A multi-radionuclide approach to evaluate the suitability of (239+240)Pu as soil erosion tracer

Sci Total Environ. 2016 Oct 1:566-567:1489-1499. doi: 10.1016/j.scitotenv.2016.06.035. Epub 2016 Jun 20.

Abstract

Fallout radionuclides have been used successfully worldwide as tracers for soil erosion, but relatively few studies exploit the full potential of plutonium (Pu) isotopes. Hence, this study aims to explore the suitability of the plutonium isotopes (239)Pu and (240)Pu as a method to assess soil erosion magnitude by comparison to more established fallout radionuclides such as (137)Cs and (210)Pbex. As test area an erosion affected headwater catchment of the Lake Soyang (South Korea) was selected. All three fallout radionuclides confirmed high erosion rates for agricultural sites (>25tha(-1)yr(-1)). Pu isotopes further allowed determining the origin of the fallout. Both (240)Pu/(239)Pu atomic ratios and (239+240)Pu/(137)Cs activity ratios were close to the global fallout ratio. However, the depth profile of the (239+240)Pu/(137)Cs activity ratios in undisturbed sites showed lower ratios in the top soil increments, which might be due to higher migration rates of (239+240)Pu. The activity ratios further indicated preferential transport of (137)Cs from eroded sites (higher ratio compared to the global fallout) to the depositional sites (smaller ratio). As such the (239+240)Pu/(137)Cs activity ratio offered a new approach to parameterize a particle size correction factor that can be applied when both (137)Cs and (239+240)Pu have the same fallout source. Implementing this particle size correction factor in the conversion of (137)Cs inventories resulted in comparable estimates of soil loss for (137)Cs and (239+240)Pu. The comparison among the different fallout radionuclides highlights the suitability of (239+240)Pu through less preferential transport compared to (137)Cs and the possibility to gain information regarding the origin of the fallout. In conclusion, (239+240)Pu is a promising soil erosion tracer, however, since the behaviour i.e. vertical migration in the soil and lateral transport during water erosion was shown to differ from that of (137)Cs, there is a clear need for a wider agro-environmental testing.

Keywords: (210)Pb(ex); (239+240)Pu/(137)Cs activity ratio; Conversion models; MODERN; Particle size correction factor; South Korea.

MeSH terms

  • Agriculture
  • Cesium Radioisotopes / analysis
  • Forestry
  • Models, Theoretical
  • Plutonium / analysis*
  • Radiation Monitoring / methods*
  • Republic of Korea
  • Soil Pollutants / analysis*
  • Soil*

Substances

  • Cesium Radioisotopes
  • Plutonium-240
  • Soil
  • Soil Pollutants
  • Cesium-137
  • Plutonium
  • Plutonium-239