X-ray absorption spectroscopy studies of reactions of technetium, uranium and neptunium with mackinawite


X-ray absorption spectroscopy studies of reactions of technetium, uranium and neptunium with mackinawite

Livens, F.; Jones, M.; Hynes, A.; Charnock, J.; Mosselmans, J.; Hennig, C.; Steele, H.; Collins, D.; Vaughan, D.; Et, A.

Technetium, uranium and neptunium may all occur in the environment in more than one oxidation state (IV or VII, IV or VI and IV or V respectively). The surface of mackinawite, the first-formed iron sulfide: phase in anoxic conditions, can promote redox changes so a series of laboratory experiments were carried out to explore the interactions of Tc, U and Np with this mineral. The products of reaction were characterised using X-ray absorption spectroscopy. Technetium, added as TcO4-, is reduced to oxidation state IV and forms a TcS2-like species. On oxidation of the mackinawite in air to form goethite, Tc remains in oxidation state IV but in an oxide, rather than a sulfide environment. At low concentrations, uranium forms uranyl surface complexes on oxidised regions of the-mackinawite surface but at higher concentrations, the uranium promotes surface oxidation and forms a mixed oxidation state oxide phase. Neptunium is reduced to oxidation IV and forms a surface complex with surface sulfide ions. The remainder of the Np coordination sphere is filled with water molecules or hydroxide ions.

  • Journal of Environmental Radioactivity 74(2004), 211-219

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