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Viktor Grigoriev, Leszek Piechnik and Stanisław Podsiadłowski

References GRIGORIEV V., PIECHNIK L., PODSIADŁOWSKI S. 1993: Prediction of the beginning of rainfall runoff in tracks of agricultural machinery. Pochvovedeniye , No 12 (in Russian). GRIGORIEV V.Y., PIECHNIK L., PODSIADŁOWSKI S. 1996: Evaluation of runoff and soil erosion in ruts made by agricultural machinery. Eurasian Soil Science , 28 (3), pp. 108-119. KUZNETSOV M.S. 1981: The Resistance of Soils to Erosion. Moscow (in Russian). KUZNETSOV M.S., GLAZUNOV

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Cristina-Alina Ficuț, Vlad Măcicășan, Cristian-Valeriu Maloș, Octavian-Liviu Muntean, Gheorghe Roşian and Tibor Hartel

References Akeroyd J.R., Page, N., 2006, The Saxon Villages of Southern Transylvania: Conserving Biodiversity in a Historic Landscape, In: Gafta D., J. Akeroyd, (Eds), Nature Conservation. Environmental Science and Engineering. Springer, Berlin, Heidelberg, 199-210. Ferencik, I., Muntean, O.-L., Mihăiescu, R., Dimen, L., 2008, Assessment of Soil Erosion Using Usle and GIS (Case Study: Vărzari Coal Quarry, Romania), RevCAD, Journal of Geodesy and Cadastre, no. 8, Alba Iulia, pp. 247-256. Ficuţ, Cristina Alina

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Jozef Streďanský, Lenka Lackóoá, Anna Streďanská and Viktor Varga

supplementing decree No. 508/2004 that execute Act No. 220/2004 on Protection and Use of Agricultural Land in the Slovak Republic. Fryrear, D.W., Sutherland, P.L., Davis, G., Hardee, G. & Dollar M. (2001). Wind erosion estimates with RWEQ and WEQ. In D.E. Stott, R.H. Mohtar & G.C. Steinhardt (Eds.), Sustaining the global farm (pp. 760-765). 10th International Soil Conservation Organization Meeting. Purdue University and the USDA-ARS National Soil Erosion Research Laboratory. Grešová, L. & Streɗanský J. (2011). Wind erosion in the country: current trends, methods and ways

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Halus Satriawan, Erwin Masrul Harahap, Rahmawaty and Abubakar Karim

REFERENCES BERTOL, I.B. – MELLO, E.L. – GUADAGNIN, J.C. – ZAPAROLLI, A.L.V. – CARRAFA, M.R. 2003. Nutrient losses by water erosion. In Scientia Agricola , vol. 60 , p. 581–586. INDONESIA INVESTMENT COORDINATING BOARD. 2013. Komoditas Unggulan Daerah. Retrieved December 15 from PubMed database on the world wide web: http://regionalinvestment.bkpm.go.id/newsipid/id/commodityarea.php?ia=11&ic=2580 FENTON, T.E. – KAZEMI, M. – LAUTERBACH-BARRETT, M.A. 2005. Erosional impact on organic matter content and productivity of selected Iowa soils. In

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Grzegorz Poręba and Paweł Prokop

[1] Census of India, 2001. New Delhi: 138 pp. [2] Collins AL, Walling DE, Sichingabula HM and Leeks GJL, 2001. Using 137Cs measurements to quantify soil erosion and redistribution rates for areas under different land use in the Upper Kaleya River basin, southern Zambia. Geoderma 104(3–4): 299–323, DOI 10.1016/S0016-7061(01)00087-8. http://dx.doi.org/10.1016/S0016-7061(01)00087-8 [3] Dupin B, de Rouwb A, Phantahvong KB and Valentin C, 2009. Assessment of tillage erosion rates on steep

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Lamyai Neeratanaphan, Tawatchai Tanee, Alongklod Tanomtong and Bundit Tengjaroenkul

. Marcel Dekker, New York 2002. Frankenberger W.T. Jr. Arshad M. 2002 Volatilisation of arsenic Frankenberger W.T. Jr. Environmental chemistry of arsenic Marcel Dekker New York 2002 Gremion, F., Chatzinotas, A. & Harms, H. (2003). Comparative 16S rDNA and 16S rRNA sequence analysis indicates that Actinobacteria might be a dominant part of the metabolically active bacteria in heavy metal-contaminated bulk and rhizosphere soil, Environmental Microbiology , 5, 10, pp. 896–907. Gremion F. Chatzinotas A. Harms H. 2003

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C. Ailincăi, G. Jităreanu, D. Bucur and Despina Ailincăi

., Bucur D., Mercuş Ad., 2011 - Protecting the soil from erosion by cropping systems and fertilization in Moldavian Plateau. International Journal of Food, Agriculture & Environment, JFAE, Vol. 9 (1). Arnold J.G., Allen P.M., Bernhardt G., 1993 - A comprehensive surface groundwater flow model. Journal of Hydrology, 142: 47-469. Basso F., Giordano A.,Linsalata D.,1983 - Effetti della pioggia simulata sull'erosione di un terreno declivo della Basilicata sottoposto a differenti modalità di lavorazione. Quaderno no.129 "Problemi agronomici

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Grzegorz Poręba and Andrzej Bluszcz

References He Q and Walling DE, 1997. The distribution of fallout 137 Cs and 210 Pb in undisturbed and cultivated soils. Applied Radiation and Isotopes 48(5): 677-690, DOI 10.1016/S0969-8043(96)00302-8. de Jong E, Begg CBM and Kachanowski RG, 1983. Estimates of soil erosion and deposition for some Saskatchewan soils. Canadian Journal of Soil Science 63: 607-617. Kachanowski RG, 1987. Comparison of measured soil 137-caesium losses and erosion rates. Canadian Journal of Soil

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C. Ailincăi, G. Jităreanu, D. Bucur and Despina Ailincăi

References Aakkula J. (ed.), 2000 - Sustainable Development in Agriculture: Indicators, Agrienvironmental Programmes and Demonstrations, Final Report of the SUSAGRIproject, Agricultural Research Centre of Finland, Helsinki, Finland. Adams W.A., 1973 - The effect of organic matter on the bulk and true densities of some uncultivated podzolic soils. Journal of Soil Science, 24, pp. 10-17. Ailincăi C., Jităreanu G., Bucur D., Mercuş Ad., 2011 - Protecting the soil from erosion by cropping systems and

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Hamza Bouguerra, Abderrazak Bouanani, Kamel Khanchoul, Oussama Derdous and Salah Eddine Tachi

References ADEDIJI A., TUKUR A.M., ADEPOJU K.A. 2010. Assessment of Revised Universal Soil Loss Equation (RUSLE) in Katsina Area, Katsina State of Nigeria using Remote Sensing (RS) and Geographic Information System (GIS). Iranica Journal of Energy and Environment. Vol. 1. Iss. 3 p. 255-264. ANGIMA S.D., STOTT D.E., O’NEILI M.K., ONG C.K., WEESIES G.A. 2003. Soil erosion prediction using RUSLE for central Kenyan highland conditions. Agriculture, Ecosystems and Environment. Vol. 97. Iss. 1 p. 295-308. ANYS H. 1991