Geoinformation system for designing adaptive landscape farming systems on the radioactively contaminated territory of the Tula research institute of agriculture

№4 (2020)

УДК 504.064.36
DOI: 10.47148/1609-364X-2020-4-12-19

E.O. Krechetnikova, V.V. Krechetnikov, I.E. Titov, V.K. Kuznetsov

AbstractAbout the AuthorsReferences
GIS project was developed for the radioactively contaminated territory of the Tulskii NII. It was created in order to project the adaptive landscape agricultures. It was based on the information on the concentrations of 137Cs radionuclide in soil, compiled over 16 years. Electronic maps have been developed to create a GIS project and included the location of agricultural lands; crop rotation systems; distribution of specific activity values for artificial 137Cs radionuclide in agricultural lands; agrochemical indexes (the humus content, potassium content, contribution of phosphorus, the acidity), soil types, relief. The created GIS project and the corresponding data bases will be used to collect, store and analyse the results of the survey in order to project the adaptive landscape agricultures.
Krechetnikovа Evgeniya Olegovna, junior researcher, Russian Institute of Radiology and Agroecology (RIRAE). 109 km, Kievskoe shosse, Obninsk, Kaluga region, 249032, Russia. E-mail: evg.krechet@yandex.ru.

Krechetnikov Viktor Vladimirovich, research scientist, Russian Institute of Radiology and Agroecology (RIRAE). 109 km, Kievskoe shosse, Obninsk, Kaluga region, 249032, Russia. E-mail: viktor.krechetnikov@mail.ru.

Titov Igor Evgenevich, research scientist, Russian Institute of Radiology and Agroecology (RIRAE). 109 km, Kievskoe shosse, Obninsk, Kaluga region, 249032, Russia. E-mail: titan13_08@mail.ru.

Kuznetsov Vladimir Konstantinovich, Doctor of Biological Sciences, chief researcher, Russian Institute of Radiology and Agroecology (RIRAE). 109 km, Kievskoe shosse, Obninsk, Kaluga region.

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Key words: GIS project, adaptive landscape agriculture, agricultural lands, radiation safety.

Section: Geoinformation systems