Indoor air decontamination system and reduction of microorganism emissions into the atmosphere

Author:

Shkrabak V.S.,Popov A.A.,Enikeev V.G.,Gavrikova E.I.,Shkrabak R.V.

Abstract

The paper considers the effect of sanitary and hygienic condition of occupational environment, namely the factor of increased microbial contamination, on temporary disability and reduction of labor efficiency. In this regard, it is necessary to improve the methodology and technical support of disinfection methods in order to reduce labor intensity and increase the efficiency of equipment and disinfectants. The developed deflector model serves to reduce the emissions of microorganisms into the atmosphere and improves the environmental situation. The proposed design of the ultrasonic system makes it possible to improve user experience due to the possibility to control the flow rate of the working fluid and preparations. According to the results of the experiment, the disinfection agent based on hydrogen peroxide, silver salt and a furocoumarin solution in ethyl alcohol with the use of the developed ultrasonic atomizer reduced the total microbial contamination by 8 times on average.

Publisher

EDP Sciences

Reference14 articles.

1. Global burden of COPD: risk factors, prevalence, and future trends

2. Metarov N.F., ed. Professional pathology (GEOTAR-Media, Moscow, 2011)

3. Spirin V.F., Velichkovsky B.T., Vasilyeva O.S., Occupational Health and Respiratory Diseases in Livestock and Fodder Workers (Saratov, 2002)

4. Shkrabak V.S., Gavrikova E.I., Measures to reduce the contact of workers with microorganisms, In the collection: Improvement of ways to prevent industrial risks, dynamic reduction and elimination of injuries and morbidity of agribusiness workers, Collection of sci. works of the int. sci. and pract. conf. 9–12 (Ministry of Agriculture, St. Petersburg State Agrarian University, 2017)

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