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    • 15. 发明专利
    • Apparatus for producing electrolytic water
    • 用于生产电解水的装置
    • JP2006015220A
    • 2006-01-19
    • JP2004194498
    • 2004-06-30
    • Asahi Glass Engineering Co Ltd旭硝子エンジニアリング株式会社
    • KAMATA MASATOOISHI MASANORIOKADA TAKASHI
    • C02F1/46
    • PROBLEM TO BE SOLVED: To provide an apparatus for producing electrolytic water, from which the produced water stabilized for a long period of time is obtained and which is constituted simply.
      SOLUTION: When the temperature of the salt water supplied through an electrolytic cell supply pipe 17 is ≤10°C in an electrolytic cell 29, a coating film of a noble metal formed on each of an anode 31a and a cathode 31b is worn violently. Therefore, a warming mechanism 23 is arranged on an electrolytic water line to warm the raw water flowing in the electrolytic cell supply pipe 17, so that each of the anode and the cathode is restrained from being deteriorated due to the low temperature. Meanwhile, when the temperature of the produced water in an electrolytic sodium hypochlorite aqueous solution discharging pipe 41 is lowered to around 0-10°C which is suitable for washing food, the raw water flowing in a diluting water supplying pipe 15 is cooled by a cooling mechanism 18. The cooled raw water is mixed with the high-concentration electrolytic sodium hypochlorite aqueous solution discharged from the electrolytic cell 29 in a sodium hypochlorite aqueous solution diluting part 39, so that the produced water obtained by the mixing is controlled to have a desired temperature.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种生产电解水的设备,其中得到长期稳定的生产水并且简单地构成。 解决方案:当在电解槽29中通过电解池供应管17供应的盐水的温度不低于10℃时,形成在阳极31a和阴极31b中的贵金属的涂膜为 剧烈磨损 因此,在电解水管线上设置加热机构23,以使在电解槽供给管17中流动的原水温暖,从而抑制阳极和阴极由于低温导致的劣化。 同时,当电解次氯酸钠水溶液排出管41中产生的水的温度降低到适合于洗涤食物的约0-10℃时,在稀释供水管15中流动的原水被冷却 将冷却的原水与在次氯酸钠水溶液稀释部39中从电解槽29排出的高浓度电解次氯酸钠水溶液混合,使得通过混合获得的生成水被控制为具有 所需温度。 版权所有(C)2006,JPO&NCIPI
    • 16. 发明专利
    • Dehumidifier
    • 除湿机
    • JP2005270700A
    • 2005-10-06
    • JP2004084147
    • 2004-03-23
    • Asahi Glass Engineering Co Ltd旭硝子エンジニアリング株式会社
    • WAKANA YOSHIOMIKAMI MUTSUO
    • B01D53/22B01D53/26B01D63/00B01D63/02
    • PROBLEM TO BE SOLVED: To provide a dehumidifier capable of being reduced in production cost and enhanced in reliability by simply constituting a flow channel of purge air. SOLUTION: When air to be dehumidified of high pressure and high humidity flows in the dehumidifier from the outside, the air to be dehumidified after dehumidification is discharged to the outside from an outlet 154 for the air to be dehumidified. A part of the air to be dehumidified after dehumidification flows in recessed parts 113 of a hollow fiber membrane support member 111 through a gap 158, which is provided to the boundary between a lid part 151 and a hollow fiber membrane support member 11, and the flow channel of purge air comprising a gap 178. This air to be dehumidified passes through the orifices 161 attached to the recessed parts to be reduced in pressure. The purge air of low pressure and low humidity flows in a boot 135 from a purge flow channel inlet 120. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供通过简单地构成吹扫空气的流动通道,能够降低生产成本并提高可靠性的除湿机。 解决方案:当除湿机除湿的高湿度高湿空气从外面流出时,除湿后要除湿的空气从出口154排出到外面,以进行除湿的空气。 除湿后要除湿的一部分空气通过设置在盖部151和中空纤维膜支撑构件11之间的边界的间隙158流入中空纤维膜支撑构件111的凹部113,并且 包括间隙178的吹扫空气的流动通道。待被除湿的空气通过附接到凹部的孔161以减压。 低压和低湿度的吹扫空气从清洗流动通道入口120流入靴子135中。版权所有(C)2006,JPO&NCIPI
    • 17. 发明专利
    • Dehumidifier
    • 除湿机
    • JP2005270699A
    • 2005-10-06
    • JP2004084143
    • 2004-03-23
    • Asahi Glass Engineering Co Ltd旭硝子エンジニアリング株式会社
    • WAKANA YOSHIOMIKAMI MUTSUO
    • B01D53/22B01D53/26B01D63/02
    • PROBLEM TO BE SOLVED: To provide a dehumidifier capable of being miniaturized and enhanced in productivity by simplifying a seal structure between a high pressure region and a low pressure region. SOLUTION: When air to be dehumidified of high pressure and high humidity flows in the dehumidifier 100 from the outside, it flows through a hollow fiber membrane 110 to be allowed to flow out to a gap 121 between an inner case 101 and an outer case 103. The air to be dehumidized after dehumidication flowing out to the gap 121 reaches a gap 125 to be allowed to flow out to the outside of the dehumidifier 100. On the other hand, a part of the air to be dehumidified after dehumidification flowing out of the gap 121 is recirculated into an inner case 101 as purge air whiled reduced in pressure. The purge air in the inner case 101 is allowed to flow out to a gap 123 to be discharged to the outside of the dehumidifier 100 through a purge exhaust port 159. COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:通过简化高压区域和低压区域之间的密封结构,提供能够小型化并提高生产率的除湿器。 解决方案:当除湿机100从外部流过除湿高湿空气的空气时,流过中空纤维膜110,流出到内壳体101和内壳体101之间的间隙121。 在外部流出到间隙121的除湿后要除湿的空气到达间隙125,以允许其流出到除湿器100的外部。另一方面,在除湿后要除湿的空气的一部分 随着净化空气的压力降低,从间隙121流出的气体再循环到内壳101中。 允许内壳体101中的吹扫空气流出到间隙123,以通过吹扫排气口159排出到除湿器100的外部。版权所有(C)2006,JPO&NCIPI
    • 18. 发明专利
    • Circulating water sterilization system
    • 循环水灭菌系统
    • JP2005066386A
    • 2005-03-17
    • JP2003208625
    • 2003-08-25
    • Asahi Glass Engineering Co Ltd旭硝子エンジニアリング株式会社
    • OISHI MASANORI
    • C02F1/50C02F1/46C02F1/76
    • PROBLEM TO BE SOLVED: To provide a circulating water sterilization system which, when oxo acid of bromine and the like are generated at the site, can efficiently use bromide ions and the like, and improve the safety of the system.
      SOLUTION: Electrolytic hypochlorite water is injected into an electrolytic hypochlorite water injection part 111. Cooling water containing sodium bromate is supplied into the electrolytic hypochlorite water injection part 111 from a cooling tower 123 through a cooling water circulation pipe 115. In a reaction tank 117, sodium hypobromite is produced by a reaction of sodium bromate and the electrolytic hypochlorite water. In the cooling tower 123, circulating water is sterilized and disinfected. By the sterilization and disinfection of the circulating water, bromide ions are reproduced in the cooling water. This cooling water is circulated into the electrolytic hypochlorite water injection part 111, thereby the bromide ions are recycled.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种循环水灭菌系统,当在现场产生溴等的含氧酸时,可以有效地使用溴离子等,并提高系统的安全性。 解决方案:将电解次氯酸盐水注入电解次氯酸盐注水部111.将含有溴酸钠的冷却水从冷却塔123通过冷却水循环管道115供给到电解次氯酸盐注水部111中。在反应 通过溴酸钠与电解次氯酸盐水的反应生成次溴酸钠。 在冷却塔123中,对循环水进行灭菌消毒。 通过对循环水进行灭菌和消毒,溴化物离子在冷却水中再生。 该冷却水循环到电解次氯酸盐注水部111中,从而再循环溴离子。 版权所有(C)2005,JPO&NCIPI