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Biogeochemical Changes and Mercury Methylation beneath an In-Situ Sediment Cap

机译:原位沉积物帽下的生物地球化学变化和汞甲基化

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摘要

In-situ capping has shown promise as a management strategy for contaminated aquatic sediments, however, little is known about how mercury methylation in underlying sediments will be affected. Changes to the location and extent of sulfate reduction and other biological processes were studied in estuarine sediment using laboratory microcosms. Observations in a model sediment showed increases of in situ total methylmercury concomitant with an upward extension of anaerobic bacterial activity beneath a sediment cap and under anoxic conditions. Increased methylmercury (up to 50%) was observed beneath a sediment cap in a region 2-3 cm higher than in an uncapped sediment. A 1-dimensional, unsteady, reaction transport model was used to simulate the transient response to mercury-related biogeochemical processes. The location, magnitude, and expected duration of the increased methylmercury was such that a significant impact on near cap-water interface methylmercury was not expected for the sediments studied. Explicit consideration of the biogeochemical effects of capping on mercury contaminated sediment however, may be necessary for very thin or unstable capping layers where the physical sequestration provided by a cap may be compromised.
机译:现场封顶技术已被证明是一种被污染的水生沉积物的管理策略,但是,对于如何影响底层沉积物中的甲基化甲基汞知之甚少。利用实验室缩影研究了河口沉积物中硫酸盐还原的位置和程度以及其他生物过程的变化。在模型沉积物中的观察结果表明,原位总甲基汞增加,同时在沉积物帽下和缺氧条件下厌氧细菌活性向上扩展。在沉积物帽下比未封盖的沉积物高2-3 cm处发现甲基汞增加(高达50%)。使用一维非稳态反应传输模型来模拟对汞相关生物地球化学过程的瞬态响应。甲基汞增加的位置,大小和预期持续时间使得对研究的沉积物预计不会对靠近帽盖水界面的甲基汞产生重大影响。但是,对于非常薄或不稳定的封盖层(可能会损害由封盖提供的物理隔离),可能需要明确考虑封盖对汞污染的沉积物的生物地球化学效应。

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  • 来源
    《Environmental Science & Technology》 |2010年第19期|p.7280-7286|共7页
  • 作者单位

    University of Texas at Austin, Department of Civil Architectural and Environmental Engineering Department of Civil Engineering, University of Minnesota Duluth;

    rnUniversity of Texas at Austin, Department of Civil Architectural and Environmental Engineering;

    rnUniversity of Texas at Austin, Department of Civil Architectural and Environmental Engineering;

  • 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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