Cite

Alloway B.J. 1995. Soil processes and the behavior of metals. In: Heavy metals in soils (ed.: B.J. Alloway). 2nd ed. Blackie, Glasgow, Great Britain.10.1007/978-94-011-1344-1Search in Google Scholar

Arsova A. 1999. Adaptality of Pinus nigra Arn. depending on soil pH. Bulgarian Journal of Plant Physiology, 25 (1/2), 16-25.Search in Google Scholar

Astel A., Parzych A., Trojanowski J. 2009. Comparision of litterfall and nutrient return in a Vaccinio uliginosi- Betuletum pubescentis and a Empetro nigri- Pinetum forest stands in northern Poland. Forest Ecology and Management, 257, 2331-2341.Search in Google Scholar

Augusto L., Ranger J., Binkley D., Rothe A. 2002. Impact of several common tree species of European temperate forests on soil fertility. Annals of Forest Science, 59, 233-253.Search in Google Scholar

Baran A., Jasiewicz C. 2009. Toksyczna zawartość cynku i kadmu w glebie dla różnych gatunków roślin. Ochrona Środowiska i Zasobów Naturalnych, 40, 157-164.Search in Google Scholar

Christensen K.I., Dar G.H. 1997. A morphometric analysis of spontaneous and artificial hybrids of Pinus mugo-sylvestris (Pinaceae). Nordic Journal of Botany, 17, 77-86.Search in Google Scholar

Chrzan A., Marko-Worłowska-Łaciak T. 2010. Contamination of soil land pine bark by heavy metals in Skałki Twardowskiego Landscape Park in Kraków. Proceedings of ECOpole, 4 (1), 115-119.Search in Google Scholar

Chrzan A. 2013. Zawartość wybranych metali ciężkich w glebie i korze sosny. Proceedings of ECOpole 7 (2), 547-552.Search in Google Scholar

Espelta J.M., Retana J., Habrouk A. 2003. An economic and ecological multi-criteria evaluation of reforestation methods to recover burned Pinus nigra forests in NE Spain. Forest Ecology and Management, 180, 185-198.Search in Google Scholar

Gębski M. 1998. Czynniki glebowe oraz nawozowe wpływające na przyswajanie metali ciężkich przez rośliny. Postępy Nauk Rolniczych, 5, 3-16.Search in Google Scholar

Gworek B. 2006. Glin w środowisku przyrodniczym a jego toksyczność. Ochrona Środowiska i Zasobów Naturalnych, 29, 27-38.Search in Google Scholar

Jonczak J., Parzych A., Sobisz Z. 2015. Decomposition of four leaf litters in headwater riparian forest. Baltic Forestry, 21 (1), 133-143.Search in Google Scholar

Kabata-Pendias A., Pendias H. 1999. Biogeochemia pierwiastków śladowych. PWN, Warszawa, Polska.Search in Google Scholar

Kebel P., Košťálik J. 2011. Geological and geomorphological characteristics of the area of Botanical Garden of PJŠU in Košice and the use of these data in botanical practice. Thaiszia - Journal of Botany, 21, 153-159.Search in Google Scholar

Kraszkiewicz A. 2010. Zawartość wybranych metali ciężkich w drewnie Robinii akacjowej. Problemy Inżynierii Rolniczej, 2, 131-136.Search in Google Scholar

Kuang Y.W., Zhou G.Y., Wen D., Liu S.Z. 2007. Heavy metals in bark of Pinus massoniana (Lamb.) as an indicator of atmospheric deposition near a smeltery at Qujiang, China. Environmental Science Pollution Research International, 14 (4), 270-275.Search in Google Scholar

Lamppu J., Huttunen S. 2002. Relations between Scott pine needle element concentrations and decreased needle longevity along pollution gradients. Environmental Pollution, 122, 119-126.Search in Google Scholar

Marko-Worłowska M., Wątor G., Kozik R., Łaciak T. 2010. Zawartość związków zakwaszających i metali ciężkich w korze martwicowej sosny pospolitej (Pinus sylvestris L.) oraz w glebie małych lasów w Skawinie i Krakowie. Proceedings ECOpole, 4 (2), 459-463.Search in Google Scholar

Marmor L., Randlane T. 2007. Effects of road traffic on bark pH and epiphytic lichens in Tallinn. Folia Cryptogamica Estonica, 43, 23-37.Search in Google Scholar

Migaszewski Z.M. 1997. Chemistry of Scots pine (Pinus sylvestris L.) needles in the Cross Mountains region (south-central Poland). Wiadomości Botaniczne, 42 (3/4), 79-91.Search in Google Scholar

Mochnacký S. 2001. Botanická záhrada Univerzity P.J. Šafárika v Košiciach. ES UPJŚ Košice, Slovakia.Search in Google Scholar

Parzych A., Jonczak J. 2013. Content of heavy metals in needles of Scots pine (Pinus sylvestris L.) in selected of pine forest in the Słowiński National Park. Archives of Environmental Protection, 1 (39), 41-51.Search in Google Scholar

Parzych A., Jonczak J. 2014. Pine needles (Pinus sylvestris L.) as bioindicators in the assessment of urban environmental contamination with heavy metals. Journal of Ecological Engineering, 15 (3), 29-38.Search in Google Scholar

Parzych A., Sobisz Z. 2012. The macro- and microelemental content of Pinus sylvestris L. and Pinus nigra J.F. Arn. needles in Cladonio-Pinetum habitat of the Słowiński National Park. Forest Research Papers, 73 (4), 295-303.Search in Google Scholar

Polláková N., Šimanský V., Ložek O., Hanáčková E., Candráková E. 2015. The changes of nutrient and risk elements of top soil layers under canopy of different tree species and grassland in Arboretum Mlyňany, Slovakia. Folia Oecologica, 42 (1), 29-34.Search in Google Scholar

Pusz W., Zwijacz-Kozica T., Kita W. 2015. Ocena zdrowotności igieł kosodrzewiny (Pinus mugo) w wybranych lokalizacjach Tatrzańskiego Parku Narodowego. Sylwan, 159 (5), 411−418.Search in Google Scholar

Rapport 2016. Air pollution in the Slovak Republic. Ministry of Environment of the Slovak Republic. Slovak Hydrometeorological Institute, Bratyslava.Search in Google Scholar

Rautio P., Fürst A., Stefan K., Raitio H., Bartels U. 2010. Sampling and analysis of needles and leaves. 19 pp. Manual Part XII. In: Manual and methods and criteria for harmonized sampling, assessment, monitoring and analysis of the effects to air pollution on forests. UNECE ICP Forest Programme Coordinating Centre, Hamburg.Search in Google Scholar

Reyes O., Casal M. 2006. Can smoke affect the germination of Pinus sylvestris, P. nigra, P. uncinata and P. pinaster? Forest Ecology and Management, 234 Suppl., 184. doi:10.1016/j.foreco.2006.303Search in Google Scholar

Rykowska I., Wasiak W. 2009. Dystrybucja rtęci i metali ciężkich w korze drzew liściastych jako wskaźnik skażenia środowiska. Gospodarka Odpadami Komunalnymi, 273-282.Search in Google Scholar

Świercz A. 2003. Metallic elements’ content in soil, needles and bark of pine trees after the reduction of alcalic immission. Reginalny Monitoring Środowiska Przyrodniczego, 4, 107-113.Search in Google Scholar

Świercz A. 2006. Suitability of pine bark to evaluate pollution caused by cement-lime dust. Journal of Forest Science, 52, 93-98.Search in Google Scholar

Tainio M., Kekkonen J., Nahorski Z. 2010. Impact of airborne particulate master on human heath an assessment framework to estimate exposure and adverse heath effect in Poland. Archives of Environmental Protection, 36 (1), 95-115.Search in Google Scholar

Wójcik J., Krzaklewski W. 2009. Zalesienia jako metoda rekultywacji terenów bezglebowych w PGE KWB „Turów”. Bezpieczeństwo Pracy i Ochrona Środowiska w Górnictwie, 6, 29-37.Search in Google Scholar

Yilmaz S., Zengin M. 2003. Monitoring environmental pollution in Erzurum by chemical analysis of Scott pine (Pinus sylvestris L.) needles. Environmental International, 29, 1041-1047.Search in Google Scholar

eISSN:
2199-5907
ISSN:
0071-6677
Language:
English
Publication timeframe:
4 times per year
Journal Subjects:
Life Sciences, Plant Science, Medicine, Veterinary Medicine