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Spatial differentiation of regulatory monetary valuation of agricultural land in conditions of widespread irrigation of steppe soils

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Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The article presents results of quality class determination and regulatory and monetary valuation of agricultural land in the steppe soils irrigation zone using the Karmanov’s methodology of soil and climatic quality class determination and author's methodology of ecological, agro-ameliorative and climatic soils quality class determination. Based on the results of spatial modeling, a series of maps was created and characteristics of ecological, agro-ameliorative and relief and climatic components of soils quality class were presented based on the example of the Kherson Region, Ukraine. According to the results soil and climatic quality class determination, it is established that the value of the class varies from 25 to 46 points; the regulatory and monetary value of agricultural land varies from USD 490 per 1 ha for dark chestnut and chestnut alkaline soils up to USD1,360 per ha for ordinary chernozem. According to the results of ecological, agro-ameliorative and climatic soils quality class determination, it is established that the value of the class varies from 6 to 59 points; the regulatory and monetary value of agricultural land varies from USD145 per 1 ha for degraded and highly saline chestnut soils up to USD2,060 per ha for irrigated southern chernozem. The suggested methodology of soil quality class calculation can have multiple purposes. It is intended to be used for different physiographic conditions of land use to develop adaptive soils protection measures at different territorial levels of agricultural production management with the overall objective of ensuring sustainable land use.
Wydawca
Rocznik
Tom
Strony
182--196
Opis fizyczny
Bibliogr. 25 poz., rys., tab.
Twórcy
  • Kherson State Agrarian and Economic University, Stritens'ka str. 23, Kherson, 73006, Ukraine
  • Kherson State Agrarian and Economic University, Stritens'ka str. 23, Kherson, 73006, Ukraine
  • Kherson State Agrarian and Economic University, Stritens'ka str. 23, Kherson, 73006, Ukraine
  • Kherson State Agrarian and Economic University, Stritens'ka str. 23, Kherson, 73006, Ukraine
  • Kherson State Agrarian and Economic University, Stritens'ka str. 23, Kherson, 73006, Ukraine
Bibliografia
  • BEZNITSKA N.V. 2017. Modelyuvannya g'runtovo-klimatychnogo potentsyalu sil's'kogospodars'kykh zemel' Khersons'koyi oblasti iz zastosuvannya GIS-tekhnologyi [Modeling of soil and climatic potential of agricultural lands of the Kherson region using GIS-technology]. Visnyk Natsional'nogo universytetu vodnogo gospodarstva ta pryrodokorystuvannja. No. 4 (76) p. 31–43.
  • BREUS D., YEVTUSHENKO O., SKOK S., RUTTA O. 2019. Retrospective studies of soil fertility change on the example of the Kherson region (Ukraine). International Multidisciplinary Scientific GeoConference Surveying Geology and Mining Ecology Management, SGEM. Vol. 19 (5.1) p. 645–652. DOI 10.5593/sgem2019/5.1/S20.080.
  • BURYAK ZH.A., GRIGOREVA O.I., PAVLYUK YA.V. 2014. GIS maintenance of rural territories geoplanning under basin principles. International Journal of Advanced Studies. Vol. 4 (2) p. 56–60. DOI 10.12731/2227-930X-2014-2-8.
  • DOMARATSKY YE.O., ZHUYKOV O.G., IVANIV M.O. 2018. Influence of sowing periods and seeding rates on yield of grain sorghum hybrids under regional climatic transformations. Indian Journal of Ecology. Vol. 45(4) p. 785–789.
  • DUDIAK N.V., PICHURA V.I., POTRAVKA L.A., STRATICHUK N.V. 2019a. Geomodelling of destruction of soils of Ukrainian steppe due to water erosion. Journal of Ecological Engineering. Vol. 20(8) p. 192–198. DOI 10.12911/22998993/ 110789.
  • DUDIAK N.V., PICHURA V.I., POTRAVKA L.A., STROGANOV A.A. 2020. Spatial modeling of the effects of deflation destruction of the steppe soils of Ukraine. Journal of Ecological Engineering. Vol. 21(2) p. 166–177. DOI 10.12911/22998993/ 116321.
  • DUDIAK N.V., POTRAVKA L.A., STROGANOV A.A. 2019b. Soil and climatic bonitation of agricultural lands of the steppe zone of Ukraine. Indian Journal of Ecology. Vol. 46(3) p. 534–540.
  • JENSENA J.L., SCHJØNNINGA P., WATTSB C.W., CHRISTENSENA B.T., OBOURAC P.B., MUNKHOLMA L.J. 2020. Soil degradation and recovery – Changes in organic matter fractions and structural stability. Geoderma. Vol. 364. DOI 10.1016/ j.geoderma.2020.114181.
  • Kabinet Ministriv Ukrayiny 2016. Metodyka normatyvnoyi hroshovoyi otsinky zemelʹ silʹsʹkohospodarsʹkoho pryznachennya [Methods of normative monetary valuation of agricultural land] [online]. November 16, 2016. No. 831. [Access 20.03.2020]. Available at: https://zakon.rada.gov.ua/laws/show/831-2016-%D0%BF
  • KARMANOV I.I. 1980. Plodorodye pochv SSSR [Soil fertility of the USSR]. Moscow. Kolos pp. 224.
  • KARMANOV I.I., BULGAKOV D.S. 2012. Metodika pochvenno-agroklimaticheskoy otsenki pakhotnykh zemel' dlya kadastra [Methodology of soil and agroclimatic assessment of arable land for cadaster]. Moscow. Rossiyskaya akademiya sel'skokhozyaystvennykh nauk, Gosudarstvennoe nauchnoe uchrezhdeniye Pochvennyy institut imeni V.V. Dokuchayeva. ISBN 978-5-904761-32-5 pp. 119.
  • KARMANOV I.I., BULGAKOV D.S., SHISHKONAKOVA E.A. 2013. Sistema otsenki prirodno-antropogennykh vozdeystviy na izmeneniye plodorodiya pochv pakhotnykh zemel' na osnove pochvenno-agroklimaticheskogo indeksa [An assessment system of natural and anthropogenic effects on changes]. Byulleten' Pochvennogo instituta imeni V.V. Dokuchaeva. No. 72 pp. 65–83.DOI 10.19047/0136-1694-2013-72-65-83.
  • LI J., CHEN H., ZHANG C. 2020. Impacts of climate change on key soil ecosystem services and interactions in Central Asia. Ecological Indicators. Vol. 116. DOI 10.1016/j.ecolind.2020. 106490.
  • LISETSKII F., CHEPELEV O. 2014. Quantitative substantiation of pedogenesis model key components. Advances in Environmental Biology. Vol. 8(4) p. 996–1000.
  • LISETSKII F.N. 2012. Soil reproduction in steppe ecosystems of different ages. Contemporary Problems of Ecology. Vol. 5(6) p. 580–588. DOI 10.1134/S1995425512060108.
  • LISETSKII F.N., PICHURA V.I., BREUS D.S. 2017a. Use of geoinformation and neurotechnology to assess and to forecast the humus content variations in the steppe soils. Russian Agricultural Sciences. No. 2(43) p. 151–155. DOI 10.1134/ S1995425512060108.
  • LISETSKII F.N., STOLBA V.F., PICHURA V.I. 2017b. Late-Holocene palaeoenvironments of Southern Crimea: Soils, soil-climate relationship and human impact. Holocene. Vol. 27(12) p. 1859–1875. DOI 10.1177/0959683617708448.
  • MEDVEDEV V.V. 2009. Neodnorodnost' pochv i tochnoye zemledeliye [Soil heterogeneity and precision farming]. Part 2. Kharkov. KP «Gorodskaya topografiya». ISBN 978-966-8726-50-7 pp. 260.
  • MEDVEDEV V.V., PLISKO I.V. 2006. Bonitirovka i kachestvennaya otsenka pakhotnykh zemel' Ukrainy [Bonitation and qualitative assessment of arable land in Ukraine]. Kharkov. 13 tipografiya. ISBN 966-8726-31-6 pp. 386.
  • PICHURA V.I., DOMARATSKY Y.A., YAREMKO YU.I., VO-LOCHNYUK Y.G., RYBAK V.V. 2017. Strategic ecological assessment of the state of the transboundary catchment basin of the Dnieper River under extensive agricultural. Indian Journal of Ecology. Vol. 44 (3) p. 442–450.
  • PICHURA V.I., POTRAVKA L.A., DUDIAK N.V., SKRYPCHUK P.M., STRATICHUK N.V. 2019. Retrospective and forecast of heterochronal climatic fluctuations within territory of Dnieper Basin. Indian Journal of Ecology. Vol. 46(2) p. 402–407.
  • RASMUSSEN C., TABOR N.J. 2007. Applying a quantitative pedogenic energy model across a range of environmental gradients. Soil Science Society of America Journal. Vol. 71(6) p. 1719–1729. DOI 10.2136/sssaj2007.0051.
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  • TSYBIKDORZHIEV TS.TS., KHUBRAKOVA B.TS., GONCHIKOV B-M.N. 2009. Bonitirovka i kadastrovaya otsenka pochv Dzhidinskogo rayona Respubliki Buryatiya [Valuation and cadastral valuation of soils of the Dzhidinsky district of the Republic of Buryatia]. Vestnik Buryatskoy gosudarstvennoy sel'skokhozyaystvennoy akademii im. V.R. Filippova. No. 3(16) p. 143–150.
  • ZELENSKAYA E., PICHURA V., DOMARATSKY YE. 2018. Priorities of agroecological monitoring of the composition of soil trace elements taking into account the peculiarities of its formation over time. Journal of Engineering and Applied Sciences. Vol. 13 p. 5807–5813. DOI 10.3923/jeasci.2018.5807.5813.
Uwagi
Opracowanie rekordu ze środków MNiSW, umowa Nr 461252 w ramach programu "Społeczna odpowiedzialność nauki" - moduł: Popularyzacja nauki i promocja sportu (2021).
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-5a810cb5-76dc-4cf2-8cc1-3e502ccdb7f1
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