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首页> 外文期刊>Journal of Environmental Radioactivity >Uncertainty of current understanding regarding OBT formation in plants
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Uncertainty of current understanding regarding OBT formation in plants

机译:关于植物中OBT形成的当前理解的不确定性

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摘要

Radiological impact models are important tools that support nuclear safety. For tritium, a special radionuclide that readily enters the life cycle, the processes involved in its transport into the environment are complex and inadequately understood. For example, tritiated water (HTO) enters plants by leaf and root uptake and is converted to organically bound tritium (OBT) in exchangeable and non-exchangeable forms; however, the observed OBT/HTO ratios in crops exhibit large variability and contradict the current models for routine releases. Non-routine or spike releases of tritium further complicate the prediction of OBT formation. The experimental data for a short and intense atmospheric contamination of wheat are presented together with various models' predictions. The experimental data on wheat demonstrate that the OBT formation is a long process, it is dependent on receptor location and stack dynamics, there are differences between night and day releases, and the HTO dynamics in leaf and ear is a very important contributor to OBT formation. (C) 2016 Elsevier Ltd. All rights reserved.
机译:放射影响模型是支持核安全的重要工具。对于readily来说,一种特殊的放射性核素很容易进入生命周期,其向环境的运输所涉及的过程非常复杂,人们对其了解不足。例如,tri化水(HTO)通过吸收叶和根而进入植物,并以可交换和不可交换的形式转化为有机结合的tri(OBT);然而,在农作物中观察到的OBT / HTO比值显示出较大的变异性,并且与当前的常规释放模型相矛盾。 rou的非常规释放或尖峰释放使OBT形成的预测更加复杂。介绍了短期和强烈的小麦大气污染的实验数据以及各种模型的预测。小麦的实验数据表明,OBT的形成是一个漫长的过程,它取决于受体的位置和烟囱动力学,昼夜释放之间存在差异,叶和穗中的HTO动力学是OBT形成的重要因素。 。 (C)2016 Elsevier Ltd.保留所有权利。

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