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2019 | 28 | 5 |

Tytuł artykułu

Assessing groundwater quality for multiuse and geochemical evolution in the South Banat area of Serbia, Pannonian basin

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
The study includes an assessment of groundwater quality from one shallow and two deeper aquifers in the Danube left bank, under the conditions of coexistence of the open coal mine, arable lands with increasing irrigation needs and potential regional water supply system for the Banat region. The spatial distribution maps of the targeted parameters were used as a starting point in the identification of nine zones in the study area. The Piper plot and the specific ionic plots pointed out that dissolution of carbonate and silicate minerals, as well as cation exchange, plays a significant role in the groundwater chemistry. Although the geological and hydrogeological complexity of the study area highlighted the considerable vertical and horizontal zonations when it comes to groundwater quality, waters have a desirable quality for drinking while for irrigation the eastern zone of the study area is better. Vertical mixing of shallow and deeper groundwaters confirmed the post-sedimentary faulting and erosion of coal seams in the central part of the study area. Generally, the results of determining the origin and quality of groundwaters throughout the study area could greatly help in making decisions regarding the regional water supply and expansion of irrigated lands in the future.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

28

Numer

5

Opis fizyczny

p.3269-3278,fig.,ref.

Twórcy

  • Jaroslav Cerni Water Institute, Belgrade, Serbia
autor
  • Jaroslav Cerni Water Institute, Belgrade, Serbia
autor
  • Jaroslav Cerni Water Institute, Belgrade, Serbia
autor
  • Jaroslav Cerni Water Institute, Belgrade, Serbia

Bibliografia

  • 1. IGRAC. Groundwater Overview: Making the invisible visible, The Netherlands: International Groundwater Resources Assessment Centre; 2018. Available online: https://www.un-igrac.org/sites/default/files/resources/files/Groundwater%20overview%20-%20Making%20the%20invisible%20visible_Print.pdf (accessed on 24 July 2018).
  • 2. DIMKIĆ M., STEVANOVIĆ Z., ĐURIĆ D. Utilization, Protection and Status of Groundwater in Serbia. Proceedings of Regional IWA Conference “Groundwater Management in the Danube River Basin and Other Large River Basins“; Belgrade, 83, 2007.
  • 3. MARIĆ N., MRAZOVAC KURILIĆ S., MATIĆ I., SORAJIĆ S., ZARIĆ J. Groundwater quality on the territory of Kikinda municipality (Vojvodina, Serbia). Environ. Earth Sci., 72, 525, 2014.
  • 4. DJURIC D., JOSIPOVIĆ J., JEVTIC G., SLIMAK T., PUSIC M. Groundwater management in Vojvodina. Water Pract. Tech., 2 (3) wpt2007061, 2007.
  • 5. WATER MASTER PLAN (WMP) The Water Master Plan of the Republic of Serbia, Ministry of Agriculture, Forestry and Water Resources Management, Belgrade: Republic of Serbia 2002 [In Serbian].
  • 6. BABIĆ MLADENOVIĆ M., RADOVANOVIĆ M., RADOSAVLJEVIĆ P. Monitoring of the Iron Gate Hydropower and Navigation System on the Danube River. Water Research and Management, 1 (3), 3, 2012.
  • 7. MITROVIĆ D., ĐOKOVIĆ N., ŽIVOTIĆ D., BECHTEL A., ŠAJNOVIĆ A., STOJANOVIĆ K. Petrographical and organic geochemical study of the Kovin lignite deposit, Serbia. Int. J. Coal Geol., 168 (1), 80, 2016.
  • 8. DEVIC G., DJORDJEVIC D., SAKAN S. Natural and anthropogenic factors affecting the groundwater quality in Serbia. Sci. Total Environ., 468-469, 933, 2014.
  • 9. SHAHAB A., SHIHUA Q., RASHID A., UL HASAN F., SOHAIL M.T. Evaluation of Water Quality for Drinking and Agricultural Suitability in the Lower Indus Plain in Sindh Province, Pakistan. Pol. J. Environ. Stud., 25 (6), 2563, 2016.
  • 10. RAKIĆ M. Geology of the sheet Bela Crkva, L 34-115, Belgrade: Geological Institute. 1978 [In Serbian].
  • 11. JOSIPOVIĆ J., SORO A. Groundwaters of Vojvodina, Belgrade: Jaroslav Černi Institute for the Development of Water Resources, 97, 2012 [In Serbian].
  • 12. STOJANOVIĆ K., ŽIVOTIĆ D., ŠAJNOVIĆ A., CVETKOVIĆ O., NYTOFT H.P., SCHEEDER G., Drmno lignite field (Kostolac Basin, Serbia): origin and palaeoenvironmental implications from petrological and organic geochemical studies. J. Ser. Chem. Soc., 77 (8), 1109, 2012.
  • 13. JEVTIĆ G., ZORIĆ M. Hydrogeological model of underwater coal mine project at Kovin. In: Proceedings of XIV Serbian hydrogeological Symposium, Zlatibor, Serbia, 271, 2012.
  • 14. MATENCO L., RADIVOJEVIĆ D. On the formation and evolution of the Pannonian Basin: Constraints derived from the structure of the junction area between the Carpathians and Dinarides. Tectonics, 31 (6), TC6007, 2012.
  • 15. MAJKIĆ-DURSUN B., TONČIĆ J., PETKOVIĆ A., ČOLIĆ J. Redox conditions and groundwater quality issues of selected alluvial aquifers in Serbia. Wa. Sci. Technol., 16 (4), 1086, 2016.
  • 16. AMERICAN PUBLIC HEALTH ASSOCIATION (APHA), Standard methods for the examination of water and wastewater, 21st edn, Washington: American Public Health Association, 2005.
  • 17. MRAZOVAC S., VOJINOVIĆ-MILORADOV M., MATIĆ I., MARIĆ N. Multivariate statistical analyzing of chemical parameters in groundwater in Vojvodina. Chem. Erde-Geochem., 73, 217, 2013.
  • 18. TIWARI A.K., SINGH A.K. Hydrogeochemical Investigation and Groundwater Quality Assessment of Pratapgarh District, Uttar Pradesh. J. Geol. Soc. India., 83, 329, 2014.
  • 19. ZHU T., DITTRICH M. Carbonate Precipitation through Microbial Activities in Natural Environment, and their Potential in Biotechnology: A Review. Front. Bioeng. Biotechnol., 4 (4), doi:10.3389/fbioe.2016.00004, 2016.
  • 20. PATEL P., JANARDHANA RAJU N., SUNDARA RAJA REDDY B.C., SURESH U., GOSSEL W., WYCISK P. Geochemical processes and multivariate statistical analysis for the assessment of groundwater quality in the Swarnamukhi River basin, Andhra Pradesh, India. Environ. Earth Sci., 75 (611), 1, 2016.
  • 21. OFFICIAL GAZETTE FRY. Regulation on the Hygienic Adequacy of Drinking Water, No. 42/98, 44/99, Belgrade 1999 [In Serbian].
  • 22. RAVIKUMAR P., SOMASHEKAR R.K. Assessment and Modelling of Groundwater Quality Data and Evaluation of Their Corrosiveness and Scaling Potential Using Environmetric Methods in Bangalore South Taluk, Karnataka State, India. Water Resour., 39 (4), 446, 2012.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

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