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Long-term retention of Cs-137 in three forest soil types with different soil properties

机译:Cs-137在三种不同土壤性质的森林土壤中的长期保留

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摘要

Current Cs-137 activity concentrations were studied at three localities in individual soil horizons of Stagnosol, Arenic Podzol and Haplic Cambisol soil units in soil blocks with dimensions of 20 x 20 x 40 cm situated below pine canopies (n = 3) and spruce canopies (n = 3), and below small canopy gaps, at least 15 x 15 m in area (n = 3 + 3), which have probably endured since 1986. The main zone of Cs-137 accumulation in all the localities was found to be in the organic horizons (H and F). No significant transport and accumulation of Cs-137 into illuvial soil horizons (Bm, Bs or Bhs, Bv and Bv/IIC) was found. The estimated current total Cs-137 activity concentrations in the soil blocks 40 cm in depth were only slightly higher below the coniferous canopy than they were below nearby canopy gaps. The inventory of Cs-137 in the soils was found to be in accordance with the estimated Cs-137 inputs from the Chernobyl fallout and from global fallout. The low amounts of Cs-137 found accumulated in the above-ground biomass (mosses, grasses, needles) did not substantially bias the studied radiocaesium balance in the soils. The vertical migration rate of Cs-137 in soils (cm/year) had a tendency to be higher below canopies than below canopy gaps and below pine canopies than below spruce canopies. We expected the current Cs-137 activity concentrations in the individual soil horizons to be related to the studied soil parameters: pH (H2O), pH (CaCl2), content of organic matter and mineral portion and portion of humic and fulvic acid contents (Q(4/6)). However, this was not confirmed. Similarly, we observed a weak tendency toward higher Cs-137 activity in soils below the canopy than in soils below canopy gaps. The available gaps used in our study may have been too small, and they may have been affected by an accumulation of litter and humus containing Cs-137 from the surrounding plots situated below neighbouring canopies. 2016 Elsevier Ltd. All rights reserved.
机译:在松树冠层(n = 3)和云杉冠层(n = 3)下的20 x 20 x 40 cm大小的土壤块中,在Stagnosol,Arenic Podzol和Haplic Cambisol土壤单元的三个土壤层中的三个位置研究了当前Cs-137的活动浓度。 n = 3),并且在较小的树冠间隙以下,面积至少15 x 15 m(n = 3 + 3),该面积自1986年以来可能一直存在。发现所有地区Cs-137的主要堆积带是在有机的视野中(H和F)。未发现Cs-137进入明显的土壤层位(Bm,Bs或Bhs,Bv和Bv / IIC)有明显的运输和积累。在40厘米深的土壤块中,目前估计的总Cs-137活度浓度仅比针叶树冠以下略高,而低于附近树冠间隙。发现土壤中Cs-137的库存与切尔诺贝利尘埃和全球尘埃的Cs-137估计投入一致。发现在地上生物量(苔藓,草,针叶)中积累的少量Cs-137基本上不偏向土壤中研究的放射性铯平衡。土壤中Cs-137的垂直迁移速率(厘米/年)趋向于冠层下高于盖间间隙和松树冠下高于云杉冠下。我们期望当前各个土壤层中Cs-137的活动浓度与研究的土壤参数有关:pH(H2O),pH(CaCl2),有机物含量和矿物质含量以及腐殖酸和富里酸含量(Q (4/6))。但是,这尚未得到证实。同样,我们观察到冠层下土壤的Cs-137活性比冠层间隙以下的土壤具有更高的Cs-137活性。我们的研究中使用的可用间隙可能太小,并且可能受到来自邻近冠层下方周围地块中含有Cs-137的凋落物和腐殖质积累的影响。 2016 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Journal of Environmental Radioactivity》 |2016年第7期|102-113|共12页
  • 作者单位

    Silva Tarouca Res Inst Landscape & Ornamental Gar, Kvetnove Namesti 391, CZ-25243 Pruhonice, Czech Republic;

    Silva Tarouca Res Inst Landscape & Ornamental Gar, Kvetnove Namesti 391, CZ-25243 Pruhonice, Czech Republic;

    Silva Tarouca Res Inst Landscape & Ornamental Gar, Kvetnove Namesti 391, CZ-25243 Pruhonice, Czech Republic;

    Natl Radiat Protect Inst, Bartoskova 28, CZ-14000 Prague 4, Czech Republic;

    Natl Radiat Protect Inst, Bartoskova 28, CZ-14000 Prague 4, Czech Republic;

  • 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
  • 关键词

    Cs-137 activity concentrations; Soil horizons; Soil properties; Cs-137 vertical migration rate; Cs-137 inventory;

    机译:Cs-137活度浓度;土壤层位;土壤性质;Cs-137垂直迁移率;Cs-137库存;
  • 入库时间 2022-08-17 13:35:08

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