Problems of pollution of water bodies with oil-containing wastewater of industrial enterprises and options for their solution

Keywords: petroleum products, wastewater, settling, rheological properties, adsorption, cleaning scheme, water-co-airing systems

Abstract

The problem of pollution of natural water bodies with wastewater containing oil and petroleum products is considered. Often in industrial enterprises in the development of wastewater treatment schemes do not take into account their multicomponent and multiphase. Experimental studies to evaluate the effectiveness of treatment of waters containing petroleum products in different states were conducted in the work. Experiments were conducted on sedimentation, sorption, and the rheological properties of wastewater were also evaluated. In conclusion, a scheme of wastewater treatment of petroleum products was given.

References

Anapolsky, V.N., Prokopiev, K.L., Oliferuk, S.V., & Romanenko A.P. (2007). Topical problems of oil-containing waste water treatment. S.O.K. – Santekhnika. Otoplenie. Kondicionirovanie = P.H.C. – Plumbing. Heating. Conditioning. https://www.c-o-k.com.ua/content/view/1072/ (in Russ).

Yu L., Han M., & He F. (2017). A review of treating oily wastewater. Arabian Journal of Chemistry, 10, 1913–1922. https://doi.org/10.1016/j.arabjc.2013.07.020

Kelbaliev, G.I., Suleimanov, G.Z., Rzaev, A.G., Rasulov, S.R., & Guseinova L.V. (2015) Processes of the aggregation and coagulation of asphaltene particles in petroleum and oil emulsion. Theoretical Foundations of Chemical Engineering, 49(3), 225–232. https://doi.org/10.1134/S0040579515030057

Kravtsov, A.V., Usheva, N.V., Moises, O.E., Kuzmenko, E.A., Balyasina, D.A., & Kapustin, L.V. (2010). Study of the dynamics of the process of settling water-oil emulsions. Izvestiya Tomskogo politekhnicheskogo universiteta = News of Tomsk Polytechnic University, 317(3), 54–57 (in Russ).

Dremicheva, E.S. & Shamsutdinov, E.V. (2018). Intensification of sedimentation treatment of waste water from oil products. Voda i ekologiya: problemy i resheniya = Water and ecology: problems and solutions, 1(73), 3–8. https://doi.org/10.23968/2305–3488.2018.23.1.3–8 (in Russ).

OST 39-232-89 «Water for oil formation flooding. Determination of particle size of emulsified oil». https://docplan.ru/Data1/51/51601/index.htm#i45546 (in Russ).

Romanova, N.A., Aliyev, Z.Z., & Buranchin, A.R. (2009) Viscosity of water-oil-gas emulsion and its effect on the efficiency of deep-water pump plants. Neftegazovoe delo = Oil and gas business, 7(1), 43–48 (in Russ).

Dremicheva, E.S. (2017). Efficiency of sorption materials for collecting oil products from the surface of reservoirs. Zashchita okruzhayushchej sredy v neftegazovom komplekse = Environmental protection in the oil and gas complex, 1, 35–39. (in Russ).

Fomenko, A.I. & Sokolov, L.I. (2015) Sorption treatment of waste water from oil products. Ekologiya i promyshlennost' Rossii = Ecology and industry of Russia, 19(5), 8–12. https://doi.org/10.18412/1816-0395-2015-5-8-12 (in Russ).

Kim, V., (2020). Application of artificial and natural sorbents for treatment of waste water from petroleum products. Vodoochistka = Water treatment, 4. 28–31. (in Russ).

Frost, R., Carmody, O., Xi, Yu., & Kokot, S. (2007). Adsorption of hydrocarbons on organo-clays - implications for oil spill remediation. Journal of Colloid and Interface Science, 305(1), 17–24. https://doi.org/10.1016/j.jcis.2006.09.032

Dremicheva, E.S. (2020). Energy properties of peat saturated with petroleum products. Nadezhnost' i bezopasnost' energetiki = Reliability and safety of energy, 13(2), 105–109. https://doi.org/10.24223/1999-5555-2020-13-2-105-109 (in Russ).

Filina, N.A. (2013). Determination of calorific value of wood saw and granules impregnated with petroleum products. Trudy Povolzhskogo gosudarstvennogo tekhnologicheskogo universiteta. Seriya: Tekhnologicheskaya = Works of the Volga State Technological University. Series: Technological, 1, 466–471. (in Russ).

Selyanina, S.B., Orlov, A.S., Ponomareva, T.I., Trufanova, M.V., Yarygina, O.N., Sokolova, T.V., Sosnovskaya, N.E., & Pekhtereva, V.S. (2019). Sorption properties of the upper peat of Pribelomorsky province (Russia). Prirodopol'zovanie = Environmental management, 1, 211–218. (in Russ).

Standard method «Activated carbon. Standard test method for determination of sorbent performance of adsorbents». https://docs.cntd.ru/document/1200133296 (in Russ).

Zinurov, V.E., Dmitriev, A.V., Sharipov, I.I., Dang, S.V., & Kharkov, V.V. (2020). Intensification of waste water treatment of thermal power plants from oil products in settling tanks. Vestnik Tekhnologicheskogo universiteta = Bulletin of the University of Technology, 23(6), 64–67. (in Russ).

Asadov, M.M. & Aliyev, E.F. (2021). Modification of the process diagram for treatment of waste water from oil products. Azerbajdzhanskoe neftyanoe hozyajstvo = Azerbaijan Oil Industry, 1, 37–43. https://doi.org/10.37474/0365-8554/2021-1-37-43 (in Russ).

Published
2021-12-17
How to Cite
Dremicheva, E. S. (2021). Problems of pollution of water bodies with oil-containing wastewater of industrial enterprises and options for their solution. Chemical Safety Science, 5(2), 66 - 77. https://doi.org/10.25514/CHS.2021.2.20003
Section
Technologies for elimination of chemical hazards