Ozonated liquid dispensing unit
    1.
    发明授权
    Ozonated liquid dispensing unit 有权
    臭氧化液体分配单元

    公开(公告)号:US09174845B2

    公开(公告)日:2015-11-03

    申请号:US12816837

    申请日:2010-06-16

    Applicant: Daniel W. Lynn

    Inventor: Daniel W. Lynn

    Abstract: A ozonated liquid dispensing unit is described. The unit produces and dispenses an ozonated liquid that may be used to clean and sanitize a variety of articles or used in conjunction with cleaning processes and other apparatus. The unit includes a liquid input port to receive liquid into the unit. The unit includes a first dielectric cell for producing ozone gas from ambient air and a second dielectric cell for producing ozone gas. The first dielectric cell is in supply communication with the second dielectric cell for supplying the second dielectric cell with a supply gas containing the ozone gas generated from the ambient air. The second dielectric cell produces ozone gas from the supply gas. An injector is in fluidic communication with the liquid input port. The injector in supply communication with the second dielectric cell for receiving the ozone gas from the second dielectric cell, and the injector mixes the ozone gas from the second dielectric cell with the liquid from the liquid input port to produce an ozonated liquid. A liquid output port discharges the ozonated liquid from the unit. A faucet or spray may be used to control the discharge of the ozonated liquid from the unit.

    Abstract translation: 描述了臭氧化液体分配单元。 该装置产生和分配臭氧化液体,其可用于清洁和消毒各种物品,或与清洁过程和其他装置结合使用。 该单元包括用于将液体接收到单元中的液体输入端口。 该单元包括用于从环境空气产生臭氧气体的第一介电池和用于产生臭氧气体的第二介电池。 第一电介质电池与第二电介质电池供电连通,用于向第二电介质电池提供含有由环境空气产生的臭氧气体的供应气体。 第二介质电池从供应气体产生臭氧气体。 注射器与液体输入端口流体连通。 与第二电介质池供电连接的注射器,用于从第二介电池接收臭氧气体,并且喷射器将来自第二介质池的臭氧气体与来自液体输入端口的液体混合以产生臭氧化液体。 液体输出口从该单元排出臭氧化液体。 可以使用水龙头或喷雾器来控制来自该单元的臭氧化液体的排放。

    OZONE GENERATOR
    2.
    发明申请
    OZONE GENERATOR 审中-公开
    臭氧发生器

    公开(公告)号:US20150210544A1

    公开(公告)日:2015-07-30

    申请号:US14600433

    申请日:2015-01-20

    CPC classification number: C01B13/115 C01B13/11 C01B2201/14 C01B2201/40

    Abstract: An ozone generator includes one or more electrode pairs each containing two electrodes arranged at a distance of a predetermined gap length. In the ozone generator, ozone is produced when a source gas flows at least between the two electrodes and a discharge is generated between the two electrodes. Each electrode contains a tubular dielectric body having a hollow portion and a conductive body disposed in the hollow portion. The gap length is less than 1.0 mm.

    Abstract translation: 臭氧发生器包括一个或多个电极对,每个电极对包含布置在预定间隙长度的距离处的两个电极。 在臭氧发生器中,当源气体至少在两个电极之间流动并且在两个电极之间产生放电时,产生臭氧。 每个电极包含具有中空部分和设置在中空部分中的导电体的管状电介质体。 间隙长度小于1.0mm。

    Ozone system for multi-chamber tools
    3.
    发明授权
    Ozone system for multi-chamber tools 有权
    臭氧系统多室工具

    公开(公告)号:US08480862B2

    公开(公告)日:2013-07-09

    申请号:US13008641

    申请日:2011-01-18

    Abstract: An improved system and method for controlling ozone concentration in connection with a multi-chamber tool. The system and method involve a first and a second concentration controller in combination with an ozone generator. The first concentration controller detects an EVENT (i.e., one of the chambers in the multi-chamber tool coming on-line or off-line) and in response provides a power instruction to the ozone generator in accordance with a predictive control algorithm. The first concentration controller has a fast (i.e, about 1 second) response time. The second concentration controller is masked from the ozone generator during the EVENT, but otherwise controls the generator after an interval of time has lapsed after the EVENT. The second concentration controller has a slower response time than the first concentration controller, however the second concentration controller provides the system with long-term stability and can be used to provide updated data to the predictive control algorithm.

    Abstract translation: 一种用于控制与多室工具相关的臭氧浓度的改进的系统和方法。 该系统和方法涉及与臭氧发生器组合的第一和第二浓度控制器。 第一集中控制器检测EVENT(即,多室工具中的一个室内进行在线或离线),并且响应于根据预测控制算法向臭氧发生器提供功率指令。 第一个浓度控制器具有快速(即约1秒)响应时间。 在EVENT期间,第二个浓度控制器被从臭氧发生器屏蔽,但是在EVENT之后经过了一段时间后才控制发电机。 第二浓度控制器具有比第一浓度控制器更慢的响应时间,然而第二浓度控制器为系统提供长期稳定性,并且可以用于向预测控制算法提供更新的数据。

    PORTABLE DEVICE FOR POSITIVELY PRESSURIZING A STRUCTURE WITH HIGH LEVELS OF OZONE GAS THAT IS INTERNALLY GENERATED, TO ERADICATE A PLURALITY OF PESTS, VIRUSES, MOLDS, MOLD SPORES, FUNGI, BACTERIA AND ODORS
    4.
    发明申请
    PORTABLE DEVICE FOR POSITIVELY PRESSURIZING A STRUCTURE WITH HIGH LEVELS OF OZONE GAS THAT IS INTERNALLY GENERATED, TO ERADICATE A PLURALITY OF PESTS, VIRUSES, MOLDS, MOLD SPORES, FUNGI, BACTERIA AND ODORS 有权
    便携式设备,用于积极加强内部产生高浓度臭氧的结构,以消除多余的生物,病毒,霉菌,霉菌,真菌,细菌和气味

    公开(公告)号:US20120128543A1

    公开(公告)日:2012-05-24

    申请号:US13302995

    申请日:2011-11-22

    Applicant: Charlles Bohdy

    Inventor: Charlles Bohdy

    Abstract: The present invention is a portable ozone gas generating device that include one or more transformers that generate a plurality of high levels of ozone gas to eradicate a plurality of pests, odors and undesired microorganisms, one or more generator cells that are utilized by the device to eradicate the plurality of pests and undesired microorganisms and an ozone hose or other conduit that directs air that is forced across the generator cell. The device also includes a blower that is a powerful high volume high pressure blower, turbine or fan that provides power to the directed ozone air required to positively pressurize a structure to eradicate the plurality of pests, odors and undesired microorganisms, a large diameter flexible undegradable ozone rated hose and a filtration system and an adjustable disposable aperture airlock that connects the structure with the device.

    Abstract translation: 本发明是一种便携式臭氧气体发生装置,其包括一个或多个变压器,其产生多个高水平的臭氧气体以消除多个害虫,气味和不期望的微生物,该装置利用的一个或多个发生器单元 根除多个害虫和不想要的微生物以及臭氧软管或其它导管,其导引强制穿过发生器电池的空气。 该设备还包括鼓风机,其是强大的高容量高压鼓风机,涡轮机或风扇,其向所需的定向臭氧空气提供动力,以积极地加压结构以消除多种害虫,气味和不期望的微生物,大直径柔性不可降解 臭氧级软管和过滤系统以及将结构与设备连接的可调节一次性孔式气闸。

    OZONATED LIQUID DISPENSING UNIT
    5.
    发明申请
    OZONATED LIQUID DISPENSING UNIT 有权
    臭氧液体分配单元

    公开(公告)号:US20100252415A1

    公开(公告)日:2010-10-07

    申请号:US12816837

    申请日:2010-06-16

    Applicant: Daniel W. Lynn

    Inventor: Daniel W. Lynn

    Abstract: A ozonated liquid dispensing unit is described. The unit produces and dispenses an ozonated liquid that may be used to clean and sanitize a variety of articles or used in conjunction with cleaning processes and other apparatus. The unit includes a liquid input port to receive liquid into the unit. The unit includes a first dielectric cell for producing ozone gas from ambient air and a second dielectric cell for producing ozone gas. The first dielectric cell is in supply communication with the second dielectric cell for supplying the second dielectric cell with a supply gas containing the ozone gas generated from the ambient air. The second dielectric cell produces ozone gas from the supply gas. An injector is in fluidic communication with the liquid input port. The injector in supply communication with the second dielectric cell for receiving the ozone gas from the second dielectric cell, and the injector mixes the ozone gas from the second dielectric cell with the liquid from the liquid input port to produce an ozonated liquid. A liquid output port discharges the ozonated liquid from the unit. A faucet or spray may be used to control the discharge of the ozonated liquid from the unit.

    Abstract translation: 描述了臭氧化液体分配单元。 该装置产生和分配臭氧化液体,其可用于清洁和消毒各种物品,或与清洁过程和其他装置结合使用。 该单元包括用于将液体接收到单元中的液体输入端口。 该单元包括用于从环境空气产生臭氧气体的第一介电池和用于产生臭氧气体的第二介电池。 第一电介质电池与第二电介质电池供电连通,用于向第二电介质电池提供含有由环境空气产生的臭氧气体的供应气体。 第二介质电池从供应气体产生臭氧气体。 注射器与液体输入端口流体连通。 与第二电介质单元供电连通的注入器,用于接收来自第二介质池的臭氧气体,并且喷射器将来自第二介质池的臭氧气体与来自液体输入端口的液体混合,产生臭氧化液体。 液体输出口从该单元排出臭氧化液体。 可以使用水龙头或喷雾器来控制来自该单元的臭氧化液体的排放。

    Apparatus and method for ozone production
    6.
    发明授权
    Apparatus and method for ozone production 失效
    用于臭氧生产的设备和方法

    公开(公告)号:US5004587A

    公开(公告)日:1991-04-02

    申请号:US475432

    申请日:1990-02-05

    Inventor: Ernest J. Tacchi

    Abstract: Disclosed herein is an apparatus and method for the production of ozone gas comprising: a parallel resonance circuit formed by a high voltage transformer and a companion flexible polymeric corona discharge chamber which encloses an electrode and serves as both a passageway and reservoir for oxygen bearing gas, and a fluid counter-electrode, all contained within an appropriate enclosure. Said corona discharge chamber possesses an electrical reactance which can be varied in order to match the electrical reactance of a companion high voltage transformer so that the components resonate, hereby maximizing the transfer of energy to the corona discharge gap. The dwell of corona discharge is further enhanced by an electrostatic potential incorporated across said tube wall (electret effect). Heat formed in said discharge gap (detrimental to ozone production) is advantageously transferred to said fluid counter-electrode which also serves as an electrolytic connection between said high voltage transformer and said corona discharge chamber. Within said chamber, relatively large volumes of oxygen may be exposed to the high field density, ozone producing, resonating discharges as consequence of its flexible and linear design. The apparatus and methods described herein permit and encourage the use of intermittent and cyclic application of resonating energy and therefore achieves an improved degree of electrical efficiency. The teachings of the present invention make practical the use of alternative sources of energy for the private and commercial generation of ozone gas.

    Abstract translation: 本文公开了一种用于生产臭氧气体的装置和方法,包括:由高压变压器和伴随的柔性聚合物电晕放电室形成的并联谐振电路,其包围电极并用作含氧气体的通道和储存器, 和流体对电极,均包含在适当的外壳内。 所述电晕放电室具有可以改变的电抗,以便匹配伴随的高压变压器的电抗,使得这些部件谐振,从而最大限度地将能量传递到电晕放电间隙。 电晕放电的驻留通过整个管壁(驻极体效应)并入的静电势进一步增强。 在所述放电间隙中形成的热量(对臭氧产生有害)有利地被传送到所述流体对电极,该电极也用作所述高压变压器和所述电晕放电室之间的电解连接。 在所述室内,由于其柔性和线性设计,相对较大体积的氧可能暴露于高场密度,产生臭氧,谐振放电。 本文描述的装置和方法允许并鼓励使用间歇和周期性地施加谐振能量,因此实现了提高的电效率。 本发明的教导使得可替代的能量源用于私人和商业生成臭氧气体。

    OZONE GENERATOR UNIT AND SYSTEM
    7.
    发明申请

    公开(公告)号:US20190071310A1

    公开(公告)日:2019-03-07

    申请号:US16170875

    申请日:2018-10-25

    Inventor: Jan ARLEMARK

    Abstract: An ozone generator unit includes a housing with a first half having a first recess and a second half having a second recess. The ozone generator unit further includes an inlet and an outlet in the housing, a first dielectric disc arranged within the first recess in contact with an inner surface of the first half, a second dielectric disc arranged within the second recess in contact with an inner surface of the second half, and a high voltage electrode, having a gas passage, arranged between the first and second dielectric discs. The high voltage electrode is spaced apart from the first and second dielectric discs using a first spacer and a second spacer to constitute a first gas chamber and a second gas chamber on either side of the high voltage electrode.

    MULTIPLE OXYGEN ALLOTROPE GENERATOR
    8.
    发明申请

    公开(公告)号:US20180044181A1

    公开(公告)日:2018-02-15

    申请号:US15405838

    申请日:2017-01-13

    Abstract: An oxygen allotrope generator having a tube with an electrically grounded outer surface and an electrically positive inner surface. A plurality of corona reaction plates are spaced along the interior of the tube, the plates being longitudinally inter-connected by wires and being in electrical connection with the electrically positive inner surface of the tube. An outer jacket encloses the tube and provides a second linear pass for partially ozonated gas to flow in the generator. An alternative embodiment includes external distributed ground connections at the locations of the corona reaction.

    Ozone generator
    9.
    发明授权
    Ozone generator 有权
    臭氧发生器

    公开(公告)号:US09321645B2

    公开(公告)日:2016-04-26

    申请号:US14666781

    申请日:2015-03-24

    Abstract: An ozone generator includes a housing having an internal cavity and a plurality of electrode pairs located in the internal cavity. The electrode pairs each contain two electrodes arranged at a distance of a predetermined gap length, and a discharge space is formed between the two electrodes, whereby ozone is produced when a source gas flows at least between the two electrodes and a discharge is generated between the two electrodes. The ozone generator has a non-discharge portion in an arbitrary cross-section having a normal direction parallel to a main flow direction of the source gas in the internal cavity.

    Abstract translation: 臭氧发生器包括具有内腔的壳体和位于内腔中的多个电极对。 电极对各包含布置在预定间隙长度的距离处的两个电极,并且在两个电极之间形成放电空间,从而当源气体至少在两个电极之间流动时产生臭氧,并且在两个电极之间产生放电 两个电极。 臭氧发生器具有在内腔中具有与源气体的主流动方向平行的法线方向的任意截面的非排出部。

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