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Malacofauna on coal - ash settling basins comparison of a functional basin to a basin abandoned for 26 years

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
A composition of snail fauna in a functional coal-ash settling basin has been compared to that of a partly reclaimed coal-ash settling basin which had been abandoned for 26 years, using a nature reserve as a control. A total of 24 molluscan species were found at the control site, 21 species in the internal area of the abandoned settling basin and six species in the internal area of the functional settling basin. Numerous and relatively diverse malacofauna have become established on the abandoned coal ash settling basin, consisting mainly of high populations of a low number of widespread species.
Rocznik
Strony
73--85
Opis fizyczny
Bibliogr. 29 poz., tab., rys.
Twórcy
autor
  • Faculty of Science, University of Hradec Kralove, Rokitanskeho 62, Hradec Kralove 500 03, Czech Republic
autor
  • BC AVCR, Institute of Entomology, Branisovska 31, Ceske Budejovice 370 05, Czech Republic
Bibliografia
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  • [2] Natural Recovery of Human-Made Deposits in Landscape (Biotic Interactions and Ore/Ash-Slag ArtificialEcosystems), P. Kovar (Ed.), Academia, Prague, 2004.
  • [3] TROPEK R., KONVIĆKA M., Should restoration damage rare habitats?, Biol. Conserv., 2011, 144, 1299.
  • [4] BENES J., KEPKA P., KONVIĆKA M., Limestone ąuarries as refuges for European xerophilous butter- flies, Conserv. Biol., 2003, 17 (4), 1058.
  • [5] SEAR L.K.A., Properties and use of coal fly ash: a valuable industrial by-product, Thomas Telford Publishing, London, 2001.
  • [6] HAYNES R.J., Reclamation and revegetation of fly ash disposal sites. Challenges and research needs, J. Environ. Manage., 2009, 90 (1), 43.
  • [7] PAN S.Y., MORRISON H., GIBBONS L., ZHOU J., WEN S.W., DESMEULES M., MAO Y., Breast cancer risk associated with residential proximity to industrial plants in Canada, J. Occup. Environ. Med., 2011, 53 (5), 522.
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  • [9] SCHERBINA V.G., Bioindicator properties of mollusks in recreational beech-box forests, Zool. Zhur- nal, 2007, 86 (12), 1411.
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  • [12] HODL E., FELDER E., CHABICOVSKY M., DALLINGER R., Cadmium stress stimulates tissue turnover in Helix pomatia: increasing cell proliferation from metal tolerance to exhaustion in molluscan midgut gland, Cell Tissue Res., 2010, 341 (1), 159.
  • [13] TYLER G., The impact of heavy metal pollution on forests: a case study of Gusum, Sweden, Ambio, 1984, 13 (1), 18.
  • [14] BARROS Y.J., MELO V.D., SAUTTER K.D., BUSCHLE B., DE OLIVEIRA E.B., DE AZEVEDO J.C.R., SOUZA L.C.D., KUMMER L., Soil ąuality indicators in lead mining and metallurgy area. II. Meso- fauna and plants, Rev. Bras. Scienc. Solo, 2010, 34 (4), 1413.
  • [15] KERNEY M.P., CAMERON R.A.D., JUNGBLUTH J.H., Land Snails of North- and Central Europe, Verlag Paul Parey, Hamburg, 1983 (in German).
  • [16] LEPS J., SMILAUER P., Multivariate analysis of ecological data using CANOCO, Cambridge University Press, 2003.
  • [17] BERAN L., JURIĆKOVA L., HORSAK M., Mollusca, [in:] Red list of threatened species in the Czech Republic, Invertebrates, J. Farkac, D. Kral, M. Skorpik (Eds.), Agentura ochrany prirody a krajiny CR, Prague, 2005, 69 (in Czech).
  • [18] LEFFA D.D., DAMIANI A.P., DA SILVA J., ZOCCHE J.J., DOS SANTOS C.E.I., BOUFLEUR L.A., DIAZ J.F., DE ANDRADE V.M., Evaluation of the genotoxic potential of the mineral coal tailings through the Helix aspersa (Muller, 1774), Arch. Environ. Contam. Toxicol., 2010, 59 (4), 614.
  • [19] JURIĆKOVA L., KUCERA T., Land snail assemblage patterns along motorways in relation to environ- mental variables, Contributions to Soil Zoology in Central Europe II, 2005, 75.
  • [20] PECH P., PECHOVA H., Monacha cartusiana (Gastropoda: Hygromiidae) in South Bohemia, Malacol. Bohem., 2009, 8, 28.
  • [21] RYBAK J., SADŁEK W., Ecological impact of a dam on benthic macroinvertebrates in montane rivers of Lower Silesia, Environ. Prot. Eng., 2010, 36 (2), 143.
  • [22] HORSAK M., JURIĆKOVA L., KINTROVA K., HAJEK O., Patterns of land snail diversity over a gradient of habitat degradation: a comparison of three Czech cities, Biodivers. Conserv., 2009, 18 (13), 3453.
  • [23] PARMAKELIS A., MYLONAS M., Dispersal and population structure of two sympatric species of the mediterranean land snail genus Mastus (Gastropoda, Pulmonata, Enidae), Biol. J. Linn. Soc., 2004, 83 (1), 131.
  • [24] POPOV V.N., KRAMARENKO S.S., Dispersal of land snails of the genus Xeropicta Monterosato, 1892 (Gastropoda, Pulmonata, Hygromiidae), Russ. J. Ecol., 2004, 35 (4), 263.
  • [25] MAJOOR G., LEVER A.J., Succession in the snail fauna of a rehabilitated limestone quarry near Maastricht, the Netherlands, Basteria, 1999, 63 (1-3), 83.
  • [26] AUBRY S., LABAUNE C., MAGNIN F., ROCHE P., KISS L., Active andpassive dispersal of an invading land snail in Mediterranean France, J. Anim. Ecol., 2006, 75 (3), 802.
  • [27] REES W.J., The aerial dispersal of Mollusca, Proc. Malac. Soc. London, 1965, 36, 269.
  • [28] KLETEĆKA Z., BLIZEK J., GRYCZ F., Prvm nalezy svisnika Cicindella arenaria vienensis (Coleoptera: Carabidae) v jiznich Cechach, Acta Mus. Boh. Mer. Ceske Budejov., 2006, 46, 177 (in Czech).
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Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-2f7509c1-4def-413b-9b77-bc19cd5a8f91
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