2000/02/02 by Philippe Refait, Lilian Simon, Jean-Marie R. Génin · 2 citations
Chemistry · Earth and Planetary Sciences · Materials Science · #Clay minerals and soil interactions #Geochemistry and Elemental Analysis #Radioactive element chemistry and processing
paper · doi:10.1021/es990376g
openalex publication_date 2000/02/02 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/22
Iron(II)−iron(III) hydroxy-salts known as green rusts were recently discovered as minerals present in hydromorphic soils and sediments. Due to their high reactivity, they are envisioned as potential reducing agents of a number of pollutants such as nitrate, chromate, or selenate. The interaction of selenate ions with such iron(II)-containing hydroxy compounds was studied by monitoring the oxidation processes of the iron phases with transmission Mössbauer spectroscopy measured at 14 K and by following the evolution of Se(VI) in solution by capillary electrophoresis. This interaction involved the hydroxy-selenate green rust, a compound isomorphous to the hydroxy-sulfate GR(SO 4 2 - ). Its chemical composition, Fe II y Fe III 2 (OH) 2( y +2) SeO 4 ·8H 2 O, varied with time since y starts at 5.5 and ends at 4. GR(SeO 4 2 - ) was obtained from Fe(OH) 2 precipitates by simultaneous accumulation of SeO 4 2 - anions inside the solid phase and reduction of an equal amount of SeO 4 2 - anions to Se(IV) species. These species were found to be less mobile, partially bound to iron compounds and/or forming iron salts. Finally, the hydroxy-selenate GR2(SeO 4 2 - ) can form without any other oxidizing agent than selenate itself.