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Evaluation of Conceptual and Numerical Models for Arsenic Mobilization and Attenuation during Managed Aquifer Recharge

机译:有管理的含水层补给过程中砷动员和衰减的概念模型和数值模型的评估

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摘要

Managed Aquifer Recharge (MAR) is promoted as an attractive technique to meet growing water demands. An impediment to MAR applications, where oxygenated water is recharged into anoxic aquifers, is the potential mobilization of trace metals (e.g., arsenic). While conceptual models for arsenic transport under such circumstances exist, they are generally not rigorously evaluated through numerical modeling, especially at field-scale. In this work, geochemical data from an injection experiment in The Netherlands, where the introduction of oxygenated water into an anoxic aquifer mobilized arsenic, was used to develop and evaluate conceptual and numerical models of arsenic release and attenuation under field-scale conditions. Initially, a groundwater flow and nonreactive transport model was developed. Subsequent reactive transport simulations focused on the description of the temporal and spatial evolution of the redox zonation. The calibrated model was then used to study and quantify the transport of arsenic. In the model that best reproduced field observations, the fate of arsenic was simulated by (ⅰ) release via codissolution of arsenopyrite, stoichiometrically linked to pyrite oxidation, (ⅱ) kineticalry controlled oxidation of dissolved As(lll) to As(V), and (ⅲ) As adsorption via surface complexation on neo-precipitated iron oxides.
机译:托管含水层补给(MAR)是一种吸引人的技术,可以满足不断增长的用水需求。将含氧水充入缺氧含水层中的MAR应用的障碍是微量金属(例如砷)的潜在迁移。尽管存在这种情况下砷运输的概念模型,但通常不通过数值模型来严格评估它们,尤其是在田间规模上。在这项工作中,来自荷兰的一个注入实验的地球化学数据,其中是将氧化水引入缺氧含水层动员的砷中,用于开发和评估田间规模条件下砷释放和衰减的概念和数值模型。最初,开发了地下水流动和非反应性运输模型。随后的反应输运模拟着重于氧化还原区域的时间和空间演变的描述。然后将校准后的模型用于研究和量化砷的运输。在最能重现野外观测的模型中,砷的命运通过以下方式模拟:(release)通过毒砂的共溶解释放,化学计量学上与黄铁矿氧化相关,(ⅱ)动力学控制将溶解的As(III)氧化为As(V),并且(ⅲ)通过在新沉淀的氧化铁上的表面络合吸附。

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  • 来源
    《Environmental Science & Technology》 |2010年第13期|P.5035-5041|共7页
  • 作者单位

    NCGRT, Flinders University, Adelaide, GPO Box 2100, SA 5001, Australia Flinders University, Adelaide, GPO Box 2100, SA 5001, Australia;

    rnCSIRO Land and Water, Private Bag No. S, Wembley WA 6913, Australia School of Earth and Environment, The University of Western Australia, Crawley, 6009, Australia;

    rnNCGRT, Flinders University, Adelaide, GPO Box 2100, SA 5001, Australia;

    rnVU University Amsterdam, The Netherlands;

    VU University Amsterdam, The Netherlands KWR Watercycle Research Institute, The Netherlands;

  • 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
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  • 入库时间 2022-08-17 14:03:58

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