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

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 we...

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Veröffentlicht in:Journal of environmental radioactivity 2004, Vol.74 (1), p.211-219
Hauptverfasser: Livens, Francis R., Jones, Mark J., Hynes, Amanda J., Charnock, John M., Mosselmans, J.Fred W., Hennig, Christoph, Steele, Helen, Collison, David, Vaughan, David J., Pattrick, Richard A.D., Reed, Wendy A., Moyes, Lesley N.
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Sprache:eng
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Zusammenfassung: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 TcO 4 −, is reduced to oxidation state IV and forms a TcS 2-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.
ISSN:0265-931X
1879-1700
DOI:10.1016/j.jenvrad.2004.01.012