À propos de cet article

Citez

[1] Fulazzaky MA. Water quality evaluation system to assess the Brantas river water. Water Resour Manage. 2009;23:3019-33. DOI: 10.1007/s11269-009-9421-6.10.1007/s11269-009-9421-6 Search in Google Scholar

[2] Fulazzaky MA. Water quality evaluation system to assess the status and the suitability of the Citarum river water to different uses. Environ Monit Assess. 2010;168:669-84. DOI: 10.1007/s10661-009-1142-z.10.1007/s10661-009-1142-z Search in Google Scholar

[3] Zemunac R, Savic R, Blagojevic B, Benka P, Bezdan A, Salvai A. Assessment of surface and groundwater quality for irrigation purposes in the Danube-Tisa-Danube hydrosystem area (Serbia). Environ Monit Assess. 2021;193:519. DOI: 10.1007/s10661-021-09294-6.10.1007/s10661-021-09294-6 Search in Google Scholar

[4] Sommerwerk N, Hein T, Schneider-Jacoby M, Baumgartner C, Ostojic A, Siber R, et al. The Danube River Basin. In: Tockner K, Robinson CT, Uehlinger U, editors. Rivers of Europe. Oxford: Elsevier - Academic Press; 2009. pp. 59-112. DOI: 10.1016/B978-0-12-369449-2.00003-5.10.1016/B978-0-12-369449-2.00003-5 Search in Google Scholar

[5] Schiller H, Miklós D, Sass J. The Danube River and its Basin Physical Characteristics. Water Regime and Water Balance. In: Hydrological Processes of the Danube River Basin. Brilly M, editor. Dordrecht: Springer; 2010. pp. 25-78. DOI: 10.1007/978-90-481-3423-6_2.10.1007/978-90-481-3423-6_2 Search in Google Scholar

[6] Mladenović-Ranisavljević I, Takić LJ, Vuković M, Nikolić Đ, Živković N, Milosavljević P. Multi-criteria ranking of the Danube water quality on its course through Serbia. Serbian J Manage. 2012;7(2):299-307. DOI: 10.5937/sjm7-2549.10.5937/sjm7-2549 Search in Google Scholar

[7] Thielen F, Zimmermann S, Baska F, Taraschewski H, Sures B. The intestinal parasite Pomphorhynchus laevis (Acanthocephala) from barbel as a bioindicator for metal pollution in the Danube River near Budapest, Hungary. Environ Pollut. 2004;129(3):421-9. DOI: 10.1016/j.envpol.2003.11.011.10.1016/j.envpol.2003.11.011 Search in Google Scholar

[8] Woitke P, Wellmitz J, Helm D, Kube P, Lepom P, Litheraty P. Analysis and assessment of heavy metal pollution in suspended solids and sediments of the river Danube. Chemosphere. 2003;51(8):633-42. DOI: 10.1016/S0045-6535(03)00217-0.10.1016/S0045-6535(03)00217-0 Search in Google Scholar

[9] Srđević B, Srđević Z, Ilić M, Ždero S. Group model for evaluating the importance of Ramsar sites in Vojvodina Province of Serbia. Environ Development Sust. 2021;23:10892-909. DOI: 10.1007/s10668-020-01093-2.10.1007/s10668-020-01093-2 Search in Google Scholar

[10] Navodaru I, Staras M, Cernisencu I. The challenge of sustainable use of the Danube Delta Fisheries, Romania. Fisheries Manage Ecol. 2001;8:323-32. DOI: 10.1111/j.1365-2400.2001.00257.x.10.1111/j.1365-2400.2001.00257.x Search in Google Scholar

[11] Stanić B, Andrić N, Zorić S, Grubor-Lašić G, Kovačević R. Assessing pollution in the Danube River near Novi Sad (Serbia) using several biomarkers in sterlet (Acipenser ruthenus L.). Ecotoxicol Environ Safety. 2006;65(3):395-402. DOI: 10.1016/j.ecoenv.2005.08.005.10.1016/j.ecoenv.2005.08.00516194569 Search in Google Scholar

[12] SWD 2020. Action plan of the European Union Strategy for Danube Region. Brussels: European Commission; 2020. Available from: https://ec.europa.eu/regional_policy/sources/cooperate/danube/eusdr_actionplan_swd202059_en.pdf. Search in Google Scholar

[13] Stagl J, Hattermann FF. Impacts of climate change on the hydrological regime of the Danube River and its tributaries using an ensemble of climate scenarios. Water. 2015;7(11):6139-72. DOI: 10.3390/w7116139.10.3390/w7116139 Search in Google Scholar

[14] Republic Hydrometeorological Service of Serbia (HIDMET). Annual Report - Water quality, 2004-2010. Republic Hydrometeorological Service of Serbia. Belgrade (in Serbian). Available from: www.hidmet.gov.rs. Search in Google Scholar

[15] Serbian Environmental Protection Agency (SEPA): Annual Report - Results of surface and groundwater quality testing 2011-2018. Belgrade: Ministry of Environmental Protection, Republic of Serbia (in Serbian). Available from: www.sepa.gov.rs. Search in Google Scholar

[16] SRPS H.Z1. 160:1987. Testing of industrial waters - Determination of suspended matters - Gravimetric method. Available from: https://iss.rs/sr_Cyrl/project/show/iss:proj:5963. Search in Google Scholar

[17] SRPS ISO H.Z1.135:1970. Determination of dissolved oxygen content. Manual: Standard Methods for Testing the Chemical Safety of Drinking Water. Belgrade: Federal Institute for Health Protection; 1990;236-247 (in Serbian). Search in Google Scholar

[18] UP 1.95/PC 12. Determination of electrolytic conductivity of water. Standard Test Methods for Drinking Water, Federal Institute of Public Health; Belgrade 1990 (in Serbian). Search in Google Scholar

[19] APHA AWWA WEF 4500-NO3-B. Determination of nitrate content (SEV:1973). Available from: https://beta-static.fishersci.com/content/dam/fishersci/en_US/documents/programs/scientific/technical-documents/white-papers/apha-nitrate-ise-standard-methods-white-paper.pdf. Search in Google Scholar

[20] APHA AWWA WEF 4500-P (A,B,E). Determination of total phosphorus content (SEV:1977). Available from: https://beta-static.fishersci.com/content/dam/fishersci/en_US/documents/programs/scientific/technical-documents/white-papers/apha-phosphates-standard-methods-white-paper.pdf. Search in Google Scholar

[21] SRPS ISO 5815:1992. Determination of biochemical oxygen demand after 5 days (SEV:1977). Available from: https://iss.rs/sr_Cyrl/project/show/iss:proj:64917. Search in Google Scholar

[22] SRPS ISO 8467:1994. Determination of potassium permanganate consumption. Manual: Standard Methods for Testing the Chemical Safety of Drinking Water, Federal Institute for Health Protection Belgrade. 1990;134-136 (in Serbian). Search in Google Scholar

[23] Stričević L, Pavlović M, Filipović I, Radivojević A, Bursać NM, Gocić M. Statistical analysis of water quality parameters in the basin of the Nišava River (Serbia) in the period 2009-2018. Geografie. 2021;126(1):55-73. DOI: 10.37040/geografie2021126010055.10.37040/geografie2021126010055 Search in Google Scholar

[24] Dundjerski JJ, Savic R, Grabic J, Blagojevic B. Water quality trends of the Tisa river along its flow through Serbia. Annual Set Environ Protect. 2017;19:17-35. Available from: https://ros.edu.pl/index.php/component/content/article/525-trendy-zmian-jakosci-wody-rzeki-tisa-wzdluz-jej-biegu-przezserbie.html?Itemid=205&lang=en. Search in Google Scholar

[25] EPA QA/G-9S. Data Quality Assessment: Statistical Methods for Practitioners EPA QA/G-9S. Office of Environmental Information Washington, United States. Washington: Environmental Protection Agency (US EPA); 2006, pp. 104-9. Available from: https://www.epa.gov/sites/production/files/2015-08/documents/g9s-final.pdf. Search in Google Scholar

[26] ICPDR 2005 Water quality in the Danube river Basin (TNMN-Yearbook). Vienna, Austria; International Commission for the Protection of the Danube River; 2005. Available from: https://www.icpdr.org/main/publications/tnmn-yearbooks. Search in Google Scholar

[27] EU. Directive 2006/44/EC of the European Parlament and of the Council of 6 September 2006 on the quality of fresh waters needing protection or improvement in order to support fish life. Official J European Union 25.9.2006, L 264:20-31. Available from: EUR-Lex - 32006L0044 - EN - EUR-Lex (europa.eu). Search in Google Scholar

[28] EU. Directive 75/440/EEC of 16 June 1975 concerning the quality required of surface water intended for the abstraction of drinking water in the Member States. Official J European Union 25.7.1975, L 194:26-31. Available from: https://eur-lex.europa.eu/legal-content/EN/TXT/?uri=CELEX%3A31975L0440. Search in Google Scholar

[29] Fulazzaky MA, Seong TW, Masirin MIM. Assessment of water quality status for the Selangor River in Malaysia. Water Air Soil Pollut. 2010;205:63-77. DOI: 10.1007/s11270-009-0056-2.10.1007/s11270-009-0056-2 Search in Google Scholar

[30] Fulazzaky MA. Assessing the suitability of stream water for five different uses and its aquatic environment. Environ Monit Assess. 2013;185(1):523-35. DOI: 10.1007/s10661-012-2572-6.10.1007/s10661-012-2572-622373956 Search in Google Scholar

[31] Takić LJ, Mladenović-Ranisavljević I, Vuković M, Mladenović I. Evaluation of the ecochemical status of the Danube in Serbia in terms of water quality parameters. Scientific World J. 2012. Article ID 930737. Available from: https://www.hindawi.com/journals/tswj/2012/930737/.10.1100/2012/930737335673222645471 Search in Google Scholar

[32] Leščešen I, Pantelić M, Dolinaj D, Lukić T. Assessment of water quality of the Tisa River (Vojvodina, North Serbia) for ten year period using Serbian Water Quality Index (SWQI). Geographica Pannonica. 2014;18(4):102-7. Available from: http://www.dgt.uns.ac.rs/pannonica/papers/volume18_4_4.pdf.10.5937/GeoPan1404102L Search in Google Scholar

[33] Dragović S, Maksimović L, Pantelić S, Pantelić P. History of drainage and irrigation in Vojvodina - the province of Serbia and Montenegro. In: Integrated Land and Water Resources Management in History. Ohlig C, editor. Siegburg, DWhG; 2005. pp. 133-49. ISBN: 383342463X. Search in Google Scholar

[34] Milanović A, Milijašević D, Brankov J. Assessment of polluting effects and surface water quality using water pollution index: a case study of Hydro-system Danube-Tisa-Danube, Serbia. Carpathian J Earth Environ Sci. 2011;6(2):269-77. Available from: http://www.cjees.ro/viewTopic.php?topicId=180. Search in Google Scholar

[35] Pantelić M, Dolinaj D, Savić S, Stojanović V, Nađ I. Statistical analysis of water quality parameters of Veliki Bački Canal (Vojvodina, Serbia) in the period 2000-2009. Carpathian J Earth Environ Sci. 2012;7(2):255-64. Available from: www.cjees.ro/viewTopic.php?topicld=235. Search in Google Scholar

[36] Grabić J, Bezdan A, Benka P, Josimov-Dundjerski J, Salvai A. Water quality management for preserving fish populations within hydro-system Danube-Tisa-Danube, Serbia. Carpathian J Earth Environ Sci. 2016;11(1):235-43. Available from: www.cjees.ro/viewTopic.php?topid=613. Search in Google Scholar

[37] Gvozdić V, Brana J, Puntarić D, Vidosavljević D, Roland D. Changes in the lower Drava River water quality parameters over 24 years. Archives Industrial Hygiene Toxicol. 2011;62(4):325-33. DOI: 10.2478/10004-1254-62-2011-2128.10.2478/10004-1254-62-2011-212822202466 Search in Google Scholar

[38] Peršić V, Kočić A, Horvatić J. Water quality and algal growth potential of watercourses draining agricultural and forested catchments in eastern Croatia (Middle Danube Basin). Fundamental Appl Limnology. 2013;182(1):31-46. DOI: 10.1127/1863-9135/2013/0399.10.1127/1863-9135/2013/0399 Search in Google Scholar

[39] Popović NZ, Đuknić JA, Atlagić JŽ, Raković MJ, Marinković NS, Tubić BP, et al. Application of the water pollution index in the assessment of the ecological status of rivers: a case study of the Sava River, Serbia. Acta Zoologica Bulgarica. 2016;68(1):97-102. Available from: https://www.acta-zoologicabulgarica.eu/downloads/acta-zoologica-bulgarica/2016/68-1-97-102.pdf. Search in Google Scholar

[40] Kolarević S, Knežević-Vukčević J, Paunović M, Vasiljević B, Kračun M, Gačić Z, et al. Seasonal variations of microbiological parameters of water quality of the Velika Morava river Serbia. Archives Biol Sci. 2012;64(3):1017-27. DOI: 10.2298/ABS1203017K.10.2298/ABS1203017K Search in Google Scholar

[41] Kolarević S, Knežević-Vukčević J, Paunović M, Tomović J, Gačić Z, Vuković-Gačić B. The antropogenic impact on water quality of the river Danube in Serbia: Microbiological analysis and genotoxicity monitoring. Archives Biol Sci. 2011;63(4):1209-17. DOI: 10.2298/ABS1104209K.10.2298/ABS1104209K Search in Google Scholar

[42] Dragićević S, Nenadović S, Jovanović B, Milanović M, Novković I, Pavić D, et al. Degradation of Topciderska river water quality (Belgrade). Carpathian J Earth Environ Sci. 2010;5(2):177-84. Available from: www.cjees.ro/viewTopic.php?topicld=107. Search in Google Scholar

[43] Savić R, Ondrašek G, Josimov-Dundjerski J. Heavy metals in agricultural landscapes as hazards to human and ecosystem health: a case study on zinc and cadmiumin in drainage channel sediments. J Sci Food Agriculture. 2015;95(3):466-70. DOI: 10.1002/jsfa.6515.10.1002/jsfa.651524307216 Search in Google Scholar

[44] Isvoran A, Roman DL, Dascalu D, Vlad-Oros B, Ciorsac A, Pitulice L, et al. Human health effects of heavy metal pollution in the cross-border area of romania and serbia: a review. Ecol Chem Eng S. 2021;28(3):356-88. DOI: 10.2478/eces-2021-0025.10.2478/eces-2021-0025 Search in Google Scholar

[45] Pantelić MM, Dolinaj DM, Leščešen II, Savić SM, Milošević DD. Water quality of the Pannonian basin rivers Danube, Sava, and Tisa and its correlation with air temperature in Serbia. Thermal Sci. 2015;19(2):S477-85. DOI: 10.2298/TSCI150325114P.10.2298/TSCI150325114P Search in Google Scholar

eISSN:
2084-4549
Langue:
Anglais