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Modelling Deposition and Erosion rates with RadioNuclides (MODERN) – Part 1: A new conversion model to derive soil redistribution rates from inventories of fallout radionuclides.
JournalArticle (Originalarbeit in einer wissenschaftlichen Zeitschrift)
 
ID 3641300
Author(s) Arata, L.; Meusburger, K.; Frenkel, E.; A’Campo-Neuen, A.; Iurian, A. -R.; Ketterer, M. E.; Mabit, L.; Alewell, C.
Author(s) at UniBasel Alewell, Christine
Di Bella, Katrin
Arata, Laura
Frenkel, Elena
A'Campo-Neuen, Annette
Year 2016
Title Modelling Deposition and Erosion rates with RadioNuclides (MODERN) – Part 1: A new conversion model to derive soil redistribution rates from inventories of fallout radionuclides.
Journal Journal of Environmental Radioactivity
Volume 162-163
Pages / Article-Number 45-55
Keywords Soil erosion; 137Cs; 210Pbex; 239+240Pu; Profile Distribution Model; Mass Balance Model
Abstract The measurement of fallout radionuclides (FRN) has become one of the most commonly used tools to quantify sediment erosion or depositional processes. The conversion of FRN inventories into soil erosion and deposition rates is done with a variety of models, which suitability is dependent on the selected FRN, soil cultivation (ploughed or unploughed) and movement (erosion or deposition). The authors propose a new conversion model, which can be easily and comprehensively used for different FRN, land uses and soil redistribution processes. The new model MODERN (Modelling Deposition and Erosion rates with RadioNuclides) considers the precise depth distribution of any FRN at the reference site, and allows adapting it for any specific site conditions. MODERN adaptability and performance in converting different FRN inventories is discussed for a theoretical case as well as for two already published case studies i.e. a 137 Cs study in an alpine and unploughed area in the Aosta valley (Italy) and a 210 Pb ex study on a ploughed area located in the Transylvanian Plain (Romania). The tests highlight a highly significant correspondence (i.e. correlation factor of 0.91) between the results of MODERN and the published results of other models currently used by the FRN scientific community (i.e. the Profile Distribution Model and the Mass Balance Model). The development and the cost free accessibility of MODERN (see modern.umweltgeo.unibas.ch) will ensure the promotion of wider application of FRNs for tracing soil erosion and sedimentation.
Publisher Elsevier
ISSN/ISBN 0265-931X ; 1879-1700
edoc-URL http://edoc.unibas.ch/44392/
Full Text on edoc No
Digital Object Identifier DOI 10.1016/j.jenvrad.2016.05.008
PubMed ID http://www.ncbi.nlm.nih.gov/pubmed/27214287
ISI-Number WOS:000390183000007
Document type (ISI) Journal Article
 
   

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08/05/2024