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Evaluation of dose equivalent rate reduction as a function of vertical migration of 137Cs in contaminated soils

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dc.contributor.author Arapis, G en
dc.contributor.author Chesnokov, A en
dc.contributor.author Ivanova, T en
dc.contributor.author Potapov, V en
dc.contributor.author Sokolik, G en
dc.date.accessioned 2014-06-06T06:43:57Z
dc.date.available 2014-06-06T06:43:57Z
dc.date.issued 1999 en
dc.identifier.issn 0265931X en
dc.identifier.uri http://dx.doi.org/10.1016/S0265-931X(98)00146-5 en
dc.identifier.uri http://62.217.125.90/xmlui/handle/123456789/1575
dc.subject Chernobyl en
dc.subject Contaminated soil en
dc.subject Dose equivalent rate en
dc.subject Migration en
dc.subject.other cesium 137 en
dc.subject.other cesium en
dc.subject.other Chernobyl accident en
dc.subject.other radioactive pollution en
dc.subject.other radionuclide migration en
dc.subject.other soil remediation en
dc.subject.other article en
dc.subject.other Belarus en
dc.subject.other chernobyl accident en
dc.subject.other environmental radioactivity en
dc.subject.other gamma spectrometry en
dc.subject.other nuclear accident en
dc.subject.other radiation detection en
dc.subject.other radioactive contamination en
dc.subject.other soil pollution en
dc.title Evaluation of dose equivalent rate reduction as a function of vertical migration of 137Cs in contaminated soils en
heal.type journalArticle en
heal.identifier.primary 10.1016/S0265-931X(98)00146-5 en
heal.publicationDate 1999 en
heal.abstract Following a major nuclear accident it is of great importance to apply rehabilitation actions for the recovery of vast contaminated territories. In order to achieve this objective, it is essential to know the medium- and long-term evolution of the contamination and to evaluate how the dose equivalent rate (DER) of the γ-radiation changes with the migration of the radionuclides in the soil. The aim of this paper is to define the modification of the DER as a result of 137Cs penetration into the soil. Information is used which is related to the character of the 137Cs distributions in different soil types and to 137Cs vertical migration velocity (cm y-1) as a function of the types of soils. Indeed, since 1986 when the Chernobyl accident occurred, soil profiles were studied in undisturbed land in the region of Gomel, Belarus. The 137Cs content of soil was assayed in the laboratory by gamma-spectrometry and the results obtained are classified into groups according to the type of soil and the 137Cs migration velocity. The average DER was calculated as a function of 137Cs vertical migration for the above groups and for different levels of contamination ranging from 185 to 7400 kBq m-2. In order to validate the theoretical computations, a comparison between measured in situ and calculated DERs was carried out. A good correlation was found between measured and calculated DERs. The data obtained show that, ten years after the accident in the studied territory, a significant reduction of the DER occurred and it ranges-relative to 1986 when 100% of the 137Cs was distributed on the soil surface-from 17.5% in the less contaminated soil with low 137Cs migration velocity (< 0.25 cm y-1) to 45% in the most contaminated soils with high 137Cs migration velocity (> 1.2 cm y-1). en
heal.journalName Journal of Environmental Radioactivity en
dc.identifier.issue 2 en
dc.identifier.volume 46 en
dc.identifier.doi 10.1016/S0265-931X(98)00146-5 en
dc.identifier.spage 251 en
dc.identifier.epage 263 en


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