OQOVA SUVLARNI ZARARSIZLANTIRISHDA ULTRABINAFSHA USULDAN FOYDALANISH
Keywords:
oqova suvlar, zararsizlantirish, ultrabinafsha usul, uv nurlar, sanoat chiqindilari, ekologik tozalash, mikroorganizmlar, suv tozalash texnologiyasi, sog‘liqni saqlash, atrof-muhitni muhofaza qilish.Abstract
Ushbu maqolada oqova suvlarni zararsizlantirishda ultrabinafsha (UV) usulining ahamiyati va afzalliklari yoritilgan. Ultrabinafsha nurlarning suvdagi zararli mikroorganizmlar, bakteriyalar va viruslarni yo‘q qilishdagi ro‘li haqida ma’lumot beriladi. Shuningdek, UV usulining ekologik toza, samarali va xavfsiz texnologiya ekanligi, uning afzalliklari va ba’zi cheklovlari haqida tahlil qilinadi. Maqola suv tozalash sohasida innovatsion yechimlarni izlayotgan mutaxassislar va ekologiya sohasiga qiziqqan o‘quvchilar uchun foydali bo‘ladi.
References
1. Reed, R.H., Martineau, R.C., & Goodhead, D.T. (1991). Ultraviolet light-induced DNA damage and photoreactivation in bacteria. Mutation Research, 254(1-2), 115-124.
2. Li, X., Gao, N., & Chen, S. (2020). Combination of UV and advanced oxidation processes for wastewater treatment: A review. Science of The Total Environment, 704, 135309.
3. Kowalski, W., Bahnfleth, W., & Hernandez, M. (2009). Ultraviolet Germicidal Irradiation Handbook: UVGI for Air and Surface Disinfection. Springer.
4. European Environment Agency (EEA). (2018). Water treatment technologies for reducing micropollutants. EEA Report No 12/2018.
5. Islomov, A., Tursunov, N., & Karimov, S. (2020). Oqova suvlarni ultrabinafsha nurlar yordamida tozalash imkoniyatlari. Toshkent Davlat Texnika Universiteti Ilmiy Jurnali, 4(2), 45-53.
6. Gao, Y., Li, X., & Zhang, J. (2022). Synergistic effects of ultraviolet and ozonation for wastewater disinfection. Environmental Science and Pollution Research, 29(8), 11540-11552.
7. Bolton, J.R., & Cotton, C.A. (2011). The Ultraviolet Disinfection Handbook. American Water Works Association.
8. Hijnen, W.A.M., Beerendonk, E.F., & Medema, G.J. (2006). Inactivation credit of UV radiation for viruses, bacteria and protozoan (oo)cysts in water: A review. Water Research, 40(1), 3-22.
9. Malayeri, A.H., Mohseni, M., Cairns, B., & Bolton, J.R. (2016). Fluence (UV Dose) Required to Achieve Incremental Log Inactivation of Bacteria, Protozoa, Viruses and Algae. IUVA News, 18(3), 4-6.
10. Oguma, K., Katayama, H., & Ohgaki, S. (2002). Photoreactivation capacity of Escherichia coli after exposure to monochromatic UV light from low- or medium-pressure mercury lamps. Applied and Environmental Microbiology, 68(11), 6029-6035.