1. Academic Validation
  2. U(VI) sequestration in hydroxyapatite produced by microbial glycerol 3-phosphate metabolism

U(VI) sequestration in hydroxyapatite produced by microbial glycerol 3-phosphate metabolism

  • Appl Environ Microbiol. 2009 Sep;75(18):5773-8. doi: 10.1128/AEM.00628-09.
Evgenya S Shelobolina 1 Hiromi Konishi Huifang Xu Eric E Roden
Affiliations

Affiliation

  • 1 Department of Geology and Geophysics, 1215 W. Dayton St., University of Wisconsin, Madison, WI 53706, USA.
Abstract

Previous studies have demonstrated the potential for removal of U(VI) from solution via precipitation of U(VI)-bearing calcium-phosphate (Ca-P) Minerals coupled to microbial hydrolysis of glycerol phosphate compounds. We evaluated this process in circumneutral-pH groundwater from Area 2 of the U.S. Department of Energy Field Research Center at Oak Ridge National Laboratory. Area 2 groundwater contains high concentrations of dissolved calcium (CA. 4 mM), and thus, release of phosphate during glycerol phosphate metabolism has the potential to create conditions favorable for U(VI) sequestration in Ca-P Minerals. Microbial enumeration and isolation studies verified the presence of aerobic and nitrate-reducing glycerol 3-phosphate (G3P)-metabolizing Microorganisms in Area 2 sediments. Coprecipitation of U(VI) with Ca-P Minerals coupled to microbial G3P hydrolysis was demonstrated in artificial groundwater under aerobic and nitrate-reducing conditions. Transmission electron microscopy analysis and mineral-washing experiments demonstrated that U(VI) was incorporated into the structure of the insoluble Ca-P mineral hydroxyapatite [Ca5(PO4)3OH]. Our results support the idea that U(VI) can be effectively removed from solution in contaminated aquifers through stimulation of microbial organophosphate metabolism.

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