Fluid treatment system and ozone generator therefor
    81.
    发明授权
    Fluid treatment system and ozone generator therefor 失效
    流体处理系统和臭氧发生器

    公开(公告)号:US4545960A

    公开(公告)日:1985-10-08

    申请号:US472035

    申请日:1983-03-04

    CPC classification number: C01B13/11 C01B2201/12 C01B2201/22 C01B2201/62

    Abstract: A fluid treatment system utilizes a circulating pump and an ozone generator arranged to receive atmospheric air and emit ozone-rich air into a delivery pipe which is connected to the upstream, suction side of the circulating pump, for introducing ozone-rich air to the fluid to be treated prior to the fluid entering the pump, whereupon complete mixing and dispersement of the ozone through the fluid is achieved. The ozone generator comprises at least one pair and preferably a plurality of pairs of spaced flat plate electrodes, one of each pair being of smaller longitudinal and lateral dimensions than the other and one of the electrodes of each pair also being provided with a plurality of dimpled projections on its surface facing the other electrode of its pair. Air passageways are arranged to extend between each electrode pair so as to expose the entire surface area of the electrodes to the air moving therebetween.

    Abstract translation: 流体处理系统利用循环泵和臭氧发生器,该循环泵和臭氧发生器布置成接收大气空气并将臭氧富含空气排放到输送管中,输送管连接到循环泵的上游吸入侧,用于将富含臭氧的空气引入流体 在流体进入泵之前进行处理,从而实现通过流体完全混合和分散臭氧。 臭氧发生器包括至少一对,优选多对隔开的平板电极,每对中的每一对具有比另一对更小的纵向和横向尺寸,每对电极中的一个还设置有多个凹陷 其表面上面对着其另一个电极的突起。 空气通道布置成在每个电极对之间延伸,以便将电极的整个表面区域暴露于其间移动的空气。

    Device for the production of ozone
    82.
    发明授权
    Device for the production of ozone 失效
    用于生产臭氧的装置

    公开(公告)号:US4152603A

    公开(公告)日:1979-05-01

    申请号:US839440

    申请日:1977-10-05

    Applicant: Pavel Imris

    Inventor: Pavel Imris

    Abstract: An apparatus for the production of ozone employing three parallel spaced plate shaped electrodes having electrically conductive surfaces and joining the ends thereof electrically non-conductive members. A pulsating voltage is applied to the outer plates causing ions to collect along the non-conductive members and a corona to form. An oxygen bearing gas stream passes through the chamber and ozone forms therein.

    Abstract translation: 一种用于生产臭氧的装置,其采用具有导电表面的三个平行隔开的板状电极,并将其端部连接在非导电构件上。 脉冲电压施加到外板,导致离子沿非导电构件收集并形成电晕。 含氧气流通过室,并在其中形成臭氧。

    Corona generator apparatus
    83.
    发明授权
    Corona generator apparatus 失效
    电晕发生器装置

    公开(公告)号:US3891561A

    公开(公告)日:1975-06-24

    申请号:US39518073

    申请日:1973-09-07

    Abstract: A corona generator method and apparatus preferably for generating ozone, employing a plurality of corona generating cells each comprising a pair of parallel spaced-apart electrodes having a fired-on coating of porcelain enamel. The electrodes are connected to an AC voltage source of sufficient voltage to generate a corona discharge, and an oxygen-containing gas is passed between the electrodes to generate ozone. A high concentration ozone is produced as well as a large quantity of ozone, without water cooling, and at voltages of approximately 6,000 volts. An equation setting forth, for the first time, the interrelationships between the various parameters in a corona generator is derived by Applicant. According to the invention, the corona power is maximized by maximizing the expression Epsilon /Td, where epsilon is the dielectric constant of te porcelain enamel coating and Td is the dielectric thickness.

    Abstract translation: 一种优选用于产生臭氧的电晕发生器方法和装置,其采用多个电晕发生电池,每个电晕发生电池均包括一对平行间隔开的​​电极,所述电极具有瓷釉的烧制涂层。 电极连接到具有足够电压的AC电压源以产生电晕放电,并且含氧气体在电极之间通过以产生臭氧。 产生高浓度臭氧以及大量臭氧,无水冷却,电压约为6,000伏特。 第一次提出了电晕发生器中的各种参数之间的相互关系的方程式由申请人得出。 根据本发明,通过最大化ε/ Td的表达式来最大化电晕功率,其中ε是搪瓷涂层的介电常数,Td是电介质厚度。

    Apparatus for highly efficient cold-plasma ozone production

    公开(公告)号:US11866326B2

    公开(公告)日:2024-01-09

    申请号:US17168394

    申请日:2021-02-05

    Inventor: Rick B. Spielman

    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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