Документ взят из кэша поисковой машины. Адрес оригинального документа : http://www.kge.msu.ru/ozone/archives/1rus_conf_pr/Presentations/Vorokhobov.pdf
Дата изменения: Mon Aug 29 17:35:16 2005
Дата индексирования: Mon Oct 1 21:10:33 2012
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Some aspects of engineering solutions of ozonizer and ozone sensor. .. , . . . riga2004@navigator.lv , : 1. , , . . . 2. , . , . 30000 . , . 3. , , . 4. , ... . ... , . 5. , . . Abstract Our practice shows that 1. Air ­ cooling for ozonizer is always simpler and cheaper than water ­ cooling. But it can be as much effective. On the other hand it demands good adhesion between dielectric enamel and aluminium radiator. Such adhesion was achieved in our laboratory. 2. Most reliable are ozonizers with two dielectric barrier coated both electrodes. In our report the reason of this experimental fact, geometry and character of discharge is analysed. Frequency can be risen till 30000 Hz without any disturbance for ozonizers work. Meanwhile necessary size of high voltage transformer diminishes and whole design simplifies. 3. It makes a sense to increase speed of oxygen, but at the same time partially recycle oxygen turning it from exit to entrance. 4. Discharge from needle allows generate ozone from non prepared air, but its efficiency is small. Its efficiency can be sufficiently risen up by placing additional electrode in discharge zone. 5. It is very reasonably to install little compressor in ozone sensor, which allows to inhale air probes from any narrow places. Pocket-size sensor of this type was created in our laboratory.

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