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Comprehensive Assessment of the Impact of the Almaty Wastewater Storage System on the State of Groundwater

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Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
This article presents the results of studies on the comprehensive assessment pertaining to the peculiarities of nutrition, accumulation, transit and discharge of groundwater in the adjacent territory of the Sorbulak reservoir. The information about the waste water storage was presented. The results of the analysis and decryption of satellite images, as well as the results of aerial photography of the territory of the Sorbulak were presented. The results of field route studies of the work area were presented to identify the external manifestations of directional filtration, areas of exits to the daytime surface of groundwater. The results of the calculation of the filtration flow controlled by the Sorbulak storage lake, unloading through the western side of the plateau into the Kurty River, were presented.
Rocznik
Strony
75--84
Opis fizyczny
Bibliogr. 13 poz., rys., tab.
Twórcy
  • Satbayev University, Satpaev Str. 22, Almaty, 050000, Kazachstan
  • Institute of Hydrogeology and Geoecology named after Ahmedsafina, Satbayev University, Valikhanov Str. 69/94, Almaty, 050010, Kazakhstan
  • Institute of Hydrogeology and Geoecology named after Ahmedsafina, Satbayev University, Valikhanov Str. 69/94, Almaty, 050010, Kazakhstan
  • Institute of Hydrogeology and Geoecology named after Ahmedsafina, Satbayev University, Valikhanov Str. 69/94, Almaty, 050010, Kazakhstan
Bibliografia
  • 1. American Academy of Environmental Engineers (AAEE). 2009. Environmental Engineering Body of Knowledge. AAEE, the Environmental Engineering Body of Knowledge Task Force. Available at: www.aaees.org/publicationseebodyofknowledge.
  • 2. Code of Environmental Protection of the Republic of Kazakhstan No. 212-III–SAM, Astana (rev. 26.12.2019). 2007. Available online: https://online.zakon.kz/document/?doc_id=30085593#pos=11;46 (accessed on 05 January 2022).
  • 3. Directive 2000/60/EC of the European Parliament and of the Council of 23 October 2000 establishing a framework for Community action in the field of water policy. URL: http://www.caresd.net/iwrm/new/doc/direct.pdf (reference date: 28.10.2013)
  • 4. Draft Program of the Integrated Water Resources Management (IWRM) and the water use efficiency increase in the Republic of Kazakhstan until the year of 2025 (under the UN project), Astana 2006. http://www.voda.kz
  • 5. Escobar I.C. 2010. Sustainable Water for the Future: Water Recycling versus Desalination /I.C. ES-COBAR, A.I. SCHÄFER. Amsterdam. Elsevier.
  • 6. Japan Ministry of Environment. Solid Waste Management and Recycling Technology of Japan: Booklet / Minister’s Secretariat, Waste Management and Recycling Department, Tokyo. 2012. Electronic resource: https://www.env.go.jp/en/recycle/smcs/attach/swmrt.pdf
  • 7. Kovalenko M.S., Polozentseva V.A. 2012. Stores of sewages and industrial wastes as potentially hazardous objects. East Eur. J. Enterp. Technol., 12, 27–29.
  • 8. Masbey E.D. 1987. Chemical waste transportation: a status report / E.D. Masbey. Waste Age, 10, 90–94.
  • 9. Millennium Ecosystem Assessment. 2005. Ecosystems and Human Well-being. Washington, DC: Island Press.
  • 10. Racault Y. 2005. Waste stabilization ponds in France: state of the art and recent trends. Racault Y., Boutin C. Water, Science and Technology, 51(12), 1–9.
  • 11. Smith V.H. 2003. Eutrophication of freshwater and coastalmarine ecosystems a global problem. Environ. Sci. Pollut. Res., 10, 126.
  • 12. Technological regulations for the operation of the Aeration Plant in Almaty. 2013. Almaty, 251.
  • 13. Ying G.G. 2006. Fate, behavior and effects of surfactants and their degradation products in the environment, Environment International, 32, 417–431.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-fe882ccd-2c65-4d72-81de-93f596e3d7af
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