OZONE GENERATION DEVICE AND FUSE HOLDER
    121.
    发明申请
    OZONE GENERATION DEVICE AND FUSE HOLDER 有权
    臭氧发生装置和保险丝座

    公开(公告)号:US20160207768A1

    公开(公告)日:2016-07-21

    申请号:US14915196

    申请日:2014-03-11

    Abstract: According to one embodiment, an ozone generation device includes a first electrode unit, a second electrode unit, a fuse and a fuse holder. The first electrode unit is provided on an inner face of a discharge tube. The second electrode unit is provided outside the discharge tube at an interval. The second electrode faces the first electrode unit. A diameter of the outer face of the fuse is smaller than a diameter of the inner face. At least a part of the outer face is positioned inside the discharge tube. The fuse holder is interposed between the discharge tube and the fuse, includes the outer periphery and an inner periphery and is provided with a first opening and a second opening. The outer periphery extends in an arc along the inner face to come into contact with the inner face. The inner periphery extends in an arc along the outer face to come into contact with the outer face.

    Abstract translation: 根据一个实施例,臭氧产生装置包括第一电极单元,第二电极单元,保险丝和保险丝座。 第一电极单元设置在放电管的内表面上。 第二电极单元间隔地设置在放电管的外侧。 第二电极面对第一电极单元。 保险丝的外表面的直径小于内表面的直径。 外表面的至少一部分位于放电管内。 保险丝座插在放电管和保险丝之间,包括外周和内周,并设置有第一开口和第二开口。 外周沿着内表面呈弧形延伸以与内表面接触。 内周沿着外表面呈弧形延伸以与外表面接触。

    Integrated ozone generator system with removable contact plate and method for individually replacing electrode assemblies of such system
    122.
    发明授权
    Integrated ozone generator system with removable contact plate and method for individually replacing electrode assemblies of such system 有权
    具有可移除接触板的集成臭氧发生器系统和用于单独替代这种系统的电极组件的方法

    公开(公告)号:US09364811B2

    公开(公告)日:2016-06-14

    申请号:US13667635

    申请日:2012-11-02

    Applicant: Wayne Wolf

    Inventor: Wayne Wolf

    Abstract: An ozone generating apparatus includes a base container for holder water and a head assembly connected to the upper edge of the base container, the head assembly containing ozone generating cells, each having a dielectric tube and an electrode assembly coaxially disposed with the associated dielectric tube. The dielectric tubes and electrode assemblies are disposed and connected such that the tube and/or electrode assembly of each ozone generating cell can be accessed and replaced independently of all other ozone generating cells, and such that the possibility of cascade failure of all remaining ozone generating cells upon failure of a single cell is substantially eliminated.

    Abstract translation: 臭氧发生装置包括用于保持水的基底容器和连接到基底容器的上边缘的头部组件,头部组件包含臭氧发生单元,每个具有电介质管和与相关联的介电管同轴地布置的电极组件。 电介质管和电极组件被布置和连接,使得每个臭氧发生电池的管和/或电极组件可独立于所有其它臭氧发生电池被访问和替代,并且使得所有剩余的臭氧发生的级联故障的可能性 基本上消除了单个电池故障时的电池。

    OZONE GENERATOR
    123.
    发明申请
    OZONE GENERATOR 有权
    臭氧发生器

    公开(公告)号:US20150274526A1

    公开(公告)日:2015-10-01

    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。

    OZONE GENERATOR
    124.
    发明申请
    OZONE GENERATOR 审中-公开
    臭氧发生器

    公开(公告)号:US20150274525A1

    公开(公告)日:2015-10-01

    申请号:US14666748

    申请日:2015-03-24

    CPC classification number: C01B13/115 C01B2201/14

    Abstract: An ozone generator includes one or more electrode pairs, wherein the electrode pairs each contain two electrodes arranged at a distance of a predetermined gap length, and ozone is produced when a source gas flows at least between the two electrodes of the electrode pair and a discharge is generated between the two electrodes. One of the two electrodes is located on an upstream side of the source gas and another is located on a downstream side of the source gas. A direction from the one electrode toward the other electrode is inclined with respect to a supply direction of the source gas.

    Abstract translation: 臭氧发生器包括一个或多个电极对,其中电极对各自包含布置在预定间隙长度的距离处的两个电极,并且当源气体至少在电极对的两个电极之间流动时产生臭氧, 在两个电极之间产生。 两个电极中的一个位于源气体的上游侧,另一个位于源气体的下游侧。 从一个电极到另一个电极的方向相对于源气体的供给方向倾斜。

    INTEGRATED OZONE GENERATOR SYSTEM WITH REMOVABLE CONTACT PLATE AND METHOD FOR INDIVIDUALLY REPLACING ELECTRODE ASSEMBLIES OF SUCH SYSTEM
    126.
    发明申请
    INTEGRATED OZONE GENERATOR SYSTEM WITH REMOVABLE CONTACT PLATE AND METHOD FOR INDIVIDUALLY REPLACING ELECTRODE ASSEMBLIES OF SUCH SYSTEM 审中-公开
    具有可拆卸接触板的集成臭氧发生器系统和用于个别更换这种系统的电极组件的方法

    公开(公告)号:US20130058828A1

    公开(公告)日:2013-03-07

    申请号:US13667635

    申请日:2012-11-02

    Applicant: Wayne Wolf

    Inventor: Wayne Wolf

    Abstract: An ozone generating apparatus includes a base container for holder water and a head assembly connected to the upper edge of the base container, the head assembly containing ozone generating cells, each having a dielectric tube and an electrode assembly coaxially disposed with the associated dielectric tube. The dielectric tubes and electrode assemblies are disposed and connected such that the tube and/or electrode assembly of each ozone generating cell can be accessed and replaced independently of all other ozone generating cells, and such that the possibility of cascade failure of all remaining ozone generating cells upon failure of a single cell is substantially eliminated.

    Abstract translation: 臭氧发生装置包括用于保持水的基底容器和连接到基底容器的上边缘的头部组件,头部组件包含臭氧发生单元,每个具有电介质管和与相关联的介电管同轴地布置的电极组件。 电介质管和电极组件被布置和连接,使得每个臭氧发生电池的管和/或电极组件可独立于所有其它臭氧发生电池被访问和替代,并且使得所有剩余的臭氧发生的级联故障的可能性 基本上消除了单个电池故障时的电池。

    Apparatus for sconfinement of the short-lived hydroxyradical OH associated with ozone reaction processes
    127.
    发明申请
    Apparatus for sconfinement of the short-lived hydroxyradical OH associated with ozone reaction processes 审中-公开
    用于消除与臭氧反应过程相关的短寿命羟基自由基OH的装置

    公开(公告)号:US20110284476A1

    公开(公告)日:2011-11-24

    申请号:US13068814

    申请日:2011-05-20

    Inventor: Edward R. Otero

    Abstract: The output of a flow restricting ozone generator assembly is connected across a check valve to a low pressure port of a venturi nozzle which is connected in series in the water circulating plumbing of a pool or spa. The conveying chamber then stores the water vapors from the water flow through the nozzle which are communicated to the ozone generator to promote the reaction products hydroxyradical OH that is then drawn through the port to mix with the circulating water flow. The check valve at the outlet of the ozone generator is urged to close upon the instance when the flow through the nozzle ceases, terminating the low pressure at its throat and thereby fully confining the reaction products from inadvertent escape.

    Abstract translation: 流量限制臭氧发生器组件的输出端连接到止回阀到文丘里管喷嘴的低压端口,文丘里喷嘴串联连接在游泳池或水疗中心的水循环管道中。 输送室然后将来自水流的水蒸气存储通过喷嘴,该蒸汽与臭氧发生器连通,以促进反应产物羟基自由基OH,然后通过该端口吸入以与循环水流混合。 在通过喷嘴的流动停止的情况下,臭氧发生器出口处的止回阀被迫关闭,在其喉部终止低压,从而完全限制反应产物从无意中逃逸。

    Ozone generator
    128.
    发明授权
    Ozone generator 失效
    臭氧发生器

    公开(公告)号:US07700052B2

    公开(公告)日:2010-04-20

    申请号:US11308003

    申请日:2006-03-02

    Applicant: Soo Hwan Jo

    Inventor: Soo Hwan Jo

    CPC classification number: C01B13/11 C01B2201/14

    Abstract: Provided is an ozone generator for generating ozone using high voltage discharging between an electrode plate forming a first electrode and a heat sink forming a second electrode. The ozone generator includes: an inner tube and a middle tube each of which is concentrically disposed, the electrode plate being interposed between the inner tube and the middle tube; an adhesive sealing both ends of the electrode plate; an electrode pipe for electrically connecting to a power source and disposed within the electrode plate; a passage formed through a middle of the heat sink; and an outer tube installed in an inner periphery surface of the passage, the outer tube being concentrically disposed to maintain a predetermined distance from an outer periphery surface of the middle tube.

    Abstract translation: 提供一种臭氧发生器,用于在形成第一电极的电极板和形成第二电极的散热器之间使用高压放电来产生臭氧。 臭氧发生器包括:内管和中管,其同心地设置,电极板插入在内管和中管之间; 粘合剂密封电极板的两端; 用于电连接到电源并设置在电极板内的电极管; 通过散热器中间形成的通道; 以及安装在所述通路的内周面的外管,所述外管同心地配置成与所述中管的外周面保持预定的距离。

    Treatment System Comprising a Dielectric Barrier Discharge Lamp
    130.
    发明申请
    Treatment System Comprising a Dielectric Barrier Discharge Lamp 有权
    包括介质阻挡放电灯的处理系统

    公开(公告)号:US20080185536A1

    公开(公告)日:2008-08-07

    申请号:US11814684

    申请日:2006-01-25

    Abstract: A treatment system or treatment reactor (1) comprising at least one dielectric barrier discharge lamp (2) with a first electrode (20) and a housing (10) for containing a medium (3) like a fluid and/or a gas and/or a solid material which is to be treated by means of the radiation generated by the lamp (2) is disclosed which is especially characterized in that at least one second electrode of at least one lamp (2) is provided in the form of at least one intermediate counter electrode (3, 4) which is positioned within a volume (31) between at least one dielectric barrier discharge lamp (2) and the housing (10). By this, influences of the treated medium on the electrical behavior of the treatment system or reactor (1) and especially power losses in the medium can be avoided or considerably be decreased. Furthermore, losses of the lamp light due to absorption and/or shadowing at an outer electrode surrounding the lamp are avoided as well.

    Abstract translation: 一种处理系统或处理反应器(1),包括至少一个具有第一电极(20)的介电阻挡放电灯(2)和用于容纳诸如流体和/或气体的介质(3)的壳体(10)和/ 或通过由灯(2)产生的辐射来处理的固体材料,其特征在于至少一个灯(2)的至少一个第二电极至少以至少一个形式提供 位于至少一个电介质阻挡放电灯(2)和壳体(10)之间的容积(31)内的一个中间对置电极(3,4)。 由此,可以避免或显着降低处理过的介质对处理系统或反应器(1)的电气行为的影响,特别是介质中的功率损耗。 此外,也避免了由于在灯周围的外部电极的吸收和/或遮蔽引起的灯光损耗。

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