Justification of the technological scheme of water treatment plants in the Northern zone of the Tyumen region
https://doi.org/10.31660/2782-232X-2021-4-26-33
Abstract
A characteristic feature of the qualitative composition of natural water of the Northern zone of the Tyumen region, regardless of the season, are: low salt content – less than 200 mg/dm3 and suspended solids – 2–30 mg/dm3 , iron content at 0,1-5,5 mg/dm3 , high color – 40–130 ˚ of the platinum-cobalt scale. When eliminating color and complex-bound iron from natural water, the greatest difficulties are associated with low salt content and small values of suspended solids. This predetermines a slightly different from the regulations approach to the choice of technological scheme of water treatment. Based on the results of the research, variants of technological schemes of natural water treatment of the northern rivers are proposed.
About the Authors
A. G. ZhulinRussian Federation
Alexander G. Zhulin, Candidate of Engineering,
Associate Professor at the Department of Engineering Sistems and Structures
Tyumen
O. V. Sidorenko
Russian Federation
Olga V. Sidorenko, Candidate of Engineering,
Associate Professor, Head at the Department of
Engineering Systems and Structures
Tyumen
L. V. Belova
Russian Federation
Larisa V. Belova, Candidate of Engineering, Associate Professor at the Department of Engineering Sistems and Structures
Tyumen
M. M. Valova
Russian Federation
Marija M. Valova, Director General
Tyumen
References
1. Pystina, N. B., Popad'ko, N. V., Yunusov, R. Yu., & Mal'gin, A. M. (2013). Kriterii vybora nailuchshikh dostupnykh tekhnologiy po podgotovke pit'evoy vody s uchetom spetsifiki poluostrova Yamal. Vesti Gazovoy Nauki, 2(13), pp. 26–30. (In Russian).
2. Agbalyan, E. V., Shinkaruk, E. V., & Khoroshavin, V. Yu. (2016). Kharakteristika khimicheskikh pokazateley kachestva vody v Tazovskom rayone Yamalo-Nenetskogo Avtonomnogo Okruga. Scientific Bulletin of the Yamal-Nenets Autonomous District, 2(91), pp. 44-49. (In Russian).
3. Skhema vodosnabzheniya i vodootvedeniya munitsipal'nogo obrazovaniya Yar-Salinskoe Yamal'skogo rayona YaNAO na period 2015–2030 gg. Administratsiya Munitsipal'nogo obrazovaniya Yar-Salinskoe YaNAO. (In Russian). Available at: http://adm-yarsale.ru/shema-vodosnabzheniya-i-vodootvedeniya. html (date of application: 13.11.2021).
4. Ob utverzhdenii skhem vodosnabzheniya i vodootvedeniya munitsipal'nogo obrazovaniya selo Salemal. Administratsiya Munitsipal'nogo obrazovaniya Selo Salemal YaNAO. (In Russian). Available at: http://www.adm-salemal.ru/documents/559.html (date of application: 13.11.2021).
5. Klyachko, V. A., & Apel'tsin, I. E. (1971). Ochistka prirodnykh vod. Moscow, Stroyizdat Publ., 579 p. (In Russian).
6. Kopylov, A. S. Lavygin, V. M., & Ochkov, V. F. (2003). Vodopodgotovka v energetike. Moscow, MEI Publ., 309 p. (In Russian).
7. Babenkov, E. D. (1977). Ochistka vody koagulyantami. Moscow, Nauka Publ., 356 p. (In Russian).
8. Kul'skiy, L. A. (1962). Osnovy fiziko-khimicheskikh metodov obrabotki vody. Moscow, Izdatel'stvo MKKh RSFSR Publ., 220 p. (In Russian).
9. Kurgaev, E. F. (1977). Osvetliteli vody. Moscow, Stroyizdat Publ., 192 p. (In Russian).
10. Goronovskiy, I. T., & Rudenko, G. G. (1975). Ekspluatatsiya stantsiy po podgotovke khozyaystvennopit'evoy vody. Kiev, Budivel'nik Publ., 234 p. (In Russian).
11. Kul'skiy, L. A., Bulava, M. N., Goronovskiy, I. T., & Smirnov, P. I. (1972). Proektirovanie i raschet ochistnykh sooruzheniy vodoprovodov. 2nd edition, revised. Kiev, Budivel'nik Publ., 424 p. (In Russian).
12. Zhulin, A. G., Sidorenko, O. V., & Belova, L. V. (2020). Towards development of technology for reduction of manganese concentration in river water. News of Higher Educational Institutions. Construction, (2), pp. 36-46. (In Russian). DOI: 10.32683/0536-1052-2020-734-2-36-46
13. Belikov, S. E. (eds.) (2007). Vodopodgotovka: spravochnik dlya professionalov. Moscow, Akva-Term Publ., 240 p. (In Russian).
Review
For citations:
Zhulin A.G., Sidorenko O.V., Belova L.V., Valova M.M. Justification of the technological scheme of water treatment plants in the Northern zone of the Tyumen region. Architecture, Construction, Transport. 2021;(4):26-33. (In Russ.) https://doi.org/10.31660/2782-232X-2021-4-26-33