Dynamics of redistribution of radionuclides in soil profile in situ. [Russian

Parameters of 137 Cs, 90 Sr and 239,240 Pu transfer in soil profile at the different tracks of the ChNPP release fallout, presented by two main components (fuel and condensation ones), have been estimated on the base of in situ observations and with the use of quasi-diffusional and convective-diffus...

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Main Authors Ivanov Yu.A, Kashparov V.A, Levchuk S.E, Zvarich S.I
Format Book
LanguageRussian
Published 1996
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Abstract Parameters of 137 Cs, 90 Sr and 239,240 Pu transfer in soil profile at the different tracks of the ChNPP release fallout, presented by two main components (fuel and condensation ones), have been estimated on the base of in situ observations and with the use of quasi-diffusional and convective-diffusional models of transfer. Specific behaviour of the radionuclides represented by fuel components of the fallouts (90 Sr and 239, 240 Pu) in soils has been shown. The role of soil physico-chemical as well as water-physical properties in radionuclides redistribution intensity has been estimated. Predominant role of soil moisture content as well as content of mobile potassium in soil in formation of intensity of vertical transfer of caesium radioisotopes has been shown on the basis of correlation analysis. According to the intensity of 137 Cs vertical migration the systematization of the typical soils of the Ukrainian Polesye (Forest zone) has been carried out.
AbstractList Parameters of 137 Cs, 90 Sr and 239,240 Pu transfer in soil profile at the different tracks of the ChNPP release fallout, presented by two main components (fuel and condensation ones), have been estimated on the base of in situ observations and with the use of quasi-diffusional and convective-diffusional models of transfer. Specific behaviour of the radionuclides represented by fuel components of the fallouts (90 Sr and 239, 240 Pu) in soils has been shown. The role of soil physico-chemical as well as water-physical properties in radionuclides redistribution intensity has been estimated. Predominant role of soil moisture content as well as content of mobile potassium in soil in formation of intensity of vertical transfer of caesium radioisotopes has been shown on the basis of correlation analysis. According to the intensity of 137 Cs vertical migration the systematization of the typical soils of the Ukrainian Polesye (Forest zone) has been carried out.
Author Kashparov V.A
Levchuk S.E
Ivanov Yu.A
Zvarich S.I
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CorporateAuthor Ukrainian Research Inst. of Agricultural Radiology, Kiev (Ukraine)
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Snippet Parameters of 137 Cs, 90 Sr and 239,240 Pu transfer in soil profile at the different tracks of the ChNPP release fallout, presented by two main components...
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SubjectTerms caesium
cesio
cesium
contaminacion radiactiva
contaminantes radiactivos
contamination radioactive
decontamination radioactive
descontaminacion radiactiva
estroncio
isotope radioactif
mecanica del suelo
mecanique du sol
perfil del suelo
plutonio
plutonium
polluant radioactif
pollution du sol
polucion del suelo
profil du sol
propiedades fisico quimicas suelo
propriete physicochimique du sol
radioactive contamination
radioactive decontamination
radioactive pollutants
radioisotopes
radioisotopos
soil chemicophysical properties
soil mechanics
soil pollution
soil profiles
soil types
strontium
tipos de suelos
type de sol
ucrania
ukraine
Title Dynamics of redistribution of radionuclides in soil profile in situ. [Russian
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