INFORMAZIONI SU QUESTO ARTICOLO

Cita

Alaoui, A.M., Germann, P., Lichner, L., Novák, V., 1997. Preferential transport of water and 131Iodide in a clay loam assessed with TDR-technique and boundary layer flow theory. Hydrol. Earth Syst. Sci., 1, 813-822.10.5194/hess-1-813-1997Search in Google Scholar

Behrens, H., 1982. New insights into the chemical behaviour of radioiodine in aquatic environments. In: Proc. Int. Conf. Environmental migration of long-lived radionuclides. IAEA, Vienna 1982, pp. 27-40. (IAEA-SM-257/36) Search in Google Scholar

Bouma, J., Dekker, L.W., Wösten, J.H.M., 1978. A case study on infiltration into dry clay soil. II. Physical measurements. Geoderma, 20, 41-51.10.1016/0016-7061(78)90048-4Search in Google Scholar

Dohnal, M., Dušek, J., Vogel, T., Císlerová, M., Lichner, Ľ., Štekauerová, V., 2009. Ponded infiltration into soil with biopores - field experiment and modeling. Biologia, 64, 580-584.10.2478/s11756-009-0078-7Search in Google Scholar

Edwards, W.M., Shipitalo, M.J., Owens, L.B., Dick, W.A., 1993. Factors affecting preferential flow of water and atrazine through earthworm burrows under continuous no-till corn. J. Environ. Qual., 22, 453-457.10.2134/jeq1993.00472425002200030008xSearch in Google Scholar

Faško, P., Lapin, M., Pecho, J., 2008. 20-year extraordinary climatic period in Slovakia. Meteorolog. Čas., 11, 99-105.Search in Google Scholar

Flury, M., Flühler, H., Jury, W.A., Leuenberger, J., 1994. Susceptibility of soils to preferential flow of water: A field study. Water Resour. Res., 30, 1945-1954.10.1029/94WR00871Search in Google Scholar

Hardy, J.T., 2003. Climate Change. Causes, Effects, and Solutions. Wiley, Chichester, 247 pp.Search in Google Scholar

Homolák, M., Capuliak, J., Pichler, V., Lichner, Ľ., 2009. Estimating hydraulic conductivity of a sandy soil under different plant covers using minidisk infiltrometer and a dye tracer experiment. Biologia, 64, 600-604.10.2478/s11756-009-0088-5Search in Google Scholar

Kneale, W.R., White, R.E., 1984. The movement of water through cores of a dry (cracked) clay-loam grassland topsoil. J. Hydrol., 67, 361-365.10.1016/0022-1694(84)90251-8Search in Google Scholar

Lichner, L., 1990. A method for measurement of water infiltration rate into unsaturated soil. Czechoslovak Patent No. 263025. Federal Bureau for Inventions, Prague. (In Czech.) Search in Google Scholar

Lichner, Ľ., 1992. Laboratory and field measurements of solute transport in soils by means of nuclear tracer technique. Vodohosp. Čas., 40, 548-561.Search in Google Scholar

Lichner, L., 1995. A nuclear tracer technique for investigation of solute transport in the unsaturated zone of soil. In: Leibundgut, Ch. (ed.): Proc. Int. Symp. Tracer technologies for hydrological systems, Boulder 1995. IAHS Publication No. 229, Wallingford, pp. 109-116.Search in Google Scholar

Lichner, L., 1997. In-situ measurement of bypassing ratio in macroporous soil. J. Hydrol. Hydromech., 45, 365-376. Search in Google Scholar

Lichner, Ľ., Capuliak, J., Zhukova, N., Holko, L., Czachor, H., Kollár, J., 2013. Pines influence hydrophysical parameters and water flow in a sandy soil. Biologia, 68, 1104-1108.10.2478/s11756-013-0254-7Search in Google Scholar

Lichner, L., Eldridge, D.J., Schacht, K., Zhukova, N., Holko, L., Šír, M., Pecho, J., 2011. Grass cover influences infiltration into a sandy soil. Pedosphere, 21, 719-729.10.1016/S1002-0160(11)60175-6Search in Google Scholar

Lichner, L., Mészároš, I., Germann, P., Alaoui, A.M., Šír, M., Faško, P., 1999. Impact of land-use change on nutrient fluxes in structured soils. In: Heathwaite, L. (ed.): Proc. Int. Symp. Impact of land-use change on nutrient loads from diffuse sources, Birmingham 1999. IAHS Publication No. 257, Wallingford, pp. 171-177.Search in Google Scholar

Pekárová, P., Svoboda, A., Miklánek, P., Škoda, P., Halmová, D., Pekár J., 2012. Estimating flash flood peak discharge in Gidra and Parná basin: case study for the 7-8 June 2011 flood. J. Hydrol. Hydromech., 60, 206-216.10.2478/v10098-012-0018-zSearch in Google Scholar

Seki, M., Oikawa, J., Taguchi, T., Ohnuki, T., Muramatsu, Y., Sakamoto K., Amachi S., 2013. Laccase-catalyzed oxidation of iodide and formation of organically bound iodine in soils. Environ. Sci. Technol., 47, 390−397.10.1021/es303228nSearch in Google Scholar

Shetaya, W.H.A.H., 2011. Iodine dynamics in soil. Ph.D. Thesis. University of Nottingham, Nottingham, 171 pp.Search in Google Scholar

Shipitalo, M.J., Dick, W.A., Edwards, W.M., 2000. Conservation tillage and macropore factors that affect water movement and the fate of chemicals. Soil Till. Res., 53, 167-183.10.1016/S0167-1987(99)00104-XSearch in Google Scholar

Smettem, K.R.J., 2009. The relation between runoff generation and temporal stability of soil macropores in a fine sandy loam. Biologia, 64, 470-473.10.2478/s11756-009-0107-6Search in Google Scholar

Soil Survey Division Staff, 1993. Soil survey manual. Soil Conservation Service. U.S. Department of Agriculture Handbook 18, 437 pp.Search in Google Scholar

Täumer, K., Stoffregen, H., Wessolek, G., 2006. Seasonal dynamics of preferential flow in a water repellent soil. Vadose Zone J., 5, 405-411.10.2136/vzj2005.0031Search in Google Scholar

Vogel, T., Lichner, L., Dusek, J., Cipakova, A., 2007. Dualcontinuum analysis of cadmium tracer field experiment. J. Contam. Hydrol., 92, 50-65.10.1016/j.jconhyd.2007.01.00117292998Search in Google Scholar

WRB, 2006. World reference base for soil resources 2006. 2nd edition. World Soil Resources Reports No. 103. FAO, Rome, 128 pp.Search in Google Scholar

ISSN:
0042-790X
Lingua:
Inglese
Frequenza di pubblicazione:
4 volte all'anno
Argomenti della rivista:
Engineering, Introductions and Overviews, other