Have a personal or library account? Click to login
Monitoring Irrigation Water Quality from the First Aquifer in Vojvodina, Serbia Cover

Monitoring Irrigation Water Quality from the First Aquifer in Vojvodina, Serbia

Open Access
|Sep 2025

References

  1. Albert, T., Foster, S., Kemper, K., Garduño, H. & Nanni, M. 2006. Groundwater monitoring requirements for managing aquifer response and quality threats. World bank publication, Washington D.C., USA.
  2. Ayers, R.S. & Westcot, D.W. 1985. Water quality for agriculture, FAO Irrigation and Drainage Paper 29, Rome, FAO.
  3. Chadwick, O.A. & Chorover, J. 2001. The chemistry of pedogenic thresholds. Geoderma, 100: 321–353. https://doi.org/10.1016/S0016-7061(01)00027-1
  4. Cole, P.J. 1985. Chloride toxicity in citrus. Irrigation Science, 6: 63–71. https://doi.org/10.1007/BF00272476
  5. European Environment Agency. 2022. Europe’s groundwater: A key resource under pressure. [Cited 15 January 2025]. https://www.eea.europa.eu/publications/europes-groundwater
  6. Fipps, G. 2003. Irrigation water quality standards and salinity management strategies. Texas cooperative extension, The Texas A&M university system.
  7. Geilfus, C.M. 2019. Chloride in soil: From nutrient to soil pollutant. Environmental and Experimental Botany, 157: 299–309. https://doi.org/10.1016/j.envexpbot.2018.10.035
  8. Grujić, T., Pivić, R., Maksimović, J., Sebić, A.S., Dinić, Z., Jaramaz, D. & Jojević, S.T. 2021. Sustainable agriculture and sustainability of water resources from the aspect of environmental protection. Ecocycles, 7: 88–94. https://doi.org/10.19040/ecocycles.v7i1.202
  9. Helena, B., Pardo, R., Vega, M., Barrado, E., Fernandez, J.M. & Fernandez, L. 2000. Temporal evolution of groundwater composition in an alluvial aquifer (Pisuerga River, Spain) by principal component analysis. Water Research, 34: 807–816. https://doi.org/10.1016/S0043-1354(99)00225-0
  10. Hopkins, B., Horneck, D., Stevens, R., Ellsworth, J. & Sullivan, D. 2007. Managing irrigation water quality. A Pacific Northwest extension publication, Oregon State University. https://extension.oregonstate.edu/sites/extd8/files/documents/pnw597.pdf
  11. Lalić, B., Mihailović, D.T. & Podraščanin, Z. 2014. Buduće stanje klime u Vojvodini i očekivani uticaj na ratarsku proizvodnju [Future State of Climate in Vojvodina and Expected Effects on Crop Production]. Field and Vegetable Crops Research, 48: 403–418.
  12. Machado, R.M.A. & Serralheiro, R.P. 2017. Soil salinity: Effect on vegetable crop growth. Management practices to prevent and mitigate soil salinization. Horticulturae, 3(2): 30. https://doi.org/10.3390/horticulturae3020030
  13. Mačkić, K. 2016. Vodno fizička svojstva karbonatnog černozema u uslovima navodnjavanja povrća [Water physical properties of calcic chernozem in vegetable production under irrigation]. Ph.D. thesis. University of Novi Sad, Faculty of Agriculture, Novi Sad, Serbia.
  14. Mrazovac Kurilić, S., Staletović, N., Abulsba, K.S. & Dagali, K.S. 2019. Possibility of the application of Danube, Sava and Morava river area shallow aquifer groundwater (Serbia) in the irrigation purposes. Water Resources, 46(6): 861–870. https://doi.org/10.1134/S0097807819060162
  15. Nemčić-Jurec, J., Ruk, D., Oreščanin, V., Kovač, I., Ujević Bošnjak, M. & Kinsela, A.S. 2022. Groundwater contamination in public water supply wells: risk assessment, evaluation of trends and impact of rainfall on groundwater quality. Applied Water Science, 12(7): 1–13. https://doi.org/10.1007/s13201-022-01697-1
  16. Nemčić-Jurec, J., Singh, S.K., Jazbec, A., Gautam, S.K. & Kovač, I. 2019. Hydrochemical investigations of groundwater quality for drinking and irrigational purposes: two case studies of Koprivnica-Križevci County (Croatia) and district Allahabad (India). Sustainable Water Resources Management, 5: 467–490. https://doi.org/10.1007/s40899-017-0200-x
  17. Nyika, J., Magnone, D. & Gould, I. 2024. Groundwater salinization challenges in agriculturally valuable low-lying North Sea region : A review. Cleaner Water, 2: 100052. https://doi.org/10.1016/j.clwat.2024.100052
  18. Pekeč, S., Milović, M. & Karaklić, V. 2021. Osobine i nivo podzemne vode Humoglej zemljišta južne Bačke [Properties and groundwater level of humogley soil of southern Bačka]. Zemljište i biljka, 70(1): 60–67. https://doi.org/10.5937/zembilj2101060p
  19. Pivić, R., Maksimović, J., Dinić, Z., Jaramaz, D., Majstorović, H., Vidojević, D. & Stanojković‐Sebić, A. 2022. Hydrochemical assessment of water used for agricultural soil irrigation in the water area of the three Morava rivers in the Republic of Serbia. Agronomy, 12(5): 1177. https://doi.org/10.3390/agronomy12051177
  20. Richards, L.A., Allison, L., Bernstein, C.A., Bower, J.W., Brown, M., Fireman, J.T., Hatcher, H.., Hayward, G.A., Pearson, R.C., Reeve, L.E. & Richards Wilcox, A. 1954. Diagnosis and improvement of saline and alcali soils. Soil Science Society of America Journal.
  21. Ristić-Vakanjac, V., Batula, M. & Žarković, D. 2018. Monitoring podzemnih i površinskih voda – EU standardi i sistem zaštite voda u Srbiji. [Monitoring of underground and surface water - EU standards and water protection system in Serbia]. [Cited 21 December 2024]. https://www.emins.org/wp-content/uploads/2018/06/Evropske-sveske_7_2018-Monitoring-podzemnih-i-povr%C5%A1inskih-voda-%E2%80%93-EU-standardi-i-sistem-za%C5%A1tite-voda-u-Srbiji.pdf
  22. Scanlon, B.R., Stonestrom, D.A., Reedy, R.C., Leaney, F.W., Gates, J. & Cresswell, R.G. 2009. Inventories and mobilization of unsaturated zone sulfate, fluoride, and chloride related to land use change in semiarid regions, southwestern United States and Australia. Water Resources Research, 45(7): W00A18. https://doi.org/10.1029/2008WR006963
  23. Smith, C.J., Oster, J.D. & Sposito, G. 2015. Potassium and magnesium in irrigation water quality assessment. Agricultural Water Management, 157: 59–64. https://doi.org/10.1016/j.agwat.2014.09.003
  24. Vranešević, M., Bezdan, A., Blagojević, B., Savić, R., Zemunac, R., Šekularac, G. & Aksić, M. 2023. Assessment of groundwater quality for irrigation in northern Vojvodina. Proceedings of the 1st International sympsium in biotehnology, Faculty of agronomy, Čačak. https://doi.org/10.46793/SBT28.241V
  25. Zaman, M., Shahid, S.A. & Heng, L. 2018. Irrigation Water Quality. In: Zaman, M., Shahid, S.A. & Heng, L., eds. Guideline for salinity assessment, mitigation and adaptation using nuclear and related techniques. pp. 113–131. https://doi.org/10.1007/978-3-319-96190-3
  26. Zörb, C., Geilfus, C.M. & Dietz, K.J. 2019. Salinity and crop yield. Plant Biology, 21: 31–38. https://doi.org/10.1111/plb.12884
  27. Zuo, Y. & Zhang, F. 2011. Soil and crop management strategies to prevent iron deficiency in crops. Plant and Soil, 339: 83–95. https://doi.org/10.1007/s11104-010-0566-0
DOI: https://doi.org/10.2478/contagri-2025-0017 | Journal eISSN: 2466-4774 | Journal ISSN: 0350-1205
Language: English
Submitted on: Apr 24, 2025
Accepted on: May 13, 2025
Published on: Sep 12, 2025
Published by: University of Novi Sad
In partnership with: Paradigm Publishing Services
Publication frequency: 4 issues per year

© 2025 Ksenija Mačkić, Borivoj Pejić, Ljiljana Nešić, Milica Vranešević, Elena Antunić, published by University of Novi Sad
This work is licensed under the Creative Commons Attribution 4.0 License.

AHEAD OF PRINT