Abstract:
본 발명은 컴팩트하고 저렴하며 장비 관리의 용이성을 증대할 수 있는 대용량 오존 발생장치를 제공한다. 오존 전원은 소정 수파수의 교류 전압으로 변환된 n상의 교류 전압 파형을 출력하는 n상 인버터(4000)와, n상의 교류 전압을 n상의 고전압 교류 전압으로 변환하는 n개의 반응기(2000-a) 및 n상의 변환기(2000-b)와, n상의 고전압 교류 전압을 출력하는 n개의 고전압 단자와, 공통 전위를 가지는 1개의 저전압 단자로 구성된다. 복수 개의 오존 발생기 유니트(100)는 방전 챔버 내에서 n개로 전기적으로 분할되고 각각의 오존 발생기로부터 n개의 고압 전극 단자와 오존 발생기 유니트의 전체의 저압 전극을 공통으로 하는 1개의 저압 전극 단자를 인출하고, n개의 고전압 단자에 n개의 고압 전극 단자를 접속하며 1개의 저전압 단자에 1개의 저전압 전극 단자와 접속하는 것에 의해 n상의 교류 방전을 각 오존 발생 유니트에 발생하고 오존을 발생한다. 오존 발생기, 인버터, 반응기, 변환기
Abstract:
An ozone gas generator apparatus comprising a plurality of electrodes and a plurality of dielectric plates arranged in alternating sequence to form a stack; a plurality of seals interposed between said electrode and said dielectric material plate and adapted to seal said apparatus and maintain the correct distance between said electrodes and said dielectric slab; fastening means adapted to secure said electrode and said dielectric slabs to one another and appropriate cooling means of said electrodes.
Abstract:
The invention provides for a system and method for creating an optimized fuel/air mixture for more efficient combustion. The system in accordance with the invention includes an ozone generator and a gasifier that receives liquid fuel and ozone and creates an optimized fuel of mixture. The optimized fuel/air mixture is then delivered to the cylinders of a combustion engine.
Abstract:
Ozone generator, especially for massage tubs, consists of a case provided with electric supply and accommodating a high voltage transformer coupled by means of cables with an ozone producing element - a discharge electrode or UV discharge lamp - located in the air stream. The ozone producing element is accommodated in an air duct outside the case (1), the internal space of the duct being separated from the internal space of case (1) by a waterproof partition wall.
Abstract:
An ozone generator (100) including a pair of electrodes (110) and (120) separated by a dielectric element (130) including a plurality of passages (132) defining a corona discharge zone (135). In one embodiment of the invention, the passages (132) defining a corona discharge zone (135). In one embodiment of the invention, the passages (132) may be convoluted in the sense that the lengths of the passages defining the corona discharge zone (135) are greater than the length of the first electrode (110) and the second elecrode (120) and the dielectric element electrodes (130). In one embodiment, the first electrode (110) and the second electrode (120) are concentric and held in spaced apart relationship by a concentric tubular dielectric element (130). A corona discharge zone (135) is defined between an inner surface of the second electrode (120) and the outer surface of the concentric tubular dielectric element (130) by a plurality of passages (132) formed on the outer surface of the tubular dielectric element (130).
Abstract:
In a closed ozone generator unit (2) oxygen gas is transformed into ozone gas by means of alternating current, the oxygen gas being substantially pressurized before entry into the unit (2). The unit is exposed to an external pressure substantially equal to or higher than the pressure of the oxygen gas.
Abstract:
The present invention relates to an apparatus and a method for ozone generator and a method for generating ozone by exposing oxygen to a high frequency alternating current with high voltage over a dielectric. In order to provide a simple, compact and low cost design, capable of increasing the power and improving the conversion efficiency of the apparatus, and to prevent the apparatus from damage or efficiency decrease, the apparatus comprises a pressure compensation admitting unit, joint together by at least two plates (2, 2') of a dielectric material and there between a present electrode (4), on which a high frequency alternatively current with high voltage is applicable, and two sealed spaces (1, 1') for generation of ozone on opposite sides of said unit (1, 2', 4), whereby the respective sealed space (1, 1'), on the opposite side of said plate (2, 2') of dielectric material, is delimited by an earthed and cooled electrode (3, 3'), through which oxygen gas or gas rich in oxygen is supplied to the space (1, 1') and ozone is conducted out of the same. By means of this apparatus oxygen gas or gas rich in oxygen can, according to the method of the present invention, be conducted under pressure into the sealed chambers (1, 1') on opposite sides of the pressure compensation admitting unit (2, 2', 4).
Abstract:
The inventive device for producing ozone from oxygen-containing gases has a first electrode (2), a second electrode (1) which is arranged at a distance from the first electrode (2), a dielectric layer (4) which is positioned between the first electrode (2) and the second electrode (1), separating them from each other, and a gas gap (3) which is also located between the first electrode (2) and the second electrode (1) and through which the oxygen-containing gas is passed. The dielectric layer (4) is produced from an aluminium-, copper- and/or transition metal-containing steel alloy which can be converted into a ceramic layer at high temperatures in a burning process.
Abstract:
The ozone generator includes a pair of electrode plates (1) fixed opposite each other creating a discharge gap (4) between them. A terminal (2) is connected to each of the electrode plates and supply power to the electrode plates. The discharge gap is gas-tightly isolated from the electrode plates by dielectric plates (5). According to the present invention, the electrode plates are located on the external surfaces of the dielectric plates which are secured in position at a fixed distance from each other by a spacer of the geometric size (6) corresponding to the fixed distance. The electrode plates may be urged against the dielectric plates by means of the spring fixture (10, 11). In addition, heat exchange ribs (9) are fixed on the external surfaces of the electrode plates. The purpose of the claimed invention is to ensure adaptability to streamlined manufacture of the ozone generator, to increase its operating reliability and effectiveness, and to reduce power consumption.