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公开(公告)号:JP2019162607A
公开(公告)日:2019-09-26
申请号:JP2018123185
申请日:2018-06-28
申请人: 株式会社東芝
摘要: 【課題】生成する次亜塩素酸水のpHを中性付近に制御可能な電解水生成装置の提供。 【解決手段】電解液を収納する電解液室15aと、それぞれ隔膜16、18を介して前記電解液室に対向する陽極14および陰極20が設けられた電極室15b、15cと、陽極14および陰極20に給電する給電部23と、前記電解液を電解することで得られる陽極生成水と陰極生成水を混合して混合生成水とする生成水混合部34と、を備え、pHが8以下の混合生成水を生成する、電解水生成装置10。 【選択図】図1
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公开(公告)号:JP2015531433A
公开(公告)日:2015-11-02
申请号:JP2015530240
申请日:2013-09-05
发明人: ジェイコブズ.ギデオン.ヨハネス
CPC分类号: C25B1/06 , C25B1/08 , C25B1/12 , C25B9/20 , C25B15/02 , C25B15/08 , F25B23/006 , Y02E60/366 , Y02P20/124 , Y02P20/134
摘要: 電気分解を行い、熱を生成するための装置であって、使用時に電解液を収容する電解液キャビティを形成するセルハウジングと、電解液キャビティ内に設けられる、実質的に平行に離間した複数の電極プレートであって、使用時に電解液に少なくとも部分的に浸る少なくとも一つのアノード及び少なくとも一つのカソードを形成する電極プレートと、使用時に電気電源に接続することで、電解液に電流が供給されて電気分解及び電解液の加熱が行われる、少なくとも二つのコネクタと、電解液キャビティと流体連通し、使用時に熱回収モジュールに連結される少なくとも一つのセル出口と、電解液キャビティへの電解液の供給を可能する少なくとも一つのセル入口とを備える電解セルを含む、装置。【選択図】図1A
摘要翻译: 进行电解,用于产生热量的装置,和一个电池外壳限定含有使用时的电解液的电解质腔,所述腔中提供的电解质,基本上平行间隔开的多个 的电极板,电极板形成至少一个阳极和至少一个阴极在使用过程中,电解液浸渍至少部分地,通过连接到在使用中的电力供应时,电流被供给到电解液 电解和电解溶液进行加热,至少两个连接器,通过所述腔流体连通通过与所述电解液的至少一个小区出口在使用期间连接到热回收模块,电解质的供给到电解质腔 以允许包括包含至少一个小区入口装置电解槽。 点域1A
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公开(公告)号:JP2004218020A
公开(公告)日:2004-08-05
申请号:JP2003007991
申请日:2003-01-16
发明人: NISHIDA HIROSHI , NUKINA YASUYUKI , NAWAMA JUNICHI , NIWA AZUSA , NOMURA YUKIO
摘要: PROBLEM TO BE SOLVED: To realize a simple, inexpensive, stable electrolyzer which supplies functional water with a stable metal ion concentration.
SOLUTION: A stable electrolysis employing only a constant current circuit is realized by placing an anode 4 and a cathode 5 in water to be treated and installing a spring 8 that pushes the anode 4 toward the cathode 5 and an anode-fixing rib 7 which keeps the anode 4 from approaching the cathode 5 any further from a certain point to keep a constant distance between the anode 4 and the cathode 5.
COPYRIGHT: (C)2004,JPO&NCIPI-
公开(公告)号:JP2000265291A
公开(公告)日:2000-09-26
申请号:JP6790999
申请日:1999-03-15
申请人: CHLORINE ENG CORP LTD , TOSOH CORP
发明人: KATAYAMA SHINJI
摘要: PROBLEM TO BE SOLVED: To avoid problems caused by the contact of a cation exchange membrane with a cathode by providing a spacer having a shape and a size, in which the loci drawn by any interval holding part do not intersect with each other at the time of rotating the interval holding part around an attaching part inserted into an opening part. SOLUTION: The spacer 15 is constituted of the interval holding part 20 for holding a distance from the counter electrode or the ion exchange membrane on the electrode surface and the attaching part 21. The interval holding part 20 can have any shape not only circular but optional if the adjacent spacers 15 are not in contact with each other at the time of being rotated by inserting the attaching part 21 into the opening part 24 provided on the electrode surface. Because the spacer 15 is surely attached at a desired position on the whole electrode surface and arranged dot-like, the flowability of the electrolytic solution or the flow of the electrolytic current is not obstructed and the interval between the ion exchange membrane and the electrode is preserved.
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公开(公告)号:JPH09228086A
公开(公告)日:1997-09-02
申请号:JP3089796
申请日:1996-02-19
申请人: OSAKA GAS CO LTD
发明人: NOGUCHI FUYUKI , MIMURA NOBORU , MURASE HIROAKI
摘要: PROBLEM TO BE SOLVED: To provide a technique for keeping the space between a cathode and a sacrificial anode constant so that any short between the cathode and anode due to the build-up of deposits is not caused and any risk of catching fire of an organic solvent is eliminated at the time of producing an organosilicon compound and/or organogermanium compound with the electrolytic cell using the sacrifical anode. SOLUTION: This electrolytic cell is provided with a sacrificial anode which is consumed by an electrochemical reaction in an organic electrolytic synthesis process. In the cell: an electrolytic cell main body that also functions as a cathode consists of a metallic vessel having a conical section whose apex angle is
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公开(公告)号:JPS6468487A
公开(公告)日:1989-03-14
申请号:JP22578387
申请日:1987-09-09
申请人: ISHIGAKI MECH IND
发明人: IWATANI AKITOSHI
摘要: PURPOSE:To efficiently carry out electrolysis until a soluble electrode is consumed by allowing a clamping rod to pierce through the respective electrode plates and a poor-conductivity spacer plate between the electrode plates, and providing a specified long penetrating hole for the clamping rod to the electrode plate. CONSTITUTION:Vertical long holes 3 are bored through the center and four corners of the electrode plates 2 arranged in parallel in an electrolytic cell 1, and several electrode plates are clamped by the clamping rod 4. The spacer rod 8 made of an insulating material is provided between the respective electrode plates 2, and the plate 8 is pierced with the clamping rod 4 and vertically moved along with the clamping rod 4. The major axis of the long hole 3 is longer than the sum of the diameter of the plate 8 and the diameter of the clamping rod 4. When the electrode plate 2 is consumed in the electrolyzer, the interval is adjusted by loosening the clamping rods 4 in the right half of the cell, and lowering the rods along the long hole 3. The electrode plates 2 are then pressed to the left by a jack 9 and successively moved to the left, and the interval is adjusted to the thickness of the plate 8.
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