Skip to main content
Have a personal or library account? Click to login
The structure of the radiation balance on a sandy surface: case the Błędów desert, Silesian Upland Cover

The structure of the radiation balance on a sandy surface: case the Błędów desert, Silesian Upland

By:   
Open Access
|May 2016

References

  1. Bednarek, R., Dziadowiec, H. & Pokojska U. (2002). Pedological aspect of variability., 1, 35–41.
  2. Belnap, J., Büdel, B. & Lange O.L. (2003). Biological soil crust: Characteristics and distribution. In J. Belnap & O.L. Lange (Eds.), Biological soil crusts: Structure, function, and management., 150, 3–30. DOI: 10.1007/978-3-642-56475-8.
  3. Cabała, J. & Rahmonov O. (2004). Cyanophyta and algae as an important component of biological crust from Pustynia Błędowska Desert (Poland).49(1), 93–100.
  4. Caputa, Z. (2007). Diversity of albedo and longwave exchange and radiative efficiency coefficients on the Błędów Desert area (in Polish).144, 35–44.
  5. Caputa, Z. & Leśniok M. (2011). Incoming shortwave solar radiation in Sosnowiec (2000–2009) (in Polish)., 47, 393–400.
  6. Caputa, Z. & Wojkowski J. (2013). Influence of solar radiation on air and soil temperature in the Cracow Upland (in Polish)., 23, 65–74.
  7. Caputa, Z. & Wojkowski J. (2015). Structure of radiation balance in diverse types of relief., 47(4) 343−354. DOI: 10.1515/sggw-2015-0036.
  8. Czylok, A. & Rahmonov O. (2004). The encroachment of Scots pineL. on the area of former sand exploitation in the eastern Silesian Upland. In A. Brzeg & M. Wojterska (Eds.),(pp. 251−256). Poznań: Wydawnictwo Naukowe UAM.
  9. Czylok, A., Rahmonov, O. & Szymczyk A. (2008). Biological diversity in the area of quarries after sand exploitation in the eastern part of Silesian Upland.Środ, 5A, 15–22.
  10. Fromm, A., Jakob, S. & Tischew S. (2002). Sandy grassland in former mining areas., 34, 45–51.
  11. Gómez-Heras, M., Smith, B.J. & Fort R. (2006). Surface temperature differences between minerals in crystalline rocks: Implications for granular disaggregation of granites through thermal fatigue., 78, 236–249. DOI: 10.1515/sggw-2015-0036.
  12. Hollósy, F. (2002). Effects of ultraviolet radiation on plant cells., 33, 179–197. DOI: 10.1016/S0968-4328(01)00011-7.
  13. Hui, R., Li, X., Chen, C., Zhao, X., Jia, R., Liu, L. & Wei Y. (2013). Responses of photosynthetic properties and chloroplast ultrastructure offrom a desert biological soil crust to elevated ultraviolet-B radiation., 147, 489–501. DOI: 10.1111/j.1399-3054.2012.01679.x.
  14. Kejna, M., Uscka-Kowalkowska, J., Araźny, A., Kunz, M., Maszewski, R. & Przybylak R. (2014). Spatial differentiation of global solar radiation in Toruń and its suburban area (central Poland) in 2012., 7(1), 27–56. DOI: 10.2478/bgeo-2014-0002.
  15. Kidron, G.J. (2010). The effect of substrate properties, size, position, sheltering and shading on dew: An experimental approach in the Negev Desert., 98, 378–386. DOI: 10.1016/j.atmosres.2010.07.015.
  16. Kidron, G.J, Vonshak, A., Dor, I., Barinova, I. & Abeliovich A. (2010). Properties and spatial distribution of microbiotic crusts in the Negev Desert, Israel., 82, 92–101. DOI: 10.1016/j.catena.2010.05.006.
  17. Kidron, G.J., Starinsky, A. & Yaalon D.H. (2014). Cyanobacteria are confined to dewless habitats within a dew desert: Implications for past and future climate change for lithic microorganisms.., 519(Part D), 3606–3614. DOI: 10.1016/j.jhydrol.2014.11.010.
  18. Kruczała, K. (2000).Śląsk (in Polish). Katowice: IMGW.
  19. Li, X.R., Tian, F., Jia, R.L., Zhang, Z.S. & Liu L.C. (2010). Do biological soil crusts determine vegetation changes in sandy deserts? Implications for managing artificial vegetation., 24, 3621–3630. DOI: 10.1002/hyp.7791.
  20. Li, Y., Gao, Y., Zhang, L. & Su Z. (2014). Responses to UV-B exposure by saplings of the relict speciesBill are modified by soil nitrogen availability.., 62, 101–110. DOI: 10.3161/104.062.0110.
  21. Machowski, R. (2010).. Katowice: Wyd. Uniwer. Śląskiego.
  22. Michalska, B. (2011). Tendencies of air temperature changes in Poland (in Polish)., 47, 67–75.
  23. Nowak, T., Urbisz, A, Kapusta, P. & Tokarska-Guzik B. (2011). Distribution patterns and habitat preferences of mountain vascular plant species in the Silesian Uplands (southern Poland).., 59(2), 219–234.
  24. Oke, T.R. (1999). Urban environments. In W.G. Bailey, T.R. Oke & W.R. Rouse (Eds.),(pp. 303–327). Montréal: McGill-Queen’s University Press.
  25. Paszyński, J. & Miara K. (1994).(in Polish). Warszawa: Główny Geodeta Kraju.
  26. Paszyński, J., Miara, K. & Skoczek J. (1999). The energy exchange at the earth-atmosphere boundary as a base for topoclimatological mapping (in Polish)., 14, 1−169.
  27. Pełka-Gościniak, J., Rahmonov, O., Szczypek, T. & Wach J. (2007). The influence of aeolian factor on circulation of sandy material in the sandpits of Silesian Upland (southern Poland)., 40 (1), 57–69.
  28. Rahmonov, O. (2000). The evolution and regeneration of eco-systems in Błędów “Desert” (Southern Poland) – undergone of medieval ecologiacal disaster., 25, 61–72.
  29. Rahmonov, O. (2007).(in Polish). Katowice: University of Silesia.
  30. Rahmonov, O. & Kin N.O. (2007). Role of allochthonous substance in initial stage of succession., 1, 53–60.
  31. Rahmonov, O. & Piątek J. (2007). Sand colonization and initiation of soil development by cyanobacteria and algae., 26(1), 52–63.
  32. Rahmonov, O. & Szymczyk A. (2010). Relations between vegetation and soil in initial succession phases in post-sand excavations. Ekológia (Bratislava), 29(4), 412–429.
  33. Rahmonov, O., Caputa, Z. & Kłys G. (2002). The biogeocenosis formation on the area with different topography. In D. Kereković (Ed.),(pp. 216–224). Zagreb: Hrvatski Informaticki Zbor.
  34. Rahmonov, O., Malik, I. & Orczewska A. (2004). The influence ofWilld. on soil formation in sandy areas., 37(1), 77–84.
  35. Szczypek, T. & Wach J. (1999). Human impact and development of a modern scarp dune. In W. Schirmer (Ed.)(pp. 177–186). LIT Verlag.
  36. Tyc, A., Czylok, A. & Rahmonov O. (1999). Human impacts and spontaneous regeneration of a karst-aeolian ecosystem in anthropogenic desert near Olkusz (Silesian Upland, Poland)., 26, 70–77.
  37. Wolf, L., Rizzini, L., Stracke, R., Ulm, R. & Rensing S.A. (2010). The molecular and physiological responses ofto ultraviolet-b radiation.,153,1123–1134. DOI:10.1104/pp.110.154658.
  38. Xie, Z., Wang, Y., Liu, Y. & Liu Y. (2009). Ultraviolet-B exposure induces photooxidative damage and subsequent repair strategies in a desert cyanobacteriumGom.., 45, 377–382. DOI: 10.1016/j.ejsobi.2009.04.003.
DOI: https://doi.org/10.1515/eko-2016-0009 | Journal eISSN: 1337-947X | Journal ISSN: 1335-342X
Language: English
Page range: 114 - 125
Published on: May 28, 2016
Published by: Slovak Academy of Sciences, Institute of Landscape Ecology
In partnership with: Paradigm Publishing Services

© 2016 Zbigniew Caputa, published by Slovak Academy of Sciences, Institute of Landscape Ecology
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.