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Identification of Temperature-Dependent Water Quality Changes during a Deep Well Injection Experiment in a Pyritic Aquifer

机译:在黄热土层深井注水实验中确定随温度变化的水质变化

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摘要

Artificial recharge is a technique used increasingly to supplement drinking water supplies.To assess the potential water quality changes that occur during subsurface passage,a comprehensive deep-well injection experiment was carried out for a recharge scheme,where pretreated,aerobic surface water was injected at 300 m depth into an anaerobic aquifer.Water quality parameters were recorded over the 854-days long injection phase.The evolution of the major ion and redox chemistry was analyzed with a three-dimensional reactive multicomponent transport model.It was found that the oxidation of pyrite was the main driverfor water quality changes and that reaction rates depended significantly on the spatially/temporally varying groundwater temperature.With the temperature-dependency of the oxidation reactions incorporated into the model,the simulations give an accurate picture of the temporal and spatial evolution of the hydrochemical changes that occurred during the experiment.To delineate the influence of physical and chemical processes on local concentration changes the results of the reactive transport model simulations were compared with the corresponding results from nonreactive simulations.The study emphasizes the suitability of mechanistic multicomponent reactive transport modeling as an integrative tool for data analysis when physical transport and chemical processes interact.
机译:人工补给是一种越来越多地用于补充饮用水的技术。为评估地下通行过程中可能发生的水质变化,针对补给方案进行了全面的深井注水实验,其中预处理后的井下需氧水被注入进入厌氧含水层的深度为300 m,记录了854天的长注入期的水质参数,并使用三维反应性多组分迁移模型分析了主要离子和氧化还原化学的演变,发现其中的氧化黄铁矿是水质变化的主要驱动力,反应速率在很大程度上取决于时空变化的地下水温度。通过将氧化反应的温度依赖性纳入模型,该模拟可以准确地描述水体的时空演变。实验过程中发生的水化学变化。物理和化学过程对局部浓度变化的影响将反应性输运模型模拟的结果与非反应性模拟的相应结果进行了比较。研究强调了机械多组分反应性输运模型作为物理运输和运输过程中数据分析的集成工具的适用性。化学过程相互作用。

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  • 来源
    《Environmental Science & Technology》 |2005年第7期|p.2200-2209|共10页
  • 作者单位

    Hydrogeology Group,Faculty of Earthsciences,Utrecht University,P.O.Box 80O_21,Budapestlaan 4,3508 TA Utrecht,The Netherlands,Centre for Groundwater Studies,Australia,Kiwa Water Research,The Netherlands,and Faculty of Earth and Life Sciences,Free Univ;

    Hydrogeology Group,Faculty of Earthsciences,Utrecht University,P.O.Box 80O_21,Budapestlaan 4,3508 TA Utrecht,The Netherlands,Centre for Groundwater Studies,Australia,Kiwa Water Research,The Netherlands,and Faculty of Earth and Life Sciences,Free Univ;

  • 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 环境化学;
  • 关键词

  • 入库时间 2022-08-17 14:07:43

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