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Fertilizers have a significant influence on the forming of the circulation of substances and energy in soils, agroecological state of lands, as well as the quality of agricultural products. Fertilizers and ameliorants, as some of the most effective means of restoring soil fertility, have a considerable influence on the agroecological condition and agrochemical indicators of arable soils in the process of their agricultural usage. The article researched such ecological aspects of using mineral fertilizers as changing the chlorine content in soil solution, potassium, calcium and magnesium content in soil intake complex as well as gross sodium content in soil after continuous usage of fertilizers in field crop rotation. The experimental part of the work was done in continuous stationary experiment in the field rotation of grain and beet crops with a set of crops traditional for the region defined in 1964. It was defined that the chlorine of fertilizers does not produce stable compounds in soil and migrates a lot in its profile. Using fertilizers in field crop rotation in a dose of 45–135 kg of K2O/ha does not contribute to chlorine increase in physiologically active 1.5 m deep soil layer. At continuous fertilizer usage, there have been essential changes in the ashed fertile soil in the composition of its intake complex – the number of calcium and magnesium exchangeables has decreased, which entails worsening of the physical and chemical qualities and as a result leads to decreasing fertility level. The research results have evinced that the ratio between magnesium and potassium in a soil intake complex drops to 2.6–3.6 as a result of continuous potassium with fertilizer usage, according to the checking data without fertilizer application it makes up – 4.2, which corresponds to optimal ratio of Mg : K = 2–5.
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124--133
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Bibliogr. 29 poz., rys., tab.
Twórcy
autor
- Uman National University of Horticulture, 1 Instytutska St., Uman 20300 Ukraine
autor
- Uman National University of Horticulture, 1 Instytutska St., Uman 20300 Ukraine
autor
- Uman National University of Horticulture, 1 Instytutska St., Uman 20300 Ukraine
- Uman National University of Horticulture, 1 Instytutska St., Uman 20300 Ukraine
autor
autor
- Uman National University of Horticulture, 1 Instytutska St., Uman 20300 Ukraine
autor
- Uman National University of Horticulture, 1 Instytutska St., Uman 20300 Ukraine
autor
- Uman National University of Horticulture, 1 Instytutska St., Uman 20300 Ukraine
autor
- Uman National University of Horticulture, 1 Instytutska St., Uman 20300 Ukraine
autor
- Uman National University of Horticulture, 1 Instytutska St., Uman 20300 Ukraine
autor
- Uman National University of Horticulture, 1 Instytutska St., Uman 20300 Ukraine
Bibliografia
- 1. Ahmad, N., Usman, M., Ahmad, H., Sabir, M., Farooqi, Z.U.R., Shehzad, M. 2023. Environmental Implications of phosphate-based fertilizer industrial waste and its management practices. Environmental Monitoring and Assessment, 195. http://dx.doi.org/10.1007/s10661-023-11958-4.
- 2. Chandini, Kumar, R., Kumar, R., Prakash, O. 2019. The impact of chemical fertilizers on our environment and ecosystem. Research Trends in Environmental Sciences, 69–86.
- 3. Hospodarenko, H.M. 2015. Fertilizer application system. Tov “Sik Grup Ukraina”, Kyiv.
- 4. Hospodarenko, H.M. 2018. Fertilizer application system. Tov “Stk Grupp Ukraina”, Kyiv.
- 5. Hospodarenko, H.M., Prokopchuk I.V. 2014. Transformation of soil acid and basic qualities under the condition of continuous fertilizer usage in field croprotation. Uman National University of Horticulture Bulletin, 1, 8–12.
- 6. Hospodarenko, N.M., Nikitina, O.V., Kryvda, Yu.I. 2013. The content and supplies of potassium moving compounds in the soil after continuous fertilizer application in a field crop rotation. The Bulletin of Sumy National Agrarian University, 11, 51–56.
- 7. Khomutova, E. 2021. The problem of rational use and protection of agricultural land. E3S Web of Conferences 273, https://doi.org/10.1051/e3sconf/202127306012
- 8. Kirichenko, K. 2020. Problems of rational use of agricultural lands in Ukraine. Economic Analysis. 41–46. http://dx.doi.org/10.35774/econa2020.02.041.
- 9. Kosolap, M.P., Krotinov, O.P. 2014. Using fertilizers after sowing. Exclusive Technologies, 4, 12–15.
- 10. Krasilnikov, P., Taboada, M.A., Amanullah. 2022. Fertilizer use, soil health and agricultural sustainability. Agriculture, 12(4), 462. https://doi.org/10.3390/agriculture12040462
- 11. La Techniche di coltivazione Delle Principali colture agroindustriali. A cura di: Agronomica, 1995, Edagricole, Bologna.
- 12. Lukmanov, A.A., Minnullin, R.M. 2017. Acid soils liming in the republic of tatarstan using local lime fertilizers. Agrochemical Bulletin, 5(5), 37–41.
- 13. Lytvynovych, A.V., Kovleva, A.O., Khomiakov, Yu.V., Pavlova, O. Yu., Lavryshchev, A.V. 2017. Varietal reaction of spring wheat to liming on condition of various levels of nitrogen nutrition. Agrochemist, 5, 78–85.
- 14. Maitra, S., Palai, J., Jena, J. 2020. Modern concepts of fertilizer application. Advanced Agriculture Publisher: New Delhi Publishers, New Delhi, 388–403. http://dx.doi.org/10.30954/NDP-advagr.2020.20
- 15. Markoski, M.G., Mitkova, T., Tanaskovic, V., Spalevic, V. 2018. Contents of exchangeable cautions of soils formed upon limestones and dolomites. Journal of Environmental Protection and Ecology, 19(1), 127–138.
- 16. Mazur, H.A., Tkachenko, M.A., Shkliar, V.M. 2016. The impact of lime application when using different fertilizer systems in crop rotation on humus balance in grey forest soil. The Bulletin of Agrarian Science, 10, 5– 11.
- 17. Sánchez, O., Aspé, E., Martí, M.C., Roeckel, M. 2004. The effect of sodium chloride on the twostep kinetics of the nitrifying process. Water Environment Research, 76, 73–80. https://doi.org/10.2175/106143004x141609
- 18. Prokopchuk, I.V., Nikitina, O.V. 2017. Ecological and agrochemical assessment of continuous potassium fertilizer application in a field crop rotation. Collection of Scientific Works of Uman National University of Agriculture, 91, 1, 187–195.
- 19. Serpil, S. 2012. An agricultural pollutant: chemical fertilizer. International Journal of Environmental Science and Development, 3(1), 77–80.
- 20. Schollenberger, C.J. and Simon, R.H. 1945. Determination of exchange capacity and exchangeable bases in soil-ammonium acetate method. Soil Science, 59, 13–Т24. https://dx.doi.org/10.1097/000110694-194501000-00004
- 21. Shelke D.B., Nikalje, G.C., Nikam, T.D., Maheshwari, P., Punita, D.L., Rao, K.R.S.S., Kishor, P.B.K., Suprasanna, P. 2019. Chloride (Cl-) uptake, transport, and regulation in plant salt tolerance. Molecular Plant Abiotic Stress, Wiley, UK. https://doi.org/10.1002/9781119463665.ch13
- 22. Souri, M.K. 2010. Effectiveness of chloride compared to 3,4 dimethylpyrazole phosphate on nitrification inhibition in soil. Communications in Soil Science and Plant Analysis, 41, 1769–1778. http://dx.doi.org/10.1080/00103624.2010.489139
- 23. Sypko A.O., Strilets` O.P., Zatskrkovna N.S., Kostashchuk M.V. 2017. Optimizing physical and chemical qualities of typical leached,slightly acid soil when using defecate obtained according to a new technology. Sugar beets, 1, 11–13.
- 24. Tomasic M., Zgorelec Z., Jurisic A., Kisic, I. 2013. Caution exchange capacity of dominant soil types in the Republic of Croatia. Journal of central European agriculture, 14(3), 937–951. http://dx.doi.org/10.5513/JCEA01/14.3.1286
- 25. Ulko, Y. 2022. Reproduction management of soil fertility for innovative approach in agromelioration of Ukraine. Technology audit and production reserves, 4, 24–32. http://dx.doi.org/10.15587/2706-5448.2022.265575
- 26. Vodianitskii Yu.N., Makarov, M.I. 2017. Organochlorine compounds and the biogeochemical cycle of chlorine in soils: A review, Eurasion Soil Science, 50(9), 1025–1032. http://dx.doi.org/10.1134/S1064229317090113
- 27. Waithaka, S. 2023. Effects of agriculture on the environment. International Journal of Agriculture, 8, 10–20. http://dx.doi.org/10.47604/ija.1933
- 28. Walling, E., Vaneeckhaute, C. 2022. Nitrogen fertilizers and the environment. nitrate handbook: environmental, agricultural and health effects. Publisher: CRC PRESS Taylor and Francis. http://dx.doi.org/10.1201/9780429326806-8
- 29. Wang, H.Y., Jian-Min, Z., Chang-Wen, D., Xiao-Qin, C. 2010. Potassium fractions in soils as affected by monocalcium phosphate, ammonium sulfate, and potassium chloride application. Pedosphere, 20, 368–377. https://doi.org/10.1016/S1002-0160(10)60026-4
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-2704ceee-43f5-43c5-926b-17479919a83b
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