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Interception of radionuclides by planophile crops: A simple semi-empirical modelling approach in case of nuclear accident fallout

机译:截止核事故辐射中的一种简单半经济建模方法的放射性核素

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摘要

Shortly after an atmospheric release, the interception of radionuclides by crop canopies represents the main uptake pathway leading to food chain contamination. The food chain models currently used in European emergency decision support systems require a large number of input parameters, which inevitably leads to high model complexity. In this study, we have established a new relationship for wet deposited radionuclides to simplify the current modelling approaches. This relationship is based on the hypothesis that the stage of plant development is the key factor governing the interception of radionuclides by crops having horizontally oriented leaves (planophile crops). The interception fraction (f) and the leaf area index normalized (f(LAI)) and mass normalized (f(B)) interception fractions were assessed for spinach (Spinacia oleracea) and radish (Raphanus sativus) at different stages of plant development and for different contamination treatments and plant densities. A database of 191 f values for Cs-137 and Th-229 was built and complemented with existing literature covering various radionuclides and crops with similar canopy structure. The overall f increased with the plant growth, while the reverse was observed for f(B). The f(LAI) significantly decreased by doubling the contaminated rainfall deposited. Fitting a multiple linear regression to predict the f value as a function of the standing biomass (B), and the radionuclide form (anion and cation) led to a better estimation of the interception (R-2 = 81%) than the ECOSYS-87 model (R-2 = 35%). Hence, the simplified modelling approach here proposed seems to be a suitable risk assessment tool as fewer parameters will minimize the model complexity and facilitate the decision-making procedures in case of emergencies, when countermeasures need to be identified and implemented promptly. (C) 2020 Elsevier Ltd. All rights reserved.
机译:大气释放后不久,作物檐篷的放射性核素截取代表着导致食物链污染的主要摄取途径。目前用于欧洲紧急决策支持系统的食物链模型需要大量的输入参数,这不可避免地导致高模型复杂性。在这项研究中,我们已经建立了对湿沉积的放射性核素的新关系,以简化当前的建模方法。这种关系基于植物开发的阶段是通过水平取向叶片(平整杂粮)的作物来控制放射性核素截止的关键因素。在不同阶段的植物发育和植物发育的不同阶段评估截取级分(F)和叶片区域指数(F(LAI))和质量标准化(F(B))和萝卜(Raphanus Sativus)和萝卜(Raphanus Sativus)和叶片区域指数用于不同的污染处理和植物密度。构建了CS-137和TH-229的191°F值的数据库,并与现有的文献覆盖了各种放射性核素和具有相似顶篷结构的作物。整体F随着植物生长而增加,而F(b)观察到逆转。通过沉积污染的降雨,F(Lai)显着下降。拟合多元线性回归以将F值预测为常设生物量(B),并且放射性核素形式(阴离子和阳离子)导致截取(R-2 = 81%)比生态系统更好地估计 - 87型(R-2 = 35%)。因此,这里提出的简化建模方法似乎是一个合适的风险评估工具,因为更少的参数将最小化模型复杂性,并促进紧急情况下的决策程序,当需要纠正和实施。 (c)2020 elestvier有限公司保留所有权利。

著录项

  • 来源
    《Environmental Pollution》 |2020年第3期|115308.1-115308.11|共11页
  • 作者单位

    Belgian Nucl Res Ctr SCK CEN Fdn Publ Util Biosphere Impact Studies B-2400 Mol Belgium|Univ Antwerp Dept Biosci Engn Groenenborgerlaan 171 B-2020 Antwerp Belgium;

    Univ Antwerp Dept Biosci Engn Groenenborgerlaan 171 B-2020 Antwerp Belgium;

    Belgian Nucl Res Ctr SCK CEN Fdn Publ Util Biosphere Impact Studies B-2400 Mol Belgium|Hasselt Univ Ctr Environm Sci Agoralaan Bldg D B-3590 Diepenbeek Belgium;

    Belgian Nucl Res Ctr SCK CEN Fdn Publ Util Biosphere Impact Studies B-2400 Mol Belgium;

    Belgian Nucl Res Ctr SCK CEN Fdn Publ Util Biosphere Impact Studies B-2400 Mol Belgium;

    Belgian Nucl Res Ctr SCK CEN Fdn Publ Util Biosphere Impact Studies B-2400 Mol Belgium;

    Belgian Nucl Res Ctr SCK CEN Fdn Publ Util Biosphere Impact Studies B-2400 Mol Belgium;

  • 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

    Agricultural planophile crop; Foliar uptake; Allometry; Modelling; Radionuclide; Interception;

    机译:农业小组作物;叶面吸收;各种;造型;放射性核素;拦截;

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