DEVELOPMENT OF A CORONA DISCHARGE GAS ANALYZER FOR AIR DISINFECTION
Bokanova A.A. Abdurrahmanov A.A. Kurpenov B.K. Kamardin A.I. Imanbekova T.D.
2024National Academy of Sciences of the Republic of Kazakhstan
News of the National Academy of Sciences of the Republic of Kazakhstan, Series of Geology and Technical Sciences
2024#1Issue 46158 - 67 pp.
The object of the study is the development of a small-sized gas analyzer that provides disinfection and air quality control of industrial premises, as well as in open areas, quarries where mining is carried out. The purpose of the work is safety for workers and employees who are in the workplace. This article presents the calculations and development of removable cells of ozonizing elements, their characteristics, innovative technical means for obtaining ozone. Ozone is designed to neutralize mold fungi, harmful and toxic waste in various industries of the Republic of Kazakhstan. All over the world, both in the near and far abroad, analizator are used to purify and disinfect indoor and outdoor air, water and food products. Ozone has a strong oxidizing ability, a powerful bactericidal effect, neutralizes various types of mold fungi and yeast, toxic components, etc. This article discusses the optimal conditions for the production of ozone in ozonizing devices. The authors are developing small-sized gas analyzers that allow determining the concentration of toxic substances in the air, which will reduce energy and capital costs for the production line by 5-10 times compared to foreign analogues. The creation of electric discharge meters of air pollution of small dimensions is achieved due to the production of ozone as a result of a corona discharge from a microwire whose diameter does not exceed one hundted microns. The material for the article on the use of ozone in the agricultural sector, light industry and other industries that ensure the safety of food and non-food products was the research of scientists from near and far abroad, as well as the work of the authors. The article includes the results of calculations to obtain optimal sizes of corona wires. Depending on the need for ozone, not only the size, but also the number of replaceable analizator cells are calculated. To vary the sizes and other parameters of the ozonating cells, a mathematical modeling technique was applied, which made it possible to obtain the volt-ampere characteristics of the ozonating cells. To control for the operation of the gas analyzer, a circuit with a control unit has been developed.
characteristics , corona discharge , gas analyzer , removable cells , the prototype
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Department of Engineering, Eurasian Technological University, Almaty, Kazakhstan
Named after G.Daukeev Almaty University of Energy and Communications, Institute of Green Technology and Electric Power Engineering, Department of Electric energetics, Almaty, Kazakhstan
National Academy of Sciences of the Republic of Uzbekistan, Laboratory of the Scientific and Technical Center with design and pilot production, Tashkent, Uzbekistan
International University of Information Technologies, Department of Information and Communication Technologies, Almaty, Kazakhstan
Department of Engineering
Named after G.Daukeev Almaty University of Energy and Communications
National Academy of Sciences of the Republic of Uzbekistan
International University of Information Technologies
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