REGULARITIES OF MIGRATION 137CS IN THE ALLUVIAL SOIL
https://doi.org/10.19047/0136-1694-2019-97-165-180
Abstract
This paper examines the patterns of 137Cs migration in the alluvial soil of the central floodplain of the Iput River (Novozybkovsky district, Bryansk region). The effect of water filtration during flooding, bioremoval by plants and 137Cs radioactive decay on the migration process of Cs ions in the soil was studied. The contribution of radioactive decay, filtration of water and bioremoval to the total removal of 137Cs from the soil during the period from 1994 to 2007 was 50–79, 20–50, 0.3–2.2 % coorespondingly, depending on the treatment method, the dose of mineral fertilizers and the ratio of nutrients. It was found that the increased removal of 137Cs from the soil layer of the floodplain during double-depth plowing, compared with disking and natural grass stands, is determined by a lower Peclet number, which indicates the prevalence of convective 137Cs transfer in contrast to diffusion in the total solution flow.
About the Authors
S. M. PakshinaRussian Federation
243365, Bryansk region, s. Kokino, Sovetskaya str., 2а.
L. P. Harkevich
Russian Federation
243365, Bryansk region, s. Kokino, Sovetskaya str., 2а.
N. M. Belous
Russian Federation
243365, Bryansk region, s. Kokino, Sovetskaya str., 2а.
E. V. Smolsky
Russian Federation
243365, Bryansk region, s. Kokino, Sovetskaya str., 2а.
References
1. Borzdyko I.A., Razrabotka sistemy avtomatizirovannogo monitoringa posledstvii katastrofy na Chernobyl'skoi AES v yugo-zapadnykh raionakh Bryanskoi oblasti: Avtoref. dis. ... kand. t. nauk (Development of a system for automated monitoring of the consequences of the disaster at the Chernobyl nuclear power plant in the south-western districts of the Bryansk region, Extended abstract of Cand. Tech. sci. thesis), Bryansk, 2000, 19 p.
2. Volobuev V.R., Raschet promyvki zasolennykh pochv (Calculation of desalinization of saline soils), Moscow: Kolos, 1975, 71 p.
3. Ivanov N.N., Ob opredelenii velichiny isparyaemosti (On determining the value of evaporation), Izvestiya Vses. Geograficheskogo obshchestva, 1954, Vol. 86, No. 2, pp. 189–195.
4. Isakov A.N., Volodchenkov A.N., Dinamika soderzhaniya radionuklidov v pochvakh Kaluzhskoi oblasti (Dynamics of radionuclide content in the soils of the Kaluga region ), Agrokhimicheskiy vestnik, 2010, No. 2, pp. 11–14.
5. Markina Z.N., Radioekologicheskoe sostoyanie agrolandshaftov YugoZapada Rossii i ikh reabilitatsiya: Avtoref. dis. … dokt. s.-kh. nauk (Radioecological state of agricultural landscapes of South-West Russia and their rehabilitation, Extended abstract of Dr. Agric. sci. thesis), Bryansk, 1999, 42 p.
6. Pakshina S.M., Issledovanie zakonomernosti vertikal'nogo raspredeleniya solei po profilyu pochvy i ee chastichnykh sluchaev (Study of the regularity of the vertical distribution of salts in the soil profile and its partial cases ), Pochvovedenie, 1989, No. 2, pp. 86–93.
7. Pakshina S.M., Model' dlya dolgosrochnogo prognoza zagryazneniya pakhotnykh pochv 137 Cs (Model for a long-term forecast of 137 Cs contamination of arable soil), Tezisy dokladov XXXI Mezhvuzovskoy nauchnoprakticheskoy konferentsii “Nauka i peredovoy opyt v proizvodstve i uchebnom protsesse” (Proc. of the XXXI Inter-University Scientific-Practical Conf. “Science and Advanced Experience in Production and the Educational Process”), Velikie Luki, 1994, pp. 24–26.
8. Pakshina S.M., Fizicheskaya interpretatsiya parametra soleotdachi pochv i metod ego rascheta pri provedenii promyvok zasolennykh pochv (Physical interpretation of the soil salt transfer parameter and the method of its calculation during the desalinization of saline soils), Doklady VASKhNIL, 1985, No. 12, pp. 34–36.
9. Pakshina S.M., Belous N.M., Silaev A.L., Smol'skii E.V., Kolichestvennaya otsenka biologicheskogo vynosa 137 Cs iz pochvy nazemnoi massoi myatlikovykh trav pri vnesenii mineral'nykh udobrenii (Quantitative assessment of 137 Cs biological removal from the soil by above the ground mass of bluegrass when mineral fertilizers are applied), Radiatsiya i risk, 2017, Vol. 26, No. 4, pp. 99–110.
10. Penman Kh., Krugovorot vody. Biosfera (The water cycle. Biosphere), Moscow: Mir, 1972, pp. 60–72.
11. Kharkevich L.P., Effektivnost' sposobov obrabotki pochvy i agrokhimicheskikh priemov pri proizvodstve kormov na radioaktivnykh ugod'yakh Yugo-Zapada Rossii: Avtoref. dis. … dokt. s.-kh. nauk (The effectiveness of methods of tillage and agrochemical methods in the production of feed on radioactive lands of South-West Russia, Extended abstract of Dr. Agric. sci. thesis), Bryansk, 2011, 45 p.
12. Shatilov I.S., Vodopotreblenie i transpiratsiya rastenii v polevykh usloviyakh. Nauchnye osnovy programmirovaniya urozhaev kul'tur (Water consumption and transpiration of plants in the field. Scientific basis for programming crop yields), Moscow: Kolos, 1978, pp. 53–66.
13. Skovorodnikova N.A., Migratsiya tseziya-137 v pochvakh razlichnykh biosistem Bryanskogo Poles'ya: Avtoref. dis. ... kand. s. -kh. nauk (Migration of cesium-137 in the soils of various biosystems of the Bryansk Polesie, Extended abstract of Cand. Agric. sci. thesis), Bryansk, 2005, 20 p.
14. Pakshina S.M., Belous N.M., Shapovalov V.F., Chesalin S.F., Smolsky E.V., Silaev A.L., Calculation of 137 Cs accumulation by phytomass of MOTLEY herbs, International Journal of Green Pharmacy, 2018, Vol. 12, No. 3, pp. 704–711.
Review
For citations:
Pakshina S.M., Harkevich L.P., Belous N.M., Smolsky E.V. REGULARITIES OF MIGRATION 137CS IN THE ALLUVIAL SOIL. Dokuchaev Soil Bulletin. 2019;(97):165-180. https://doi.org/10.19047/0136-1694-2019-97-165-180