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Title: Uranyl incorporation into calcite and aragonite: XAFS and luminescence studies

Journal Article · · Environmental Science and Technology
DOI:https://doi.org/10.1021/es990981j· OSTI ID:20020735

X-ray absorption, luminescence, and Raman spectroscopic studies of U(VI)-containing calcite and aragonite show that the UO{sub 2}{sup 2+} ion, the dominant and mobile form of dissolved uranium in near-surface waters, has a disordered and apparently less stable coordination environment when incorporated into calcite in comparison to aragonite, both common polymorphs of CaCO{sub 3}. Their findings suggest that calcite, a widely distributed authigenic mineral in soils and near-surface sediments and a principal weathering product of concrete-based containment structures, is not likely to be a suitable host for the long-term sequestration of U(VI). The more stable coordination provided by aragonite suggests that its long-term retention should be favored in this phase, until it inverts to calcite. Consequently, future remobilization of U(VI) coprecipitated with calcium carbonate minerals should not be ruled out in assessments of contaminated sites. Their observation of a similar equatorial coordination of UO{sub 2}{sup 2+} in aragonite and the dominant aqueous species [UO{sub 2}(CO{sub 3}){sub 3}{sup 4{minus}}] but a different coordination in calcite indicates that a change in UO{sub 2}{sup 2+} coordination is required for its incorporation into calcite. This may explain the observed preferential uptake of U(VI) by aragonite relative to calcite.

Research Organization:
State Univ. of New York, Stony Brook, NY (US)
OSTI ID:
20020735
Journal Information:
Environmental Science and Technology, Vol. 34, Issue 4; Other Information: PBD: 15 Feb 2000; ISSN 0013-936X
Country of Publication:
United States
Language:
English

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