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2005 | 14 | 2 |

Tytuł artykułu

Multielement concentration in mosses in the forest influenced by industrial emissions [Niepolomice Forest, S Poland] at the end of the 20th century

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN
Terrestrial moss (Pleurozium schreberi) was used as a biomonitor in multielement studies aimed to estimate the present level of contamination of the Niepołomice Forest environment (S Poland), influenced by industrial emissions since the 1950s. The concentrations of 33 elements (life essential - Na, Mg, Al, Cl, Ca, V, Mn, Fe, Ni, Cu, Zn, Br, Mo, Rb, Cr, As, Se; non-essential elements strongly toxic - Cd, Pb; others - Sc, Sr, Ag, Cs, Ba, La, Tb, Hf, Ta, W, Au, Th, U, Sm) were determined. The results of this study showed that at the end of the 20th century the Niepołomice Forest was an area with average load of industrial emissions in comparison with mean European values. Various sources of elements (long-range and local emissions, crustal/soil dust, vegetation), which influenced their contents in moss, were discussed. It was found that local emissions and crustal/soil dust were the main sources of elements in P. schreberi in the studied area.

Wydawca

-

Rocznik

Tom

14

Numer

2

Opis fizyczny

p.165-172,fig.,ref.

Twórcy

autor
  • Polish Academy of Sciences, Lubicz 46, 31-512 Krakow, Poland
autor

Bibliografia

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  • 2. RÜHLING Å., TYLER G. An ecological approach to the lead problem. Bot. Notiser 121, 321, 1968.
  • 3. GRODZIŃSKA K. Mosses as bioindicators of heavy metal pollution in Polish National Parks. Water, Air, Soil Pollut. 9, 83, 1978.
  • 4. HERPIN U., BERLEKAMP J., MARKERT B., WOLTERBEEK B., GRODZIŃSKA K., SIEWERS U., LEITH H., WECKERT V. The distribution of heavy metals in a transect of the three states the Netherlands, Germany and Poland, determined with the aid of moss monitoring. Sci. Total Environ. 187, 185, 1996.
  • 5. KUIK P., WOLTERBEEK H. TH. Factor analysis of atmospheric trace-element deposition data in the Netherlands obtained by moss monitoring. Water, Air, Soil Pollut. 84, 323, 1995.
  • 6. BUSE A., MILLS G., HARMENS H., BÜKER P., HAYES F., WILLIAMS P., EMBERSON L., CINDERBY S., ASHMORE M., HOLLAND M., and the participants of the ICP Vegetation. Air pollution and vegetation: UNECE ICP Vegetation Annual Report 2002/2003, CEH Bangor, UK, pp. 1-50, 2003.
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  • 8. REIMANN C., KASHULINA G., DE CARITAT P., NISKAVAARA H. Multielement, multi-medium regional geochemistry in the European Arctic: element concentration, variation and correlation. Applied Geochemistry 16, 759, 2001.
  • 9. REIMANN C., KOLLER F., FRENGSTAD B., KASHULINA G., NISKAVAARA H., ENGLMAIER P. Comparison of the element composition in several plant species and their substrate from a 1 500 000 km2 area in Northern Europe. Sci. Total Environ. 278, 87, 2001.
  • 10. WEINER J., FREDRO-BONIECKI S., REED D., MACLEAN A., STRONG M. Niepołomice Forest - a GIS analysis of ecosystem response to industrial pollution. Environ. Pollut. 98, 381, 1997.
  • 11. SZAREK-ŁUKASZEWSKA G. Sulphur input to the Niepołomice Forest: changes during 30 years (Southern Poland). Polish J. Environmental Studies 12, 239, 2003.
  • 12. FRONTASYEVA M.V., PAVLOV S.S., REGATA Experimental Setup for Air Pollution Studies. In «Problems of Modern Physics». Editors: A.N. Sissakian, D.I. Trubetskov. Dubna, JINR, p. 152-158, 1999.
  • 13. BERG T., STEINNES E. Use of mosses (Hylocomium splendens and Pleurozium schreberi) as biomonitors of heavy metal deposition: from relative to absolute deposition values. Environ. Pollut. 98, 61, 1997.
  • 14. GRODZIŃSKA K., SZAREK-ŁUKASZEWSKA G. Niepołomice Forest: past and present – temporal and spatial variation in industrial pollution input to the forest ecosystems (In Polish). Działalność naukowa PAN – wybrane zagadnienia 15, 44, 2003.
  • 15. KISZKA J., GRODZIŃSKA K. Lichen flora and air pollution in the Niepołomice Forest (S Poland) in 1960 – 2000. Biologia, Bratislava 59, 23, 2004.
  • 16. KAPUSTA P., SOBCZYK L., ROŻEN A., WEINER J. Species diversity and spatial distribution of enchytraeid communities in forest soils: effects of habitat characteristics and heavy metal contamination. Applied Soil Ecology 23, 187, 2003.
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  • 19. SZAREK-ŁUKASZEWSKA G., GRODZIŃSKA K., BRANIEWSKI S. Heavy metal concentration in the moss Pleurozium schreberi in the Niepołomice Forest, Poland: changes during 20 years. Environmental Monitoring and Assessment 79, 231, 2002.
  • 20. STEINNES E., RAMBAEK J. P., HANSSEN J. E. Large scale multi-elements survey of atmospheric deposition using naturally growing moss as biomonitor. Chemosphere 25, 735, 1992.
  • 21. BERG T., RØYSET O., STEINNES E., VADSET M. Atmospheric trace element deposition: principal component analysis of ICP-MS data from moss samples. Environ. Pollut. 88, 67, 1995.
  • 22. STEINNES E. Use of mosses as biomonitors of atmospheric deposition of trace elements. In: B. Smodis (ed.), Biomonitoring of Atmospheric Pollution (with emphasis on trace elements). Bio MAP IAEA-TEC DOC-1152. Vienna, pp. 100-107, 2000.
  • 23. GRODZIŃSKA K., FRONTASYEVA M., SZAREKŁUKASZEWSKA G., KLICH M., KUCHARSKA-FABIŚ A., GUNDORINA S. F., OSTROVNAYA T. M. Trace element contamination in industrial regions of Poland studies by moss monitoring. Environmental Monitoring and Assessment 87, 255, 2003.

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

bwmeta1.element.agro-article-2e2eaeac-160a-4117-a9e6-a1906953abb0
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