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公开(公告)号:CN101891155B
公开(公告)日:2012-06-06
申请号:CN201010157111.5
申请日:2010-03-31
Applicant: 三菱电机株式会社
IPC: C01B13/11
CPC classification number: C01B13/11 , C01B2201/64 , C01B2201/76
Abstract: 一种即便流过大的短路电流也能防止由于供电电刷熔化造成的玻璃管破损的可靠性高的臭氧产生装置,内壁形成有金属膜的圆筒状玻璃管的外部同心地设有圆筒状金属管,向金属膜与金属管之间施加来自交流高压电源的交流高电压,使得流过玻璃管与金属管之间的间隙的含有氧气的气体放电,从而产生臭氧,通过金属制的电刷轴和在电刷轴周围固定有许多金属细线的供电电刷从交流高压电源向玻璃管内壁的金属膜供电,当设许多金属细线中在电刷轴单位长度上的根数为N,金属细线的线径为d,许多金属细线形成的金属细线束的外径为D1,电刷轴的外径为D2,电刷轴表面的金属细线的线密度β=N×d2/(4×D2)时,(D2/D1)≥1/[1+(1/20β)]。
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公开(公告)号:CN101142022B
公开(公告)日:2011-06-15
申请号:CN200580049102.1
申请日:2005-07-15
Applicant: 东芝三菱电机产业系统株式会社
CPC classification number: C01B13/11 , B01J23/02 , B01J23/06 , B01J23/08 , B01J23/14 , B01J23/16 , B01J23/72 , B01J23/745 , B01J35/004 , B01J37/0238 , B01J37/349 , C01B2201/64
Abstract: 本发明提供新的光催化材料生产设备和光催化材料生产方法,所述设备和方法能够通过在高场等离子体中,在高氧化性、高浓度臭氧介质状态下生产大量高品质光催化材料,而不是采用传统的干沉积方法通过PVD和CVD系统产生光催化材料。在依据本发明的光催化材料生产方法和光催化材料生产设备中,通过放电间隙中的电介质材料提供一对相对的电极,向放电间隙中提供主要含氧气的气体,在两个电极之间施加AC电压,在放电间隙中产生电介质阻挡放电(无声放电或蠕缓放电)。因此,产生含臭氧气体的氧气,通过电介质阻挡放电将金属或金属化合物改性为光催化材料。
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公开(公告)号:CN101880030A
公开(公告)日:2010-11-10
申请号:CN200910107300.9
申请日:2009-05-08
Applicant: 清华大学 , 鸿富锦精密工业(深圳)有限公司
IPC: C01B13/11
CPC classification number: C01B13/11 , C01B2201/12 , C01B2201/22 , C01B2201/32 , C01B2201/64
Abstract: 本发明涉及一种臭氧发生装置,其包括间隔设置的一第一电极及一第二电极,所述第一电极及第二电极至少部分相对设置。该臭氧发生装置用于将注入到该第一及第二电极之间的氧气转换为臭氧。所述第一电极靠近所述第二电极的一侧设置有至少一放电单元,所述放电单元包括至少一碳纳米管线自第一电极往第二电极方向延伸,该碳纳米管线靠近所述第二电极的一端伸出至少一碳纳米管。本发明提供的臭氧发生装置,其放电单元包括至少一碳纳米管线,该碳纳米管线的放电端为直径在纳米级的碳纳米管,因此所述臭氧发生装置具有较大电晕电流。
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公开(公告)号:CN100549894C
公开(公告)日:2009-10-14
申请号:CN03811404.6
申请日:2003-04-25
Applicant: MKS仪器股份有限公司
IPC: G05D21/02
CPC classification number: G05D11/132 , B01F3/04496 , B01F5/0603 , B01F5/0606 , B01F2003/04886 , C01B13/10 , C01B13/11 , C01B2201/60 , C01B2201/64 , C02F1/78 , C02F2201/782 , C02F2209/40 , G05D11/139 , Y10S134/902 , Y10S261/42
Abstract: 本发明公开了一种用于向超过一个加工设备供应臭氧化水的设备和方法。将来自于臭氧化水发生器的第一浓度臭氧化水与来自于水源的水混合成第二浓度臭氧化水。向第一加工设备供应第二浓度臭氧化水。向第二加工设备供应来自于臭氧化水发生器的臭氧化水,同时向第一加工设备供应第二浓度臭氧化水。
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公开(公告)号:CN1330586C
公开(公告)日:2007-08-08
申请号:CN200510008039.9
申请日:2005-02-03
Applicant: 株式会社东芝
CPC classification number: C02F1/4608 , B01J19/088 , B01J2219/0813 , B01J2219/0828 , B01J2219/083 , B01J2219/0849 , B01J2219/0875 , C01B13/11 , C01B2201/14 , C01B2201/32 , C01B2201/64 , C01B2201/82 , C02F1/4672 , C02F1/74 , C02F2001/46152 , C02F2101/305 , C02F2101/366 , C02F2201/46175 , C02F2201/4618 , C02F2201/4619 , C02F2305/023
Abstract: 一种通过放电进行自由基处理的装置。所述装置包括电极单元,具有将气体(70)吹到处理水(2)上的气流通道,以及在前沿产生放电的电极部件(4),以从气体(70)产生自由基。
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公开(公告)号:CN1926927A
公开(公告)日:2007-03-07
申请号:CN200480042632.9
申请日:2004-10-18
Applicant: 三菱电机株式会社
IPC: H05H1/24 , H05H1/46 , C01B13/11 , H01L21/3065 , H01T23/00
CPC classification number: H01J37/32348 , C01B13/11 , C01B13/115 , C01B2201/14 , C01B2201/22 , C01B2201/62 , C01B2201/64 , G09G3/2965 , H01J37/32009 , H05B41/2806 , H05H1/46 , Y02B20/22
Abstract: 本发明的目的是获得一种在最大额定条件下以功率因数尽可能高的条件进行驱动,即便在使投入功率变化的情况下也能够始终稳定地使之动作的等离子体发生用电源装置。本发明的等离子体发生用电源装置具有:被连接到交流电源(PS)的变压器(TR);被连接到变压器(TR)的整流器(RE);被连接到整流器(RE)的逆变器(IV);被串联插入到从逆变器(IV)供给电力的臭氧发生器(1)的功率线的电抗器(FL);以及控制逆变器(IV)的控制装置(CT)。控制装置(CT)用电流检测器(DT)来检测流入臭氧发生器(1)的电流,并进行控制以使臭氧发生器1的投入功率保持恒定。
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公开(公告)号:CN1654343A
公开(公告)日:2005-08-17
申请号:CN200510008039.9
申请日:2005-02-03
Applicant: 株式会社东芝
CPC classification number: C02F1/4608 , B01J19/088 , B01J2219/0813 , B01J2219/0828 , B01J2219/083 , B01J2219/0849 , B01J2219/0875 , C01B13/11 , C01B2201/14 , C01B2201/32 , C01B2201/64 , C01B2201/82 , C02F1/4672 , C02F1/74 , C02F2001/46152 , C02F2101/305 , C02F2101/366 , C02F2201/46175 , C02F2201/4618 , C02F2201/4619 , C02F2305/023
Abstract: 一种通过放电进行自由基处理的装置。所述装置包括电极单元,具有将气体(70)吹到处理水(2)上的气流通道,以及在前沿产生放电的电极部件(4),以从气体(70)产生自由基。
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108.
公开(公告)号:US12122670B2
公开(公告)日:2024-10-22
申请号:US17418880
申请日:2020-02-19
Applicant: WATER APS
IPC: C01B13/11
CPC classification number: C01B13/11 , C01B2201/22 , C01B2201/32 , C01B2201/64
Abstract: Ozone generator (1) for generating ozone comprising at least one high voltage electrode HVE (2), two low voltage electrodes LVE (3), at least one dielectric (4) and an electric isolator (25) placed in an area between the two LVE (3′, 3″). The generator (1) further comprises a first gap (7) and a second gap (8) and at least one of the gaps (7, 8) is a corona chamber. The at least one dielectric (4) comprising a first surface (9) is turning towards a HVE-surface (22) and an opposite second surface (10) is turning towards a first surface (17) of one of the LVE (3). The second surface (10) of the dielectric (4) is directly or indirectly supported in its full extension by the first LVE-surface (17), and at least one of the gaps (7, 8) is placed between the first surface (9) of the dielectric (4) and a first HVE-surface (22), said gap is a corona-chamber adapted to develop ozone.
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公开(公告)号:US11866326B2
公开(公告)日:2024-01-09
申请号:US17168394
申请日:2021-02-05
Applicant: Rick B. Spielman
Inventor: Rick B. Spielman
IPC: C01B13/11
CPC classification number: C01B13/115 , C01B2201/12 , C01B2201/14 , C01B2201/22 , C01B2201/32 , C01B2201/34 , C01B2201/64 , C01B2201/72 , C01B2201/74
Abstract: An apparatus comprising a cold-plasma ozone generator, the ozone generator comprising: a non-arcing non-coronal ozone production cell capable of generating ozone; the ozone production cell having a pair of electrodes placed on two sides of the production cell and spaced apart by an electrode gap, and a dielectric layer on each of the electrodes facing inward into the ozone production cell; a high-voltage pulse generator attached to the electrodes and configured for producing a glow discharge cold plasma between the electrodes, the high-voltage pulse generator being able to produce sufficient voltage to generate the glow discharge cold plasma; a cooling system attached to each of the electrodes; and an oxygen source adapted to provide gas flow through the production cell in the gap between the pair of electrodes that efficiently generates ozone in the cold plasma, wherein the dielectric layers are intimately and directly bonded to each of the electrodes.
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公开(公告)号:US10017409B2
公开(公告)日:2018-07-10
申请号:US15695540
申请日:2017-09-05
Applicant: Tersano Inc.
Inventor: Steve L. Hengsperger , Justin L. Namespetra , Jamie O'Neil
IPC: C02F9/00 , B01J49/53 , B01J39/07 , B01J39/05 , C02F1/42 , C02F1/78 , C01B13/11 , B01J47/022 , B01J39/20 , B01F3/04 , B01J49/06
CPC classification number: C02F9/00 , B01F3/04985 , B01F2003/04886 , B01J39/05 , B01J39/07 , B01J39/20 , B01J47/022 , B01J49/06 , B01J49/53 , C01B13/11 , C01B2201/22 , C01B2201/64 , C02F1/42 , C02F1/78 , C02F2001/425 , C02F2209/06
Abstract: A system for providing an acidic ionized ozonated liquid. The system includes a liquid inlet arranged to accept a liquid into the system; an acid-based cation-exchange resin in fluid communication with the liquid inlet, the resin adapted to exchange cations in the accepted liquid with H+ ions on the resin; an ozone dissolving apparatus in fluid communication with the liquid inlet and the acid-based cation-exchange resin; and a liquid outlet in fluid communication with the liquid inlet, the acid-based cation-exchange resin and the ozone dissolving apparatus. The ozone dissolving apparatus and the acid-based cation-exchange resin cooperating to produce the acidic ionized ozonated liquid for dispensation out of the system via the liquid outlet.
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