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Remediation of Contaminated Marine Sediment Using Thin-Layer Capping with Activated Carbon: A Field Experiment in Trondheim Harbor, Norway

机译:活性炭薄层覆盖法修复污染的海洋沉积物:挪威特隆赫姆港的现场试验

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摘要

In situ amendment of contaminated sediments using activated carbon (AC) is a recent remediation technique, where the strong sorption of contaminants to added AC reduces their release from sediments and uptake into organisms. The current study describes a marine underwater field pilot study in Trondheim harbor, Norway, in which powdered AC alone or in combination with sand or clay was tested as a thin-layer capping material for polycydic aromatic hydrocarbon (PAH)-contami-nated sediment Several novel elements were included, such as measuring PAH fluxes, no active mixing of AC into the sediment, and the testing of new manners of placing a thin AC cap on sediment, such as AC+day and AC+sand combinations. Innovative chemical and biological monitoring methods were deployed to test capping effectiveness. In situ sediment-to-water PAH fluxes were measured using recently developed benthic flux chambers. Compared to the reference field, AC capping reduced fluxes by a factor of 2-10. Pore water PAH concentration profiles were measured in situ using a new passive sampler technique, and yielded a reduction factor of 2-3 compared to the reference field. The benthic macrofauna composition and biodiversity were affected by the AC amendments, AC + clay having a lower impact on the benthic taxa than AC-only or AC + sand. In addition, AC + day gave the highest AC recoveries (60% vs 30% for AC-only and AC + sand) and strongest reductions in sediment-to-water PAH fluxes and porewater concentrations. Thus, application of an AC-day mixture is recommended as the optimal choice of the currently tested thin-layer capping methods for PAHs, and more research on optimizing its implementation is needed.
机译:使用活性炭(AC)原位修复受污染的沉积物是一种新的补救技术,其中污染物对添加的AC的强烈吸附作用可减少污染物从沉积物中的释放以及对生物的吸收。当前的研究描述了在挪威特隆赫姆海港进行的一次水下水下野外试验研究,在该试验中,单独使用粉末状AC或与沙子或粘土组合使用粉末状AC作为聚环芳烃(PAH)污染的沉积物的薄层覆盖材料。包括新颖的元素,例如测量PAH通量,没有将AC主动混入沉积物中,以及测试将薄薄的AC帽放在沉积物上的新方式,例如AC + day和AC + sand组合。部署了创新的化学和生物监测方法来测试封盖效果。使用最近开发的底栖通量室测量了沉积物到水的PAH通量。与参考场相比,交流封顶将通量减少了2-10倍。使用新的被动采样器技术现场测量了孔隙水的PAH浓度分布,与参考场相比,降低了2-3倍。底栖大型动物区系的组成和生物多样性受到AC修正案的影响,AC +粘土对底栖生物群的影响比纯AC或AC +沙粒低。此外,每天使用AC +可获得最高的AC回收率(60%对比仅使用AC和AC +砂的30%),并且最大程度地减少了沉积物与水的PAH通量和孔隙水浓度。因此,建议使用AC-day混合物作为当前测试的PAH薄层封盖方法的最佳选择,并且需要更多有关优化其实施的研究。

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  • 来源
    《Environmental Science & Technology》 |2011年第14期|p.6110-6116|共7页
  • 作者单位

    Norwegian Geotechnical Institute (NGI), P.O. Box 3930 Ulleval Stadium, N-0806 Oslo, Norway,Applied Environmental Sciences (ITM), Stockholm University, 10691 Stockholm, Sweden,Department of Plant and Environmental Sciences, University of Life Sciences, As, Norway;

    Norwegian Geotechnical Institute (NGI), P.O. Box 3930 Ulleval Stadium, N-0806 Oslo, Norway;

    Norwegian Geotechnical Institute (NGI), P.O. Box 3930 Ulleval Stadium, N-0806 Oslo, Norway,Department of Geosciences, Oslo University, Oslo, Norway;

    Norwegian Geotechnical Institute (NGI), P.O. Box 3930 Ulleval Stadium, N-0806 Oslo, Norway;

    Norwegian Geotechnical Institute (NGI), P.O. Box 3930 Ulleval Stadium, N-0806 Oslo, Norway;

    Norwegian Geotechnical Institute (NGI), P.O. Box 3930 Ulleval Stadium, N-0806 Oslo, Norway;

    Department of Systems Ecology, Stockholm University, 106 91 Stockholm, Sweden;

    Department of Systems Ecology, Stockholm University, 106 91 Stockholm, Sweden;

    Department of Systems Ecology, Stockholm University, 106 91 Stockholm, Sweden,Department of Contaminant Research, Swedish Museum of Natural History, 104 05 Stockholm, Sweden;

    Marine Bunndyr AS, Trondheim, Norway;

    Department of Systems Ecology, Stockholm University, 106 91 Stockholm, Sweden;

  • 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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  • 入库时间 2022-08-17 14:03:38

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