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Biogenic non-crystalline U (IV) revealed as major component in uranium ore deposits

机译:生物成因非晶态铀(IV)被揭示为铀矿床的主要成分

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摘要

Historically, it is believed that crystalline uraninite, produced via the abiotic reduction of hexavalent uranium (U (VI)) is the dominant reduced U species formed in low-temperature uranium roll-front ore deposits. Here we show that non-crystalline U (IV) generated through biologically mediated U (VI) reduction is the predominant U (IV) species in an undisturbed U roll-front ore deposit in Wyoming, USA. Characterization of U species revealed that the majority (-1/458-89%) of U is bound as U (IV) to C-containing organic functional groups or inorganic carbonate, while uraninite and U (VI) represent only minor components. The uranium deposit exhibited mostly 238 U-enriched isotope signatures, consistent with largely biotic reduction of U (VI) to U (IV). 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 (IV) 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.
机译:历史上,人们认为通过非生物还原六价铀(U(VI))产生的结晶铀矿是在低温铀卷前矿床中形成的主要还原U物种。在这里,我们显示通过生物介导的U(VI)还原生成的非晶U(IV)是美国怀俄明州未受干扰的U卷前矿石矿床中的主要U(IV)物种。 U物种的特征表明,U的大部分(-1 / 458-89%)以U(IV)结合到含C的有机官能团或无机碳酸盐上,而铀矿和U(VI)仅代表次要成分。铀矿床主要表现出238种富含U的同位素特征,这与U(VI)到U(IV)的大部分生物还原相一致。这一发现表明,生物成因过程对铀矿的成因比以前的理解更为重要。 U(IV)形式相对不稳定的优势也为更经济和环境友好的采矿过程,设计更有效的采矿后恢复策略和人类健康风险评估提供了机会。

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