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Rare-Earth Elements as Natural Tracers for In Situ Remediation of Groundwater

机译:稀土元素作为自然示踪剂,用于地下水的原位修复

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摘要

The utility of rare-earth elements (REEs) as natural geochemical tracers for the analysis of groundwater remediation was examined in several example permeable reactive barriers (PRBs). The PRBs utilize zero-valent iron and organic carbon plus limestone mixtures for contaminant treatment. Zero-valent iron removed REEs from groundwater to below detection levels (2-4 ng/L) and subsequent rebound of REE concentrations in regions down-gradient of the treatment zones was not observed. In addition, REE concentrations within and down-gradient of an organic carbon/ limestone PRB were significantly reduced to <1% of influent levels. Thus, REEs are sensitive tracers for evaluating the interaction of groundwater with materials placed in the subsurface for contaminant remediation. Analysis of geochemical tracers for understanding in situ remediation becomes important in situations where down-gradient contaminant concentrations fail to decrease within expected timeframes. The field data indicated that increased solid-phase partitioning of REEs occurred with increasing pH and heavy REEs were preferentially removed compared to light REEs in ZVI systems. In the organic carbon PRB, unexpected negative europium anomalies were observed, revealing new information about redox conditions within the treatment zone. REE concentrations and shale-normalized profiles can be used as natural tracers to better understand in situ technologies for groundwater remediation.
机译:在几个示例性可透水的反应屏障(PRB)中,研究了稀土元素作为天然地球化学示踪剂的自然地球化学示踪剂的效用。 PRBS利用零价熨斗和有机碳加上污染物治疗的石灰石混合物。未观察到零价铁从地下水去除地下水的REES(2-4 ng / L)和治疗区的区域下降梯度的后续反弹。此外,有机碳/石灰石PRB内和下梯度内的REE浓度明显降低至<1%的流入水平。因此,REES是敏感的示踪剂,用于评估地下水与放置在地下污染物修复中的材料的相互作用。用于理解修复理解地球化学示踪剂的分析在下梯度污染浓度未能在预期时间帧内降低的情况下变得重要。与ZVI系统中的轻度REES相比,现场数据表明,优先除去随着pH和重圈的增加而发生的REES的固相分配。在有机碳PRB中,观察到意外的阴性铕异常,揭示了治疗区内的氧化还原条件的新信息。 REE浓度和页岩标准化型材可用作自然示踪剂,以更好地理解地下水修复的原位技术。

著录项

  • 来源
    《Environmental Science & Technology》 |2021年第2期|1251-1259|共9页
  • 作者单位

    U.S. Environmental Protection Agency Center for Environmental Solutions and Emergency Response Groundwater Characterization and Remediation Division Ada Oklahoma 74820 United States;

    U.S. Environmental Protection Agency Center for Environmental Solutions and Emergency Response Groundwater Characterization and Remediation Division Ada Oklahoma 74820 United States;

    U.S. Environmental Protection Agency Center for Environmental Solutions and Emergency Response Groundwater Characterization and Remediation Division Ada Oklahoma 74820 United States;

    Oak Ridge Associated Universities U.S. Environmental Protection Agency Center for Environmental Solutions and Emergency Response Groundwater Characterization and Remediation Division Ada Oklahoma 74820 United States;

    U.S. Environmental Protection Agency Boston Massachusetts 02109 United States;

    U.S. Environmental Protection Agency Dallas Texas 75270 United States;

    U.S. Environmental Protection Agency Center for Environmental Solutions and Emergency Response Groundwater Characterization and Remediation Division Ada Oklahoma 74820 United States;

    U.S. Environmental Protection Agency Boston Massachusetts 02109 United States;

    Hull & Associates LLC Mason Ohio 45040 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);
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  • 正文语种 eng
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