-10-25 2015-06-11 パナソニックIpマネジメント株式会社 Liquid treatment apparatus and liquid treatment method
US9969627B2 (en) 2013-10-25 2018-05-15 Panasonic Intellectual Property Management Co., Ltd. Liquid treatment apparatus and liquid treatment method

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