You are here

The temporal and spatial changes in the structural and aggregate composition of typical chernozem with different anthropogenic stress

The paper aimed to establish features of formation and regularities of structural and aggregate content change in the cultivated layer of low-humus typical chernozem under constant application of various systems of fertilizing and the basic cultivation of soil in short-rotation 4-feld crop rotations with 75 % saturation with grain (winter wheat, barley or spring barley) and 25 % oilseeds (sunflower, spring rape). The research was carried out in a long stationary experiment of the Department of Agrosoil Science and Soil Microbiology of the NSC «Institute of Agriculture of NAAS» and the laboratory of agriculture of the Panfly Research Station of the National Scientifc Center «Institute of Agriculture of the National Academy of Agrarian Sciences of Ukraine». The research results reveal the efciency of different fertilizing systems (fertilizers with crop by-products) combined with tillage tools that differ in their intensity and principle of action. The fertilizing system affected the biomass formation and the tools effect involved layer-by-layer distribution of new crop biomass and formation of soil aggregates of certain shape and size, their share in the formation of structural properties formation which testifes the impact of various anthropogenic stress. The study defnes the direction of soil processes, features of structure formation for long-term implementation of different depth and methods of basic tillage with preservation and anti-erosion and intensive use of 0–30 cm tillage layer (plowing 25–27 cm – control) and long-term use of no–till technology for growing crops that vary on the principle of localization of the crops root system.
Key words: structural and aggregate composition, typical chernozem, method of basic tillage, differentiation.

 

Reference: 
1. Muha, V.D., Lazarev, V.I. (2003). Izmenenie fzicheskih svojstv chernozema tipichnogo pri ego dlitel'nom sel'skohozjajstvennom ispol'zovanii [Changes in the physical properties of typical chernozem during its long-term agricultural use]. Agrohimija [Agrochemistry], no. 1, pp. 5–8.
2. Nosko, B.S. (2006). Antropogenna evoljucіja chornozemіv [Anthropogenic evolution of chernozems]. NNC «Іnstitut gruntoznavstva ta agrohіmіi' іm. O.N. Sokolovs'kogo» [NSC «Institute of Soil Science and Agrochemistry. O.N. Sokolovsky»]. Kharkіv, 13 printing house, 239 р.
3. Tarasenko, O.A., Borуs, N.E., Carinok, N.A., Ciganova, N.G. (2020). Strukturno-agregatnij sklad chornozemu tipovomu malogumusnogo za rіznih sistem obrobіtku gruntu. Grunti Ukrai'ni, i'h stan ta zbalansovane vikoristannja: materіali Vseukrai'ns'koi' naukovo-praktichnoi' konferencіi' molodih uchenih ta specіalіstіv [Structural and aggregate composition of typical low-humus chernozem under different tillage systems. Soils of Ukraine, their condition and balanced use: Proceedings of the All-Ukrainian scientifc-practical conference of young scientists and specialists]. Kharkіv, pp. 77–79.
4. Degtjar'ov, V.V., Panasenko, O.S. (2013). Jakіsnij sklad koloi'dnih form gumusu u vodotrivkih strukturnih agregatah chornozemu tipovogo Lіvoberezhnogo Lіsostepu Ukrai'ni [Qualitative composition of colloidal forms of humus in water-resistant structural aggregates of typical chernozem of the Left-Bank Forest-Steppe of Ukraine]. Gruntoznavstvo [Pedology]. Bulletin of KhNAU, Vol. 14, no. 3–4, pp. 18–27.
5. Demidenko, O.V. (2019). Strukturnij stan chornozemu za dovgostrokovoi' postagrogennoi' transformacіi [Structural state of chernozem under long-term post-astrogenic transformatio]. Vіsnik agrarnoi' nauki [Bulletin of Agricultural Science], no. 2, pp. 13–21. DOI: 10.31073/agrovisnyk201912-02
6. Medvedjev, V.V. (2010). Nul'ovij obrobіtok gruntu v Jevropejs'kih krai'nah [No-tillage in European countries]. Kharkiv, TOV Edena, 202 p.
7. Kosolap, M.P., Krotіnov, O.P. (2011). Sistema zemlerobstva No-till [No-till farming system]. Kyiv, Logos. 252 р.
8. Sinchenko, V.V., Tanchyk, S.P., Litvinov, D.V. Vplyv riznyh sposobiv osnovnogo obrobitku g'runtu na strukturno-agregatnyj sklad chornozemu typovogo u Pravoberezhnomu Lisostepu Ukrai'ny [Influence of depending on tillage on structural and aggregatic composition of chernozem typical in the rightbank forest-steppe of Ukraine]. Naukovі dopovіdі NUBіP Ukrai'ni. Agronomіja [Scientifc reports of NULES of Ukraine. Agronomy], no. 3(79). DOI: 10.31548/ dopovidi2019.03.013
9. Medvedev, V.V. (2008). Struktura pochvy. Metody. Genezis. Klassifkacija. Jevoljucija. Geografja. Monitoring. Ohrana [Soil structure. Methods. Genesis. Classifcation. Evolution. Geography. Monitoring. Security]. Kharkiv, City typography. 406 р.
10. Soil Structure. Soil structure is defned as the combination and arrangement of primary (individual) soil particles into secondary structural units that form aggregates. Soil Health and Intensifcation of Agroecosytems. 2017. Available at: https://www.sciencedirect.com/topics/earth-and-planetary-sciences/soil-s...
11. Grant, C.A. (2005). Razlichnye vzgljady na pitatel'nye veshhestva pri tehnologii No-till [Different views on nutrients with No-till technology]. 2-aja mezhdunarodnaja konferencija po samovosstanavlivajushhemusja zemledeliju na osnove sistemnogo podhoda No-till [2nd International Conference on Self-Sustainable Agriculture based on the Notill system approach]. Dnipropetrovsk region, Agro-Soyuz corporation, pp. 84–101.
12. Buligіn, S.Ju., Velichko, V.A., Demidenko, O.V. (2016). Agrogenez chornozemu [Agrogenesis of chernozem]. Kyiv, Agricultural science, 356 р.
13. Cjuk, O.A. Centilo, L.V., Mel'nik, V.І. (2018). Strukturno-agregatnij sklad gruntu zalezhno vіd osnovnogo obrobіtku ta udobrennja [Structural and aggregate composition of the soil depending on the main tillage and fertilizer]. Bіoresursi і prirodokoristuvannja [Bioresources and nature management]. Vol. 10, no. 5–6, pp. 139–145. DOI: 10.31548/ bio2018.05.017 14. Elliott, E.T. (1986). Aggregate structure and carbon, nitrogen, and phosphorus in native and cultivated soils. Soil Sci. Soc. Am. J.V. 50, pp. 627–633. DOI: 10.2136/sssaj1986.03615995005000030017
15. Medvedev, V.V. (1994). Mehanizmy obrazovanija makroagregatov chernozemov [Mechanisms of formation of chernozem macroaggregates]. Pochvovedenie [Soil Science], no. 11, pp. 24–30. 16. Bulygin, S.Y., Demydenko, O.V., Velychko, V.A., Tkachenko, M.A., Vitvitskyi, S.V. (2020). Evaluating agrogenic structurization of soil variants under different application modes in the Forest-Steppe. Agricultural Science and Practice. 7 (3), pp. 40–54. DOI: 10.15407/agrisp7.03.040
17. Gavva, D., Novosad, K., Dehtiarov, Y. (2019). Physical characteristics of deep typical black soils of Eastern Forest-Steppe of Ukraine. London, SCIEMCEE publishing, рр. 48–58.
18. Sitnik, V.P., Medvedjev, V.V. (2007). Obrobіtok gruntu v Ukrai'nі: pluzhnij, mіnіmal'nij, nul'ovij? [Tillage in Ukraine: plow, minimum, zero?]. Vіsnik agrarnoi' nauki [Bulletin of Agricultural Science], no. 2, pp. 5–12.
19. Dragan, M.І., Gamalej, V.І., Ljubchich, O.G. (2009). Agregatnij sklad ґruntu za rіznih agrotehnologіchnih zahodіv [Aggregate composition of soil under various agro-technological measures]. Vіsnik agrarnoi' nauki [Bulletin of Agricultural Science], no. 2, pp. 11–17.
20. DSTU 4744:2007. Jakіst' gruntu [Soil quality]. Viznachannja strukturno-agregatnogo skladu sitovim metodom u modifіkacіi' N.І. Savvіnova [DSTU 4744:2007. Determination of structural and aggregate composition by sieve method in modifcation N.I. Savvinova]. Kyiv, Derzhspozhyvstandart of Ukraine, 2008, 8 р.
21. Hitrov, N.B., Chechueva, O.A. (1994). Sposob interpretacii dannyh makro- i mikrostrukturnogo sostojanija pochv [Method for interpreting data on macro- and microstructural state of soils]. Pochvovedenie [Soil science], no. 2, pp. 84–92.
22. Six, J., Bossuyt, H., Degryze, S., Denef, K. (2004). A history of research on the link between (micro) aggregates, soil biota, and soil organic matter dynamics. Soil Till. Res. Vol. 79, pp. 7–31. DOI: 10.1016/j.still.2004.03.008
23. Gustavo Curaqueo, Edmundo Acevedo, Pablo Cornejo, Alex Seguel. (2010). Tillage effect on soil organic matter, mycorrhizal hyphae and aggregates in a mediterranean agroecosystem. R.C. Suelo Nutr. Veg. 10 (1), pp. 12–21.

 

Download this article: 
AttachmentSize
PDF icon tkachenko_2_2021-166-175.pdf756.32 KB