The aim of the work was to study the effect of the solid fraction of pig manure on the structural-aggregate composition and water resistance of the structural aggregates of quasi-gleyic, abraded, medium-arable, low-humus, light loamy agro-chernozem. The studies were carried out in field experiments on the experimental field of the Omsk State Agrarian University in 2016-2019. The structural state of the soil was studied in the control and in the variants with a solid manure fraction of 20 and 60 t/ha. The arable layer of agrochernozem was characterized, in general, by a good structure in terms of the ratio of aggregates of different sizes and a high degree of aggregation. However, a high content in the soil of the fraction of aggregates larger than 10 mm (20.2-53.6%) was noted. The number of agronomically valuable aggregates with a size of 0.25-10 mm was 31.6-57.7%; the coefficient of structure was 0.77-1.36. The introduction of manure into the soil had no effect on the structural and aggregate composition. There was no relationship between the dose of manure and the number of agronomically valuable aggregates. Structural aggregates of the soil of the control variant had a weighted average diameter of 5.0-9.6 mm, agronomically valuable fraction - 3.3-3.6 mm. Under the action and aftereffect of manure, these indicators changed slightly. An inverse relationship was established between the weighted average diameter of aggregates and the content of agronomically valuable fraction: r = -0.88 ± 0.13. An unfavorable property of the structure of the arable soil layer was their weak water resistance, due to the low content of humus, light granulometric composition, and susceptibility to water erosion processes. As a result of the use of pig manure, the water resistance of air-dry aggregates 3-5 mm in size increased by 67% per year of fertilizer action, and by 48-150% in the years of aftereffect relative to control. The relationship between the number of water-resistant aggregates and the dose of manure was characterized by a correlation coefficient: r = 0.57 ± 0.16.
solid fraction of pig manure, quasi-gleyic agrochernozem, structural-aggregate composition, water resistance
1. Mamontov V.G., Rodionova L.P., Artem'eva Z.S., Krylov V.A., Klyshbekova G.K. Agrogennaya i prostranstvennaya transformaciya strukturnogo sostoyaniya chernozema tipichnogo Kurskoy oblasti // Mezhdunarodnyy sel'skohozyaystvennyy zhurnal. 2019. № 5. S. 35-39. EDN: https://elibrary.ru/KLUTYO
2. Eremin D.I. Dinamika agrofizicheskih svoystv pahotnogo chernozema pod deystviem mnogoletnego ispol'zovaniya mineral'nyh udobreniy v lesostepnoy zone Zaural'ya // Agrofizik. 2018. № 9. S. 9-13. EDN: https://elibrary.ru/XQVPRJ
3. Masyutenko N.P., Kuznecov A.V., Chuyan N.A., Masyutenko M.N., Breskina G.M., Pankova T.I., Dubovik E.V., Priputneva M.A., Okuneva A.A. Vliyanie biopreparatov na pochvennoe organicheskoe veschestvo, strukturnoe i biologicheskoe sostoyanie chernozema tipichnogo slaboerodirovannogo. Kursk: FGBNU "Kurskiy FANC". 2022. 217 s. EDN: https://elibrary.ru/ORPIAW
4. Holodov V.A., Yaroslavceva N.V. Agregaty i organicheskoe veschestvo pochv vosstanavlivayuschihsya cenozov. M.: GEOS. 2021. 120 s. EDN: https://elibrary.ru/QIRPEW
5. Tarasov S.I., Kravchenko M.E., Buzhina T.A., Kogut B.M., Yashin M.A. Effektivnost' dlitel'nogo primeneniya bespodstilochnogo navoza v agrocenozah s bessmennym vozdelyvaniem kostreca // Plodorodie. 2019. № 5(110). S. 52-55. EDN: https://elibrary.ru/UMINUR
6. Babenko M.V. Vliyanie otdel'nyh frakciy svinogo navoza na produktivnost' zernotravyanogo zvena sevooborota i plodorodie dernovo-podzolistoy supeschanoy pochvy: dis. … kand. s.-h. nauk: 06.01.04. M., 2016. 181 s. EDN: https://elibrary.ru/UOUENZ
7. Suhanova I.M., Lukmanov A.A., Yapparov I.A., Aliev Sh.A., Gazizov R.R., Il'yasov M.M. Izmenenie agrofizicheskih svoystv seryh lesnyh pochv pri ispol'zovanii vermikomposta // Plodorodie. 2019. № 3. S. 29-32. EDN: https://elibrary.ru/SYWXAR
8. Tyutyunov S.I., Solovichenko V.D. Innovacionnye resheniya ispol'zovaniya svinyh stokov v kachestve organicheskih udobreniy // Vladimirskiy zemledelec. 2020. № 2(92). S. 4-10. EDN: https://elibrary.ru/DCJWCS
9. Bobrenko I.A., Shalak I.O., Goman N.V., Trubina N.K., Kormin V.P. Effektivnost' primeneniya svinogo bespodstilochnogo navoza pod zernovye kul'tury // Vestnik Omskogo gosudarstvennogo agrarnogo universiteta. 2022. № 1(45). S. 13-19. EDN: https://elibrary.ru/YZLUOO
10. Shein E.V. Kurs fiziki pochv. M.: Izd-vo MGU. 2005. 432 s. EDN: https://elibrary.ru/RBBKEB
11. Eremin D.I., Moiseev A.N. Rol' sevooborotov v strukturnoy organizacii pahotnogo sloya chernozema vyschelochennogo v usloviyah lesostepnoy zony Zaural'ya // Dostizheniya nauki i tehniki APK. 2012. № 12. S. 21-23. EDN: https://elibrary.ru/PVVMFF
12. Azarenko Yu.A. Sovremennoe sostoyanie agropochv opytnogo polya Omskogo GAU // Vestnik Omskogo gosudarstvennogo agrarnogo universiteta. 2022. № 4 (48). S. 7-18. EDN: https://elibrary.ru/BGWFBC
13. Kuz'mina T.E., Volodina T.I., Levchenkova A.N. Agroekologicheskaya ocenka dernovo-podzolistyh pochv po agrohimicheskim pokazatelyam i agrofizicheskim svoystvam v usloviyah Pskovskoy oblasti // Agrohimicheskiy vestnik. 2022. № 1. S. 17-21. EDN: https://elibrary.ru/LGOMJG
14. Zhang Y., Shengzhe E., Wang Y., Su S., Bai L., Wu C., Zeng X. Long-term manure application enhances the stability of aggregates and aggregate-associated carbon by regulating soil physicochemical characteristics. Catena. 2021;203:105342. EDN: https://elibrary.ru/FCCASW
15. Shein E.V., Milanovskiy E.Yu. Organicheskoe veschestvo i struktura pochvy: uchenie V.R. Vil'yamsa i sovremennost' // Izvestiya TSHA. 2014. Vypusk 1. S. 42-51. EDN: https://elibrary.ru/SBDGSN
16. Alekseeva Zh.L., Azarenko Yu.A. Vliyanie svinogo navoza na gumusnoe sostoyanie agrochernozema kvazigleevatogo yuzhnoy lesostepi Omskogo Priirtysh'ya // Vestnik Omskogo gosudarstvennogo agrarnogo universiteta. 2020. № 2(38). S. 22-32. EDN: https://elibrary.ru/OIPYTI



