21-29 p.
The deterioration of water quality in water supply sources is an urgent problem both in Russia and around the world, which is why it is so important to develop new methods of water purification and filtration, which justifies the goal and emphasizes the relevance and practical significance of the research described in this article. As part of this work, pilot tests were conducted to determine ozone doses and evaluate the effectiveness of the ozonation method at a number of water supply stations. Taking into account the different chemical composition of water in the water supply sources, the convenience of transportation and installation of experimental equipment at the work site, an experimental installation UL-2 was created. The installation allows you to simulate the processes of ozonation and filtration of water. Based on the results of the tests carried out, the effectiveness of the ozonation method is determined, as well as recommendations for the hardware implementation of the water ozonation process and an assessment of its technical and economic indicators are formulated.
1. Draginskij V.L., Alekseeva L.L., Samojlovich V.G. Ozonirovanie v processah ochistki vody: Izdanie DeLi Print, 2007. 400 s.
2. Pomes Michael L., Green W. R., Thurman M., Orem William H., Lerch Harry E. DBP formation potential of aquatic humic substances. Journal AWWA. 1999. Vol. 91. № 3. P. 124 – 128.
3. Nawrocki J., Bilozor S. Brominated oxidation by-products in drinking water treatment. Jeweler SRT – Aqua. 1997. Vol. 46. № 6. P. 304 – 323.
4. Slavinskaja G.V. Vlijanie hlorirovanija na kachestvo pit'evoj vody. Himija i tehnologija vody. 1991. T. 13. № 11. S. 90 – 97.
5.Pupyrev E.I., Mirkis V.N., Braslavskij Ju.D., Smirnova N.L. Sovremennye tehnologii vodopodgotovki kak faktor obespechenija nadezhnosti centralizovannyh sistem vodosnabzhenija v Rossii. Vodosnabzhenie i sanitarnaja tehnika. 2006. № 1. Ch. I. S. 67 – 71.
6. Lunin V.V., Samojlovich V.G., Tkachenko S.N., Tkachenko I.S. Teorija i praktika poluchenija i primenenija ozona: Izdatel'stvo Moskovskogo universiteta Moskva, 2016. 240 s.
7. Fred J. Phenol chlorination kinetics, odour and taste of chlorophenol. Air and water Pollution. 1962. № 6. P. 42 – 52.
2. Pomes Michael L., Green W. R., Thurman M., Orem William H., Lerch Harry E. DBP formation potential of aquatic humic substances. Journal AWWA. 1999. Vol. 91. № 3. P. 124 – 128.
3. Nawrocki J., Bilozor S. Brominated oxidation by-products in drinking water treatment. Jeweler SRT – Aqua. 1997. Vol. 46. № 6. P. 304 – 323.
4. Slavinskaja G.V. Vlijanie hlorirovanija na kachestvo pit'evoj vody. Himija i tehnologija vody. 1991. T. 13. № 11. S. 90 – 97.
5.Pupyrev E.I., Mirkis V.N., Braslavskij Ju.D., Smirnova N.L. Sovremennye tehnologii vodopodgotovki kak faktor obespechenija nadezhnosti centralizovannyh sistem vodosnabzhenija v Rossii. Vodosnabzhenie i sanitarnaja tehnika. 2006. № 1. Ch. I. S. 67 – 71.
6. Lunin V.V., Samojlovich V.G., Tkachenko S.N., Tkachenko I.S. Teorija i praktika poluchenija i primenenija ozona: Izdatel'stvo Moskovskogo universiteta Moskva, 2016. 240 s.
7. Fred J. Phenol chlorination kinetics, odour and taste of chlorophenol. Air and water Pollution. 1962. № 6. P. 42 – 52.
Korsa-Vavilova E.V., Naumenko E.V., Bozhko V.I., Shmelev A.Ya. Features of the use of ozone in water treatment in the experimental installation UL-2. Chemical Bulletin. 2023. 6 (1). P. 21 – 29.

English
Русский