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Infrastructure of transport is one of the most serious sources of negative impact on the environment at the international level, which requires the adoption of effective integrated measures to organize its sustainable development in an environmental context. In the light of the world communication processes of globalization and population migration, the development of air transport acquires particular importance, which simultaneously leads to an increase in the level of impact on the environmental components of all its parts. At the same time, the issue of improving the efficiency of wastewater treatment and environmental components from airports Surface runoff pollution formed during the operation of infrastructure objects of air transport, in particular in Ukraine, is poorly studied. That fact actualizes the need to study the effectiveness of wastewater treatment of airports in the context of ensuring their sustainable development and determines the choice of research topics. On the basis of calculations on the volume volumes of surface runoff formation from the territory of International Airport Kharkiv in winter and summer, as well as taking into account international regulations, the scheme of cleaning surface runoff of the airport was proposed in this article. In order to improve the efficiency of Surface runoff treatment from the specific components of airport storm water and bring their qualitative indicators to the normative requirements, regulations on the use and operation of advanced treatment of surface runoff were developed. The recommendations to provide ecological stability of the International Airport Kharkiv functioning in the context of ecologically safe management of the airport storm water runoffs, as the constituent part of the state transport infrastructure were worked out.
Wydawca
Rocznik
Tom
Strony
230--240
Opis fizyczny
Bibliogr. 23 poz., rys., tab.
Twórcy
autor
- Kharkiv National Automobile and Highway University, 25 Yaroslava Mudrogo Street, Kharkiv, 61002, Ukraine
autor
- Zaporizhzhia National University, 66 Zhukovsky Street, Zaporizhzhya, 69600, Ukraine
autor
- National Transport University, 1 Mykhailo Omelyanovich-Pavlenko Street, Kyiv, 02000, Ukraine
autor
- National Technical University of Ukraine, Igor Sikorsky Kyiv Polytechnic Institute, Reremohy Avenue 37, Kyiv, 03056, Ukraine
Bibliografia
- 1. Baxter G., Srisaeng P., Wild G. 2019. An Assessment of Airport Sustainability: Part 3 – Water Management at Copenhagen Airport. Resources.
- 2. Belokon K., Belokon Y. 2018. The study of catalysts based on intermetallic NiAl alloys. Ceramic Transactions, 262, 219–225.
- 3. Cabinet of Ministers of Ukraine. 2016. State target program for the development of airports for the period up to 2023, 39.
- 4. Couto E.D.A.D., Calijuri M.L., Assemany P., Santiago A., Lopes, L.S. 2015. Greywater treatment in airports using anaerobic filter followed by UV disinfection: an effcient and low cost alternative. Jornal Cleantr Production, 106, 372–379.
- 5. ECOS GROUP. 2020. Airport wastewater treatment.
- 6. Kostenko E., Melnyk L., Matko S., Malovanyy M. 2017. The use of sulphophtalein dyes immobilized on anionite Ab-17X8 to determine the contents of Pb(Ii), Cu(Ii), Hg(Ii) and Zn(Ii) in liquid medium. Chemistry & Chemical Technology, 11(1), 117–124. https://doi.org/10.23939/chcht11.01.117.
- 7. Latisheva O.V. 2014. Determining the negative impact of airports on the environment and developing measures to reduce it. Economic Analysis, 15(3), 57–63.
- 8. Lesechko A.S., Kurbatova A.I. 2016. Features of the technological scheme for cleaning storm water at airports. Bulletin of the Peoples’ Friendship University of Russia. Series: Ecology and Life Safety, 2, 104–109.
- 9. Malovanyy M., Nikiforov V., Kharlamova O., Synelnikov O. 2016. Production of renewable energy resources via complex treatment of cyanobacteria biomass. Chemistry & Chemical Technology, 10(2), 251–254. https://doi.org/10.23939/chcht10.02.251.
- 10. Majd S.M. 2014. Assessment of the technogenic impact of aviation enterprises on the state of water bodies. Environmental safety and Environmental management, 2, 101–106.
- 11. Ministry of Construction and Architecture of the Republic of Belarus. TKP 45-4.01-57-2012. Rainwater drainage systems. Building design standards.
- 12. Nykyforov V., Malovanyy M., Kozlovska T., Novokhatko O., Digtiar S. 2016. The biotechnological ways of blue-green algae complex processing. Eastern-European Journal of Enterprise Technologies, 5(10), 11–18. https://doi.org/10.15587/1729-4061.2016.79789.
- 13. Policy Department for Citizens’ Rights and Constitutional Affairs Directorate-General for Internal Policies. 2020. Impact of aircraft noise pollution on residents of large cities.
- 14. Revitt M., Worral P., Brewer D. 2001. The integration of constructed wetlands into a treatment system for airport runoff. Water science and technology. Journal of the International Association on Water Pollution Research, 44, 469–476.
- 15. Rodziewicz J., Mielcarek A., Janczukowicz W., Bryszewski K., Ostrowska K. 2020. Treatment of Wastewater Containing Runway De-Icing Agents in Biofilters as a Part of Airport Environment Management System. Sustainability, 12, 3608.
- 16. Sakalova H., Malovanyy M., Vasylinych T., Kryklyvyi R. 2019а. The Research of Ammonium Concentrations in City Stocks and Further Sedimentation of Ion-Exchange Concentrate. Journal of Ecological Engineering, 20(1), 158–164. https://doi.org/10.12911/22998993/93944.
- 17. Sakalova H., Malovanyy M., Vasylinycz T., Palamarchuk O., Semchuk J. 2019b. Treatment of effluents from ions of heavy metals as display of environmentally responsible activity of modern businessman. Journal of Ecological Engineering, 20(4), 167–176. https://doi.org/10.12911/22998993/102841.
- 18. Timkovych I.I., Kalnytska D.D. 2016. Protection of soils and water from pollution by airport runoff: environmental and legal requirements. Legal Bulletin, 2, 39, 25–30.
- 19. Vnukova N.V., Zhelnovach G.M., Kozlovskyi O.V. 2020. "Green" principles of sustainable development of road and transport infrastructure of the cities of Ukraine. IOP Conference Series: Materials Science and Engineering, 907.
- 20. Xie T., Dong J., Chen H., Jiang Y., Yao Y. 2016. Experiment investigation on deicing characteristics and energy efficiency using infrared ray as heat source. Energy, 116, 998–1005.
- 21. Yan H.-K., Wang N., Wei L., Fu Q. 2013. Comparing aircraft noise pollution and cost-risk effects of inland and offshore airports: The case of Dalian International Airport, Dalian, China. Transportation Research Part D: Transport and Environment, 24, 37–43.
- 22. Zhelnovach G., Belokon K., Manidina Ye., Tkalich I. 2021. Researching the degradation of roadside plant communities. Procedia Environmental Science, Engineering and Management, 8(2), 345–352.
- 23. Zheltobryukhov V.F., Feldstein E.G. 2013. About methods of treatment of surface runoffs of motor transport enterprises. Engineering Bulletin of the Don, 27(4), 127.
Typ dokumentu
Bibliografia
Identyfikator YADDA
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