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Effect of Aging on the Stability of Microbially Reduced Uranium in Natural Sediment

机译:老化对天然沉积物中微生物还原铀的稳定性的影响

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摘要

Reductive immobilization of uranium has been explored as a remediation strategy for the U-contaminated subsurface. Via the in situ biostimulation of microbial processes, hexavalent U is reduced to less soluble tetravalent species, which are immobilized within the sediment. Although the mineral uraninite (UO_2) was initially considered the dominant product of biological reduction, non-crystalline U(IV) species (NCU(IV)) are found to be abundant in the environment despite their greater susceptibility to oxidation and remobilization. However, it has been recently proposed that, through aging, NCU(IV) might transform into UO_2, which would potentially enhance the stability of the reduced U pool. In this study, we performed column experiments to produce NCU(rV) species in natural sediment mimicking the environmental conditions during bioremediation. Bioreduced sediment retrieved from the columns and harboring NCU(IV) was incubated in static microcosms under anoxic conditions to allow the systematic monitoring of U coordination by X-ray absorption spectroscopy (XAS) over 12 months. XAS revealed that, under the investigated conditions, the speciation of U(IV) does not change over time. Thus, because NCU(IV) is the dominant species in the sediment, bioreduced U(IV) species remain vulnerable to oxidation and remobilization in the aqueous phase even after a 12-month aging period.
机译:铀的还原固定化已被研究作为被U污染地下的修复策略。通过对微生物过程的原位生物刺激,六价铀被还原为溶解度较低的四价物种,后者固定在沉积物中。尽管最初将矿物铀矿(UO_2)视为生物还原的主要产物,但发现非结晶U(IV)物种(NCU(IV))在环境中丰富,尽管它们对氧化和迁移的敏感性更高。但是,最近有人提出,通过老化,NCU(IV)可能转变为UO_2,这可能会增强还原U池的稳定性。在这项研究中,我们进行了柱实验,以模拟自然环境中生物修复过程中的环境条件,在自然沉积物中产生NCU(rV)物种。从色谱柱中回收并带有NCU(IV)的生物还原沉积物在缺氧条件下的静态微观环境中温育,以允许在12个月内通过X射线吸收光谱法(XAS)系统监控U配位。 XAS显示,在调查的条件下,U(IV)的物种不会随时间变化。因此,由于NCU(IV)是沉积物中的主要物质,即使在经过12个月的老化期后,生物还原的U(IV)物质仍易于在水相中发生氧化和迁移。

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  • 来源
    《Environmental Science & Technology》 |2020年第1期|613-620|共8页
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  • 作者单位

    Environmental Microbiology Laboratory (EML) EPFL-ENAC-IIE-EML Ecole Polytechnique Federale de Lausanne (EPFL) Station 6 CH-1015 Lausanne Switzerl;

    School of Ecology and Environment Northwestern Polytechnical University 710129 Xi'an P. R. China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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