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Comparative analysis of air disinfection methods for prevention of bacterial and viral infections

https://doi.org/10.34215/1609-1175-2023-4-82-85

Abstract

Aim. To compare the effectiveness of two methods for indoor air disinfection, i.e., those based on ultraviolet (UV) irradiation sources of open and closed types.

Material and methods. Two main indoor air disinfection methods were compared – an open-type UV irradiator and a closed-type recirculating irradiator– based on the parameters of total bacterial contamination and the content of staphylococci and mold spores in the air (n = 30).

Results. UV disinfection using an open-type bactericidal lamp, both for 15 and 30 min, is significantly more effective than disinfection using a recirculating irradiator in terms of reducing the total bacterial contamination (p < 0.001), the content of viable staphylococci (p < 0.001 – p = 0.026), and mold spores (p < 0.001) in the air.

Conclusion. The use of bactericidal lamps of open type is a more effective tool for indoor air disinfection compared to the use of closed-type recirculating irradiators. It is advisable to use UV disinfection with open type sources in the absence of people followed by ventilation and subsequent use of recirculating irradiators in the presence of people.

About the Authors

O. S. Prylutskyi
M. Gorky Donetsk National Medical University
Russian Federation

Alexandr S. Prilutskiy, Dr. Sci. (Med.), Prof. of Dept. of Microbiology, Virology, Immunology and Allergology

16 Ilyicha Ave., Donetsk, 283001



S. V. Kapranov
Alchevsk City Sanitary and Epidemiological Station
Russian Federation

Alchevsk



K. Y. Tkachenko
M. Gorky Donetsk National Medical University
Russian Federation

Donetsk



L. I. Yalovega
Alchevsk City Sanitary and Epidemiological Station
Russian Federation

Alchevsk



References

1. Prilutskiy AS, Miminoshvili VR. Transmission mechanisms of SARS-COV-2 and methods of their prevention. Communication 1. Airborne and aerosol pathways. Vestnik of Hygiene and Epidemiology. 2020;24(2):224–32 (In Russ.)

2. Nagolkin AV, Volodina EV, Zagidullov MF, Akimkin VG, Borisoglebskaja AP, Safatov AS, Kuzin VV, Dmitrieva VA. Modern scientific and practical trends in the field of air disinfection in medical organizations. Public Health and Life Environment. 2016;2(275):47–51 (In Russ.)

3. Prilutskiy AS, Miminoshvili VR. Transmission mechanisms of SARS-COV-2 and methods of their prevention. Communication 2. Air-dust and aerosol paths. Use of respirators and masks. Vestnik of Hygiene and Epidemiology. 2020;24(2):233–42 (In Russ.)

4. Varlamov EE, Pampura AN, Asmanov AI. The significance of mold allergens in the development of allergic diseases of the nasal cavity: Approaches to diagnosis, therapy and prevention. Pediatrics (app. to the journal Consilium Medicum). 2018;4:67–71 (In Russ.) doi: 10.26442/24138460.2018.4.000016

5. Ziatdinov VB, Badamshina GG, Isaeva GSh. Characteristics of mycological contamination of air in medical organizations. Perm Medical Journal. 2016;4(33):107–12 (In Russ.)

6. Badamshina GG, Ziatdinov VB, Bakirov AB, Valeev AA, Stavropol’skaja LV, Isaeva GSh, Karimov DO, Ahmetshina VT. The need to create standards regulating the content of yeast-like and mold fungi in the hospital environment of medical organizations. Occupational medicine and human ecology. 2017;2:48–52 (In Russ.)

7. Sautour M, Sixt N, Dalle F, L`Ollivier C, Fourquenet V, CalinonC, Paul K, Valvin S, Maurel A, Aho S, Couillault G, Cachia C, VagnerO, Cuisenier B, Caillot D, Bonnin A. Profiles and seasonal distribution of airborne fungi in indoor and outdoor environments at a French hospital. Sci Total Environ. 2009;407(12):3766–71. doi: 10.1016/j.scitotenv.2009.02.024

8. Lonc E, Plewa K, Kiewra D, Szczepańska A, Firling CE. Quantitative assessment of mycological air pollution in selected rooms of residential and dormitory housing facilities. Ann Parasitol. 2013;59(4):183–7.

9. Prilutskiy AS, Kapranov SV, Tkachenko KE, Jalovega LI. Air ozonization for prevention of bacterial and viral infections. Perm Medical Journal. 2021;38(6):109–19 (In Russ.)


Review

For citations:


Prylutskyi O.S., Kapranov S.V., Tkachenko K.Y., Yalovega L.I. Comparative analysis of air disinfection methods for prevention of bacterial and viral infections. Pacific Medical Journal. 2023;(4):82-85. (In Russ.) https://doi.org/10.34215/1609-1175-2023-4-82-85

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ISSN 1609-1175 (Print)