Еffect of meteorological factors on the yield and evapotranspiration of sudan grass for silage grown as a second crop under non-irrigated and irrigated conditions
Rumen Basitov
Резюме: The aim of experiment was to establish the influence of meteorological factors during the vegetation period of sudan grass, grown as a second crop on yield and evapotranspiration The experiment was carry out during 2014 – 2017 period, on meadow – cinnamon soil in in the experimental field of the Stara Zagora Agricultural Institute. The data from irrigated (by 75% of FC) and non irrigated Sudan grass have been used. Dependencies between yield of dry biomass and meteorological factors have been established, as well as soil layer water depletion. The value of evapotranspiration and it’s formatting have been calculated (168.3– 183.7 mm without irrigation and 264.3 – 283.8 mm by optimum irrigation). The obtained yields of the sudanka strongly depend on the climatic conditions of the individual years of research, varying from 9800 kg.ha-1 to 11250 kg.ha-1.
Ключови думи: evapotranspiration; precipitation; sudan grass; temperature; yield
Цитиране: Bazitov, R. (2024). Еffect of meteorological factors on the yield and evapotranspiration of sudan grass for silage grown as a second crop under non-irrigated and irrigated conditions. Bulgarian Journal of Crop Science, 61(1) 3-12 (Bg).
Литература: (click to open/close) | Bazitov, R. (2020). Evapotranspiration in Sudan grass second culture grown under non – irrigated and op¬timal irrigated conditions Аgricultural science and technology, vol. 12, no 4, pp 335-339. Bazitov, R. (2021). Influence of the violated irrigation regime on the yield of Sudan grass grown as a second culture for the conditions of Southern Bulgaria. Bulgarian Journal of Soil Science Agrochemisty and Ecology, 55(3-4), 74-82. Bazitov, R., & Kikindonov, Tz. (2016). Evapotranspira¬tion of a Sudan grass cultivated as a second irrigation crop. Bulgarian Journal of Crop Science, 53, 85-89 (Bg). Bazitov, R., Мihaylova, M., & Еnchcev, S. (2017). Pro¬ductive capacity of Sudan grass grown as secondary crop on irrigation. Bulgarian journal of crop science, 54(5), 30-35. Ismail, S. M., E-Nakhlawy, F. S., & Basahi, J. M. (2018). Sudan grass and pearl millets productivity under different irrigation methods with fully irrigation and stresses in arid regions. Grassland science, 64, 1, pp. 29-39. https://doi.org/10.1111/grs.12179 Knowles, T. C., & Ottman, M. J. (2015). Sudangrass hay production in the irrigated deserts of Arizona and California. College of Agriculture and Life Sciences, University of Arizona (Tucson, AZ)., pp 1- 5. Klocke, N. R., Currie, Tomsicek, D., & Koehn, J. (2012). Sorghum yield response to deficit irrigation. Trans. ASABE, 55(3), 947-955. https://doi. org/10.13031/2013.41526 Matev, A., Kirchev, H., Petrova, R., Sevov, A., & Del¬ibaltova, V. (2010). Influence of мeteorological factors during vegetation period on the yield and evapotrans¬piration of Irrigated and non-Irrigated grain BALWOIS 2010 - Ohrid, Republic of Macedonia - 25, 29 May 2010, 1-6. Matev, A., & Petrova, R. (2011). Еvapotranspiration of grain maize grown in the region of Рlovdiv. Journal of mountain agriculture on the Balkans, 14, 740-752 (Bg). Pejić, B., Maksimović, L., Karagić, Đ., Mihajlović, V., & Dragović, S. (2005). Yield and evapotranspiration of Sudanese grass depending on pre-flood soil moisture. Vodoprivreda, 37, 245-249 (Sr). Slanev, S., & Enchev, S. (2014). Influence of variety and crop productivity of sorghum x Sudan grass hybrids in flowering stage. Bulgarian Journal of Agricultural Science, 20(1), pp. 182-185. Taha, A. M., Salemand, A. K., & Mekhaile, N. E. G. (2019). Maximizing land and water productivity of Sudan grass undersprinkler irrigation in sandy soil. Journal of Soils and Crops, 29, 207-217.
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| Дата на публикуване: 2024-02-27
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