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Agroecological assessment of agricultural soils fertility in the Iglinsky region, the Russian Federation

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Języki publikacji
EN
Abstrakty
EN
The article provides an assessment of soil fertility indicators of agricultural lands in the northern forest-steppe of the Republic of Bashkortostan within the Iglinsky region (Russian Federation). The content of humus, mobile phosphorus, exchangeable potassium, the thickness of the humus horizon, granulometric composition, morphological properties and soil washout were studied. It was revealed that the soil-forming process occurs on rocks of different ages and genesis, such as diluvial carbonate and carbonate-free clays and heavy loams, limestone eluvium, sandstone eluvium and alluvial deposits, which determine the diversity of the soil cover. In the study area, water erosion processes are developing, influenced by anthropogenic and natural factors such as planar and linear washout on slopes with a steepness of more than 2-3° and high ploughing of agricultural land. In terms of humus content, low-humus and medium-humus soils are widespread, accounting for 45.5 and 40%, respectively. The soil map was corrected and digitised to identify the main types and subtypes of soils, indicating the varieties at a scale of 1: 25,000. Digitised maps, taking into account the current state of soil fertility, are used to develop projects for inter-farm and intra-farm land management of organisations of the agro-industrial complex, state cadastral valuation of agricultural land, determination of land tax and development of measures to improve soil fertility.
Wydawca
Rocznik
Tom
Strony
200--205
Opis fizyczny
Bibliogr. 28 poz., rys., tab., wykr.
Twórcy
  • Federal State Budgetary Educational Establishment of Higher Education “Bashkir State Agrarian University”, 50 Let Oktyabrya St, 34, Ufa, Republic of Bashkortostan, 450001, Russian Federation
  • Federal State Budgetary Educational Establishment of Higher Education “Bashkir State Agrarian University”, 50 Let Oktyabrya St, 34, Ufa, Republic of Bashkortostan, 450001, Russian Federation
  • Federal State Budgetary Educational Establishment of Higher Education “Bashkir State Agrarian University”, 50 Let Oktyabrya St, 34, Ufa, Republic of Bashkortostan, 450001, Russian Federation
  • Federal State Budgetary Educational Establishment of Higher Education “Bashkir State Agrarian University”, 50 Let Oktyabrya St, 34, Ufa, Republic of Bashkortostan, 450001, Russian Federation
Bibliografia
  • ABDRAKHMANOV R.F., ABZALOV R.M., ASPHANDIYAROV A.Z., BAIMBETOVA L. R., BALKOV V.A., BAYANOV M.G., ..., YAPAROV I.M. 2005. Atlas Respubliki Bashkortostan [Atlas of the Republic of Bashkortostan]. Omsk. Izdatel’stvo Omskaya kartograficheskaya fabrika.
  • AKHTYRTSEV B.P., YABLONSKIKH L.A. 1986. Zavisimost’ sostava gumusa ot granulometricheskogo sostava v pochvakh lesostepi [Dependence of humus composition on particle size distribution in forest-steppe soils]. Pochvovedenie. No. 7 p. 114–121.
  • ASYLBAEV I.G., GABBASOVA I.M., KHABIROV I.K., GARIPOV T., LUKMANOV N., RAFIKOV B.V., KISELEVA A., KHUZHAKHMETOVA G., MUKHAME-DYANOVA A., MUSTAFIN R.F. 2018. Bioaccumulation of chemical elements by old-aged pine trees in the Southern Urals. Journal of Engineering and Applied Sciences. Vol. 13(11) p. 8746–8751.
  • ASYLBAEV I.G., KHABIROV I.K. 2016. The contents of alkali and alkaline earth metals in soils of the Southern Cis-Ural region. Eurasian Soil Science. Vol. 49(1) p. 24–32. DOI 10.1134/s1064229316010026.
  • CHEKMAREV P.A., SOROKIN I.B., KATAEV M.Y. 2017. Agroekologicheskoye sostoyaniye pashni Tomskoy oblasti i perspektivy metodov distantsionnogo zondirovaniya zemel’ [Agroecological state of arable land in the Tomsk region and the prospects for the use of methods for remote sensing of land]. Rasteniyevodstvo. Vol. 5 p. 7–10.
  • CHEN S., ARROUAYS D., ANGERS D.A., CHENU C., BARRÉ P., MARTIN M.P., SABY N.P.A., WALTER C. 2019. National estimation of soil organic carbon storage potential for arable soils: A data-driven approach coupled with carbon-landscape zones. Science of the Total Environment. Vol. 666 p. 355–367. DOI 10.1016/j.scitotenv.2019.02.249.
  • COXHEAD I., ØYGARD R. 2007. Land degradation. In: Solutions for the world’s biggest problems: Costs and benefits. Ed. B. Lomborg. Cambridge. Cambridge University Press p. 146–161.
  • DE ORO L.A., COLAZO J.C., AVECILLA F., BUSCHIAZZO D.E., ASENSIO C. 2019. Relative soil water content as a factor for wind erosion soils with different texture and aggregation. Aeolian Research. Vol. 37 p. 25–31. DOI 10.1016/j.aeolia.2019.02.001.
  • DELLA CHIESA S., LA CECILIA D., GENOVA G., BALOTTI A., THALHEIMER M., TAPPEINER U., NIEDRIST G. 2019. Farmers as data sources: Cooperative framework for mapping soil properties for permanent crops in South Tyrol (Northern Italy). Geoderma. Vol. 342 p. 93–105. DOI 10.1016/j.geoderma.2019.02.010.
  • DMITRIEV E.A. 1995. Mathematical statistics in soil science. Moscow. Publishing House of Moscow State University. ISBN 5-211-02930-5 pp. 320.
  • DOSPEKHOV B.A. 1985. Methods of field experience. Moscow. Agropromizdat. ISBN 9785458235402 pp. 315.
  • EREMIN D.I., GRUZDEVA N.A. 2018. Agrogennyye izmeneniya plotnosti serykh lesnykh pochv v severnom Zaural'ye [Agrogenic changes in water permeability of light gray forest soils in the Northern Trans-Urals]. Sibirskiy vestnik sel'skokhozyaystvennoy nauki. Vol. 4(76). p. 32–38. DOI 10.26898/0370-8799-2017-5-2.
  • GABBASOVA I.M. 2004. Degradatsiya i rekul’tivatsiya pochv Bashkortostana [Degradation and reclamation of soils in Bashkortostan]. Ufa. Gilem. ISBN 5-7501-0489-3 pp. 283.
  • GABBASOVA I.M., SULEIMANOV R.R., KHABIROV I.K., KOMISSAROV M.A., FRUEHAUF M., LIEBELT P., GARIPOV T.T., SIDOROVA L.V., KHAZIEV F. K. 2016. Temporal changes of eroded soils depending on their agricultural use in the Southern Cis-Ural region. Eurasian Soil Science. Vol. 49(10) p. 1204–1210. DOI 10.1134/s1064229316100070.
  • GOST 26204-91. Pochvy. Opredeleniye podvizhnykh soyedineniy fosfora i kaliya po metodu Chirikova v modifikatsii TSINAO [Soils. Determination of mobile compounds of phosphorus and potassium by Chiricov method modified by CINAO]. Moskva. Komitet standartizatsii i metrologii SSSR pp. 8.
  • GOST 26213-91. Pochvy. Metody opredeleniya organicheskogo veshchestva [Soils. Methods for determination of organic matter]. Moskva. Komitet standartizatsii i metrologii SSSR pp. 7.
  • GOST 26483-85. Pochvy. Prigotovleniye solevoy vytyazhki i opredeleniye yeye pH po metodu TSINAO [Soils. Preparation of salt extract and determination of its pH by CINAO method]. Moskva. Komitet standartizatsii i metrologii SSSR pp. 6.
  • IVANOVA T.N., BAGAUTDINOV F.Y., ASYLBAEV I.G. 2015. Changes in the content and composition of humus in leached chernozems (Luvic Chernozems) of the Republic of Bashkortostan's Southern forest-steppe during agricultural use. Bulletin of the Bashkir State Agrarian University. Vol. 1(33) p. 19–23.
  • KHAZIEV F.K., MUKATANOV A.K., KHABIROV I.K., KOLTSOVA G.A., GABBASOVA I.M., RAMAZANOV R.Y. 1995. Soils of Bashkortostan. Vol. 1. Ufa. Gilem. ISBN 5-7501-0004-9 pp. 384.
  • KIANI-HARCHEGANI M., SADEGHI S.H., SINGH V.P., ASADI H., ABEDI M. 2019. Effect of rainfall intensity and slope on sediment particle size distribution during erosion using partial eta squared. Catena. Vol. 176 p. 65–72. DOI 10.1016/j.catena.2019.01.006.
  • KIRILLOVA N.P. 2018. Kompleksnyy podkhod k pochvennoy kartografii na osnove tsifrovoy morfometrii i kombinatornogo analiza [An integrated approach to soil cartography based on digital morphometry and combinatorial analysis]. PhD Thesis. Moskva. MGU imeni M.V. Lomonosova pp. 264.
  • KOTCHENKO S.G., EREMIN D.I., GRUZDEVA N.A. 2018. Degumifikatsiya pashni, yeye prichiny i mery predotvrashcheniya v Tyumenskoy oblasti. V: Plodorodiye pochv i otsenka produktivnosti zemledeliya. VIII Sibirskiye Pryanishnikovskiye agrokhimicheskiye chteniya: materialy mezhdunarodnoy nauch.-prakt. konf. [Dehumification of arable land, its causes and prevention measures in the Tyumen region. Soil fertility and assessment of agricultural productivity. VIII Siberian Pryanishnikov agrochemical readings. Materials of international scientific-practical Conference]. 18–20.07.2018 Tyumen. Tyumen. GAU Severnogo Zaural’ya p. 302–306.
  • LITVINOV Y.A. 2018. Inventarizatsiya, garmonizatsiya i analiz raznorodnykh pochvenno-geograficheskikh dannykh dlya tseley agroekologicheskogo monitoringa: na primere Rostovskoy oblasti [Inventory, harmonisation and analysis of heterogeneous soil-geographical data for agroecological monitoring (on the example of the Rostov region)]. PhD Thesis. Moskva. MGU imeni M.V. Lomonosova pp. 147.
  • MILLER G.A., REES R.M., GRIFFITHS B.S., BALL B.C., CLOY J.M. 2019. The sensitivity of soil organic carbon pools to land management varies depending on former tillage practices. Soil and Tillage Research. Vol. 189 p. 236–242. DOI 10.1016/j.still.2019.104299.
  • PATHAK R.K. 2011. Homa jaivik Krishi: A ray of hope for sustainable horticulture MARDI’s initiatives. In: National symposium cum brainstorming workshop on organic agriculture. CSKHPKV 19–20.04.2011. India. Palampur. Souvenir and Abstracts p. 15–16.
  • SAVIN I.Y., ZHOGOLEV A.V., PRUDNIKOVA E.Y. 2019. Sovremennyye trendy i problemy pochvennoy kartografii [Modern trends and problems of soil cartography]. Pochvovedenie. No. 1 p. 517–528.
  • SOBOL N.V., GABBASOVA I.M., KOMISSAROV M.A. 2017. Effect of rainfall intensity and slope steepness on the development of soil erosion in the southern Cis-Ural region (a model experiment). Eurasian Soil Science. Vol. 50(9) p. 1098–1104. DOI 10.1134/S106422931709006X
  • SUREKHA K., RAO K.V., RANI N.S., LATHA P.C., KUMAR R.M. 2013. Evaluation of organic and conventional rice production systems for their productivity, profitability, grain quality and soil health. Agrotechnology. Vol. S11, 6 p. 1–6.
Uwagi
Opracowanie rekordu ze środków MEiN, umowa nr SONP/SP/546092/2022 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2022-2023).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-c9808a98-c9e6-403e-8d65-2c97039b7dcc
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