Modelling Deposition and Erosion rates with RadioNuclides (MODERN) – Part 1: A new conversion model to derive soil redistribution rates from inventories of fallout radionuclides

Author:

Arata Laura,Meusburger Katrin,Frenkel Elena,A’Campo-Neuen Annette,Iurian Andra-Rada,Ketterer Michael E.,Mabit Lionel,Alewell Christine

Funder

Swiss National Science Foundation (SNF)

International Atomic Energy Agency (IAEA)

Coordinated Research Project (CRP)

Publisher

Elsevier BV

Subject

Health, Toxicology and Mutagenesis,Pollution,Waste Management and Disposal,General Medicine,Environmental Chemistry

Reference22 articles.

1. Suitability of 239+240Pu and 137Cs as tracers for soil erosion assessment in mountain grasslands;Alewell;Chemosphere,2014

2. Estimation of soil redistribution rates due to snow cover related processes in a mountainous area (Valle d’Aosta, NW Italy);Ceaglio;Hydrology Earth Syst. Sci.,2012

3. 137Cs contamination from Chernobyl of soils in Piemonte (North-West Italy): spatial distribution and deposition model;Facchinelli;Water, Air, Soil Pollut.,2002

4. Interpreting particle size effects in the adsorption of 137Cs and unsupported 210Pb by mineral soils and sediments;He;J. Environ. Radioact.,1996

5. Guidelines for Using Fallout Radionuclides to Assess Erosion and Effectiveness of Soil Conservation Strategies;IAEA (International Atomic Energy Agency),2014

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