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公开(公告)号:JP5524201B2
公开(公告)日:2014-06-18
申请号:JP2011515616
申请日:2011-04-13
Applicant: 東芝三菱電機産業システム株式会社
CPC classification number: C01B13/11 , C01B2201/12 , C01B2201/64 , C01B2201/66 , C01B2201/76 , C01B2201/90
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公开(公告)号:EP3359486A1
公开(公告)日:2018-08-15
申请号:EP16853207.5
申请日:2016-10-06
Applicant: Aquallence Ltd Israel
Inventor: RODAN, Yuval , BADALOV, Meir , VIZEL, Moty
CPC classification number: C01B13/115 , C01B2201/12 , C01B2201/22 , C01B2201/32 , C01B2201/60 , C01B2201/62 , C01B2201/64 , C01B2201/66 , H05H1/2406 , H05H1/46 , H05H2001/466 , H05H2240/20 , H05H2245/121
Abstract: The present invention provides a cold plasma ozone generator, comprising: an inlet gas port; at least one in-electrode, said in-electrode having a plurality of holes substantially at a perimeter of the same; said plurality of perimeter holes are in fluid communication with said inlet gas port, said plurality of perimeter holes configured to allow said dry gas to pass therethrough; at least one out-electrode, said out-electrode having at least one hole at the center of the same, said at least one hole configured to allow gas to pass therethrough; said in-electrode and said out-electrode configured to maintain said high voltage AC therebetween; at least one spacer between said in-electrode and said out-electrode, said spacer configured to maintain a constant-width gap between said in-electrode and said out-electrode; an outlet port.
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公开(公告)号:EP0893406A3
公开(公告)日:1999-07-07
申请号:EP98250367.4
申请日:1995-04-24
Applicant: MITSUBISHI DENKI KABUSHIKI KAISHA
Inventor: Kuzumoto, Masaki, c/o Mitsubishi Denki K. K. , Tabata, Youichiro, c/o Mitsubishi Denki K. K. , Yagi, Shigenori, c/o Mitsubishi Denki K. K. , Yoshizawa, Kenji, c/o Mitsubishi Denki K. K. , Mukai, Masahiro, c/o Mitsubishi Denki K. K. , Ochi, Junji, c/o Mitsubishi Denki K. K. , Ozawa, Tateki,c/o Mitsubishi Denki K. K.
IPC: C01B13/11
CPC classification number: C01B13/11 , C01B2201/12 , C01B2201/22 , C01B2201/32 , C01B2201/60 , C01B2201/66 , C01B2201/74 , C01B2201/90
Abstract: An ozone generating apparatus comprises at least one ozone generating unit which includes:
two electrode (2, 31) mutually opposed to generate a discharge in response to high voltage applied therebetween; at least one dielectric (4) interposed between the electrodes to provideAbstract translation: 一种臭氧发生装置包括至少一个臭氧发生单元,该臭氧发生单元包括:相互对置的两个电极(2,31),响应于施加在其间的高电压而产生放电; 至少一个电介质(4)介于电极之间以提供
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公开(公告)号:EP0891941A3
公开(公告)日:1999-07-07
申请号:EP98250368.2
申请日:1995-04-24
Applicant: MITSUBISHI DENKI KABUSHIKI KAISHA
Inventor: Kuzumoto, Masaki, c/o Mitsubishi Denki K. K. , Tabata, Youichiro, c/o Mitsubishi Denki K. K. , Yagi, Shigenori, c/o Mitsubishi Denki K. K. , Yoshizawa, Kenji, c/o Mitsubishi Denki K. K. , Mukai, Masahiro, c/o Mitsubishi Denki K. K. , Ochi, Junji, c/o Mitsubishi Denki K. K. , Ozawa, Tateki, c/o Mitsubishi Denki K. K.
IPC: C01B13/11
CPC classification number: C01B13/11 , C01B2201/12 , C01B2201/22 , C01B2201/32 , C01B2201/60 , C01B2201/66 , C01B2201/74 , C01B2201/90
Abstract: An ozone generating apparatus comprises at least one ozone generating unit which includes:
two electrodes mutually (2, 31) which are opposed to generate a discharge in response to high voltage applied therebetween; at least one dielectric (4) interposed between the electrodes to provide insulation between the electrodes; and a gas supply mechanism to supply an oxygen-containing gas between the electrodes so as to generate ozone by the discharge. In this unit a spacer (61) is inserted into a discharge space (5) causing the discharge to ensure a predetermined distance or more between the electrodes of the ozone generating unit, and the spacer forms a non-discharge portion where no discharge occurs.-
公开(公告)号:US07402289B2
公开(公告)日:2008-07-22
申请号:US10758648
申请日:2004-01-16
Applicant: Youichiro Tabata
Inventor: Youichiro Tabata
IPC: B01J19/08
CPC classification number: C01B13/11 , C01B2201/60 , C01B2201/66
Abstract: An ozone generator for generating ozone by applying a specified process to oxygen by discharge includes a first raw material gas supply unit for supplying the oxygen as a first raw material gas, and a second raw material gas supply unit for supplying an oxide compound gas as a second raw material gas, in which, by excited light, excited and generated by a discharge in the oxygen and the oxide compound gas, the oxide compound gas is dissociated, or the oxide compound gas is excited accelerating dissociation of the oxygen, and ozone is generated. In this way, ozone generation efficiency is raised.
Abstract translation: 一种用于通过排出对氧气进行特定工艺来产生臭氧的臭氧发生器包括:第一原料气体供应单元,用于供应作为第一原料气体的氧;以及第二原料气体供应单元,用于将氧化物化合物气体作为 第二原料气体,其中通过激发光激发并通过在氧气和氧化物化合物气体中的放电产生氧化物化合物气体,氧化物化合物气体被分解,或氧化物化合物气体被激发以促进氧的解离,臭氧是 生成。 这样就可以提高臭氧发生效率。
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公开(公告)号:US20040223893A1
公开(公告)日:2004-11-11
申请号:US10758648
申请日:2004-01-16
Inventor: Youichiro Tabata , Hajime Nakatani , Masaki Kuzumoto
IPC: B01J019/08
CPC classification number: C01B13/11 , C01B2201/60 , C01B2201/66
Abstract: An ozone generator for generating ozone by applying a specified process to oxygen by discharge includes a first raw material gas supply unit for supplying the oxygen as a first raw material gas, and a second raw material gas supply unit for supplying an oxide compound gas as a second raw material gas, in which, by excited light, excited and generated by a discharge in the oxygen and the oxide compound gas, the oxide compound gas is dissociated, or the oxide compound gas is excited accelerating dissociation of the oxygen, and ozone is generated. In this way, ozone generation efficiency is raised.
Abstract translation: 一种用于通过排出对氧气进行特定工艺来产生臭氧的臭氧发生器包括:第一原料气体供应单元,用于供应作为第一原料气体的氧;以及第二原料气体供应单元,用于将氧化物化合物气体作为 第二原料气体,其中通过激发光激发并通过在氧气和氧化物化合物气体中的放电产生氧化物化合物气体,氧化物化合物气体被分解,或氧化物化合物气体被激发以促进氧的解离,臭氧是 生成。 这样就可以提高臭氧发生效率。
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公开(公告)号:US20020058001A1
公开(公告)日:2002-05-16
申请号:US09875746
申请日:2001-06-06
Inventor: Ren-Jang Wu , Shen-Jen Chen , Yih-Fang Lin
IPC: B01J019/08
CPC classification number: C01B13/11 , C01B2201/60 , C01B2201/66 , C01B2201/70 , C01B2201/74
Abstract: The present invention discloses an ozone generator with reduced NOx comprising an air stream generating means; a drying means; an electrical field generating unit; a high-voltage generating means; and a cooling means. The flow velocity of the air stream in the ozone generating area can be increased by means of the air stream generating means up to 700 s.c.c.m, The temperature in the ozone generating area can be lowered by means of the cooling system to lower than 10null C. By means of the above, the amount of NOx produced by the disclosed ozone generator can be reduced substantially.
Abstract translation: 本发明公开了一种具有减少的NOx的臭氧发生器,其包括气流发生装置; 干燥装置; 电场产生单元; 高压发生装置; 和冷却装置。 臭氧产生区域中的气流的流速可以通过气流发生装置达到700sccm来提高。臭氧发生区域的温度可以通过冷却系统降低到低于10℃ 通过上述,可以显着降低由公开的臭氧发生器产生的NOx的量。
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公开(公告)号:US5948374A
公开(公告)日:1999-09-07
申请号:US939989
申请日:1997-09-29
Applicant: Masaki Kuzumoto , Youichiro Tabata , Shigenori Yagi , Kenji Yoshizawa , Masahiro Mukai , Junji Ochi , Tateki Ozawa
Inventor: Masaki Kuzumoto , Youichiro Tabata , Shigenori Yagi , Kenji Yoshizawa , Masahiro Mukai , Junji Ochi , Tateki Ozawa
CPC classification number: C01B13/11 , C01B2201/12 , C01B2201/22 , C01B2201/32 , C01B2201/60 , C01B2201/66 , C01B2201/74 , C01B2201/90
Abstract: There is provided a highly efficient and compact ozone generating apparatus in which a very short air gap of about 0.2 mm is formed at high accuracy. Non-discharge portions are dispersed and disposed to cover an entire discharge space, or a spacer is provided to form the non-discharge portion. Further, an elastic body is mounted on a back face of an electrode, thereby enhancing an air gap accuracy of the discharge space.
Abstract translation: 提供了一种高效紧凑的臭氧发生装置,其中以高精度形成约0.2mm的非常短的气隙。 不排出部分被分散和设置以覆盖整个放电空间,或者设置间隔件以形成不排出部分。 此外,弹性体安装在电极的背面,从而提高放电空间的气隙精度。
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19.
公开(公告)号:US5516493A
公开(公告)日:1996-05-14
申请号:US964082
申请日:1992-10-20
Applicant: Maxwell G. Bell , Stephen J. Smith , David T. Pratt , Matthew P. Sharpe , Dale C. Cable
Inventor: Maxwell G. Bell , Stephen J. Smith , David T. Pratt , Matthew P. Sharpe , Dale C. Cable
CPC classification number: C01B13/11 , C01B2201/14 , C01B2201/22 , C01B2201/34 , C01B2201/64 , C01B2201/66 , C02F1/78 , Y10S422/907
Abstract: The present invention relates to a tubular ozone generator which uses a novel electrode structure wherein a wound electrode has a solid insulator between the turns of the windings.
Abstract translation: PCT No.PCT / AU92 / 00061 Sec。 371日期:1993年1月29日 102(e)日期1993年1月29日PCT提交1992年2月21日PCT公布。 WO92 / 14677 PCT出版物 本发明涉及一种管状臭氧发生器,其使用新颖的电极结构,其中绕组电极在绕组匝之间具有固体绝缘体。
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公开(公告)号:US4045347A
公开(公告)日:1977-08-30
申请号:US682962
申请日:1976-05-04
Applicant: Edward T. Armstrong
Inventor: Edward T. Armstrong
IPC: B01D21/00 , C01B13/10 , C02F1/76 , C02F1/78 , C02F3/04 , C02F3/30 , C02F9/00 , F16L55/02 , F16L55/045 , C02B3/06
CPC classification number: F16L55/045 , B01D21/00 , B01D21/0084 , B01D21/01 , B01D21/14 , B01D21/24 , B01D21/34 , C01B13/10 , C02F1/78 , C02F3/043 , C02F3/302 , C02F9/00 , F16L55/02 , C01B2201/66 , C02F1/76 , Y02W10/15
Abstract: A surge suppression system for dampening surge pressures or pipe hammer by introducing a gas into a flow conduit in such an amount that the introduced gas is in excess of that required to saturate the liquid. Preferably, the gases are those which are relatively inert or not unduly reactive and which possess relatively low saturation levels with respect to the liquid. Desirably, the gas is added through a member to the flow conduit in a vicinity of high turbulence. The surge suppression system can be utilized in generally any liquid system and particularly in a liquid transmission system.Another embodiment pertains to a scrubber or washer for generally purifying gases and may contain one or two stages to efficiently remove impurities as through the use of high solubility fluids, fluids which decompose contaminants or which contain or provide (i.e. heating stage) catalysts to decompose contaminants, oxidizing agents, or reducing agents. The scrubber contains a packed bed and the packing may be characterized as one where the inside hydraulic radius equals the hydraulic radius of the external flow channels. The washer or scrubber type apparatus is particularly suitable for treating (purifying) materials such as ozone utilized in a deodorizing or disinfecting system.Another embodiment pertains to the purification of a gas by treatment with a fluid in a flow conduit having a plug flow at its entrance containing an injection-mixing device coacting with a first high turbulence causing device and a downstream or second high turbulence causing device. The treating fluid is preferably added at the vena contracta of the first high turbulence causing device.
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