Multiactinide Analysis with Accelerator Mass Spectrometry for Ultratrace Determination in Small Samples: Application to an in Situ Radionuclide Tracer Test within the Colloid Formation and Migration Experiment at the Grimsel Test Site (Switzerland)

Francesca Quinto, Ingo Blechschmidt, Carmen Garcia Perez, Hörst Geckeis, Frank Geyer, Robin Golser, Florian Huber, Markus Lagos, Bill Lanyon, M. Plaschke,

Analytical Chemistry · 2017 · 14 citations · 20 references

Abstract

The multiactinide analysis with accelerator mass spectrometry (AMS) was applied to samples collected from the run 13-05 of the Colloid Formation and Migration (CFM) experiment at the Grimsel Test Site (GTS). In this in situ radionuclide tracer test, the environmental behavior of <sup>233</sup>U, <sup>237</sup>Np, <sup>242</sup>Pu, and <sup>243</sup>Am was investigated in a water conductive shear zone under conditions relevant for a nuclear waste repository in crystalline rock. The concentration of the actinides in the GTS groundwater was determined with AMS over 6 orders of magnitude from ∼15 pg/g down to ∼25 ag/g. Levels above 10 fg/g were investigated with both sector field inductively coupled plasma mass spectrometry (SF-ICPMS) and AMS. Agreement within a relative uncertainty of 50% was found for <sup>237</sup>Np, <sup>242</sup>Pu, and <sup>243</sup>Am concentrations determined with the two analytical methods. With the extreme sensitivity of AMS, the long-term release and retention of the actinides was investigated over 8 months in the tailing of the breakthrough curve of run 13-05 as well as in samples collected up to 22 months after. Furthermore, the evidence of masses 241 and 244 u in the CFM samples most probably representing <sup>241</sup>Am and <sup>244</sup>Pu employed in a previous tracer test demonstrated the analytical capability of AMS for in situ studies lasting more than a decade.

References

20