首页> 外文期刊>The Science of the Total Environment >Linearity assumption in soil-to-plant transfer factors of natural uranium and radium in Helianthus annuus L.
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Linearity assumption in soil-to-plant transfer factors of natural uranium and radium in Helianthus annuus L.

机译:向日葵中天然铀和镭的土壤-植物转移因子的线性假设。

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The linearity assumption of the validation of soil-to-plant transfer factors of natural uranium and ~(226)Ra was tested using Helianthus annuus L. (sunflower) grown in a hydroponic medium. Transfer of natural uranium and ~(226)Ra was tested in both the aerial fraction of plants and in the overall seedlings (roots and shoots). The results show that the linearity assumption can be considered valid in the hydroponic growth of sunflowers for the radionuclides studied. The ability of sunflowers to translocate uranium and ~(226)Ra was also investigated, as well as the feasibility of using sunflower plants to remove uranium and radium from contaminated water, and by extension, their potential for phytoextraction. In this sense, the removal percentages obtained for natural uranium and ~(226)Ra were 24% and 42%, respectively. Practically all the uranium is accumulated in the roots. However, 86% of the ~(226)Ra activity concentration in roots was translocated to the aerial part.
机译:使用在水培培养基中生长的向日葵(向日葵)测试了验证天然铀和〜(226)Ra的土壤-植物转移因子的线性假设。天然铀和〜(226)Ra的转移已在植物的气生部分和整个幼苗中(根和芽)进行了测试。结果表明,对于所研究的放射性核素,线性假设可以认为在向日葵的水培生长中是有效的。还研究了向日葵转移铀和〜(226)Ra的能力,以及使用向日葵植物从受污染的水中去除铀和镭的可行性,并据此扩展了其提取植物的潜力。从这个意义上讲,天然铀和〜(226)Ra的去除率分别为24%和42%。几乎所有铀都积累在根中。然而,根中〜(226)Ra活性浓度的86%易位到地上部分。

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