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2013 | 20 | 3 |

Tytuł artykułu

Influence of the type of tree habitat on the character of co-occurrence of Fe, Mn, Zn, Cu, Pb, Ni, Cr and Co in the soil of the Tatra Mountain National Park

Treść / Zawartość

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
The objective of the research was to determine the effect of habitat type of selected species of trees on the nature of cooccurrence of Fe, Mn, Zn, Cu, Pb, Cd, Ni, Cr and Co. The presence of speciation forms of these metals was investigated, with reference to the species composition of tree stands in selected areas of the Tatra Mountain National Park (Chochołowska Valley, Strążyska Valley, Kościeliska Valley, as well as Mała Łąka Valley). Contents of selected metals in samples were determined by the flame ASA method, with an accuracy of 0.1 μg/g. In habitats dominated by maples, the Pb content in the Chochołowska Valley, unlike Kościeliska Valley covered with beeches, the Pb content in the form directly bioavailable, was twice as high. This was clearly proved in the case of Strążyska Valley where the soil in beech tree habitats contained larger quantities of exchangeable forms of Pb, than that in the Chochołowska Valley. The soil of the valleys, including the Mała Łąka Valley, showed peculiar characteristic averaging of the contents of selected speciation forms of metals in the soil. Content corresponding to 10 percentile and geometrical average may be regarded as benchmarks in future studies of the Tatra Mountain National Park, or other protected areas.

Słowa kluczowe

Wydawca

-

Rocznik

Tom

20

Numer

3

Opis fizyczny

p.494-499,ref.

Twórcy

  • Institute of Occupational Medicine and Environmental Health, Sosnowiec, Poland
autor
  • Institute of Occupational Medicine and Environmental Health, Sosnowiec, Poland
autor
  • Department of Toxicology, Silesian University of Medicine, Sosnowiec, Poland
autor
  • Department of Toxicology, Silesian University of Medicine, Sosnowiec, Poland
autor
  • Department of Toxicology, Silesian University of Medicine, Sosnowiec, Poland
autor
  • Department of Toxicology, Silesian University of Medicine, Sosnowiec, Poland
  • Department of Toxicology, Silesian University of Medicine, Sosnowiec, Poland
autor
  • Institute of Occupational Medicine and Environmental Health, Sosnowiec, Poland

Bibliografia

  • 1. Paukszto A, Kowol J, Kwapuliński J, Rochel R, Mirosławski J, Brodziak B, et al. Relationship Between Contents of Heavy Metals in the Nettle and Soil: a Case Study in Chochołowska Valley (The Tatra MountainsNational Park). Pol J Environ Stud. 2006; 15(2a): 453–455.
  • 2. Rochel R, Kwapuliński J, Morawiec‑Brukiewicz A, Suchy A, Wojtanowska M, Surma M. Stinging Nettle (Urtica dioica L) as Bioindicator.Ecol Technol. 2008; 16(2): 52–59.
  • 3. Kowol J, Kwapuliński J, Kołodziejczyk M, Brodziak‑Dopierała B, Paukszto A. Analysis of Interactions of Chromium With Other Trace in Selected Plants Growing Within Range of the Power Station.Wydawnictwo Naukowe Uniwersytetu Medycznego im. KarolaMarcinkowskiego, Poznań 2007: 45–50.
  • 4. Sawidis T, Krystallidis P, Veros D, Chettri M. A study of air pollution with heavy metals in athens city and attica basin using evergreen treesas biological indicators. Biol Trace Elem Res. 2012; 148(3): 396–408.
  • 5. Kwapuliński J, Paukszto A, Mirosławski J, Nowak B, Wiechuła D. Speciation of heavy metals in dust straddling on the leaves of the treesin the area of Pilsko and Babia Góra. Sylwan, 1993; 7: 31–44.
  • 6. Maric M, Antonijevic M, Alagic S. The investigation of the possibility for using some wild and cultivated plants as hyperaccumulators ofheavy metals from contaminated soil. Environ Sci Pollut Res. 2013;20(2): p.1181.
  • 7. Łaszewska A, Kowol J, Wiechuła D, Kwapuliński J. Accumulation of metals in selected species of medicinal plants from areas of BeskidŚląski and Beskid Żywiecki. Probl Ecol. 2007; 11: 6.
  • 8. Kwapuliński J, Mirosławski J, Podleska J, Brodziak B, Wróbel H, Matera C, Bogunia M. Chemical forms of metals in street dust settled on recreational areas of Brenna. Probl Ecol. 1999; 2: 59–62.
  • 9. Kwapuliński J, Sołtysiak G. Ecotoxicology of the forest as a source of secondary dust-developed phenomena for example forest in Kochłowice (Silesia). Probl Ecol. 2002; 65: 217–331.
  • 10. Zhang F, Yan X, Zeng C, Zhang M, Shrestha S, Devkota LP, Yao T. Influence of traffic activity on heavy metal concentrations of roadside farmland soil in mountainous areas. Int J Environ Res Public Health 2012; 9(5): 1715–31.
  • 11. Kowol J, Kwapuliński J, Paukszto A, Gromulska E, Goszczyk E. Concentration of heavy metals In the dust the positive on the coltsfoot and stinging nettle leaves In the Vistula area. Pol J Environ Stud. 2006; 15(2a): 381–384.
  • 12. Kwapuliński J, Nogaj E, Fischer A, Paukszto A, Linkarny G, Stawinoga D. The importance of Habitat›s position with regard to the presence of Pband Cd in multifructification mushrooms found in the mountain ofthe West. Brom Chem Toxicol. 2008; 41(2): 129–136.
  • 13. Notten MJ, Oosthoek AJ, Rozema J, Aerts R. Heavy metal concentration in a soil – plant – snail food chain along a pollution gradient. EnvironPollut. 2005; 138(1): 178–190.
  • 14. Scheffler P, de Vaufleury A, Coeurdassier M, Crini N, Badot PM. Transfer of Cd, Cu, Ni and Zn in a soil – plant – invertebrate foodmicrocosm study. Environ Toxicol Chem Mar. 2006; 25(3): 815–822.
  • 15. Schuiping C. Effect of Heavy Metals on Plants and Resistance Mechanisms. Environ Sci Pollut Res. 2003; 10(4): 256–264.
  • 16. Schuiping C. Heavy Metals In Plants and Phytoremediation. Environ Sci Pollut Res. 2003; 10(5): 335–340.
  • 17. Kwasowski D, Michalak D, Kozanecka T. Bioaccumulation of Microelements in Selected Plants of the Undergrowth in KampinosNational Park. Polish J Environ Stud. 2006; 15(2a): 398–402.

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