Accesso libero

A coupled impact of different management and soil moisture on yield of winter wheat (Triticum aestivum L.) in dry conditions at locality Mezőföld, Hungary

   | 26 gen 2021
INFORMAZIONI SU QUESTO ARTICOLO

Cita

Basso, B., Ritchie, J.T., Pierce, F.J., Braga, R.P., Jones, J.W., 2001. Spatial validation of crop models for precision agriculture. Agricultural Systems, 68, 97–112.10.1016/S0308-521X(00)00063-9Search in Google Scholar

Basso, B., Ritchie, J.T., Cammarano, D., Sartori, L., 2011. A strategic and tactical management approach to select optimal N fertilizer rates for wheat in a spatially variable field. European Journal of Agronomy, 35, 215–222.10.1016/j.eja.2011.06.004Search in Google Scholar

Bullock, D.S., Lowenberg-DeBoer, J., Swinton, S.M., 2002. Adding value to spatially managed inputs by understanding site-specific yield response. Agricultural Economics, 27, 3, 233–245.10.1111/j.1574-0862.2002.tb00119.xSearch in Google Scholar

Elbl, J., Lukas, V., Hladký, J., Kynický, J., Brtnický, M., 2017. Variable rate nitrogen application on winter wheat fields in central Europe condition: impact on qualitative parameters of grain and content of nitrogen in plant. In: Proc. 17th International Multidisciplinary Scientific GeoConference SGEM 2017, www.sgem.org, ISBN 978-619-7408-03-4 / ISSN 1314-2704, 29 June – 5 July, 2017, Vol. 17, Issue 23, pp. 845–852.Search in Google Scholar

Fleming, K.L., Westfall, D.G., Wiens, D.W., Brodahl, M.C., 2001. Evaluating farmer defined management zones for variable rate fertilizer application. Precision Agriculture, 2, 201–215.10.1023/A:1011481832064Search in Google Scholar

Franzen, D.W., Hopkins, D.H., Sweeney, M.D., Ulmer, M.K., Halvorson, A.D., 2002. Evaluation of soil survey scale for zone development of site specific nitrogen management. Agronomy Journal, 94, 381–389.10.2134/agronj2002.3810Search in Google Scholar

Gao, L., Wang, Y., Geris, J., Hallett, P.D., Peng, X., 2019. The role of sampling strategy on apparent temporal stability of soil moisture under subtropical hydroclimatic conditions. J. Hydrol. Hydromech., 67, 260–270.10.2478/johh-2019-0006Search in Google Scholar

Herceg, A., Nolz, R., Kalicz, P., Gribovszki, Z., 2019. Predicting impacts of climate change on evapotranspiration and soil moisture for a site with subhumid climate. J. Hydrol. Hydromech., 67, 384–392.10.2478/johh-2019-0017Search in Google Scholar

Johnston, A.E., Poulton, P.R., Fixen, P.E., Curtin, D., 2014. Phosphorus: its efficient use in agriculture. Advances in Agronomy, 123, 177–228.10.1016/B978-0-12-420225-2.00005-4Search in Google Scholar

Lambert, D., Lowenberg-DeBoer, J., 2000. Precision Farming Profitability Review. Site-Specific Management Center, Purdue University, West Lafayette, IN, USA. http://www.purdue.edu/ssmcSearch in Google Scholar

Lark, R.M., 1998. Forming spatially coherent regions by classification of multivariate data: An example from the analysis of maps of crop yield. International Journal of Geographical Information Science, 12, 1, 83–98. DOI: 10.1080/13658819824202110.1080/136588198242021Search in Google Scholar

Lichner, Ľ., Holko, L., Zhukova, N., Schacht, K., Rajkai, K., Fodor, N., Sándor, R., 2012. Plants and biological soil crust influence the hydrophysical parameters and water flow in an aeolian sandy soil. J. Hydrol. Hydromech., 60, 309–318.10.2478/v10098-012-0027-ySearch in Google Scholar

Lichner, Ľ., Iovino, M., Šurda, P., Nagy, V., Zvala, A., Kollár, J., Pecho, J., Píš, V., Sepehrnia, N., Sándor, R., 2020. Impact of secondary succession in abandoned fields on some properties of acidic sandy soils. J. Hydrol. Hydromech., 68, 12–18.10.2478/johh-2019-0028Search in Google Scholar

Lowenberg-DeBoer, J., 1998. Economics of variable rate planting by yield potential zones. Purdue Agricultural Economics Report, May, pp. 6–7. http://www.agecon.purdue.edu/ext/paer/1998/paer0398.pdfSearch in Google Scholar

Milics, G., Kovács, A.J., Pörneczi, A., Nyéki, A., Varga, Z., Nagy, V., Lichner, Ľ., Németh, T., Baranyai, G., Neményi, M., 2017. Soil moisture distribution mapping in topsoil and its effect on maize yield. Biologia, 72, 847–853.10.1515/biolog-2017-0100Search in Google Scholar

Mulla, D.J., 1991. Using geostatistics and GIS to manage spatial patterns in soil fertility. In: Kranzler, G. (Ed.): Proceedings of the Automated Agriculture for the 21st Century. ASAE, St. Joseph, MI, USA.Search in Google Scholar

Nagy, V., Stekauerova, V., Milics, G., Lichner, L., Neményi, M., 2008. Harmonisation of different measuring methods of soil moisture used in Zitny Ostrov (SK) and Szigetkoz (HU). Cereal Res. Com., 36, 1475–1478.Search in Google Scholar

Nagy, V., Šurda, P., Lichner, Ľ., Kovács, A.J., Milics, G., 2018. Impact of soil compaction on water content in sandy loam soil under sunflower. J. Hydrol. Hydromech., 66, 416–420.10.2478/johh-2018-0036Search in Google Scholar

Neményi, M., Nagy, V., Stekauerova, V., 2008. Limiting factors of precision farming — soil compaction and precipitation. Cereal Res. Com., 36, 1859–1862.Search in Google Scholar

Orfánus, T., Stojkovová, D., Rajkai, K., Czachor, H., Sándor, R., 2016. Spatial patterns of wetting characteristics in grassland sandy soil. J. Hydrol. Hydromech., 64, 167–175.10.1515/johh-2016-0010Search in Google Scholar

Peralta, N.R., Costa, J.L., Balzarini, M., Franco, M.C., Córdoba, M., Bullock, D., 2015. Delineation of management zones to improve nitrogen management of wheat. Computers and Electronics in Agriculture, 110, 103–113.10.1016/j.compag.2014.10.017Search in Google Scholar

Raun, W.R., Solie, J.B., Johnson, G.V., Stone, M.L., Lukina, E.V., Thomason, W.E., 2001. In-season prediction of potential grain yield in winter wheat using canopy reflectance. Agronomy Journal, 93, 131–138.10.2134/agronj2001.931131xSearch in Google Scholar

Raun, W.R., Solie, J.B., Johnson, G.V., Stone, M.L., Mullen, R.W., Freeman, K.W., 2002. Improving nitrogen use efficiency in cereal grain production with optical sensing and variable rate application. Agronomy Journal, 94, 815–820.10.2134/agronj2002.8150Search in Google Scholar

Rouse, J.W., Haas, R.H., Schell, J.A., Deering, D.W., 1974. Monitoring vegetation systems in the Great Plains with ERTS. In: Freden, S.C., Mercanti, E.P., Becker, M. (Eds): Third Earth Resources Technology Satellite–1 Syposium. Volume I: Technical Presentations, NASA SP-351, NASA, Washington, D.C., pp. 309–317.Search in Google Scholar

Schwalbert, R.A., Amado, T.J.C., Reimche, G.B., 2019. Fine-tuning of wheat (Triticum aestivum, L.) variable nitrogen rate by combining crop sensing and management zones approaches in southern Brazil. Precision Agriculture, 20, 1, 56–77.10.1007/s11119-018-9581-6Search in Google Scholar

Stamatiadis, S., Schepers, J.S., Evangelou, E., Tsadilas, C., Glampedakis, A., Glampedakis, M., et al. 2018. Variable-rate nitrogen fertilization of winter wheat under high spatial resolution. Precision Agriculture, 19, 3, 570–587.10.1007/s11119-017-9540-7Search in Google Scholar

Šurda, P., Lichner, Ľ., Nagy, V., Kollár, J., Iovino, M., Horel, Á., 2015. Effects of vegetation at different succession stages on soil properties and water flow in sandy soil. Biologia, 70, 1474–1479.10.1515/biolog-2015-0172Search in Google Scholar

Vrieling, A., Meroni, M., Darvishzadeh, R., Skidmore, A.K., Wang, T., Zurita-Milla, R., Oosterbeek, K., O’Connor, B., Paganini, M., 2018. Vegetation phenology from Sentinel-2 and field cameras for a Dutch barrier island. Remote Sens. Environ., 215, 517–529. DOI: 10.1016/j.rse.2018.03.01410.1016/j.rse.2018.03.014Search in Google Scholar

Zhang, N., Wang, M., Wang, N., 2002. Precision agriculture – a worldwide overview. Computers and Electronics in Agriculture, 36, 2–3, 113–132.10.1016/S0168-1699(02)00096-0Search in Google Scholar

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