METHOD OF STABILISING OZONISER OUTPUT AND DEVICE THEREFOR Russian patent published in 2014 - IPC C01B13/11 A61L9/15 

Abstract RU 2527994 C1

FIELD: electricity.

SUBSTANCE: raw material consumption used is ozone concentration and the signal used is the amount of electric charge in the ozone-ion air mixture fed by the ozoniser, which is measured over a period of time set by a control unit, and transmitted to a differentiating link which determines the rate of change of charge in cycles, which is further generated in the form of a digital or analogue voltage signal and compared with the value of voltage across electrodes of the ozoniser, set by the control unit. Upon deviation of the signal value, a voltage controller generates a signal which inversely varies voltage across the electrodes of the ozoniser. The device for carrying out the method has an ozone output sensor installed in front of the ozoniser output, a coulometer connected to the differentiating link with a control unit, which consists of series-connected signal counter, signal amplifier and a device for controlling the cyclic process of measuring the rate of change of charge, connected to the signal counter and the coulometer. The output of the signal amplifier is connected to the voltage controller and the power supply is connected to the device for controlling the cyclic process of measuring the rate of change of charge and to the signal amplifier. The sensor is in the form of a thin metal plate, and the high-voltage electrode of the ozoniser is in the form of a disc coil.

EFFECT: stabilising ozoniser output.

2 cl, 1 dwg

Similar patents RU2527994C1

Title Year Author Number
METHOD OF MONITORING OZONISER OUTPUT AND APPARATUS FOR REALISING SAID METHOD 2013
  • Strizhkov Igor' Grigor'Evich
  • Raznovan Ol'Ga Nikiforovna
  • Dajbova Ljubov' Anatol'Evna
RU2524921C1
DEVICE FOR PRODUCTION OF PROTEIN FEED 2019
  • Priporov Igor Evgenevich
  • Priporov Evgenij Vladimirovich
  • Minov Aleksandr Nikolaevich
RU2706188C1
SYSTEM FOR ROOMS OZONIZATION 1999
  • Potekhin S.G.
  • Mikhal'Skij V.I.
  • Oreshnikov V.S.
  • Lapko G.P.
  • Abramov Ju.A.
  • Korzhev V.A.
  • Nikiforov V.N.
  • Mikhal'Skaja T.I.
  • Degtjarev S.N.
RU2185320C2
OZONIZER 0
  • Belyj Nikolaj Grigorevich
  • Bogdanov Valerij Mikhajlovich
  • Kiyatkin Nikolaj Grigorevich
  • Nagajtsev Vladimir Aleksandrovich
  • Parshin Dmitrij Nikolaevich
  • Troitskij Vladimir Aleksandrovich
  • Tropin Leonid Nikolaevich
  • Khmara Vasilij Filippovich
SU1121232A1
PARARESONANCE METHOD OF VOLTAGE STABILIZATION OF HIGH-FREQUENCY OZONIZER AND DEVICE FOR METHOD EMBODIMENT 2000
  • Shapiro S.V.
  • Dunaev S.A.
RU2196729C2
ELECTRIC DRIVE 0
  • Volkov Aleksandr Vasilevich
  • Shekhter Andrej Semenovich
SU1372580A1
METHOD OF PRODUCING PROTEIN FEED 2019
  • Priporov Igor Evgenevich
  • Tsybulevskij Valerij Viktorovich
  • Pishchalov Andrej Alekseevich
RU2706577C1
REGULATOR OF OZONE CONCENTRATION 2000
  • Buranov S.N.
  • Gorokhov V.V.
  • Karelin V.I.
  • Selemir V.D.
RU2189070C2
OZONIZER AND OZONE GENERATOR 1997
  • Lukanin Aleksandr Aleksandrovich
  • Khasanov Oleg Leonidovich
RU2127220C1
FREQUENCY CHANGER 1999
  • Silkin E.M.
RU2155432C1

RU 2 527 994 C1

Authors

Strizhkov Igor' Grigor'Evich

Raznovan Ol'Ga Nikiforovna

Dajbova Ljubov' Anatol'Evna

Dates

2014-09-10Published

2013-01-25Filed