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Utricularia vulgaris L. and Salvinia natans (L.) All. heavy metal (Fe, Mn, Cu, Zn and Pb) bioaccumulation specificity in the area of Bardača fishpond Cover

Utricularia vulgaris L. and Salvinia natans (L.) All. heavy metal (Fe, Mn, Cu, Zn and Pb) bioaccumulation specificity in the area of Bardača fishpond

Open Access
|Aug 2019

References

  1. American Public Health Association (APHA) (1995). Standard methods for the examinations of water and waster-water. New York: American Public Health Association Inc.
  2. Babović, N., Drazić, G., Djordjević, A. & Mihailović N. (2010). Heavy and toxic metal accumulation in six macrophythe species from fish pond Ecka, Republic of Serbita. BALWOIS - Ohrid, Republic of Macedonia, (25–29 May 2010) (pp. 1–6). Republic of Serbita.
  3. Borišev, M., Pajević, S., Stanković, Ž. & Krstić B. (2008). Macrophytes as indicators and potential remediators in aquatic ecosystems: a case study. Large Rivers, 18 (1–2), 107–115. DOI: 10.1127/lr/18/2008/107.10.1127/lr/18/2008/107
  4. Branković, S., Pavlović-Muratspahić, D., Topizović, M. & Milojević J. (2009). Concentration of Metals (Fe, Mn, Cu and Pb) in сome аquatic мacrophytes of lakes Gruža, Grošnica, memorial Park-Kragujevac and Bubanj. Kragujevac Journal of Science, 31, 91–101.
  5. Canadian Council of Ministers of the Environment (1999). Canadian sediment quality guidelines for the protection of aquatic life: Introduction. In Canadian Environmental Quality Guidelines (pp. 1−5). Winnipeg: Canadian Council of Ministers of the Environment.
  6. Dhir, B. & Srivastava S. (2013). Heavy metal tolerance in metal hyperaccumulator plant, Salvinia natans. Bull. Environ. Contam. Toxicol., 90(6), 720–724. DOI: 10.1007/s00128-013-0988-5.10.1007/s00128-013-0988-523553503
  7. Ghosh, M. & Singh S.P. (2005). A review of phytoremediation of heavy metals and utilization of it’s by-products. Applied Ecology and Environmental Research, 3(1), 1–18. http://www.ecology.kee.hu10.15666/aeer/0301_001018
  8. Grisey, E., Laffray, H., Contoz, O., Cavalli, E., Mudry, J. & Aleya L. (2012). The bioaccumulation performance of reeds and cattails in a constructed treatment wetland for removal of heavy metals in landfill leachate treatment (Etueffont, France). Water Air Soil Pollut., 223, 1723–1741. DOI: 10.1007/s11270-011-0978-3.10.1007/s11270-011-0978-3
  9. Grudnik, Z.M. (2010). Seasonal changes in the concentration of some trace elements in macrophyte shoots. Acta Biol. Slov., 53(1), 55–61.10.14720/abs.53.1.15496
  10. Khellaf, N. & Zerdaoni M. (2009). Phytoaccumulation of zinc by the aquatic plant, Lemna giba L. Bioresour. Technol., 100, 6137–6140. DOI: 10.1016/j.biortech.2009.06.043.10.1016/j.biortech.2009.06.04319581083
  11. Li, M.S., Luo, Y.P. & Su Z.Y. (2007). Heavy metals concentrations in soils and plant accumulation in a restored manganese mine land in Guangxi, South China. Environ. Pollut., 147, 168–175. DOI: 10.1016/j.envpol.2006.08.006.10.1016/j.envpol.2006.08.00617014941
  12. Liu, J., Dong, Y., Xu, H., Wang, D. & Xu J. (2007). Accumulation of Cd, Pb and Zn by 19 wetland plant species in constructed wetland. J. Hazard. Mater., 147(3), 947–953. DOI: 10.1016/j.jhazmat.2007.01.125.10.1016/j.jhazmat.2007.01.12517353090
  13. Maksimović, T., Stanković, Ž.& Ilić P. (2007). Bioakumulacija Mn, Cd, Pb u vodenim makrofitama na području ribnjaka Bardača. In 36. Konferencija o aktuelnim problemima korišćenja i zaštite voda, “Voda 2007” (pp. 131–136). Tara: Jugoslovensko društvo za zaštitu voda.
  14. Maksimović, T. & Ilić P. (2008). Bioakumulacija teških metala kao pokazatelj potencijala bioremedijacije vodenih biljaka na području ribnjaka Bardača. In 37. Konferencija o aktuelnim problemima korišćenja i zaštite voda, “Voda 2008” (pp. 131–136). Tara: Jugoslovensko društvo za zaštitu voda.
  15. Maksimović, T., Borišev, M. & Stanković Ž. (2014). Seasonal dynamics of copper and zinc accumulation in shoots of Phragmites australis (CAV.) Trin. Ex Steud., Typha latifolia L. and Typha angustifolia L. Matica Srpska Journal for Natural Sciences, 127, 65–75. DOI: 10.2298/ZMSPN1427065M.10.2298/ZMSPN1427065
  16. Maksimović, T., Rončević, S. & Kukavica B. (2016). Bioaccumulation of iron and manganese in some water macrophytes in the area of Bardača pond. Skup, 7(2), 87–96.
  17. Map of Bardača fishpond (a detail from topographic map 1:25000, Nova Gradiška (Razboj-Ljevčanski) 4-4, Vojnogeografski institut, 1977 (Military Geographic Institute).
  18. Nouri, M. & Haddioui A.E.M. (2016). Assessment of metals contamination and ecological risk in ait ammar abandoned iron mine soil, Morocco. Ekológia (Bratislava), 35(1), 32−49. DOI: 10.1515/eko-2016-0003.10.1515/eko-2016-0003
  19. Pajević, S., Vučković, M., Stanković, Ž., Kevrešan, Ž. & Radulović S. (2002). The contents of some macronutrients and heavy metals in aquatic macrophytes of three ecosystems connected to the Danube in Yugoslavia. Large Rivers, 13(1–2), 73–83. DOI: 10.1127/lr/13/2002/73.10.1127/lr/13/2002/73
  20. Pant, P.P. & Tripathi A.K. (2014). Impact of heavy metals on morphological and biochemical parameters of Shorea robusta plant. Ekológia (Bratislava), 33(2), 116−126. DOI: 10.2478/eko-2014-0012.10.2478/eko-2014-0012
  21. Prasad, M.N.V. (2003). Phytoremediation of metal polluted ecosystems: hype for commercialization. Russian Journal of Plant Physiology, 50(5), 686–701. DOI: 10.1023/A:1025604627496.10.1023/A:1025604627496
  22. Prasad, M.N.V., Greger, M. & Aravind P. (2006). Biogeochemmical cycling of trace elements by aquatic and wetland plants: Relevance to phytoremediation. In M.N.V. Prasad, K.S. Sajvan & R. Naidu (Eds.), Trace elements in the environment, biogeochemistry, biotechnology, and bioremediation (pp. 443–474). Florida: CRC Press, Now Taylor and Francis.10.1201/9781420032048.ch24
  23. Prica, Lj., Dalmacija, B., Ivančev-Tumbas, I., Krčmar, D., Rončević, S., Bečelić, M. & Jovanović D. (2005). Metali u pojedinim zaštićenim zonama u Vojvodini. In 34. Konferencija o aktuelnim problemima korišćenja i zaštite voda, “Voda 2005” (pp. 93–99). Kopaonik: Jugoslovensko društvo za zaštitu voda.
  24. Rahmani, G.N.H. & Sternberg S.P.K. (1999). Bioremoval of lead from water using Lemna minor. Bioresour. Technol., 70, 225–230. DOI: 10.1016/S0960-8524(99)00050-4.10.1016/S0960-8524(99)00050-4
  25. Rai, P.K. (2009). Heavy metal phytoremediation from aquatic ecosystems with special reference to macrophytes. Crit. Rev. Environ. Sci. Technol., 39(9), 697–753. DOI: 10.1080/10643380801910058.10.1080/10643380801910058
  26. Raičević, V., Božić, M., Rudić, Z., Lalević, B. & Kiković D. (2011). The evolution of the eutrophication of the Palić Lake (Serbia). African Journal of Biotechnology, 10(10), 1736–1744. DOI: 10.5897/AJBx10.028.
  27. Stanković, Ž., Pajević, S., Vučković, M. & Stojanović S. (2000). Concentrations of trace metals in dominant aquatic plants of the Lake Provala (Vojvodina, Yugoslavia). Biol. Plant., 43(4), 583–585. DOI: 10.1023/A:1002806822988.10.1023/A:1002806822988
  28. Šarić, Ž., Maksimović, Č., Stanković, M. & Butler D. (2004). Life in wetland (pp. 17−27, 59−67). Banja Luka: The Institute For Urbanism of Republic Srpska.
  29. Štrbac, S., Šajnović, A., Grubin, K., Vasić, M., Dojčinović, N., Simonović, B. & Jovančićević B. (2014). Metals in sediment and Phragmites australis (Common Reed) from Tisza River, Serbia. Applied Ecology and Environmental Research, 12(1), 105–122. http://www.aloki.hu10.15666/aeer/1201_105122
  30. Tyler, G. & Olsson T. (2001). Concentrations of 60 elements in the soil solution as related to the acidity. Eur. J. Soil Sci., 52(1), 151–165. DOI: 10.1046/j.1365-2389.2001.t01-1-00360.x.10.1046/j.1365-2389.2001.t01-1-00360.x
  31. Vrom (2000). Circular on target values and intervention values for soil remediation. DBO/1999226863. Ministry of Housing, Spatial Planning and Environment Directorate-General for Environmental Protection, Department of Soil Protection. The Hague. Published in the Netherlands Government Gazette No. 39 on 4 February 2000.
  32. Yoon, J., Cao, X., Zhou, Q. & Ma L.Q. (2006). Accumulation of Pb, Cu, and Zn in native plants growing on a contaminated Florida site. Sci. Total Environ., 368(2−3), 456–464. DOI: 10.1016/j.scitotenv.2006.01.016.10.1016/j.scitotenv.2006.01.01616600337
  33. Yurkova, L. & Kochev H. (1996). Heavy metal concentrations in main macrophytes from the Srebarna Lake along the Danube (Bulgaria). 31. Konferenz der IAD, Baja-Ungarn, Wissenschaftliche Referate. Limnologishe Berichte Donau, Band I, 195–200).
  34. Zakon o vodama (2001). Službeni glasnik Republike Srpske (br. 10/98; 3/97; 3/8 i 29/00), Uredba o klasifikaciji voda i kategorizaciji vodotoka, 2001.
  35. Zayed, A., Gowthaman, S. & Terry N. (1998). Phytoaccumulation of trace elements by wetland plants: I. Duckweed. J. Environ. Qual., 27, 715−721.10.2134/jeq1998.00472425002700030032x
DOI: https://doi.org/10.2478/eko-2019-0016 | Journal eISSN: 1337-947X | Journal ISSN: 1335-342X
Language: English
Page range: 201 - 213
Published on: Aug 28, 2019
Published by: Institute of Landscape Ecology
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2019 Tanja Maksimović, Srđan Rončević, Biljana Kukavica, published by Institute of Landscape Ecology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 4.0 License.