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Soil-to-plant transfer of elements is not linear: Results for five elements relevant to radioactive waste in five boreal forest species

机译:土壤到植物的元素转移不是线性的:五个北方森林物种中与放射性废物相关的五个元素的结果

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摘要

Element-specific concentration ratios (CRs) assuming that plant uptake of elements is linear are commonly used in radioecological modelling to describe the soil-to-plant transfer of elements. The goal of this study was to investigate the validity of the linearity assumption in boreal forest plants, for which only limited relevant data are available. The soil-to-plant transfer of three essential (Mo, Ni, Zn) and two non-essential (Pb, U) elements relevant to the safety of radioactive waste disposal was studied. Three understory species (blueberry, narrow buckler fern and May lily) and two tree species (Norway spruce and rowan) were included. Examining CRs as a function of soil concentration showed that CR was not constant but decreased with increasing soil concentrations for all elements and plant species. A non-linear equation fitted fairly well with the empirical data; the Revalues for this equation were constantly higher than those for the linear fit. The difference between the two fits was most evident at low soil concentrations where the use of constant CRs underestimated transfer from soil to plants. Site-specific factors affected the transfer of Mo and Ni. The results suggested that systematic variation with soil concentrations explains a part of the large variation of empirically determined CRs, and the accuracy of modelling the soil-to-plant transfer might be improved by using non-linear methods. Non-linearity of soil-to-plant transfer has been previously reported for a few different species, elements and environments. The present study systematically tested the linearity assumption for five elements (both essential and non-essential) and in five boreal forest species representing different growth traits and phylogenies. The data supported non-linearity in all cases.
机译:假定植物对元素的吸收是线性的,特定元素的浓度比(CRs)通常用于放射生态学建模中,以描述元素从土壤到植物的转移。这项研究的目的是调查线性假设在北方森林植物中的有效性,因为只有有限的相关数据可用。研究了与放射性废物处置安全相关的三种必需元素(Mo,Ni,Zn)和两种非必需元素(Pb,U)从土壤到植物的转移。包括三种林下物种(蓝莓,窄带蕨和五月百合)和两种树种(挪威云杉和罗文)。检查CRs与土壤浓度的关系,发现CR并不是恒定的,而是随着所有元素和植物物种土壤浓度的增加而降低。非线性方程与经验数据非常吻合;该方程式的重估值始终高于线性拟合的重估值。两种拟合之间的差异在土壤浓度低的情况下最为明显,使用恒定的CR会低估从土壤到植物的迁移。特定地点的因素影响了Mo和Ni的转移。结果表明,土壤浓度的系统变化解释了经验确定的CR的较大变化的一部分,通过使用非线性方法可以提高土壤-植物转移模型的准确性。先前已经报道了几种不同物种,元素和环境的土壤到植物转移的非线性。本研究系统地测试了五个要素(必需要素和非必需要素)以及代表不同生长特性和系统发育的五个北方森林物种的线性假设。数据在所有情况下都支持非线性。

著录项

  • 来源
    《Science of the total environment》 |2011年第1期|p.191-197|共7页
  • 作者单位

    University of Eastern Finland, Department of Environmental Science, P.O. Box 1627, 70211 Kuopio, Finland;

    University of Eastern Finland, Department of Environmental Science, P.O. Box 1627, 70211 Kuopio, Finland;

    University of Eastern Finland, Department of Environmental Science, P.O. Box 1627, 70211 Kuopio, Finland;

    University of Eastern Finland, Department of Environmental Science, P.O. Box 1627, 70211 Kuopio, Finland;

    University of Eastern Finland, Department of Environmental Science, P.O. Box 1627, 70211 Kuopio, Finland;

    University of Eastern Finland, Department of Environmental Science, P.O. Box 1627, 70211 Kuopio, Finland;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    concentration ratio; linearity assumption; boreal forest; modeling;

    机译:浓度比;线性假设;北方森林;建模;

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