首页> 外文期刊>Journal of Environmental Radioactivity >Plant induced changes in concentrations of caesium, strontium and uranium in soil solution with reference to major ions and dissolved organic matter
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Plant induced changes in concentrations of caesium, strontium and uranium in soil solution with reference to major ions and dissolved organic matter

机译:植物引起的土壤溶液中铯,锶和铀的浓度相对于主要离子和溶解有机物的变化

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摘要

For a better understanding of the soil-to-plant transfer of radionuclides, their behavior in the soil solution should be elucidated, especially at the interface between plant roots and soil particles, where conditions differ greatly from the bulk soil because of plant activity. This study determined the concentration of stable Cs and Sr, and U in the soil solution, under plant growing conditions. The leafy vegetable komatsuna (Brassica rapa L.) was cultivated for 26 days in pots, where the rhizosphere soil was separated from the non-rhizosphere soil by a nylon net screen. The concentrations of Cs and Sr in the rhizosphere soil solution decreased with time, and were controlled by K + NH_4~+ and Ca, respectively. On the other hand, the concentration of U in the rhizosphere soil solution increased with time, and was related to the changes of DOC; however, this relationship was different between the rhizosphere and non-rhizosphere soil.
机译:为了更好地了解放射性核素从土壤到植物的转移,应阐明它们在土壤溶液中的行为,尤其是在植物根与土壤颗粒之间的界面,由于植物的活动,其条件不同于散装土壤。这项研究确定了植物生长条件下土壤溶液中稳定的Cs和Sr和U的浓度。在盆中将多叶蔬菜komatsuna(Brassica rapa L.)种植26天,并通过尼龙网筛将根际土壤与非根际土壤分开。根际土壤溶液中Cs和Sr的浓度随时间下降,分别受K + NH_4〜+和Ca的控制。另一方面,根际土壤溶液中U的浓度随时间增加,与DOC的变化有关。但是,这种关系在根际土壤和非根际土壤之间是不同的。

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