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Siczek, A.; Horn, R.; Lipiec, J.; Usowicz, B.; Łukowski, M. Effects of soil deformation and surface mulching on soil physical properties and soybean response related to weather conditions 2015 Soil and Tillage Research 153 175-184 details   doi
Molina-Herrera, S.; Haas, E.; Grote, R.; Kiese, R.; Klatt, S.; Kraus, D.; Kampffmeyer, T.; Friedrich, R.; Andreae, H.; Loubet, B.; Ammann, C.; Horvath, L.; Larsen, K.; Gruening, C.; Frumau, A.; Butterbach-Bahl, K. Importance of soil NO emissions for the total atmospheric NOX budget of Saxony, Germany 2017 Atmospheric Environment 152 61-76 details   doi
Eitzinger, J.; Thaler, S.; Schmid, E.; Strauss, F.; Ferrise, R.; Moriondo, M.; Bindi, M.; Palosuo, T.; Rotter, R.; Kersebaum, K.C.; Olesen, J.E.; Patil, R.H.; Saylan, L.; Caldag, B.; Caylak, O. Sensitivities of crop models to extreme weather conditions during flowering period demonstrated for maize and winter wheat in Austria 2013 Journal of Agricultural Science 151 813-835 details   doi
Lai, R.; Arca, P.; Lagomarsino, A.; Cappai, C.; Seddaiu, G.; Demurtas, C.E.; Roggero, P.P. Manure fertilization increases soil respiration and creates a negative carbon budget in a Mediterranean maize (Zea mays L.)-based cropping system 2017 Catena 151 202-212 details   doi
Lai, R.; Arca, P.; Lagomarsino, A.; Cappai, C.; Seddaiu, G.; Demurtas, C.E.; Roggero, P.P. Manure fertilization increases soil respiration and creates a negative carbon budget in a Mediterranean maize (Zea mays L.)-based cropping system 2017 Catena 151 202-212 details   doi
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