Uranium Incorporation into Amorphous Silica

作者:Massey Michael S*; Lezama Pacheco Juan S; Nelson Joey M; Fendor Scott; Maher Kate
来源:Environmental Science & Technology, 2014, 48(15): 8636-8644.
DOI:10.1021/es501064m

摘要

High concentrations of uranium are commonly observed in naturally occurring amorphous silica (including opal) deposits, suggesting that incorporation of U into amorphous silica may represent a natural attenuation mechanism and promising strategy for U remediation. However, the stability of uranium in opaline silicates, determined in part by the binding mechanism for U, is an important factor in its long-term fate. U may bind directly to the opaline silicate matrix, or to materials such as iron (hydr)oxides that are subsequently occluded within the opal. Here, we examine the coordination environment of U within opaline silica to elucidate incorporation mechanisms. Precipitates (with and without ferrihydrite inclusions) were synthesized from U-bearing sodium metasilicate solutions, buffered at pH similar to 5.6. Natural and synthetic solids were analyzed with X-ray absorption spectroscopy and a suite of other techniques. In synthetic amorphous silica, U was coordinated by silicate in a double corner-sharing coordination geometry (Si at similar to 3.8-3.9 angstrom) and a small amount of uranyl and silicate in a bidentate, mononuclear (edge-sharing) coordination (Si at similar to 3.1-3.2 angstrom, U at similar to 3.8-3.9 angstrom). In iron-bearing synthetic solids, U was adsorbed to iron (hydr)oxide, but the coordination environment also contained silicate in both edge-sharing and corner-sharing coordination. Uranium local coordination in synthetic solids is similar to that of natural U-bearing opals that retain U for millions of years. The stability and extent of U incorporation into opaline and amorphous silica represents a long-term repository for U that may provide an alternative strategy for remediation of U contamination.

  • 出版日期2014-8-5