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Rapid Dissolution of Soluble Uranyl Phases in Arid Mine-Impacted Catchments near Church Rock NM

机译:在新墨西哥州教堂岩附近的受地雷影响的干旱集水区中快速溶解可溶性铀基相

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摘要

We tested the hypothesis that runoff of uranium-bearing particles from mining waste disposal areas was a significant mechanism for redistribution of uranium in the northeastern part of the Upper Puerco River watershed (New Mexico). However, our results were not consistent with this hypothesis. Analysis of >100 sediment and suspended sediment samples collected adjacent to and downstream from uranium source areas indicated that uranium levels in the majority of the samples were not elevated above background. Samples collected within 50 m of a known waste disposal site were subjected to detailed geochemical characterization. Uranium in these samples was found to be highly soluble; treatment with synthetic pore water for 24 h caused dissolution of 10–50% of total uranium in the samples. Equilibrium uranium concentrations in pore water were >4.0 mg/L and were sustained in repeated wetting events, effectively depleting soluble uranium from the solid phase. The dissolution rate of uranium appeared to be controlled by solid-phase diffusion of uranium from within uranium-bearing mineral particles. X-ray adsorption spectroscopy indicated the presence of a soluble uranyl silicate, and possibly a uranyl phosphate. These phases were exhausted in transported sediment suggesting that uranium was readily mobilized from sediments in the Upper Puerco watershed and transported in the dissolved load. These results could have significance for uranium risk assessment as well as mining waste management and cleanup efforts.
机译:我们检验了以下假设:采矿废物处置区的含铀颗粒径流是上普埃尔科河流域东北部(新墨西哥州)铀重新分配的重要机制。但是,我们的结果与该假设不一致。对在铀源区附近和下游收集的100多个沉积物和悬浮沉积物样品进行的分析表明,大多数样品中的铀含量并未高于本底。在已知废物处理场的50 m范围内收集的样品进行了详细的地球化学表征。发现这些样品中的铀是高度可溶的。用合成孔隙水处理24小时会导致样品中总铀溶解10–50%。孔隙水中的铀平衡浓度> 4.0 mg / L,并在重复润湿过程中得以维持,有效地从固相中消耗了可溶性铀。铀的溶解速率似乎受铀从含铀矿物颗粒中的固相扩散控制。 X射线吸收光谱法表明存在可溶性硅酸铀基酯,并且可能存在磷酸铀酰。这些相在输送的沉积物中被消耗suggest尽,这表明铀很容易从上Puerco流域的沉积物中动员出来并以溶解的负荷输送。这些结果对于铀风险评估以及采矿废物管理和清理工作可能具有重要意义。

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