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Study of the Impact of Changes in the Acid-Base Buffering Capacity of Surface Sod-Podzolic Soils

Treść / Zawartość
Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The results of scientific research aimed at studying the impact of land use on the acid–base buffering capacity of gleyed sod–podzolic soils in the Carpathian region were analyzed. The transformation of these indicators was investigated using a comprehensive approach that encompasses the influence of various factors, such as agrotechnological methods and atmospheric precipitation, on the acidity and alkalinity parameters of soil solution. The research results confirm a significant influence of these factors on the acid–base characteristics, emphasizing the need for the development of a scientifically grounded approach to managing fertility and stability of the soil environment in agricultural ecosystems of the Carpathians. The study opens the perspectives for optimizing agrotechnologies and developing effective measures for the rational use of soil resources in this region.
Rocznik
Strony
73--79
Opis fizyczny
Bibliogr. 31 poz., tab.
Twórcy
  • Vasyl Stefanyk Precarpathian National University, Shevchenko Str., 57, Ivano–Frankivsk, 76018, Ukraine
  • Sumy National Agrarian University, H. Kondratieva Str., 160, Sumy, 40021, Ukraine
  • National Scientific Agricultural Library of NAAS, Heroiv Оborony Str., 10, Kyiv, 03127, Ukraine
autor
  • Kharkiv State Biotechnological University, Alchevskikh Str., 44, Kharkiv, 61000, Ukraine
  • Kharkiv State Biotechnological University, Alchevskikh Str., 44, Kharkiv, 61000, Ukraine
  • Sumy National Agrarian University, H. Kondratieva Str., 160, Sumy, 40021, Ukraine
autor
  • Sumy National Agrarian University, H. Kondratieva Str., 160, Sumy, 40021, Ukraine
  • Sumy National Agrarian University, H. Kondratieva Str., 160, Sumy, 40021, Ukraine
  • Sumy National Agrarian University, H. Kondratieva Str., 160, Sumy, 40021, Ukraine
  • Sumy National Agrarian University, H. Kondratieva Str., 160, Sumy, 40021, Ukraine
Bibliografia
  • 1. Balyuk S.A., Medvedev V.V., Miroshnychenko M.M. 2012. Ecological condition of soils in Ukraine. Ukrainian Geographic Journal, 2, 38–42.
  • 2. Bascompte J. 2010. Ecology. Structure and dynamics of ecological networks. Science, 329, 765–766.
  • 3. Frid A.S. 2008. Current state of the issue of standardization of statics and dynamics of soil properties indicators. Agrochemistry, 8, 5–12.
  • 4. Gobat J.–M., Aragno., Matthey W. 2004. The Living Soil. Fundamentals of Soil Science and Soil Biology. Science Publishers, 602.
  • 5. Heger J., Imfeld G., Mitchell E. 2012. Bioindication in soil ecosystems european. Journal of Soil Biology, 49, 1–118.
  • 6. Hryhoriv Y., Butenko A., Kozak M., Tatarynova V., Bondarenko O., Nozdrina N., Stavytskyi A., Bordun R. 2022. Structure components and yielding capacity of Camelina sativa in Ukraine. Agriculture and Forestry, 68(3), 93–102. https://doi.org/10.17707/ AgricultForest.68.3.07
  • 7. Hryhoriv Ya., Karbivska U., Turak O., Chernevyi Y., Oliinyk V., Koliadzhyn I., Savchyn A., Dmytryk P., Gniezdilova V., Asanishvili N. 2023. Study of the qualitative state of podzolized black soil in shortterm crop rotations. Ecological Engineering and Environmental Technology, 24(7), 98–104. https:// doi.org/10.12912/27197050/169752
  • 8. Ilyin V.B. 1995. Evaluation of soil buffering capacity towards heavy metals // Agrochemistry, 10, 109–113.
  • 9. Karbivska U., Butenko A., Kozak M., Filon V., Bahorka M., Yurchenko N., Pshychenko, O., Kyrylchuk, K., Kharchenko, S., Kovalenko I. 2023. Dynamics of productivity of leguminous plant groups during long–term use on different nutritional backgrounds. Journal of Ecological Engineering, 24(6), 190–196. https://doi. org/10.12911/22998993/162778
  • 10. Karbivska U., Kurgak V., Gamayunova V., Butenko A., Malynka L., Kovalenko I., Onychko V., Masyk I., Chyrva A., Zakharchenko E., Tkachenko O., Pshychenko O. 2020. Productivity and quality of diverse ripe pasture grass fodder depends on the method of soil cultivation. Acta Agrobotanica, 73(3), 1–11. https://doi.org/10.5586/aa.7334
  • 11. Karpenko O., Butenko Y., Rozhko V., Sykalo О., Chernega T., Kustovska A., Onychko V., Tymchuk D.S., Filon V., Novikova A. 2022. Influence of agricultural systems on microbiological transformation of organic matter in wheat winter crops on typical black soils. Journal of Ecological Engineering, 23(9), 181–186. https://doi. org/10.12911/22998993/151885
  • 12. Kirylchuk A.A., Bonishko O.S. 2011. Soil Chemistry: Fundamentals and Laboratory Work. Lviv: Ivan Franko National University of Lviv, 354.
  • 13. Kovalenko V., Kovalenko N., Gamayunova V., Butenko A., Kabanets V., Salatenko I., Vandyk, M. 2024a. Ecological and technological evaluation of the nutrition of perennial legumes and their effectiveness for animals. Journal of Ecological Engineering, 25(4), 294–304. https://doi. org/10.12911/22998993/185219
  • 14. Kovalenko V., Tonkha O., Fedorchuk M., Butenko A., Toryanik V., Davydenko G., Bordun R., Kharchenko S., Polyvanyi A. 2024b. The influence of elements of technology and soil–climatic factors on the agrobiological properties of Onobrychis viciifolia. Ecological Engineering & Environmental Technology.
  • 15. Kuznetsov N.B., Alexeeva S.A., Shashkova G.V. 2007. Buffering capacity of podzolic and podzolic–gley soils to sulfuric and nitric acids. Soil Science, 4, 389–403.
  • 16. Medvedev V.V. 2012. Soil Monitoring in Ukraine. Results. Tasks. (2nd revised and supplemented edition). Kharkiv: City Printing House, 536.
  • 17. Medvedev V.V., Laktionova T.N. 2012. Analysis of the experience of European countries in conducting soil cover monitoring (review). Soil Science, 1, 106–114.
  • 18. Nadtochiy P.P. 1998. Soil acidity–buffering capacity as a criterion of agroecological state, Soil Science, 10, 18–24.
  • 19. Nadtochiy P.P., Myslyva T.M., Volvach F.V. 2010. Soil ecology: Monograph. Zhytomyr: Publishing house “Ruta”, 473.
  • 20. Nazarova F.I. 1996. Influence of fertilizers on the buffering properties of typical chernozem carbonate. Agrochemistry, 4, 34–39.
  • 21. Nelson P.N., Su N. 2010. Soil pH buffering capacity: a descriptive function and its application to some acidic tropical soils. Australian Journal of Soil Research, 48, 201–207.
  • 22. Radchenko M., Trotsenko V., Butenko A., Hotvianska A., Gulenko O., Nozdrina N., Karpenko O., Rozhko V. 2024. Influence of seeding rate on the productivity and quality of soft spring wheat grain. Agriculture and Forestry, 1.
  • 23. Radchenko M., Trotsenko V., Butenko A., Masyk I., Bakumenko O., Butenko S., Dubovyk O., Mikulina M. 2023. Peculiarities of forming productivity and quality of soft spring wheat varieties. Agriculture and Forestry, 69(4), 19–30. https://doi. org/10.17707/AgricultForest.69.4.02
  • 24. Rusakova E.S., Ishkova I.V., Tolpeshta I.I., Sokolova T.A. 2012. Acid-Base Buffering of Soils in Transitional and Transitional-Accumulative Positions of Undisturbed Southern-Taiga Landscapes. Eurasian Soil Science, 5, 562–573.
  • 25. Smaha I., Kazymyr I. 2022. Buffer curves and indicators of acid–base buffering of brown podzolic soils of Eastern Carpathian Foothills under different terrains. The bulletin of Lviv National University of Nature Management, 26, 163–169.
  • 26. Symochko L., Patyka V., Symochko V., Kalinichenko A. 2015. Soil Microbial Activity and Functional Diversity in Primeval Beech Forests. Journal of Earth Science and Engineering, 5(6), 363–371. https://doi.org/10.17265/2159–581X/2015.06.004
  • 27. Truskavetskiy R.S., Tsapko Yu.L. 2003. Assessment indicators of soil acidity–buffering capacity. Agrochemistry and Soil Science, 64, 12–16.
  • 28. Truskavetskiy R.S., Tsapko Yu.L. 2016. Fundamentals of soil fertility management, Kharkiv, 388.
  • 29. Tsapko Yu.L. 2004. Scientific monitoring of soils based on graphical models of buffering capacity. Bulletin of Dokuchaev Kharkiv National Agrarian University, 1, 114–117.
  • 30. Tsyuk O., Tkachenko M., Butenko A., Mishchenko Y., Kondratiuk I., Litvinov D., Tsiuk Y., Sleptsov Y. 2022. Changes in the nitrogen compound transformation processes of typical chernozem depending on the tillage systems and fertilizers. Agraarteadus, 33(1), 192–198. https://doi.org/10.15159/jas.22.23
  • 31. Zhang S., Wang R., Cai J., Zhang Y., Li H., Huang Sh., Jiang Y. 2016. Impact of fertilization practices on pH and the pH buffering capacity of calcareous soil. Soil Science and Plant Nutrition, 62(5–6), 432–439.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-c4216af0-58fa-4227-be87-5f672fab7daa
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