首页> 外文期刊>Journal of Contaminant Hydrology >Identifying key controls on the behavior of an acidic-U(VI) plume in the Savannah River Site using reactive transport modeling
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Identifying key controls on the behavior of an acidic-U(VI) plume in the Savannah River Site using reactive transport modeling

机译:使用反应性运输模型识别萨凡纳河场中酸性U(VI)羽流行为的关键控制

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摘要

Acidic low-level waste radioactive waste solutions were discharged to three unlined seepage basins at the F-Area of the Department of Energy (DOE) Savannah River Site (SRS), South Carolina, USA, from 1955 through 1989. Despite many years of active remediation, the groundwater remains acidic and contaminated with significant levels of U(VI) and other radionuclides. Monitored Natural Attenuation (MNA) is a desired closure strategy for the site, based on the premise that regional flow of clean background groundwater will eventually neutralize the groundwater acidity, immobilizing U(VI) through adsorption. An in situ treatment system is currently in place to accelerate this in the downgradient portion of the plume and similar measures could be taken upgradient if necessary. Understanding the long-term pH and U(VI) adsorption behavior at the site is critical to assess feasibility of MNA along with the in-situ remediation treatments. This paper presents a reactive transport (RT) model and uncertainty quantification (UQJ analyses to explore key controls on the U(VI)-plume evolution and long-term mobility at this site. Two-dimensional numerical RT simulations are run including the saturated and unsaturated (vadose) zones, U(V1) and H+ adsorption (surface complexation) onto sediments, dissolution and precipitation of Al and Fe minerals, and key hydrodynamic processes are considered. UQ techniques are applied using a new open-source tool that is part of the developing ASCEM reactive transport modeling and analysis framework to: (1) identify the complex physical and geochemical processes that control the U(VI) plume migration in the pH range where the plume is highly mobile, (2) evaluate those physical and geochemical parameters that are most controlling, and (3) predict the future plume evolution constrained by historical, chemical and hydrological data. The RT simulation results show a good agreement with the observed historical pH and concentrations of U(VI), nitrates and Al concentrations at multiple locations. Mineral dissolution and precipitation combined with adsorption reactions on goethite and kaolinite (the main minerals present with quartz) could buffer pH at the site for long periods of time. UQ analysis using the Morris one-at-a-time (OAT) method indicates that the model/ parameter is most sensitive to the pH of the waste solution, discharge rates, and the reactive surface area available for adsorption. However, as a key finding, UQ analysis also indicates that this model (and parameters) sensitivity evolves in space and time, and its understanding could be
机译:从1955年到1989年,酸性低放废物放射性废物溶液被排放到美国南卡罗来纳州能源部(DOE)萨凡纳河工地(SRS)F区的三个未衬砌的渗漏池中。修复后,地下水仍然是酸性的,并被大量的U(VI)和其他放射性核素污染。监测自然衰减(MNA)是该站点的理想关闭策略,其前提是干净的本底地下水区域流量最终将中和地下水酸度,并通过吸附固定U(VI)。当前已经采用原位处理系统来加速羽流的下降梯度部分,如有必要,可以采取类似的措施来加速下降。了解该站点的长期pH和U(VI)吸附行为对于评估MNA以及原位修复方法的可行性至关重要。本文提出了一种反应性运输(RT)模型和不确定性定量分析(UQJ分析,以探讨该场所U(VI)-浮质演化和长期迁移的关键控制。进行了二维数值RT模拟,包括饱和和饱和。非饱和(渗流)区,U(V1)和H +在沉积物上的吸附(表面络合),Al和Fe矿物的溶解和沉淀以及关键的流体动力学过程,并使用一种新的开源工具应用UQ技术,该工具是ASCEM反应性运输建模和分析框架的建立,以:(1)确定复杂的物理和地球化学过程,这些过程控制着U(VI)羽流在pH范围内流动性很高的pH范围内的迁移,(2)评价那些物理和地球化学最受控制的参数,以及(3)预测受历史,化学和水文数据限制的未来羽流演化,RT模拟结果与实测值具有很好的一致性历史pH值以及多个位置的U(VI),硝酸盐和Al浓度。矿物质的溶解和沉淀,以及在针铁矿和高岭石(石英中存在的主要矿物质)上的吸附反应,可以长时间缓冲该位置的pH。使用Morris一次(OAT)方法进行的UQ分析表明,该模型/参数对废液的pH值,排放速率和可用于吸附的反应表面积最敏感。但是,作为一项重要发现,UQ分析还表明,此模型(和参数)的敏感性随时间和空间而变化,对它的理解可能是

著录项

  • 来源
    《Journal of Contaminant Hydrology》 |2013年第8期|34-54|共21页
  • 作者单位

    Earth Sciences Division, Lawrence Berkeley National Lab., 1 Cyclotron Road Mail Stop 90R1116, Berkeley, CA 94720-8126, United States;

    Earth Sciences Division, Lawrence Berkeley National Lab., 1 Cyclotron Road Mail Stop 90R1116, Berkeley, CA 94720-8126, United States;

    Earth Sciences Division, Lawrence Berkeley National Lab., 1 Cyclotron Road Mail Stop 90R1116, Berkeley, CA 94720-8126, United States;

    Earth Sciences Division, Lawrence Berkeley National Lab., 1 Cyclotron Road Mail Stop 90R1116, Berkeley, CA 94720-8126, United States;

    Earth Sciences Division, Lawrence Berkeley National Lab., 1 Cyclotron Road Mail Stop 90R1116, Berkeley, CA 94720-8126, United States;

    Savannah River National Lab., Bldg. 773-42A, Aiken, SC 29808, United States;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Reactive transport modeling; Acidic plume; Vadose zone; Richards equation; Uranium; Surface complexation modeling; Reactive facies; Uncertainty quantification; ASCEM;

    机译:反应运输模型;酸性羽渗流带;理查兹方程;铀;表面络合建模;反应相;不确定度量化;原子能机构;

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