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Erodible fraction content change in long term wind erosion duration

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Balkovič, J., Skalský, R., & Nováková, M. (2010). Spatial model of sand and clay distribution in topsoil of agricultural soils in Slovakia. In Vedecké práce Výskumného ústavu pôdoznalectva a ochrany pôdy. Výskumný ústav pôdoznalectva a ochrany pôdy (in Slovak). Search in Google Scholar

Borrelli, P., Panagos, P., Ballabio, C., Lugato, E., Weynants, M., & Montanarella, L. (2014). Towards a Pan-European Assessment of Land Susceptibility to Wind Erosion. Land Degradation & Development, 27(4), 1093–1105. https://doi.org/10.1002/ldr.231810.1002/ldr.2318 Search in Google Scholar

Böhner, J., Schäfer, W., Conrad, O., Gross, J., & Ringeler, A. (2003). The WEELS model: methods, results and limitations. Catena, 52(3–4), 289–308. https://doi.org/10.1016/s0341-8162(03)00019-510.1016/S0341-8162(03)00019-5 Search in Google Scholar

European Environment Agency. (1998). Europe’s Environment: The Second Assessment. Copenhagen. Search in Google Scholar

Fryrear, D. W., Krammes, C. A., Williamson, D. L., & Zobeck, T. M. (1994). Computing the wind erodible fraction of soils. Journal of Soil and Water Conservation, 49(2), 183+. Search in Google Scholar

Fryrear, D. W., Bilbro, J. D., Saleh, A., Schomberg, H., Stout, J. E., & Zobeck, T. M. (2000). RWEQ: Improved Wind Erosion Technology. Journal of Soil and Water Conservation, 55(2), 183. Search in Google Scholar

Funk, R., & Reuter, H. I. (2006). Wind erosion. In J. Boardman, J., Poesen. (Eds), Soil erosion in Europe (pp. 563–582). Wiley.10.1002/0470859202.ch41 Search in Google Scholar

Gomes, L., Arrúe, J. L., López, M. V., Sterk, G., Richard, D., Gracia, R., Sabre, M., Gaudichet, A., & Frangi, J. P. (2003). Wind erosion in a semiarid agricultural area of Spain: the WELSONS project. Catena, 52(3–4), 235–256. https://doi.org/10.1016/s0341-8162(03)00016-x10.1016/S0341-8162(03)00016-X Search in Google Scholar

Chappell, A., & Warren, A. (2003). Spatial scales of 137Cs-derived soil flux by wind in a 25 km2 arable area of eastern England. Catena, 52(3–4), 209–234. https://doi.org/10.1016/s0341-8162(03)00015-810.1016/S0341-8162(03)00015-8 Search in Google Scholar

Kondrlová, E., Igaz, D., Grešová, L., & Horák, J. (2012). Comparison of methods of soil samples preparation and methods of measurement of grain size fractions of distribution in Nitra River basin. Acta Horticulturae et Regiotecturae, 15, 27–30 (in Slovak). Search in Google Scholar

Leys, J. F., & McTainsh, G. H. (1994). Soil loss and nutrient decline by winderosion-cause for concern. Aust. J. Soil Water Conserv., 7(3), 30–40. Search in Google Scholar

Li, J., Okin, G. S., Alvarez, L., & Epstein, H. (2007). Quantitative effects of vegetation cover on wind erosion and soil nutrient loss in a desert grassland of southern New Mexico, USA. Biogeochemistry, 85(3), 317–332. https://doi.org/10.1007/s10533-007-9142-y10.1007/s10533-007-9142-y Search in Google Scholar

Lyles, L., & Tatarko, J. (1986). Plant response to topsoil thickness, and to fertilizer on an eroded loess soil. J. Soil Water Cons., 41, 59–63. Search in Google Scholar

Muchová, Z., & Tárníková, M. (2018). Land cover change and its influence on the assessment of the ecological stability. Applied Ecology and Environmental Research, 16(3), 5169–5182. https://doi.org/10.15666/aeer/1603_2169218210.15666/aeer/1603_21692182 Search in Google Scholar

Riksen, M., Brouwer, F., Spaan, W., Arue, J. L., & Lopez, M. V. (2003). What to do about wind erosion. In A. Warren (Ed.), Wind erosion on agricultural land in Europe, EC, Directorate-General for Research (pp. 39–52). Search in Google Scholar

Warren, A. (2003). Wind erosion on agricultural land in Europe: research results for land managers. Office for Official Publications of the European Communities. Search in Google Scholar

eISSN:
1338-5259
Langue:
Anglais
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2 fois par an
Sujets de la revue:
Industrial Chemistry, Green and Sustainable Technology