New Insights into Pb Isotope Fingerprinting of U-Mine Material Dissemination in the Environment: Pb Isotopes as a Memory Dissemination Tracer

  • Alkiviadis Gourgiotis
  • , Arnaud Mangeret
  • , Gérard Manhès
  • , Pascale Blanchart
  • , Lucie Stetten
  • , Guillaume Morin
  • , Pierre Le Pape
  • , Pierre Lefebvre
  • , Mathieu Le Coz
  • , Charlotte Cazala

Research output: Contribution to journalArticlepeer-review

Abstract

Stable Pb isotope ratios were measured and compared to U distributions in three soil cores located in a wetland highly impacted by water discharge of a former U-mine. Pb isotope ratios showed notable alignments in binary mixing plots, demonstrating the dissemination of radioactive-enriched material from the U-mine. Thanks to these alignments and to the measurement of the 204Pb isotope, a precise characterization of the Pb isotope composition of the U-ore was performed without the use of U-ore samples. The well-defined end-members with the help of a re evaluated isotope mixing model allowed the accurate determination of the radiogenic Pb percentages in the cores that were overall found to be >50%. Noncorrelated distributions of radiogenic 206Pb and U are observed in several of the wetland soil samples. They reveal post depositional U redistribution explained by major U speciation changes due to redox cycling in the wetland. On the contrary, the radiogenic 206Pb showed no or little post depositional mobility and thus can be considered to be a memory tracer of the dissemination of U-rich radioactive material: even after an important U loss, the radiogenic 206Pb is able to reveal past contamination by U-rich materials.
Original languageEnglish
JournalEnvironmental Science & Technology
Volume54
Issue number2
DOIs
Publication statusPublished - 21 Jan 2020

Keywords

  • Chemical calculations
  • Isotopes
  • Materials
  • Minerals
  • Soils

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