Uncertainties in the use of concentration ratios for modelling NORM waste sites

J Environ Radioact. 2020 Oct:222:106315. doi: 10.1016/j.jenvrad.2020.106315. Epub 2020 Jul 9.

Abstract

The activity concentrations of 238U, 226Ra and 210Pb were modelled in Pinus sylvestris (Scots pine trees) on a uniform CaF2 sludge heap in Belgium. The aim of this work is to enhance the knowledge of how transfer factors behave in NORM landfills. The simplest possible model in radioecology is used, which is based on Concentration Ratios (CR-s) measured in equilibrium and activity concentrations of the above-mentioned radionuclides measured in the substrate where pine trees grow. Two alternative CR-s were used: (1) international CR compilations by the IAEA (2014) and (2) CR-s specifically determined for pine trees studied in British Columbia (Mahon and Mathews, 1983). Both CR-s were applied assuming lognormal distributions fitted from data reported in the literature. The results were compared with activity concentrations measured in trees sampled on-site. Modelled concentrations match the measured ones best in the case of 238U. For the studied NORM waste site, the approach using generic IAEA concentration ratios does not fulfill the conservatism requirement in the cases of 238U and 226Ra, as the concentration of radionuclides in trees is underestimated. On the other hand, the ratios from Mahon and Mathews, (1983) produce wide distributions, ensuring conservatism due to larger CR-s. The measured concentrations are narrowly distributed in general, which can be expected on a small sampling site on a uniform substrate. The generic approach outlined here is practical but, as a result of the uniqueness of the site considered, should be applied cautiously in other NORM situations.

Keywords: Calcium fluoride; Naturally occurring radioactive material (NORM); Pine tree; Radioecological model; Radionuclides; Soil.

MeSH terms

  • Belgium
  • British Columbia
  • Pinus sylvestris*
  • Radiation Monitoring*
  • Radioactive Waste*
  • Soil Pollutants, Radioactive*
  • Trees
  • Waste Disposal Facilities

Substances

  • Radioactive Waste
  • Soil Pollutants, Radioactive