JPS60244384A - Full-automatic distilled drinking water treatment apparatus system - Google Patents

Full-automatic distilled drinking water treatment apparatus system

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Publication number
JPS60244384A
JPS60244384A JP9544884A JP9544884A JPS60244384A JP S60244384 A JPS60244384 A JP S60244384A JP 9544884 A JP9544884 A JP 9544884A JP 9544884 A JP9544884 A JP 9544884A JP S60244384 A JPS60244384 A JP S60244384A
Authority
JP
Japan
Prior art keywords
water
switch
control switch
tank
drinking
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
JP9544884A
Other languages
Japanese (ja)
Inventor
劉 漢魂
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
Priority to JP9544884A priority Critical patent/JPS60244384A/en
Publication of JPS60244384A publication Critical patent/JPS60244384A/en
Pending legal-status Critical Current

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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】 一種の全自動蒸篩三用飲水處埋装置システムで:第一段
階には網目濾過装置及び水流制御バルブで流量を制御す
る装置及びスイッチマグネットバルブで進入或いは止水
を制御する装置とを含み■水道水を本発明の構成に導入
するシステムを形成する・第二段階は加熱蒸舖装置で・
第−加熱器及び第二加熱器とを含み−導入した水をして
瞬間的に加熱して温度が上昇し更に第二加熱器により加
熱蒸発する・前記進水加熱蒸発の操作はすべて浄水タン
クの水位制御スイッチにより自動的に開閉操作する9第
三段階は冷却装置及び集水する浄水タンクにより構成さ
れ一蒸発した水蒸気は汗水タンクポンプの連軸及びベル
ヌーイ管の作用により循環水パイプ内に水蒸気を吸入し
・冷却凝結した水を汗水タンク内に貯存する・上記第一
段階磨第二段階及び第三段階の連軸は浄水タンクの水位
スイッチのシーケンス制御により達成することができる
・第四段階は原水及び熱水の製成装置でtそれには冷凍
装置及び原水を貯存する原水桶・並びに三種の冷水・熱
水・原水出水口及び出水微動スイッチを含むものとから
なる全自動蒸諦三用飲水處理装置システムで・且つその
進水・止水・加熱蒸発・冷却・貯存・冷凍1加温はすべ
て浄水タンクに据付けている水位制御スイッチの操作運
轄により・清浮なる飲水處埋装置システムを提供するこ
とができるものであるO 水道水は元々一種の使用に便利で1而も安全衛生な飲用
水であり・人類に叡多くの便宜と快適をもたらしている
・但し・吾々の日常生活において・飲水汚染事件の叡多
くが・不注意で知らぬ間に発生したものであり・ひどい
時は水媒疾病を発生し或いは人籠の健康に危害している
ので・日常生活中誠に油断を許せないことである・また
今日の生活において水源の汚染が既に蝦重を極め1輿論
亦清漂な水源を保護せよと絶え間なく叫んでいる・非常
に遺憾ながらり蛇口から噴出す水は益々信頼できず・水
道水の生飲みは遠い日の事で・特に長期早魁で水位が低
下して蝦重な水不足になると1ダムの底層の水を水道水
にすると・當然品質不良で・水道水の消毒檗のにおいも
益々強く1添加量が多い相水質不良を明澄している・こ
\敷年來の水質調査報告で顕示しているように・水道水
は一般的に癌発生物質「クロロホーム」の含有量が高い
と云う事もないが・矢張り人々の憂慮を集めている・ 一部の水道水の水源における含有重金側とその他不明化
畢物質の汚染状況がかくも厳重化された今日・一杯の水
てあらうと苦い顔をして飲んでいる・そこで各メーカー
が園外から或いは自己開発により色々な浄水器・飲水機
等を市場に提供しているが・大衆は相痩らず水道水に對
して自信に欠け・この様な家庭飲用水處理機器が果して
水質の改善に何の位の効果をもつか(会同未知数である
一現在の家庭飲用水處埋機器は大手網目濾過と加熱煮沸
の二類に部分されるこの二つの方式は大粒で肉眼ではっ
きりと見える汚染物及び細菌性拘束に對して確かに相當
なる効果をもっている・但し・微量他事汚染・例えば重
金属イオン及びクロロホーム或いはその他の層化物ニつ
いては9七の効果も疑問と残している・網目濾過は普通
の炭素粒子を加えているので一本中の興味1菌髄或いは
大汚染粒子に對して防除の作用をもつが・これらの給染
は水道水工場の浄水装置ですべて完全處埋を経ており・
−切の著量が生物汚染を主要にして實施され■細菌性汚
染の消滅を浄水の目的としなければならないが一本道水
工場は普通の化畢性汚染に對して何一つ自己測定能力を
もたず・且つ重金属及びクロロホームの微量汚染につい
ては伺更監督もできない事態である・重金属は元を水源
から來た汚染で・りpロホームの來源は水源の藻類の生
長に発端し1自動的にクロロホーム合成している・而し
この様な状況で発生した者はそう多くもない・比較的に
厳重なのが有機物質の汚染であり9浄水装置にり2口を
添加する殺菌法は・かえって有機物と層化物を結合させ
て・そこでクロロホームの含有量が高過ぎる事態を招い
ている・而も水源が汚れる程堕化物を余計に加え・この
致癌物質の濃度も益々高くなっている・網目濾過はこの
様な水道水工場の處埋できない汚染に對して同じく處埋
不可能で・この様な汚染物の粒径はすべてが網目よりも
小さいのである・加熱煮沸は水質を沖化しえるが・それ
も細菌性汚染に限られたものである9クロロホームは加
熱の過程において破壊されると見ているが−但し水道水
には相當量の多いクロロを含んでいるpで磨有機物汚染
物と共に加熱状態にあると磨化畢彎化を起こして別途に
新しいりpロホーム或いはその他の層化有機物を発生す
る可能性もあるので褒その爲に只加熱食沸だけで果して
十分に水中汚染物を除去できるか〈極めて大きな問題で
ある・クロロホームと重金属が水道水を汚染すると致癌
性の強い化合物となり・且つ長期的に毒質を累積した危
害汚染物は・すべてが水源の汚染により形成されたもの
で−現在迄に水道水工場の唯一の汚染處理手段は層化物
の添加で#過日水源が良好であった常時の添加量は約1
〜2PPMで9現在の浄水には約110PPの爲添加量
に至り・超高量の65PPMの記録さへ残している・過
去において家庭で熱飲水機を使用してミルクを調理し赤
児が中毒した例もある−この様な現在市販されている飲
水製造システムには伺叡多くの欠鮎を残している#発明
者はこれに鑑みβ飲水處埋装置システムについて苦心研
究の結果・本システムで處理した飲用水を完全に清潔で
人禮の健康にマツチするよりに完成したのである一本発
明は一種の全自動蒸飽三用飲水處埋装置システムで・進
水・止水によう・加熱・−蒸発・冷却・貯存・循環磨冷
凍或いは瞬間加熱を制御し・同時に冷水p熱水及び氷水
等の三種の飲用水の装置システムを製作したものである
・吹に各項目別に説明するO(へ)水道水を配管から網
目濾過器に送り込み・普通の藩性炭素粒を加入して水中
之異味菌禮及び細菌性汚染を消滅し・更に濾過水を水量
制御バルブに送り込み磨當該制御バルブにより送り込む
水流量を適當に制限し9濾過水をガイドパイプにより電
磁バルブスイッチに導入して・以て適時に進水或いは止
水な制御する・に)第二部分には加熱及び蒸発装置を含
み・第−加熱器及び第二加熱器により形成されたものて
S前記第一加熱器により入水を瞬間的に加熱して温度を
上げ磨更にその加熱された入水をその胆力により第二加
熱器に導入して績けて加熱し・蒸発気化して水蒸気とな
す・第二加熱器は蒸諦加温桶内に装置され・それに前記
の第−加熱器及び蒸篩加温桶の外壁に耐湿保温装置の断
熱設備を被覆し身熱量をして損失することなく熱敷率を
向上し・且つ前記の進水・止水スイッチング電磁バルブ
一部も第一段階加熱器及び第二段階加熱器の電熱設備及
びそのスイッチング電磁バルブの操作開閉は−すべて後
で述べる浄水タンク上に据付けた水位制御スイッチによ
り9七の制御を受けて電気回路を開閉し・適常に運用操
作するものであるΦ (転)第三部分は冷却装置及び集水の浄水タンク及びポ
ンプモーターとにより構成され9第二段階の加熱器によ
り瞬間加熱で発生した水蒸気を■この時にポンプモータ
ーは水位スイッチの閉合作用でエンジされているので浄
水タンクに注入している蒸諦水を吸引して管道の中で循
環し1べ/Vスーイ管(Be、rr+oulhs’ S
u+J7oa )の張力作用で・迅速に蒸榴加温桶の中
から蒸発した水蒸気を吸引して冷却管道に送り・冷却し
てから浄水箱の中に貯存し・且つ・前記電磁バルブイツ
チー第−及び第二電熱加熱器及びポンプモーターの操作
はすべて浄水タンク内の水位制御スイッチで適時に検知
開閉しり電気回路に電源を0N10FFしてその目的を
達成させる0浄水タンク内ce人した蒸倫水の水位が満
水位に達すると9水位制御スイッチは信縛を受けてり電
磁バルブをOFFして止水しタボンプモーター及び第一
段階第二段階加熱器電源回路をOFFして操作を停止す
る0 印本發明装置シスムの第四部分には原水冷凍システム及
び各出水口!並びに出口を制御する各微動スイッチとを
含みう前記過程を経て製作した蒸崗水が既に浄水タンク
!循環管道及体水桶を満たすとシステム全値が作業を停
止するO 出水微動スイッチを押して原水を成用する時は9その電
m路によりポンプモーターが信縛を受けて始動連軸し1
m水タンク内の純浄水を吸引してその原水を管道から原
水出水にまで邊り1汗水タンク内の水位が次第に低下す
ると9低水位制御スイッチが閉合して信襞を進水電磁バ
ルブスイッチに傳達して9第一1第二加熱器電気回路及
び連部中のポンプモーターを始動しp構成した蒸鋪水を
管道を経て浄水タンクに送り9タンク内の水位が高水位
に達した時に9前記各電源を遮断してシステム全燈の操
作を停止するO前記蒸帽水の製造ステップは前記第(へ
)に)(ハ)の三つのステップの連線操作により達成す
ることができるO前記の方法で出水微動スイッチを押し
て熱水を成用する時1その操作方法は冷水の収用ステッ
プと全く同じである外シ熱水な成用する時は微動スイッ
チの動作により倍波を傳送して第三加熱器電気回路を閉
合して瞬間的に出水口に装置しである第三加熱器を加熱
することにより熱水が得られる!それから浄水タンクの
水位制御スイッチの操作状況は一切冷水取用の時の状況
と完全に同様であり9繰返し飲水を成用することにより
循環操作をなすO(ト)前記第(ハ)項の作業連軸の過
程において=m水タンクからポンプで吸引した水流は!
ベルヌーイ管を経由した時に少ベルヌーイ管の置屋によ
り眼力作用を發生し鵞蒸偏加温桶内の蒸發水蒸気を吸入
循還し管道な経て浄水タンク内に入り!一部分の循環水
も亦同時に管道を経て原水タンク内に送込んで貯存され
る原水タンク内に純浄水が注済され浄水箱も亦高水位に
達するとIm水箱内の水位制御スイッチは高水位倍波を
受入れてツ早速水流開閉電磁バルブに倍波を與えて進水
源を閉鎖しツと同時にポンプモーター9第一加熱器!第
二加熱器に倍波な與えて電源回路を遮断し操作を停止す
る0 ■前記第(ト)項の操作過程において9純浄水が原水タ
ンクを注満した時に1氷水タンクに装置された冷度感應
器の検知により冷凍システム装置に信縛を與えて壓縮器
及び敢然ファンを始動して冷却作業を進め撒水を製造す
る9原水タンクの純浄水が規定冷却度まで低下す、−と
t冷感應器から壓縮機p敢然ファンに信縛を與えて電源
回路を遮断し連部を停止する1原水を成用する時に原水
量が次第に減少するので雪ワーターバイプにより浄水タ
ンクの水流を入れて補充するが9それに拌い原水の温度
が上昇して規定温度になると!そこで亦冷度感應器より
壓縮機及び敢然ファンに信縛を與えて始動し!冷却連軸
を進行するO (匂微動スイッチを押して原水精肉の木本を成用する時
・原水は出水微動スイッチにより、IIJもポンプモー
ターに信縛を與えて原水を出水口に輸送するようになる
!その時に浄水タンク中の浄水も亦ポンプにより吸引さ
れて循環し1水水タンク内に送入されて原水桶の水位を
補充するツ面して浄水タンクの水位は績けて低下し9低
水位に達すると水位制御スイッチから水流スイッチ電磁
バルブに倍波を與えその進水を促進すると同時に一第一
加熱器う第二加熱器に倍波な與えて電源回路をタッチし
て加熱しj進水加熱を促進し1運轄中のポンプモーター
により循環水を吸引することによりベルヌーイ管をして
置屋を生成し蒸階加温桶内の水蒸気を吸引しり1應冷却
した後に循環ワーターパイプを経て浄水タンクに送入し
て規定高水位状態まで補充すると9その時に水位制御ス
イッチから水流スイッチ電磁バルブに信縛を與えて進水
を停止し−並びに第一加熱器9第二加熱器及びポンプモ
ーターの電源回路を遮断し連軸を停止する0 (ハ)前記第(→項から第(ト)項までの各操作はすべ
て水位側御スイッチッ出水微動スイッチ及び冷度感應器
の制御により適時に操作して純浄及飲用水を提供する目
的を達成する夕本發明の第−加熱器及び第二加熱器には
過濡感應器が設けられt停水した時に温度が上昇して設
定基準以上になった時にp自動的に加熱器の電源回路及
びポンプモーターの電源回路を遮断して連軸を停止しす
以て安全防護の目的を達成することができるO こ\で本發明の作業ライン圓を参照しながら詳細に説明
する0(1)本發明は一種の全自動蒸崗三用飲水處理装
置システムでνその流程は水濾過少加熱蒸發冷却ツ貯存
う冷凍1取用等とにより構成しているO先ず受入れた水
道水を綱目濾過器lを経てりその繊維網及び活性炭素粒
で水中の異味1菌値或いは大きい汚染粒子及び錐質等を
除去し一濾過後の水は水屋により水流制御バルブ2に入
って流水量を適常に調節し穿適切な水量をスイッチング
電磁バルブ3に導入して!水流が蒸發の過程中に流量過
多或いは水胆力が高ることを免除することができるもの
であるO〔2〕流水が水流量制御バルブ2を経てスイッ
チング電磁バルブ3に入るのはI浄水タンク9内の水位
制御スイッチ10によりスイッチング電磁バルブ3を始
動して進水或いは止水の操作をなしjm水タンク9の水
位が水位制御スイッチ10の高水位に達した時に夛スイ
ッチング電磁バルブ3に信縛を與えて水源を閉鎖して進
水を停止するO (3)水流がスイッチング電磁バルブ3から入って第一
加熱器4に迭られてくるとtこの時に第一加熱器4はポ
ンプモータ−8j水位制御スイッチIO+出水微動スイ
ッチ181,182,183等の信歇作用により加熱器
電源回路をタッチして加熱作用を進め9そこで第一加熱
器4に入った水流は瞬間的に加熱されて水濡を上昇し1
更に水流の開力により加熱された水流を第二加熱器5を
装置している蒸榴加濡桶6内に送って請けて加熱蒸發を
進め水蒸気を形成する(4)水流が第二加熱器5に入る
とり蒸階加濡桶6内の第二加熱器5により蒸因桶内の温
度を蒸發高濡に達成させておりツこの時に又ベルヌーイ
管7がポンプモーター8が浄水タンク9の中かう純浄水
を吸引して循環水流管道に入った爲に形成した置屋吸力
作用を受けツ水蒸気は迅速に循環水流管道内に吸収され
て冷却凝結し!水流の循環と共に浄水タンク9に流入貯
存しp而して浄水タンクの水位が次第に上昇する0 (5)水流が第一加熱器4から蒸値加温桶6に入って蒸
發すると!ポンプモーター8は水位制御スイッチ10の
作用で始動しI浄水タンク9内の水を吸引して循環水流
管道に入りう水流循環によりベルヌーイ管7をして置屋
吸力作用を酸体させ書迅速に水蒸気を冷却して循環水流
管道内に導入し!循環してから浄水タンク9及び本水桶
12内に入り1体水桶が注涌され浄水タンクが高水位状
態になるまで績くO (6頗水タンク9の水位が低下して水位制御スイッチl
Oの低位になると9スイツチング電磁バルブ3に信歇を
與えて始動し水流を導入しり前記第(2)〜(5)項の
流程を脛て更に蒸諦水を酸体して浄水タンク9内に邊る
り或いは出水微動スイッチ181,182,183を押
して飲水を収用する時にクポンプモーター8も亦倍波を
與えて起動しI浄水タンク9内の純浄水を吸引して循環
管道に入り9出水口180或いは190或いは200か
ら取水する!この過程において汗水タンク9の水位制御
スイッチlOが低水位になると信歇を與えてポンプモー
ター8を始動しり第一加熱器4g第二加熱器5のfiQ
熱電源をタッチして加熱し並びにスイッチング電磁バル
ブを始動して入ねを導入すると共に操作を始め9水位制
御スイッチIOが高水位に達し!或いは水位微動スイッ
チ181 、182 、183を押していない時には9
ポンプモーター8も亦連部を停止するり(7)加熱蒸發
した水蒸気はベルヌーイ管7の作用で置屋張力により循
環水流管に導入され9管道内の水で冷却敢然されると凝
結して液饅になリーポンプモーターの推邊で浄水タンク
9内に送入されるO以上第(2)項から第(7)項まで
の流程は水道水から蒸鴎飲用水を構成する全過程である
0 (8)水蒸気が冷却凝結して水になり浄水タンク9に入
り9水位制御スイッチ10の高水位になると9信欽を與
えてポンプモーター81第二加熱器59第−加熱器4I
スイツチング電磁バルブ3の電源回路帖遮断し運軸を停
止するO逆に浄水タンク9の水位が収用で水位制御スイ
ッチIOの低木位動を低下させるとツ部ち信歇を與えて
ポンプモーターgI第二加熱器ツ第i加熱器及びスイッ
チング電磁パルプの電源回路をタッチさせて連軸な始め
るようになる(9)熱水出水微動スイッチ182がブツ
シュされると9すぐポンプモーター8に信歇を與えて浄
水タンク9内の純浄水を吸引しり循環水流管道を経て第
三加熱器11に入り瞬間的に加熱しり熱水出水口190
を経てアウトプットするリボンブモーター8が始動し【
浄水タンク9内の水を吸引して循環水流管道に入ると9
純浄水も・亦管道に沿い本水桶12に入りt或いは水氷
出水微動スイッチ181が始動した時にポンプモーター
8に信歇な與えて水流循環を吸引し9本水桶1°2内の
低下した水量を補充するOαG!@#水が循環管道に従
って本水桶12内に送込まれると!冷度感應器13は水
温感應で冷凍装置システムの壓縮機15を始動して冷媒
を壓縮し?敢然水タンク16及びファン17を経て紋熱
しツ熱交換を行って本水桶12の水温を低下させるt水
温が規定冷却度まで低下した時に冷度感應器13は再び
検知して壓縮機15及び敢然ファン17に信歇を與えて
その電源回路を遮断し運軸を停止するj本水桶12の外
周囲に巻かれている冷媒管14は一冷度感應器13が壓
縮機15を始動して冷媒を壓縮して冷媒管14に入り循
欝して敢然水箱16に入ると9更にファン17を経て散
熱した後に壓縮機内にバックフィードされる・Φ)壓縮
機15の始動停止は冷度感應器13の検知によるもので
9水濡が上昇すると検知し−並びに壓縮機15に偶数を
與えて始動操作し・熱交換循環を進め・本水桶12内の
純浄水の冷凍を行い水温を低下する・前記の壓縮機15
及び敢然水タンク16並びにファン17の始動停止は本
水桶12の冷度感應器13の検知により操作するもので
ある・ 〕2)本発明装置システムは前記の流程により各種の異
なるそして必要にマツチする飲用水を構成したもので・
構成した純浄水を導き出すだけで飲用できるし・且つ人
それぞれの嗜好により冷水1熱水・凍水に区分される・
前記の各種の水は均べて純挿な蒸偏水で・入替の健康に
マツチする錐質のないものである・取水する時に出水徹
動開關181−182=183をブツシュ始動すると1
ポンプモーター8に信被を與えて始動し[汗水タンク9
内の純浄水を吸引して循環管道を鰹てそれぞれ180・
190・200の出水に邊る・用水の過程において水位
が次第に低下し=?l水タンク9の水位が水位制御スイ
ッチlOまで低下して低水位準位を検知すると・第二加
熱器5・第一加熱器4及びスイッチング電磁バルブ3等
に償襞を與えて・同時にタッチして加熱器及びスイッチ
ング電磁バルブの電源回路をして運軸を始め第一次循環
を進める・加熱蒸発して構成された水蒸気はポンプモー
ター8の吸引によりワ−ターパイプ中でベルヌーイ管7
により形成した置屋張力により・循環管道の水流に沿っ
て・水蒸気が冷却凝結して浄水タンク9内に流入し・前
記原水タンク9の水位が次第に上昇し慶水位制御スイッ
チ10の機知で高水位と確認された時は磨早速ポンプモ
ーター8・第二加熱器5・第一加熱器4#スイツチング
電磁バルブ3に信領を與え・電源回路を遮断して操作を
停止する・本発明の飲水處埋システムは濾過した水流を
高熱蒸發で水を分子分解し・更に津潔な水分子をベルヌ
ーイ管の置屋吸力作用により蒸発及び冷却を加速し・水
道水の中に含有されている余分な需化物・クロロホーム
及び金層元素等の有害錐質を完全に分離し・而して純浄
な飲用水を得るようにしたものである拳一般に田川され
ている飲水處理システムは煮沸冷却だけで1水中には不
良の幅物質或いは堕化物及びクロロホーム1重金屡元素
等の癌に罹り易い有害物質を依然として含有しているの
で一本當の沖清した飲用水が得られない・本発明の飲水
處理システムは確かに飲水の衛生を確保し・λ値の健康
を増進することができるものである・囮圓面の藺草な説
明 第−圓は本發明の全自動蒸篩三用飲水處埋装置システム
作業流程■第二圓は本発明の飲水處埋装置システム流程
圓・第三[II](A)は本発明システム装置第−屑部
分正面圓・(B)は本発明システム装置第−屡部分手面
圓・(C)は本発明システム装置第一層部分右側午面圓
・第四圓(D)は本発明システム装置第二層部分正面l
・(E)は本発明システム装置第二層部分牛面圓Φ(F
)は本発明システム装置第二層部分右側面間・第五間(
G)は本発明システム装置第一・第二層組合せ正面■・
(H)は本発明システム装置第一・第二眉組合せ牛面閂
・(1)は本発明システム装置第一・第二層組合せ右側
面間01・・・・・・濾過器 2・・・・・・水流量制
御パルプ 1・・・・・・スイッチング電磁バルブ 4
・・・・・第一加熱器 5・・・・・第二加熱器 6・
・・・・・蒸篩加温桶 61・・・・・・放水口 62
・・・・・・保温断熱装置・7、ベルヌーイ管 8ポン
プモータ 9.汗水タンク 10.*位制御スイッチ 
11第三加熱器 lz凍水桶 121放水口13、冷度
感應器 14.冷媒管 141保f!A断熱装置 15
壓縮機16散熱水タンク 17.ファン 180冷水出
口 190沸騰水出口200原水出口 18.水管 1
81冷水出水微動スイツチ182熱水出水微動スイツチ
 183凍水出水微動スイツチ201水流管路 202
電源線路 203水蒸汽管路204冷媒管路 3図 (C) 区 \ゴ fG) (I+
[Detailed description of the invention] A kind of fully automatic steamer three-purpose drinking water burying device system: the first stage includes a mesh filtration device and a water flow control valve to control the flow rate, and a switch magnet valve to control the water entry or water stop. ■forming a system for introducing tap water into the configuration of the present invention, the second stage is a heating steaming device;
- Contains a first heater and a second heater - The introduced water is instantaneously heated, its temperature rises, and is further heated and evaporated by the second heater - All the above-mentioned launching heating and evaporation operations are carried out in the water purification tank. The third stage, which is automatically opened and closed by the water level control switch, is composed of a cooling device and a purified water tank that collects water.The evaporated water vapor is transferred to the circulating water pipe by the action of the sweat tank pump's linked shaft and Bernoulli tube. Inhale and cool the condensed water and store it in the sweat tank.The above first stage polishing can be achieved by the sequence control of the water level switch of the water purification tank.Fourth stage is a device for producing raw water and hot water.It is a fully automatic steamer consisting of a refrigeration device, a raw water bucket for storing raw water, three types of cold water, hot water, raw water outlet, and a water outlet micro-motion switch. This is a drinking water storage system, and its launching, stopping, heating evaporation, cooling, storage, and refrigeration 1 heating are all controlled by the water level control switch installed in the water purification tank, making it a clean drinking water storage system. Tap water is originally a kind of drinking water that is convenient to use and safe and hygienic.It brings many conveniences and comforts to humankind. In daily life, many incidents of drinking water contamination occur due to carelessness and unawareness.In severe cases, waterborne diseases may occur or the health of the cage may be endangered.Thus, it is important to be careful during daily life. In addition, in today's life, the pollution of water sources is already extremely crowded, and we are constantly crying out to protect clean water sources.It is very regrettable that the water gushing out of the faucet is increasing. Unreliable - Drinking tap water is a thing of the past - Especially when the water level drops over a long period of time and there is a shortage of water, when the water from the bottom layer of a dam is used as tap water - The quality is naturally poor. The smell of disinfectant water is also becoming stronger, and it is clear that the water quality is poor when the amount of 1 added is high.As revealed in the water quality survey report from last year, tap water is generally contaminated with cancer-causing substances. Although the content of ``chloroform'' is not necessarily high, it is a matter of concern to many people. The contamination situation of heavy metals and other unidentified substances in some tap water sources has become very serious. Nowadays, people drink a glass of water with a bitter look on their faces.Therefore, various manufacturers are offering various water purifiers, drinking machines, etc. to the market from outside or by self-development. People lack confidence when it comes to tap water.How much effect does this type of home drinking water treatment equipment have on improving water quality? These two methods, which are divided into two categories, large-scale mesh filtration and heating boiling, are certainly effective against large-sized contaminants that are clearly visible to the naked eye and bacterial binding. For example, when it comes to heavy metal ions, chloroform, or other stratified substances, the effectiveness of 97 remains questionable. Since mesh filtration adds ordinary carbon particles, it is of interest for bacterial pulp or large contaminant particles. However, all of these contaminants have been completely buried in the water purification equipment of the tap water factory.
- A considerable amount of research has been carried out mainly on biological contamination. ■The purpose of water purification must be to eliminate bacterial contamination. However, the Dosui factory does not have any self-monitoring ability when it comes to ordinary ferocious contamination. The situation is such that there is no way to monitor and supervise the trace contamination of heavy metals and chloroform.Heavy metals originate from pollution that comes from water sources.The source of chloroform originates from the growth of algae in water sources, and it is automatically contaminated. Chloroform is synthesized in the water.However, there are not many cases of this kind of situation.Contamination with organic substances is relatively severe, and the sterilization method of adding 2 units to the water purification device is... Instead, it combines organic matter and stratified matter, leading to a situation where the chloroform content is too high.The more polluted the water source is, the more polluted matter is added, and the concentration of this carcinogenic substance is increasing. Mesh filtration is also impossible to bury, as is the contamination that cannot be buried in tap water factories. All of the particle sizes of such contaminants are smaller than mesh filtration. Heating and boiling degrades water quality. However, it is believed that 9-chloroform, which is limited to bacterial contamination, is destroyed during the heating process. If it is heated together with contaminants, it may become abrasive and slag, and new carbon dioxide or other stratified organic substances may be generated. Is it possible to remove pollutants? This is a very big problem. Chloroform and heavy metals become highly carcinogenic compounds when they contaminate tap water. Moreover, the hazardous pollutants that have accumulated over a long period of time are all due to contamination of the water source. - Until now, the only means of preventing contamination in tap water factories is the addition of stratified substances. #When the water source was in good condition in the past, the amount usually added was about 1.
~2 PPM9 The amount of additive added to the current purified water is approximately 110 PP. - The extremely high amount of 65 PPM remains on record. - In the past, a baby was poisoned by cooking milk at home using a hot drinking machine. In some cases, there are cases where such drinking water production systems currently on the market have many deficiencies.In view of this, the inventor has conducted painstaking research into the beta drinking water burying device system and has developed this system. The present invention is a fully automatic drinking water burying system for three purposes: water evaporation, water stopping, heating.・It controls evaporation, cooling, storage, circulation milling, freezing, or instant heating, and simultaneously produces three types of drinking water equipment systems such as cold water, hot water, and ice water. ・I will explain each item separately. f) Tap water is sent from the piping to the mesh filter, ordinary carbon particles are added to eliminate off-taste bacteria and bacterial contamination in the water, and the filtered water is sent to the water flow control valve and polished. (9) The second part includes a heating and evaporation device, which appropriately limits the flow rate of the water sent in and introduces the filtered water through the guide pipe to the electromagnetic valve switch, thereby controlling the water launch or water stop in a timely manner. - Formed by a first heater and a second heater S The first heater instantaneously heats the incoming water to raise the temperature and polish it, and then the heated incoming water is sent to the second heater by its own power. The second heater is installed inside the steamer heating tub, and the outer wall of the first heater and the steam sieve heating tub is coated with moisture-resistant and heat-insulating material. It covers the heat insulation equipment of the equipment and improves the heat spread rate without losing body heat, and the above-mentioned launch/water stop switching electromagnetic valve is also used for the electric heating equipment of the first stage heater and the second stage heater. The opening and closing of the switching electromagnetic valve is all controlled by the water level control switch installed on the water purification tank, which will be described later, to open and close the electric circuit and operate it properly. The three parts consist of a cooling system, a collection water purification tank, and a pump motor. The distilled water injected into the water purification tank is sucked and circulated in the pipe.
u+J7oa), the water vapor evaporated from the inside of the steam heating tank is quickly sucked in, sent to the cooling pipe, cooled, and then stored in the water purification box. 2) The operation of the electric heater and pump motor are all controlled by the water level control switch in the water purification tank, and the water level in the water purification tank is detected to open and close in a timely manner.The electric circuit is turned on and off to achieve its purpose. When the water level reaches the full level, the water level control switch 9 is activated and turns off the electromagnetic valve to stop the water and turn off the tap motor and first stage second stage heater power circuit to stop operation. The fourth part of the equipment system is the raw water refrigeration system and each water outlet! The steamed water produced through the above process is already in a clean water tank! When the circulation pipe and body water tank are filled, the entire system stops working. When you press the water discharge switch to produce raw water, the pump motor receives a signal from the electrical circuit and starts up.
1. When the water level in the sweat tank gradually decreases, the low water level control switch 9 closes and the solenoid valve switch is activated. When the water level in the tank reaches the high water level, The step of producing steam water by cutting off each power source and stopping the operation of all lights in the system can be achieved by the continuous operation of the three steps (F) and (C). When releasing hot water by pressing the micro-movement switch, the operation method is exactly the same as the cold water extraction step.When producing hot water outside, the micro-movement switch is operated to send out harmonic waves. Hot water can be obtained by closing the third heater electric circuit and instantaneously heating the third heater, which is installed at the water outlet! The operating conditions for the water level control switch in the purified water tank are completely the same as when cold water is taken, and the circulation operation is performed by completing drinking water nine times. In the process of connecting shafts = m The water flow sucked by the pump from the water tank is!
When it passes through the Bernoulli tube, the small Bernoulli tube holder creates an ocular effect, and the vaporized water vapor in the unevenly heated tank is sucked and circulated, and then enters the water purification tank through the pipe! A portion of the circulating water is also simultaneously sent into the raw water tank via the pipe and purified water is poured into the raw water tank and stored. When the water purification box also reaches a high water level, the water level control switch in the water box will double the high water level. After accepting the wave, immediately give a double wave to the water flow opening/closing solenoid valve to close the launch source, and at the same time pump motor 9 first heater! Apply harmonics to the second heater to cut off the power circuit and stop the operation. 0. In the operation process of item (g) above, when 9 pure purified water fills the raw water tank, the cold water installed in the 1 ice water tank The refrigeration system device is given confidence by the detection of the temperature sensitive evaporator, and the condenser and fan are started to proceed with the cooling process. From the sensitizer to the condensing machine, give a command to the fan and cut off the power supply circuit to stop the series. 1. When the raw water is used, the amount of raw water gradually decreases, so use the snow water pipe to add water to the purified water tank to replenish it. However, when the temperature of the raw water increases and reaches the specified temperature! Therefore, I gave my confidence to the compressor and the fan from the coldness sensing evaporator and started it! O proceeding through the cooling shaft At that time, the purified water in the purified water tank is also sucked by the pump and circulated, and the water is sent into the water tank to replenish the water level in the raw water bucket.Then, the water level in the purified water tank gradually decreases.9 When the water level reaches a low level, the water level control switch gives a double wave to the water flow switch solenoid valve to promote its launch, and at the same time, gives a double wave to the first heater and second heater to heat it by touching the power circuit. j Promote water launch heating, create a Bernoulli tube by suctioning circulating water with the operating pump motor, sucking the steam in the heating tank, and after cooling, open the circulating water pipe. After that, the water is sent to the purified water tank and refilled to a specified high water level.9 At that time, the water level control switch gives a command to the water flow switch solenoid valve to stop the water launch. Cut off the power supply circuit of the motor and stop the linked shafts. (c) Each operation from item (→) to item (g) above shall be performed in a timely manner by controlling the water level side control switch, water output fine adjustment switch, and cold temperature sensing device. Yumoto Shumei's first and second heaters, which operate to achieve the purpose of providing purified and drinkable water, are equipped with overwet detection devices, which cause the temperature to rise and exceed the set standard when the water is stopped. The purpose of safety protection can be achieved by automatically cutting off the heater power circuit and the pump motor power circuit and stopping the linked shafts when 0 (1) This invention is a kind of fully automatic steaming, three-purpose drinking water treatment system, and its process consists of water filtration, heating, evaporation, cooling, storage, refrigeration, etc. First, the received tap water is passed through a mesh filter, and its fiber network and activated carbon particles remove any off-flavors, large contaminants, contaminants, etc. from the water. The water flow control valve 2 enters the water flow control valve 2 to properly adjust the flow rate, and the appropriate water flow is introduced into the switching solenoid valve 3!The water flow can avoid excessive flow or high water pressure during the evaporation process. O [2] The reason why the flowing water enters the switching solenoid valve 3 via the water flow control valve 2 is to start the switching solenoid valve 3 by the water level control switch 10 in the water purification tank 9 and start or stop the water. When the water level of the water tank 9 reaches the high water level of the water level control switch 10, the switching solenoid valve 3 is given a signal to close the water source and stop launching. (3) The water flow is controlled by the switching solenoid valve. When it enters through the valve 3 and is passed to the first heater 4, at this time the first heater 4 is powered by the heater power supply by the reciprocal action of the pump motor 8j water level control switch IO + water output fine movement switches 181, 182, 183, etc. Touch the circuit to advance the heating action 9 The water flow that entered the first heater 4 is instantaneously heated and the water level rises 1
Furthermore, the water stream heated by the opening force of the water stream is sent into the steamer wetting tub 6 equipped with the second heater 5 to proceed with heating and steaming (4) The water stream is heated by the second heater 5. 5, the second heater 5 in the steaming tank 6 is used to bring the temperature in the steaming tank to a high level of steaming temperature. The water vapor is quickly absorbed into the circulating water flow pipe and cooled and condensed due to the suction force created by the suction of the pure purified water that enters the circulating water flow pipe! As the water flow circulates, it flows into the purified water tank 9 and is stored there, and the water level in the purified water tank gradually rises. The pump motor 8 is started by the action of the water level control switch 10, sucks water in the purified water tank 9, and enters the circulating water flow pipe.The water circulation causes the Bernoulli tube 7 to oxidize the suction force of the house and quickly produce water vapor. Cool it and introduce it into the circulating water flow pipe! After circulating, one body enters the purified water tank 9 and the main water pail 12, and the water is poured into the water pail, and the process continues until the purified water tank reaches a high water level.
When O reaches a low level, the switching electromagnetic valve 3 is energized and started, water flow is introduced, and the process of steps (2) to (5) above is followed to further acidify the distilled water and drain it into the purified water tank 9. When you press the water release switch 181, 182, 183 to collect drinking water, the pump motor 8 also starts with additional harmonics, sucks the purified water in the water purification tank 9, enters the circulation pipe, and outputs water. Intake water from water outlet 180, 190 or 200! In this process, when the water level control switch lO of the sweat tank 9 reaches a low water level, it gives a signal and starts the pump motor 8.
Touch the heat power supply to heat up, start the switching solenoid valve, introduce the input, and start operation. 9 Water level control switch IO reaches the high water level! Or, when the water level fine movement switches 181, 182, and 183 are not pressed, 9
The pump motor 8 also stops the connecting parts (7) The heated and evaporated water vapor is introduced into the circulating water flow pipe by the tension of the Bernoulli tube 7, and when it is cooled by the water in the pipe 9, it condenses and becomes liquid steam. The flow from paragraphs (2) to (7) above is the entire process of forming drinking water from tap water into distilled water. (8) Water vapor cools and condenses to become water, enters the water purification tank 9, and when the water level reaches the high water level of the water level control switch 10, a signal is given and the pump motor 81, second heater 59, second heater 4I
The power supply circuit of the switching solenoid valve 3 is cut off and the shaft operation is stopped. Conversely, when the water level of the water purification tank 9 is expropriated and the low level movement of the water level control switch IO is lowered, the power supply circuit of the solenoid valve 3 is cut off and the pump motor Touch the power supply circuit of the second heater, the i-th heater, and the switching electromagnetic pulp to start the linked shaft. (9) When the hot water discharge fine movement switch 182 is pressed, the pump motor 8 is immediately energized. The pure purified water in the purified water tank 9 is then sucked, passes through the circulating water flow pipe, enters the third heater 11, and is instantaneously heated.The hot water outlet 190
After that, the ribbon motor 8 that outputs starts and [
When the water in the water purification tank 9 is sucked and enters the circulating water flow pipe, 9
Pure purified water also enters the main water tank 12 along the pipe, or when the water ice out water micro-motion switch 181 is started, the pump motor 8 is reliably turned on and the water circulation is sucked, reducing the amount of water in the nine water tanks 1°2. OαG to replenish! @# When water is sent into the main water bucket 12 along the circulation pipe! The coldness sensing device 13 senses the water temperature and starts the compressor 15 of the refrigeration system to compress the refrigerant. The temperature of the water in the main water bucket 12 is lowered by exchanging heat through the water tank 16 and fan 17. When the water temperature drops to the specified cooling degree, the coldness sensing device 13 detects it again and the condenser 15 and the water temperature sensor 13 detect it again. The fan 17 is energized and its power supply circuit is cut off to stop its shaft operation. When it is condensed and circulated in the refrigerant pipe 14 and enters the water box 16, the heat is further dissipated through the fan 17 and then back-fed into the condensing machine. It is detected by the detection of 9 that the water wetness rises, and the condenser 15 is given an even number and is started, the heat exchange circulation is proceeded, and the purified water in the main water bucket 12 is frozen to lower the water temperature. compressor 15
The starting and stopping of the water tank 16 and the fan 17 are operated by the detection of the coldness sensing device 13 of the main water bucket 12. 2) The device system of the present invention can be adapted to various different needs according to the above-mentioned flow process. Consists of drinking water.
You can drink it just by extracting the purified purified water, and it can be divided into cold water, hot water, and frozen water depending on the taste of each person.
All of the above-mentioned types of water are pure, evaporated and polarized water, and have no cone quality that is suitable for health.When you start the water flow opening 181-182 = 183 when taking water, 1
Put a cover on the pump motor 8 and start it [sweat tank 9]
The pure purified water inside is sucked and the circulation pipe is drained for 180 yen each.
190/200 yen, the water level gradually decreases during the irrigation process =? When the water level in the water tank 9 drops to the water level control switch IO and a low level is detected, the second heater 5, the first heater 4, the switching electromagnetic valve 3, etc. are provided with compensation folds, and the switch is touched at the same time. The power supply circuit for the heater and the switching electromagnetic valve is then started to operate the shaft and proceed with the primary circulation.The water vapor formed by heating and evaporation is sucked by the pump motor 8 into the Bernoulli tube 7 in the water pipe.
Due to the tension created by the water vapor, water vapor cools and condenses and flows into the purified water tank 9 along the water flow of the circulation pipe, and the water level in the raw water tank 9 gradually rises until the water level reaches a high level by the control of the water level control switch 10. When confirmed, immediately give confidence to the pump motor 8, second heater 5, first heater 4, # switching solenoid valve 3, shut off the power circuit and stop operation, and drink the water in the drinking area of the present invention. The burying system uses high-heat evaporation to decompose the water molecules in the filtered water stream, accelerates evaporation and cooling of the pure water molecules through the suction action of the Bernoulli tube, and removes excess necessities contained in tap water.・The commonly used drinking water treatment system, which completely separates harmful substances such as chloroform and gold layer elements, and thus obtains pure drinking water, uses only boiling and cooling to produce pure drinking water. Since the water still contains harmful substances that are susceptible to cancer, such as harmful substances or degraded substances and chloroform-1 heavy metal elements, it is not possible to obtain a bottle of pure drinking water.The drinking water treatment method of the present invention The system can certainly ensure the hygiene of drinking water and promote the health of the λ value.The detailed explanation of the decoy area is the fully automatic steam sieve three-purpose drinking water burying device system of this company. Work process■ The second circle is the drinking water burying device system flow circle of the present invention.Third [II] (A) is the front circle of the system device of the present invention - the waste portion.(B) is the third part of the system device of the present invention The hand circle (C) is the right side of the first layer of the system device of the present invention. The fourth circle (D) is the front side of the second layer of the system device of the present invention.
・(E) is the second layer partial cow-face circle Φ (F
) is between the right side of the second layer part of the system device of the present invention and the fifth space (
G) is the front view of the first and second layer combination of the system device of the present invention.
(H) is the first and second eyebrow combination of the system device of the present invention, and (1) is the right side of the system device of the present invention, first and second layer combination 01...Filter 2... ...Water flow rate control pulp 1...Switching solenoid valve 4
...First heater 5...Second heater 6.
...Steam sieve heating tub 61 ...Water outlet 62
・・・・・・Heat insulation device・7, Bernoulli tube 8 Pump motor 9. Sweat tank 10. *Position control switch
11 Third heater 1z Freezing water bucket 121 Water outlet 13, Coldness sensing device 14. Refrigerant pipe 141 f! A insulation device 15
Condensing machine 16 heat dissipation water tank 17. Fan 180 Cold water outlet 190 Boiling water outlet 200 Raw water outlet 18. Water pipe 1
81 Cold water release fine movement switch 182 Hot water water release fine movement switch 183 Frozen water release fine movement switch 201 Water flow pipe 202
Power supply line 203 Steam pipe line 204 Refrigerant pipe line 3 diagram (C) Ward\gofG) (I+

Claims (1)

【特許請求の範囲】[Claims] 一種の全自動蒸篩飲水處埋装置システムで;第一段階に
は網目濾過装置・流水量制御スイッチ及びスイッチ電磁
バルブとを含むものとにより・初歩濾過進水量の調節及
び規定進水止水の連結シーケンスシステム・第二段階に
は第一・二次瞬間加熱及び蒸發連結運行装置とを含み・
且つ第一段階の作業と連結施行し・第三段階には冷却循
環凝結貯水の浮氷装置システムを含み・冷却は循環水管
をベルヌーイ管に連結して9循環水により負壓を發生さ
せて水蒸気を吸収することにより冷却を進行して凝結し
て水となるのを本発明の主要特徴とし・前記のよりに製
作した蒸階水を循環管道を経て浄水タンクに入り・且つ
本段階の作業は水位制御スイッチにより時限通りに探測
して信抵を送り・前記第二段階と連結施行する・第四段
階は原水及び熱水の製造装置システムで・それには瞬間
〃口前装置・冷凍装置及び体水桶・並びに三種の飲水:
冷水・熱水・原水・出水口と連動する出水微動スイッチ
を含み磨出水徽動スイッチの検知によりモーターポンプ
を始動して必要とする飲水をそれぞれ送り出し・且つ第
四段階の作業は水位制御スイッチ及び出水微動スイッチ
の自動検知後に信襞を與え9第三段階の作業と自動的に
繋がりを以て進行するので・m返し飲用水清浄處理シス
テムを提供することにより人饅の健康にプラスするもの
A kind of fully automatic steam sieve drinking water burying device system; the first stage includes a mesh filtration device, a water flow rate control switch and a switch solenoid valve, and the initial filtration starting amount adjustment and specified starting water shutoff. Connection sequence system・The second stage includes the first and second instant heating and steaming connection operation devices・
The third stage includes a cooling circulation condensation storage water floating device system.Cooling involves connecting the circulating water pipe to the Bernoulli tube to generate a vacuum vessel using the circulating water to generate water vapor. The main feature of the present invention is that the water is cooled by absorption and condensed to form water.The steamed water produced as described above enters the water purification tank through the circulation pipe, and the work at this stage is The control switch detects and transmits the signal on time, and connects it with the second stage. The fourth stage is the raw water and hot water production system.・And three types of drinking water:
It includes a water outflow fine movement switch that works with cold water, hot water, raw water, and water outlet. Upon detection of the polished water movement switch, the motor pump is started and the necessary drinking water is sent out.The fourth step is a water level control switch and a water level control switch. After the automatic detection of the water release micro-motion switch, the process is automatically linked to the third step of the process, which adds to the health of people by providing a drinking water purification system.
JP9544884A 1984-05-12 1984-05-12 Full-automatic distilled drinking water treatment apparatus system Pending JPS60244384A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP9544884A JPS60244384A (en) 1984-05-12 1984-05-12 Full-automatic distilled drinking water treatment apparatus system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP9544884A JPS60244384A (en) 1984-05-12 1984-05-12 Full-automatic distilled drinking water treatment apparatus system

Publications (1)

Publication Number Publication Date
JPS60244384A true JPS60244384A (en) 1985-12-04

Family

ID=14137972

Family Applications (1)

Application Number Title Priority Date Filing Date
JP9544884A Pending JPS60244384A (en) 1984-05-12 1984-05-12 Full-automatic distilled drinking water treatment apparatus system

Country Status (1)

Country Link
JP (1) JPS60244384A (en)

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5025478A (en) * 1973-07-10 1975-03-18
JPS5436123U (en) * 1977-08-17 1979-03-09
JPS54124367A (en) * 1978-03-20 1979-09-27 Taiko Kikai Kogyo Kk Concentration dryer
JPS5817674A (en) * 1981-07-24 1983-02-01 Seiko Epson Corp Metal oxide semiconductor type semiconductor device
JPS58124580A (en) * 1982-01-20 1983-07-25 Hitachi Zosen Corp Desalination

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5025478A (en) * 1973-07-10 1975-03-18
JPS5436123U (en) * 1977-08-17 1979-03-09
JPS54124367A (en) * 1978-03-20 1979-09-27 Taiko Kikai Kogyo Kk Concentration dryer
JPS5817674A (en) * 1981-07-24 1983-02-01 Seiko Epson Corp Metal oxide semiconductor type semiconductor device
JPS58124580A (en) * 1982-01-20 1983-07-25 Hitachi Zosen Corp Desalination

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