MAISHIY OQOVA SUVLARINI TEXNIK SUVGA AYLANTIRISH TEXNOLOGIYASINI TAKOMILLASHTIRISH
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https://doi.org/10.5281/zenodo.21629649##article.subject##:
maishiy oqova suvlar, sentrifugalash, filtrlash, xlorlash, muallaq moddalar, loyqalik, bentonit, faollashtirilgan ko‘mir, texnik suv.##article.abstract##
Maishiy oqova suvlarni sentrifugalash va ko‘p bosqichli filtrlash texnologiyalari asosida tozalash hamda
ularni texnik suv sifatida qayta foydalanish imkoniyatlari tadqiq etildi. Tadqiqot obyekti sifatida oshxona va yuvinish
xonalarida hosil bo‘ladigan maishiy oqova suvlar tanlandi. Tozalash texnologiyasi mexanik to‘r, sentrifuga, shag‘al, faollashtirilgan
ko‘mir va bentonit gilidan tashkil topgan ko‘p qatlamli filtr hamda xlorlash bosqichlarini o‘z ichiga olgan holda
ishlab chiqildi. Tadqiqot natijalariga ko‘ra, loyqalik 93,7 %, muallaq moddalar 93,3 %, yog‘ va moylar 92,9 %, kimyoviy
kislorod ehtiyoji esa 68,0 % ga kamaygani aniqlandi. Tozalangan suvning fizik-kimyoviy ko‘rsatkichlari uni unitazni yuvish
uchun qayta foydalanish mumkinligini ko‘rsatdi. Ortiqcha hajmdagi suvni yashil hududlarni sug‘orish, sanitariya ishlari,
avtomobillarni yuvish va boshqa texnik ehtiyojlar uchun qo‘llash mumkin. Taklif etilgan texnologiya maishiy oqova suvlarni
tozalash inshootlariga tushadigan yuklamani kamaytirish hamda ichimlik suvi sarfini 50 % gacha tejash imkonini beradi
Библиографические ссылки
United Nations World Water Assessment Programme. The United Nations World Water Development Report 2024:
Water for Prosperity and Peace. – Paris: UNESCO Publishing, 2024. – 178 p.
World Health Organization. Guidelines for Drinking-water Quality. – 4th ed., incorporating the first and second addenda.
– Geneva: World Health Organization, 2022. – 628 p.
Tchobanoglous G., Stensel H. D., Tsuchihashi R., Burton F., AECOM. Wastewater Engineering: Treatment and
Resource Recovery. – 5th ed. – New York: McGraw-Hill Education, 2014. – 2048 p.
Asano T., Burton F. L., Leverenz H. L., Tsuchihashi R., Tchobanoglous G. Water Reuse: Issues, Technologies, and
Applications. – New York: McGraw-Hill, 2007. – 1570 p.
United States Environmental Protection Agency. Guidelines for Water Reuse. – Washington, DC: U.S. Environmental
Protection Agency, 2012. – 643 p.
Henze M., van Loosdrecht M. C. M., Ekama G. A., Brdjanovic D. Biological Wastewater Treatment: Principles, Modelling
and Design. – London: IWA Publishing, 2008. – 511 p.
Judd S. The MBR Book: Principles and Applications of Membrane Bioreactors for Water and Wastewater Treatment.
– 2nd ed. – Oxford: Elsevier, 2011. – 536 p.
Spellman F. R. Handbook of Water and Wastewater Treatment Plant Operations. – 3rd ed. – Boca Raton: CRC Press,
– 920 p.
Davis M. L. Water and Wastewater Engineering: Design Principles and Practice. – New York: McGraw-Hill, 2010. –
p.
Crites R., Tchobanoglous G. Small and Decentralized Wastewater Management Systems. – New York: McGraw-Hill,
– 1080 p.
ShNQ 2.04.01–22. Binolarning ichki suv ta’minoti va oqova suvlarni chiqarib yuborish. – Toshkent, 2022.
Food and Agriculture Organization of the United Nations. Users’ Manual for Irrigation with Treated Wastewater. –
Rome: FAO, 2003. – 73 p.
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