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铊稳定同位素在白芥菜中的分馏:对金属转移和植物摄取的影响。

Thallium stable isotope fractionation in white mustard: Implications for metal transfers and incorporation in plants.

机构信息

Department of Soil Science and Soil Protection, Faculty of Agrobiology, Food and Natural Resources, Czech University of Life Sciences Prague, Kamýcká 129, 165 00 Prague 6, Czech Republic.

Department of Soil Science and Soil Protection, Faculty of Agrobiology, Food and Natural Resources, Czech University of Life Sciences Prague, Kamýcká 129, 165 00 Prague 6, Czech Republic.

出版信息

J Hazard Mater. 2019 May 5;369:521-527. doi: 10.1016/j.jhazmat.2019.02.060. Epub 2019 Feb 18.

Abstract

We studied thallium (Tl) isotope fractionation in white mustard grown hydroponically at different Tl doses. Thallium isotope signatures in plants indicated preferential incorporation of the light Tl isotope during Tl uptake from the nutrient solution. Negative isotope fractionation was even more pronounced in dependence on how much the available Tl pool decreased. This finding corresponds to the concept of isotope overprinting related to a high contamination level in the growing media (solution or soil). Regarding Tl translocation in plants, we observed a large Tl isotope shift with an enrichment in the heavy Tl isotope in the shoots relative to the roots in treatments with low/moderate solution Tl concentrations (0.01/0.05 mg Tl/L), with the corresponding αTl fractionation factors of ˜1.007 and 1.003, respectively. This finding is probably a consequence of specific (plant) reactions of Tl replacing K in its cycle. The formation of the S-coordinated Tl(I) complexes, potentially affecting both Tl accumulation and Tl isotope fractionation in plants, however, was not proven in our plants, since we did not have indication for that on the basis of X-ray absorption spectroscopy, suggesting that Tl was mainly present as free/hydrated Tl ion or chemically bound to O-containing functional groups.

摘要

我们研究了水培白芥菜在不同铊剂量下的铊同位素分馏。植物中的铊同位素特征表明,在从营养液中吸收铊时,优先掺入轻铊同位素。随着可用的铊池减少,同位素分馏更加明显。这一发现与与生长介质(溶液或土壤)中高污染水平相关的同位素覆盖概念相对应。关于植物中的铊迁移,我们观察到在低/中等溶液铊浓度(0.01/0.05 毫克/升)处理中,相对于根,茎中存在较大的铊同位素位移,重铊同位素富集,相应的αTl 分馏因子分别约为 1.007 和 1.003。这一发现可能是由于 Tl 在其循环中替代 K 的特定(植物)反应所致。然而,我们的植物中并没有证明 S 配位的 Tl(I)配合物的形成,这可能会影响植物中的 Tl 积累和 Tl 同位素分馏,因为我们没有基于 X 射线吸收光谱得到这方面的证据,这表明 Tl 主要以游离/水合 Tl 离子或化学结合到含 O 的官能团形式存在。

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