首页> 外文期刊>Environmental Science & Technology >Isotopic Composition of Pb in Peat and Porewaters from Three Contrasting Ombrotrophic Bogs in Finland: Evidence of Chemical Diagenesis in Response to Acidification
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Isotopic Composition of Pb in Peat and Porewaters from Three Contrasting Ombrotrophic Bogs in Finland: Evidence of Chemical Diagenesis in Response to Acidification

机译:芬兰三个不同的脐营养化沼泽中泥炭和孔隙水中铅的同位素组成:响应酸化的化学成岩作用的证据

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摘要

The isotopic composition of Pb was determined in Finnish peat bogs and their porewaters from Harjavalta (HAR, near a Cu-Ni smelter), Outokumpu (OUT, near a Cu-Ni mine), and Hietajaervi (HIJ, a background site). At HIJ and OUT, the porewaters yielded similar concentrations (0.1-0.7 μg/L) and isotopic composition (~(206)Pb/~(207)Pb = 1.154-1.164). In contrast, the peat profile from HAR yielded greater concentrations of Pb in the porewaters (average 2.4 μg/L), and the Pb is less radiogenic (~(206)Pb/~(207)Pb = 1.121-1.149). Acidification of the bog surface waters to pH 3.5 by SO_2 emitted from smelting (compared to pH 4.0 at the control site) apparently promotes the dissolution of Pb-bearing aerosols, as well as desorption of metals from the surfaces of these particles and from the peat matrix Despite this, the chronology of anthropogenic, atmospheric deposition for the past millenium recorded by the isotopic composition of Pb in all three peat bogs is remarkably similar. While the immobility of Pb in the peat cores may appear inconsistent with the elevated porewater Pb concentrations, Pb concentrations in the aqueous phase never amount to more than 0.01% of the total Pb at any given depth so that the potential for migration remains small. The low rates of vertical water movement in bogs generally combined with the size of the metal-containing particles in solution may be additional factors limiting Pb mobilization.
机译:在芬兰的泥炭沼泽及其孔隙水中测定了Pb的同位素组成,这些泥炭来自Harjavalta(HAR,靠近Cu-Ni冶炼厂),Outokumpu(OUT,靠近Cu-Ni矿山)和Hietajaervi(HIJ,背景站点)。在HIJ和OUT处,孔隙水产生相似的浓度(0.1-0.7μg/ L)和同位素组成(〜(206)Pb /〜(207)Pb = 1.154-1.164)。相比之下,HAR的泥炭剖面在孔隙水中产生较高的Pb浓度(平均2.4μg/ L),而Pb的放射成因较少(〜(206)Pb /〜(207)Pb = 1.121-1.149)。冶炼过程中排放出的SO_2将沼泽地表水酸化至pH 3.5(与对照地点的pH 4.0相比),显然促进了含Pb气溶胶的溶解以及金属从这些颗粒表面和泥炭中的解吸。尽管如此,所有三个泥炭沼泽中Pb的同位素组成所记录的过去千年的人为,大气沉积的时间顺序都非常相似。尽管Pb在泥炭芯中的固定性可能与增加的孔隙水Pb浓度不一致,但在任何给定深度,水相中Pb的浓度绝不超过总Pb的0.01%,因此迁移的潜力仍然很小。沼泽中垂直水的低运动速率通常与溶液中含金属颗粒的尺寸结合在一起可能是限制Pb迁移的其他因素。

著录项

  • 来源
    《Environmental Science & Technology》 |2016年第18期|9943-9951|共9页
  • 作者单位

    Department of Renewable Resources, University of Alberta, Edmonton, Alberta T6G 2H1 Canada;

    University of Heidelberg, Institute of Environmental Geochemistry, Im Neuenheimer Feld 236, D-69120 Heidelberg, Germany,European Commission, Joint Research Centre, Directorate Nuclear Safety and Security, P.O. Box 2340, 76125 Karlsruhe, GERMANY;

    Natural Resources Institute Finland (Luke), Box 18, FI-01301 Vantaa, Finland;

    Natural Resources Institute Finland (Luke), Box 18, FI-01301 Vantaa, Finland;

    European Commission, Joint Research Centre, Directorate Nuclear Safety and Security, P.O. Box 2340, 76125 Karlsruhe, Germany;

  • 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 13:58:55

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