Reduction of uranium (VI) under sulfate-reducing conditions in the presence of Fe(III)-(hydr)oxides
dc.contributor.author | Sani, Rajesh K. | |
dc.contributor.author | Peyton, Brent M. | |
dc.contributor.author | Amonette, James E. | |
dc.contributor.author | Geesey, Gill G. | |
dc.date.accessioned | 2017-07-20T19:53:35Z | |
dc.date.available | 2017-07-20T19:53:35Z | |
dc.date.issued | 2004-06 | |
dc.description.abstract | Hexavalent uranium [U(VI)] dissolved in a modified lactate-C medium was treated under anoxic conditions with a mixture of an Fe(III)-(hydr)oxide mineral (hematite, goethite, or ferrihydrite) and quartz. The mass of Fe(III)-(hydr)oxide mineral was varied to give equivalent Fe(III)-mineral surface areas. After equilibration, the U(VI)-mineral suspensions were inoculated with sulfate-reducing bacteria, Desulfovibrio desulfuricans G20. Inoculation of the suspensions containing sulfate-limited medium yielded significant G20 growth, along with concomitant reduction of sulfate and U(VI) from solution. With lactate-limited medium, however, some of the uranium that had been removed from solution was resolubilized in the hematite treatments and, to a lesser extent, in the goethite treatments, once the lactate was depleted. No resolubilization was observed in the lactate-limited ferrihydrite treatment even after a prolonged incubation of 4 months. Uranium resolubilization was attributed to reoxidation of the uraninite by Fe(III) present in the (hydr)oxide phases. Analysis by U L3-edge XANES spectroscopy of mineral specimens sampled at the end of the experiments yielded spectra similar to that of uraninite, but having distinct features, notably a much more intense and slightly broader white line consistent with precipitation of nanometer-sized particles. The XANES spectra thus provided strong evidence for SRB-promoted removal of U(VI) from solution by reductive precipitation of uraninite. Consequently, our results suggest that SRB mediate reduction of soluble U(VI) to an insoluble U(IV) oxide, so long as a suitable electron donor is available. Depletion of the electron donor may result in partial reoxidation of the U(IV) to soluble U(VI) species when the surfaces of crystalline Fe(III)-(hydr)oxides are incompletely reduced. | en_US |
dc.identifier.citation | Sani RK, Peyton BM, Amonette JE, Geesey GG, "Reduction of uranium (VI) under sulfate-reducing conditions in the presence of Fe(III)-(hydr)oxides," Geochimica et Cosmochimica Acta, 2004 68(12):2639-2648 | en_US |
dc.identifier.issn | 0016-7037 | |
dc.identifier.uri | https://scholarworks.montana.edu/handle/1/13381 | |
dc.title | Reduction of uranium (VI) under sulfate-reducing conditions in the presence of Fe(III)-(hydr)oxides | en_US |
dc.type | Article | en_US |
mus.citation.extentfirstpage | 2639 | en_US |
mus.citation.extentlastpage | 2648 | en_US |
mus.citation.issue | 12 | en_US |
mus.citation.journaltitle | Geochimica et Cosmochimica Acta | en_US |
mus.citation.volume | 68 | en_US |
mus.contributor.orcid | Peyton, Brent M.|0000-0003-0033-0651 | en_US |
mus.data.thumbpage | 5 | en_US |
mus.identifier.category | Engineering & Computer Science | en_US |
mus.identifier.doi | 10.1016/j.gca.2004.01.005 | en_US |
mus.relation.college | College of Engineering | en_US |
mus.relation.department | Center for Biofilm Engineering. | en_US |
mus.relation.department | Chemical & Biological Engineering. | en_US |
mus.relation.department | Chemical Engineering. | en_US |
mus.relation.researchgroup | Center for Biofilm Engineering. | en_US |
mus.relation.university | Montana State University - Bozeman | en_US |
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