ZONING OF THE SOUTHERN RUSSIA TERRITORY ACCORDING TO HEAT AND MOISTURE SUPPLY FOR THE COTTON INTRODUCTION
- Land reclamation, water manadgement and agrophysics
Purpose: to analyze the runoff-regulating role of the underlying surface of loose (ploughed field) and compacted (winter crops, perennial grasses) arable land.
Materials and methods. Meltwater and rainwater runoff, as well as soil erosion, were measured at permanent and temporary runoff plots. Physical and hydro-physical soil properties were determined using methods standard in soil science and agriculture.
Results. The underlying surface (0–30 cm soil layer with vegetation and root system) was studied in long-term research (1970–2026) in field crop rotation systems in the ordinary chernozem zone of southern Russia. It was determined that, depending on the method of soil cultivation (moldboard, subsurface, chisel, surface, no-till) and its preparation for winter wheat sowing, the number of mechanized operations, and the crop grown in the field, the resulting surfaces have different physical and hydro-physical properties, which will determine the intensity of erosion processes (melt and rainwater runoff, soil erosion). The intensity of agrogenic degradation of the soil cover and its fertility will depend on their water-retaining and soil-protecting role.
Conclusions. Strengthening the anti-erosion role of the underlying surface is possible through the ecotone principle of constructing soil-protection system by saturating it with techniques, technologies, and measures that ensure control over erosion processes. These may include specialized agricultural techniques (slitting, soil deepening, mole control, etc.), the creation of a forest plantation system, their reinforcement with simple hydraulic structures (embankments, canals, dams), as well as scientifically based spatial combinations of underlying surfaces with different properties (strip placement of agricultural crops and agricultural backgrounds).
doi: 10.31774/2712-9357-2026-16-3-133-147
underlying surface, soil density, porosity, permeability, meltwater runoff, soil losses, ecotone
Poluektov E. V., Petrova I. A. Protection of soils from erosion on an ecotone basis. Land Reclamation and Hydraulic Engineering. 2026;16(3):133–147. (In Russ.). https://doi.org/10.31774/2712-9357-2026-16-3-133-147.
1. Solovyova V.V., 2014. Chto takoe «ekoton»? [What is “ecotone”?]. Samarskiy nauchnyy vestnik [Samara Scientific Bulletin], no. 2(7), pp. 116-119, EDN: SQLMTD. (In Russian).
2. Zaletaev V.S. [ed.], 1997. Ekotony v biosfere [Ecotones in Biosphere]. Russian Academy of Sciences, Institute of Water Problems, Russian Academy of Natural Sciences, Moscow, 329 p. (In Russian).
3. Hufkens K., Scheunders P., Ceulemans R., 2009. Ecotones in vegetation ecology: methodologies and definitions revisited. Ecological Research, vol. 24, iss. 5, pp. 977-986, DOI: 10.1007/s11284-009-0584-7, EDN: MZQBUZ.
4. Cui F., Wang B., Zhang Q., Tang H., De Maeyer P., Hamdi R., Dai L., 2021. Climate change versus land-use change – What affects the ecosystem services more in the forest-steppe ecotone. Science of the Total Environment, vol. 759, p. 143525, DOI: 10.1016/j.scitotenv.2020.143525, EDN: BUTWHV.
5. Korlyakov K.A., Gashev S.N., 2022. Classification of ecotones in three-dimensional space: horizontal, vertical and cross-horizontal ecotones. IOP Conference Series: Earth and Environmental Science, vol. 981, 032037, DOI: 10.1088/1755-1315/981/3/032037, EDN: OJYCKH.
6. Piras F., Bazzurro A., Fiore B., Romano F., Santoro A., 2023. Assessment of ecotone changes over the last six decades in two cultural landscapes: The case of the Prosecco Hills of Conegliano and Valdobbiadene UNESCO site and of the Olive Groves of the Slopes between Assisi and Spoleto GIAHS site. Biodiversity and Conservation, vol. 34, no. 9, pp. 3193-3210, DOI: 10.1007/s10531-023-02725-5, EDN: SYBVEZ.
7. Dorogaya E.S., Suleimanov R.R., Saifullin I.Yu., Minnegaliev A.O., Zaykin S.V., 2022. Erozionnaya ustoychivost' tselinnogo chernozema i chernozema s klassicheskim i No-Till vidami obrabotki v usloviyakh modeliruyemogo sil'nogo livnya [Erosion resistance of virgin chernozem and chernozem with classical and no-till tillage under the simulated heavy rainfall]. Sotsial'no-ekologicheskie tekhnologii [Social and Environmental Technologies], vol. 12, no. 2, pp. 155-170, DOI: 10.31862/2500-2961-2022-12-2-155-170, EDN: FHAVBI. (In Russian).
8. Ivonin V.M., Voskoboinikova I.V., 2021. Landshaftnaya agrolesomelioratsiya. Teoreticheskie issledovaniya i polevye eksperimenty: monografiya [Landscape Agroforestry. Theoretical Studies and Field Experiments: monograph]. Novocherkassk Engineering and Land Reclamation Institute – branch of the Don State Agrarian University, Novocherkassk, Lik Publ., 174 p., EDN: CQJOPQ. (In Russian).
9. Shvebe G.I., 1981. Teoreticheskie osnovy eroziovedeniya: monografiya [Theoretical Foundations of Erosion Studies: monograph]. Kyiv, Odessa, Higher School Publ., 222 p. (In Russian).
10. Vadyunina A.F., Korchagina Z.A., 1986. Metody issledovaniya fizicheskikh svoystv pochv [Methods for Studying the Physical Properties of Soils]. Moscow, Agropromizdat Publ., 415 p., EDN: DYLHHL. (In Russian).
11. Poluektov E.V., Batishchev I.V., 2021. Monitoring vodopronitsaemosti v erosionnykh protsessakh pri razlichnykh sposobakh obrabotki chernozemov yuga Rossii [Monitoring of water permeability and erosion processes at different methods of primary tillage of chernozem in southern Russia]. Nauchnyy zhurnal Rossiyskogo NII problem melioratsii [Scientific Journal of the Russian Scientific Research Institute of Land Improvement Problems], vol. 11, no. 2, pp. 158-173, DOI: 10.31774/2222-1816-2021-11-2-158-173, EDN: PVJCCU. (In Russian).
12. Surmach G.P., 1976. Vodnaya eroziya i bor'ba s ney [Water Erosion and Its Control]. Leningrad, Gidrometeoizdat Publ., 254 p. (In Russian).
13. Poluektov E.V., Balakay G.T., 2023. Erozionnye protsessy pri stoke talykh vod na yuge yevropeyskoy chasti Rossii [Erosion processes during the meltwater runoff in the south of the European part of Russia]. Melioratsiya i gidrotekhnika [Land Reclamation and Hydraulic Engineering], vol. 13, no. 1, pp. 1-18, DOI: 10.31774/2712-9357-2023-13-1-1-18, EDN: CSYGMP. (In Russian).
14. Poluektov E.V., 2020. Eroziya pochv i plodorodie: monografiya [Soil Erosion and Fertility: monograph]. Novocherkassk Engineering and Land Reclamation Institute – branch of the Don State Agrarian University, Novocherkassk, Lik Publ., 229 p., EDN: IIILMX. (In Russian).
Funding source: own funds.