首页> 外文期刊>Applied Geochemistry: Journal of the International Association of Geochemistry and Cosmochemistry >Mineralization of contaminant uranium and leach rates in sediments from Hanford, Washington
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Mineralization of contaminant uranium and leach rates in sediments from Hanford, Washington

机译:华盛顿州汉福德的沉积物中污染物铀的矿化和浸出率

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摘要

Five U-contaminated sediment samples collected near nuclear waste storage and processing facilities at Hanford, Washington, were subjected to characterization and leach tests. Discrete U-bearing particles and U-rich areas were identified using SEM analysis, and energy-dispersive spectroscopy revealed that the U-bearing phases contained U, Si, Ca, and Fe. The presence of Al in the spectra was consistent with the observation of complex intergrowths between U-bearing and aluminosilicate solids. Analysis of U-rich regions by XANES spectroscopy showed that all the U was present as the uranyl cation (UO22+). EXAFS spectroscopy indicated the presence of adsorbed uranyl and uranyl silicate precipitates. Flow-through column leach tests revealed that U release from the contaminated sediments was non-linear and U solution concentrations failed to reach steady-state conditions. In sum, the data are in accord with a model of U mineralization caused by precipitation in geochemically-isolated pore spaces. Further, the release of U from these sediments is limited by very slow dissolution kinetics of uranyl phases coupled with slow transport of uranyl from the site of removal to bulk pore solution. The data reported in this investigation call into question the efficacy of using equilibrium-based K-d models to describe the behavior of U in oxidizing environments.
机译:在华盛顿州汉福德的核废料存储和处理设施附近收集了五种受U污染的沉积物样本,进行了特性测试和浸出测试。使用SEM分析确定了离散的含U颗粒和富U区域,能量色散光谱显示含U的相包含U,Si,Ca和Fe。光谱中Al的存在与U轴承和硅铝酸盐固体之间复杂的共生现象相一致。通过XANES光谱分析富铀区域显示,所有的U都以铀酰阳离子(UO22 +)的形式存在。 EXAFS光谱表明存在吸附的铀酰和铀酰硅酸盐沉淀物。流通柱浸出试验表明,U从污染沉积物中的释放是非线性的,并且U溶液的浓度无法达到稳态。总之,这些数据与由地球化学隔离的孔隙空间中的降水引起的铀矿化模型相符。此外,铀从这些沉积物中的释放受到铀酰相非常缓慢的溶解动力学以及铀酰从去除部位向大孔溶液的缓慢迁移的限制。该研究报告的数据使人们怀疑使用基于平衡的K-d模型描述U在氧化环境中的行为的功效。

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