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伴随阴离子对大豆叶片液滴中铯保留和迁移的影响。

Effects of accompanying anions on cesium retention and translocation via droplets on soybean leaves.

机构信息

State Key Laboratory of Water Environment Simulation, School of Environment, Beijing Normal University, Beijing 100875, PR China.

出版信息

J Environ Radioact. 2013 Dec;126:232-8. doi: 10.1016/j.jenvrad.2013.08.009. Epub 2013 Sep 21.

Abstract

Plant foliar uptake and translocation is an important pathway for the migration of radiocesium to the human diet. This study reports the effects of accompanying anions ( [Formula: see text] , [Formula: see text] , [Formula: see text] , and I(-)) on cesium retention and translocation. An experiment to simulate cesium retention and translocation was conducted in a greenhouse by applying droplets of stable cesium solutions to the upper surface of four soybean [Glycine max (L.) Merr.] trifoliate leaves. The average percentages of cesium retention with the accompanying anions [Formula: see text] , [Formula: see text] , [Formula: see text] , and I(-) on the leaves were 7.2, 21.5, 49.3, and 10.2%, respectively. Retention values of the four treatments were stable during the 3-day exposure period, indicating that cesium could be absorbed and penetrate the cuticle quickly once it was dissolved. Scanning electron microscopy coupled with energy dispersive X-ray microanalysis showed that particles containing cesium remained on the leaf surfaces after washing. Also, nano-sized particles containing cesium were observed inside the leaf tissues. Cesium concentrations in the uncontaminated leaves, pods, stems, and roots increased during the study period indicating cesium redistribution from the contaminated leaves.

摘要

植物叶片吸收和转运是放射性铯迁移到人类食物链的重要途径。本研究报告了伴随阴离子([Formula: see text],[Formula: see text],[Formula: see text],和 I(-))对铯保留和转运的影响。通过将稳定的铯溶液滴在四片大豆(Glycine max (L.) Merr.)三叶叶片的上表面,在温室中进行了模拟铯保留和转运的实验。在叶片上,带有伴随阴离子[Formula: see text],[Formula: see text],[Formula: see text]和 I(-)的铯保留的平均百分比分别为 7.2%、21.5%、49.3%和 10.2%。在 3 天暴露期间,四种处理的保留值保持稳定,表明一旦铯溶解,它可以被吸收并快速穿透角质层。扫描电子显微镜结合能谱微分析表明,洗涤后叶片表面仍残留含有铯的颗粒。此外,还观察到叶组织内含有铯的纳米颗粒。在研究期间,未受污染的叶片、豆荚、茎和根中的铯浓度增加,表明铯从受污染的叶片重新分配。

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