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叶片向生物圈的转移:谷物转运因子综述

Foliar transfer into the biosphere: review of translocation factors to cereal grains.

作者信息

Colle C, Madoz-Escande C, Leclerc E

机构信息

Institute for Radioprotection and Nuclear Safety (IRSN/DEI/SECRE), Saint Paul-Lez-Durance, France.

出版信息

J Environ Radioact. 2009 Sep;100(9):683-9. doi: 10.1016/j.jenvrad.2008.10.002. Epub 2008 Nov 18.

Abstract

A review of the published literature about foliar transfer radionuclides to cereal grains was carried out with a special interest for translocation factors. Translocation describes the distribution of radionuclides within the plant after foliar deposition and radionuclide absorption onto the surface of leaves. It mainly depends on elements and the plant growth stage. The collected data were derived from both in-field and greenhouse experiments. They were analysed in order to select those coming from a contamination simulating a sprinkling irrigation or a rain. The data set contains 307 values. For each radionuclide the translocation factor values were sorted according to 5 characteristic stages of the cereal vegetative cycle: leaf development-tillering, stem elongation, earing-flowering, grain growth and ripening. Wheat, barley and rye have been treated together, independently of rice. For mobile elements such as cesium, the translocation factor is maximum when the contamination occurred at the earing-flowering stage. For less mobile elements such as strontium this maximum occurred for a foliar contamination at the grain growth stage. This review enabled us to propose the most probable value as well as the range of variation of translocation factors for some radionuclides according to the cereal vegetative cycle. Moreover, from these results, a radionuclide classification is proposed according to three mobility groups.

摘要

对已发表的有关叶面转移放射性核素至谷物的文献进行了综述,特别关注转移因子。转移描述了叶面沉积和放射性核素吸附到叶片表面后放射性核素在植物体内的分布。它主要取决于元素和植物生长阶段。收集的数据来自田间和温室实验。对这些数据进行分析,以筛选出来自模拟喷灌或降雨污染的实验数据。数据集包含307个值。对于每种放射性核素,转移因子值根据谷物营养周期的5个特征阶段进行排序:叶片发育-分蘖期、茎伸长、抽穗-开花期、籽粒生长和成熟期。小麦、大麦和黑麦被归为一组,与水稻分开处理。对于像铯这样的可移动元素,当在抽穗-开花期发生污染时,转移因子最大。对于像锶这样移动性较差的元素,在籽粒生长阶段叶面污染时转移因子最大。这项综述使我们能够根据谷物营养周期提出一些放射性核素转移因子的最可能值以及变化范围。此外,根据这些结果,提出了根据三个迁移性组对放射性核素进行分类的方法。

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