Abstract:
An apparatus for producing ozone from oxygen comprises a high voltage electrode connectable to a current source; a ground electrode spaced from the high voltage electrode and having an upstream end and a downstream end; a dielectric element positioned between the high voltage electrode and the ground electrode; a path for air flow positioned between the dielectric element and the ground electrode; and, a current collector positioned downstream of the high voltage electrode and comprising an extension of the ground electrode.
Abstract:
This invention discloses an ozone generator having a simple structure and little mechanical trouble, whereby ozone gas is generated directly in water or stagnant solutions having a high electric conductivity without any blower or bubble generating device, including one or more pairs of electrodes being submerged in liquids, the electrodes being made with metals resistant to oxidation such as platinum, the shape of said electrodes being formed in a strip line type and on an insulator substrate, the spacing between said electrodes being set to be of 0.02 to 1 mm, a square wave voltage with positive and negative pulses are supplied to said electrodes, thereby build-up of impurity in liquids to said electrodes being prevented, thus high concentration of ozone O.sub.3 generated effectively by combining O with O.sub.2 produced through dissociation of water molecule in liquids without the danger of ozone gas leakage in the air, thus favorably applicable for the manufacturing process of foods and pharmaceutical chemicals, storage of agricultural products, sterilization and disinfection.
Abstract:
Through modular construction of the ozone generator from block modules (1) of metal which have through holes (2) as outer electrodes and can be directly cooled, the required mechanical tolerances can be maintained. In particular, if the high voltage electrode (8) and the dielectric (11) is cooled, high power densities can be achieved.
Abstract:
A method for producing an ozone gas and an apparatus for producing the same are disclosed, in which a gas to be ozonized is fed to an ozonizer having a dielectric interposed between a pair of electrodes which are respectively connected to a high-frequency high-voltage power supply and thereby an ozone gas can be produced efficiently. The density of the gas to be ozonized which is fed to a silent discharge generating region in the ozonizer is made higher than the density of the same gas in the standard state. To that end, the temperature at the silent discharge generating region is lowered, and/or the pressure at the same region is increased.
Abstract:
A corona reaction system of the type wherein substantially all of the heat generated by corona discharge is removed from the system by gas flow therethrough. A corona discharge gas flow path is provided which is between 2.0 and 10 inches in length and bounded by discharge electrodes spaced apart at a distance of between 0.01 to 0.250 inch, whereby low pressure drop over the gas flow path is maintained under conditions of high power density and gas temperature.
Abstract:
An improved corona reactor method and apparatus for subjecting a fluid reactant to a corona discharge, and particularly for generating ozone. The corona reactor includes a housing containing an air-cooled, modular, corona reactor core comprising a plurality of separate, individually removable, air-tight corona reactor cells. Each corona reactor cell includes two, spacedapart, metallic electrodes or shell portions defining an airtight corona discharge chamber therebetween. The exterior surfaces of the electrodes are bare and exposed to ambient; the interior (facing) surfaces are covered with a ceramic dielectric; and the fluid reactant is subjected to the corona discharge within the corona discharge chamber by appropriate inlet and outlet ports. The individual cells are electrically connected in series.
Abstract:
To provide a compact ozone generator, films of polymeric material are employed as dielectrics in combination with flat, planar electrodes to produce ozone by silient electrical discharge in an oxygen containing gas stream. The electrodes and dielectrics are cooled by the gas stream which is recycled across the electrodes and dielectrics and through an external heat exchanger.
Abstract:
A dielectric assembly for generating ozone includes a positive electrode, a negative electrode, a dielectric for generating the ozone, and a knob adapted to extend outside of a housing into which the dielectric assembly is to be placed. A system is also provided for sanitizing and deodorizing water, food, surfaces and air including a microbiological reduction filter device having an input connected to a water supply, a venturi injector disposed within a housing and connected to an output of the microbiological reduction filter device which generates ozone and mixes the generated ozone with the water, and an electrode assembly comprising a plurality of electrodes, a dielectric for generating the ozone, and a knob extending outside of the housing. The dielectric in a first embodiment and the entire dielectric assembly in a second embodiment can be removed from the housing and replaced in its entirety by the knob.