Abstract:
An ozone generator system (1) in which a multitude of plate type ozone generators (2) are arranged adjacent to each other in a block (3). Each ozone generator comprises a chamber, adapted for converting oxygen to ozone by a corona discharge, and each chamber is provided with an inlet for oxygen or an oxygen-rich gas and an outlet for ozone. Said ozone generators are arranged in a block module (26) in which they are affixed by a block rack (4). Said block rack comprises an inlet port (5) adapted for introduction of oxygen gas, and an outlet port (6) adapted for discharge of ozone created through conversion within the generators comprised in the block module. A multitude of first conduits (7), each running between said inlet port and one chamber inlet, and a multitude of second conduits (8), each running between said outlet port and one chamber outlet, are provided within said block rack. Said conduits are arranged so that the flow distance between the inlet and outlet ports has the same length, regardless of which generator the introduced gas passes through, thereby achieving an even gas pressure and gas flow, through parallel connection of the generators.
Abstract:
A discharge cell for use in an ozone generator includes first upper and lower electrodes (10) formed of flat rigid bodies, which are opposed with a pair of rigid spacers (20) placed between them to define a space. This space accommodates a dielectric unit having a rigid structure including a second electrode (32) sandwiched between two glass plates (31,31). A plurality of spacers (40,40,...) are inserted between the dielectric unit (30) and the first electrodes (10) so that the dielectric unit (30) can be held at a neutral position in the space to form a discharge gap (50) on each side. The discharge gap G can remain to be as narrow as less than 0.4 mm. The cell components and fastening mechanism are protected from damage.
Abstract:
There is provided a small and light ozone generating apparatus capable of producing ozone with much less consumption of electric power. The present invention comprises a pulse generator for generating high-voltage pulses and a discharge chamber for inducing electrical discharge in response to the high-voltage pulses. The pulse generator includes an LC circuit for compressing square wave signals and generating impulses. The use of impulse greatly reduces electric power consumption and volume of ozone generating apparatus. Electrical discharge takes place between an electrode plate and grounded chamber wall. A sheet of oxide dielectric covers the chamber wall to prevent corrosion of chamber wall.
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:
An ozonizer has a flat plate-shaped low voltage electrode 7, a flat plate-shaped high voltage electrode 3 facing a main surface of the low voltage electrode 7. The ozonizer also has a flat plate-shaped dielectric 5 and a spacer for forming a discharge gap 6 of a thin thickness in a laminating direction provided between the low voltage electrode 7 and the high voltage electrode 3, a high voltage electrode cooling unit 2 for forming a cooling water passage 2c insulated from the high voltage electrode 3 inside the high voltage electrode 3. An alternating voltage is applied between the low voltage electrode 7 and the high voltage electrode 3 and a discharge is produced in the discharge gap 6 injected with oxygen gas to produce ozone gas.
Abstract:
An ozone generating cell includes at least two substantially planar electrodes (10,11) at a potential difference separated by a dielectric sheet (13), each producing a corona discharge to convert a proportion of any oxygen present to ozone. The electrodes, when considered in plan, are generally offset with regions of the electrodes overlapping or almost overlapping each other, and regions of both electrodes not overlapping each other. One or both planar electrode may feature extending planar portions of a substantially rectangular 'U' shape.
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).