Zitieren

BASHAGALUKE, J. B. – LOGHAN, V. – OPOKU, A. – SARKODIE-ADDO, J. – QUANSASH, C. 2018. Soil nutrient loss through erosion: Impact of different cropping systems and soil amendments in Ghana. In PLoS One, vol. 13, no. 12, article no. e0208250. Search in Google Scholar

BERTOL, I. L. – ENGEL, F. L. – MAFRA, A. L. – BERTOL, O. J. – RITTER, S. R. 2007. Phosphorus, potassium and organic carbon concentrations in runoff water and sediments under different soil tillage systems during soybean growth. In Soil and Tillage Research, vol. 94, no. 1, pp. 142–150. Search in Google Scholar

BORRELLI, P. – ROBINSON, D. A. – PANAGOS, P. – LUGATO, E. – YANG, J. E. – ALEWELL, C. – WUEPPER, D. – MONTANARELLA, L. – BALLABIO, C. 2020. Land use and climate change impacts on global soil erosion by water (2015–2070). In Proceedings of the National Academy of Sciences (PNAS), vol. 117, no. 36, pp. 21994–22001. Search in Google Scholar

CAMERON, K. C. – DI, H. J. – MOIR, J. L. 2013. Nitrogen losses from the soil/plant system: a review. In Annals of Applied Biology, vol. 162, no. 2, pp. 145–173. Search in Google Scholar

DIMITROV, P. – BELOEV, I. – KUNCHEVA, G. 2017. Efficiency of advanced systems for minimum and unconventional tillage for maize production on slope lands. In International Journal of Economics, Finance and Management Sciences, vol. 5, no. 5, pp. 263–267. Search in Google Scholar

EEKHOUT, J. P. C. – DE VENTE, J. 2022. Global impact of climate change on soil erosion and potential for adaptation through soil conservation. In Earth-Science Reviews, vol. 226, pp. 103921. Search in Google Scholar

FAO. 2015. Status of the World’s Soil Resources: Main Report. Rome : FAO, 650 pp. ISBN 9789251090046. Search in Google Scholar

GOVERS, G. – MERCKX, R. – VAN WESEMAEL, B. – VAN OOST, K. 2017. Soil conservation in the 21st century: Why we need smart intensification. In SOIL, vol. 3, no. 1, pp. 45–59. Search in Google Scholar

KOCH, A. – MCBRATNEY, A. – ADAMS, M. – FIELD, D. – HILL, R. – CRAWFORD, J. – MINASNY, B. – LAL, R. – ABBOTT, L. – O’DONNELL, A. – ANGERS, D. – BADLOCK, J. – BARBIER, E. – BINKLEY, D. – PARTON, W. – WALL, D. H. – BIRD, M. – BOUMA, J. – CHENU, C. – FLORAN, C. B. – GOULDING, K. – GRUNWALD, S. – HEMPEL, J. – JASTROW, J. – LEHMANN, J. – LORENZ, K. – MORGAN, C. L. – RICE, C. W. – WHITEHEAD, D. – YOUNG, I. – ZIMMERMANN, M. 2013. Soil security: solving the global soil crisis. In Global Policy, vol. 4, no. 4, pp. 434–441. Search in Google Scholar

KUNCHEVA, G. S. – DIMITROV, P. D. 2020. Loss of nutrients by soil water erosion. In 7th International Conference on Energy Efficiency and Agricultural Engineering (EE&AE). Ruse, Bulgaria : IEEE, pp. 1–5. doi: 10.1109/EEAE49144.2020.9278977. Open DOISearch in Google Scholar

LEMMA, B. – KEBEDE, F. – MESFIN, S. – FITIWY, I. – ABRAHA, Z. – NORGROVE, L. 2017. Quantifying annual soil and nutrient lost by rill erosion in continuously used semiarid farmlands, North Ethiopia. In Environmental Earth Sciences, vol. 76, article no. 190. Search in Google Scholar

MEENA, N. K. – GAUTAM, R. – TIWARI, P. – SHARMA, P. 2017. Nutrient losses in soil due to erosion. In Journal of Pharmacognosy and Phytochemistry, vol. SP1, pp. 1009–1011. Search in Google Scholar

MUUKKONEN, P. – HARTIKAINEN, H. – ALAKUKKU, L. 2009. Effect of soil structure disturbance on erosion and phosphorus losses from Finnish clay soil. In Soil and Tillage Research, vol. 103, no. 1, pp. 84–91. Search in Google Scholar

PANAGOS, P. – BALLABIO, C. – BORRELLI, P. – MEUSBURGER, K. – KLIK, A. – ROUSSEVA, S. – TADIC, M. P. – MICHAELIDAS, S. – HRABALIKOVA, M. – OLSEN, P. – AALTO, J. – LAKATOS, M. – RYMSZEWICZ, A. – DUMITRESCU, A. – BEGUERIA, S. – ALEWELL, C. 2015. Rainfall erosivity in Europe. In The Science of the Total Environment, vol. 511, pp. 801–814. Search in Google Scholar

POSTHUMUS, H. – DEEKS, L. K. – RICKSON, R. J. – QUINTON, J. N. 2013. Costs and benefits of erosion control measures in the UK. In Soil Use and Management, vol. 31, no. S1, pp. 16–33. Search in Google Scholar

ROUSSEVA, S. – MALINOV, I. – STEFANOVA, V. 2016. Soil erosion risk assessments using GIS technologies – Bulgarian experience. In Bulgarian Journal of Agricultural Science, vol. 22, pp. 205–208. Search in Google Scholar

ROUSSEVA, S. – LOZANOVA, L. – NEKOVA, D. – STEFANOVA, V. – DZHODZHOV, C. – TZVETKOVA, E. – MALINOV, I. – KRUMPV, V. – CHEKHLAROVA-SIMEONOVNA, S. 2010. Risk of soil erosion in Bulgaria and recommendations for soil use of agricultural land, Part I. Sofia : CySet-Eco, 304 pp. (in Bulgarian: Risk ot eroziya na pochvata v Bŭlgariya i preporŭki za pochvozashtitnoto polzvane na zamadelskite zemi, chast I). Search in Google Scholar

SHAHGHOLI, G. – MOINFAR, A. 2021. The effect of crop residue percentages and their chopped size on soil compatibility. In Acta Technologica Agriculturae, vol. 24, no. 4, pp. 181–186. Search in Google Scholar

STAROVOYTOV, V. – STAROVOYTOVA, O. – ALDOSHIN, N. – MANOHINA, A. 2017. Jerusalem artichoke as a means of fields conservation. In Acta Technologica Agriculturae, vol. 20, no. 1, pp. 7–10. Search in Google Scholar

eISSN:
1338-5267
Sprache:
Englisch
Zeitrahmen der Veröffentlichung:
4 Hefte pro Jahr
Fachgebiete der Zeitschrift:
Technik, Einführungen und Gesamtdarstellungen, andere