Biogenic non-crystalline U<sup>(IV)</sup> revealed as major component in uranium ore deposits.

Bhattacharyya, Amrita; Campbell, Kate M; Kelly, Shelly D; Roebbert, Yvonne; Weyer, Stefan; Bernier-Latmani, Rizlan; Borch, Thomas · Nat Commun · 2017

basic_science · Level V

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Abstract

Historically, it is believed that crystalline uraninite, produced via the abiotic reduction of hexavalent uranium (U<sup>(VI)</sup>) is the dominant reduced U species formed in low-temperature uranium roll-front ore deposits. Here we show that non-crystalline U<sup>(IV)</sup> generated through biologically mediated U<sup>(VI)</sup> reduction is the predominant U<sup>(IV)</sup> species in an undisturbed U roll-front ore deposit in Wyoming, USA. Characterization of U species revealed that the majority (∼58-89%) of U is bound as U<sup>(IV)</sup> to C-containing organic functional groups or inorganic carbonate, while uraninite and U<sup>(VI)</sup> represent only minor components. The uranium deposit exhibited mostly <sup>238</sup>U-enriched isotope signatures, consistent with largely biotic reduction of U<sup>(VI)</sup> to U<sup>(IV)</sup>. This finding implies that biogenic processes are more important to uranium ore genesis than previously understood. The predominance of a relatively labile form of U<sup>(IV)</sup> also provides an opportunity for a more economical and environmentally benign mining process, as well as the design of more effective post-mining restoration strategies and human health-risk assessment.