Szczegóły

Tytuł artykułu

Physicochemical properties of water in the Nida valley, Poland

Tytuł czasopisma

Archives of Environmental Protection

Rocznik

2024

Wolumin

50

Numer

2

Afiliacje

Phan, Cong Ngoc : Faculty of Environmental Engineering and Land Surveying, University of Agriculture in Krakow, Poland ; Phan, Cong Ngoc : Institute of Chemistry, Biology and Environment, Vinh University, Vietnam ; Strużyński, Andrzej : Faculty of Environmental Engineering and Land Surveying, University of Agriculture in Krakow, Poland ; Kowalik, Tomasz : Faculty of Environmental Engineering and Land Surveying, University of Agriculture in Krakow, Poland

Autorzy

Słowa kluczowe

physicochemical properties; ; principal component analysis; ; statistical method; ; Pearson correlationanalysis; ; The Nida valley;

Wydział PAN

Nauki Techniczne

Zakres

42-54

Zakres przestrzenny

42-54

Wydawca

Polish Academy of Sciences

Bibliografia

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  3. Bogdał, A., Kowalik, T., Ostrowski, K. & Skowron P. (2016). Seasonal variability of physicochemical parameters of water quality on length of Uszwica river, J. Ecol. Eng. 17(1), pp. 161–170. DOI:10.12911/22998993/61206
  4. Borden, R.C., Daniel, R.A., LeBrun, L.E. & Davis, C.W. (1997). Intrinsic biodegradation of MTBE and BTEX in a gasoline-contaminated aquifer, Water Resour. Res. 33, 1105–1115. DOI:10.1029/97W,R00014
  5. Borek, Ł. & Drymajło K. (2019). The role and importance of irrigation system for increasing the water resources: the case of the Nida River valley, ASP.FC. 18, 19–30. DOI:10.15576/ASP.FC/2019.18.3.19
  6. Cel, W., Kujawska, J. & Wasąg H. (2017). Impact of hydraulic fracturing on the quality of natural waters, J. Ecol. Eng. 18, pp. 63–68. DOI:10.12911/22998993/67852
  7. Chapman, D.V. (1996). Water Quality Assessments: A Guide to the Use of Biota, Sediments and Water in Environmental Monitoring. 2nd Edn., Taylor and Francis, London, UK., pp: 626. ISBN-13: 9780419215905.
  8. Conant, B., Cherry, J.A. & Gillham, R.W. (2004). A PCE groundwater plume discharging to a river: influence of the streambed and near-river zone on contaminant distributions, Journal of Contaminant Hydrology 73, pp. 249–279. DOI:10.1016/j.jconhyd.2004.04.001
  9. Costello, M.J., McCarthy, T.K. &, O’Farrell M.M. (1984). The stoneflies (Plecoptera) of the Corrib catchment area, Ireland, Annls Limnol. 20, 25–34. DOI:10.1051/limn/1984014
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  13. Khalil, B., Ouarda, T.B.M.J. & St-Hilaire, A. (2011). Estimation of water quality characteristics at ungauged sites using artificial neural networks and canonical correlation analysis, J. Hydrol., 405, pp. 277-287. DOI:10.1016/j.jhydrol.2011.05.024
  14. Kowalik, T., Bogdał, A., Borek, Ł. & Kogut, A. (2015). The effect of treated sewage outflow from a modernized sewage treatment plant on water quality of the Breń River, J. Ecol. Eng. 16, pp. 96–102. DOI:10.12911/22998993/59355
  15. Łajczak, A. (2004). Negative consequences of regulation of a meandering sandy river and proposals tending to diminish flood hazard. Case study of the Nida river, southern Poland. Proceedings of the Ninth International Symposium on River Sedimentation. Yichang, China. Beijing. IAHR p. 1773–1783
  16. Mirabbasi, R., Mazloumzadeh, S.M. & Rahnama, M.B. (2008). Evaluation of irrigation water quality using fuzzy logic, Res. J. Environ. Sci., 2, pp. 340-352. DOI:10.3923/rjes.2008.340.352
  17. Nowobilska-Luberda, A. (2018). Physicochemical and Bacteriological Status of Surface Waters and Groundwater in the Selected Catchment Area of the Dunajec River Basin, J. Ecol. Eng. 19, pp. 162–169. DOI:10.12911/22998993/86329
  18. Phan, C.N., Strużyński, A. & Kowalik, T. (2023). Monthly changes in physicochemical parameters of the groundwater in Nida valley, Poland (case study). Journal of water and Land development, 56 (I–III), pp, 220–234. DOI:10.24425/jwld.2023.143763
  19. Pitkin, S.E., Cherry, J.A., Ingleton, R.A. & Broholm M. (1999). Field Demonstrations Using the Waterloo Ground Water Profiler, Ground Water Monit. Remediat 19, pp. 122–131. DOI:10.1111/j.1745-6592.1999.tb00213.x
  20. Schuh, W.M., Klinkebiel, D.L., Gardner, J.C. & Meyer, R.F. (1997). Tracer and nitrate movement to groundwater in the northern great plains, J. Environ. Qual., 26, pp. 1335-1347. DOI:10.2134/jeq1997.00472425002600050020x
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  23. Vrana, B., Allan, I.J., Greenwood, R., Mills, G.A., Dominiak, E., Svensson, K., Knutsson, J. & Morrison G. (2005). Passive sampling techniques for monitoring pollutants in water, TrAC Trends in Analytical Chemistry 24, pp. 845–868. DOI:10.1016/j.trac.2005.06.006
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  25. Wojak, S., Strużyński, A. & Wyrębek M. (2023). Analysis of changes in hydraulic parameters in a lowland river using numerical modeling, ASP.FC 22, pp. 3–17. DOI:10.15576/ASP.FC/2023.22.1.3
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Data

08.05.2024

Typ

Article

Identyfikator

DOI: 10.24425/aep.2024.150551 ; ISSN 2083-4772 ; eISSN 2083-4810

DOI

10.24425/aep.2024.150551

Strony

42-54

Indeksowanie w bazach

Abstracting & Indexing


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