Abstract:
In accordance with at least one exemplary embodiment, a syringe device, method and system for delivering a therapeutic amount of ozone are disclosed. A sterility case can enclose a syringe portion and can maintain sterility while the syringe device is interfaced to an ozone generator. A valvably-controlled fluid channel can extend from the barrel of the syringe through the case. Conducting elements can be attached to the case and can breach the case. The conductive elements can be connected to electrodes. The electrodes can be attached to the syringe. The syringe portion can be filled with oxygen gas via the valvably-controlled fluid channel. An electric current can be provided to the conductive elements from an ozone generator resulting in a corona discharge from at least one electrode. A therapeutic amount of ozone gas can be produced from the oxygen gas and the syringe delivered into the sterile field without compromise.
Abstract:
A frame-type ozone generator has a plurality of elongated electrodes deployed in substantially parallel, spaced relation to each other so as to form a substantially flat electrode array, and a flow generator for generating a flow of oxygen containing gas through the electrode array in a direction substantially perpendicular to the electrode array. Each of the electrodes is formed from an electrically conductive core covered with polyvinyl-difluoride. Preferably, each electrode array is arranged within a frame of a given area, each frame being configured for assembly with other similar frames to form an extended ozone generator of area greater than the given area. Also disclosed are an apparatus for treating a product with ozone-containing gas in which pressure-waves are used to enhance effectiveness of the ozone treatment, and a two-chamber batch method for implementing treatment of a product with possibly harmful gases such as ozone.
Abstract:
An impact resistant polymeric composition and a process for its production. The composition comprising a rigid polymeric matrix having disposed therein two grafted rubbery copolymers said grafted rubbery copolymers having different specifically defined degrees of grafting.
Abstract:
PROBLEM TO BE SOLVED: To provide an ozone generating element capable of suppressing the reduction a generating quantity of ozone due to deterioration of a protective layer and a method for manufacturing the same.SOLUTION: A laminated body 12 is constituted by laminating dielectric layers 18a to 18e. A discharge electrode 14 is provided on the dielectric layer 18a. An induction electrode 16 faces the discharge electrode 14 via the dielectric layer 18a by being arranged on the dielectric layer 18b. A protective layer 20 is arranged on the first dielectric layer 18a so as to cover the discharge electrode 14, and comprises a glass ceramic.
Abstract:
PURPOSE: A system is provided for disinfection, purification and deodorization, using a gaseous phase containing ozone, wherein the operations are carried out on the surface of the respective objects to be treated. CONSTITUTION: A frame type ozone generator has a plurality of elongated electrodes deployed in substantially parallel, spaced relation to each other so as to form a substantially flat electrode array, and a flow generator for generating a flow of oxygen containing gas through the electrode array in a direction substantially perpendicular to the electrode array. Each of the electrodes is formed from an electrically conductive core covered with polyvinyl-difluoride. Preferably, each electrode array is arranged within a frame of a given area, each frame being configured for assembly with other similar frames to form an extended ozone generator of area greater than the given area. Also provided are an apparatus for treating a product with ozone-containing gas in which pressure-waves are used to enhance effectiveness of the ozone treatment, and a two-chamber batch method for implementing treatment of a product with possibly harmful gases such as ozone.
Abstract:
PURPOSE: An ozonizer is provided to suppress the creeping corona when discharged by forming converter blocking groove in the middle of the main body supporting the edge and the discharging pin. CONSTITUTION: An ozonizer comprises the main body(10), net for the negative electrode(20), and the discharging pin for positive electrode(30). The fitting groove(11) of the predetermined dept is formed on the edge(101) of the front end of the main body. The net for negative electrode is inserted at the lower part of the fitting groove of the main body to be fixed by the epoxy impregnation. The discharging pin for positive electrode passes through the center of the main body to be located in the center of the net. The converter blocking groove(14) is formed between the edge and the discharging pin of the main body, and the projection bar(15) is formed to penetrate the center of the discharging pin. The secondary converter blocking groove(151) is formed in the center of the projection bar. At least one of converter blocking groove is formed. [Reference numerals] (AA) Thickness; (BB) Diameter