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Effect of thebacterial pyoverdine siderophoreon the phytoextraction of cesium from illite

机译:基肌晶二侧β-二手噬菌体的影响来自伊利石铯的植物萃取物

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Radioactive Cs contamination is a major concern in case of a nuclear accident such as the Fukushima accident in 2011. Remediation methods have been proposed including soil washing, removal and landfill disposal, which have many drawbacks such as high cost and non-conservation of soil resources. Hence, innovative remediation methods are being developed, for instance in situ bioremediation such as phytoextraction. In this framework, we investigated the Cs uptake from illite by red clover associated with the bacterial pyoverdine siderophore. Dialysis membranes were used to prevent a direct contact between pyoverdine and plants. The results show an increase of Cs extraction from illite in the presence of pyoverdine, mainly due to illite alteration and dissolution of Al, Fe and Si. In the presence of pyoverdine, the red clover extracted 5.6 times more Cs from illite in comparison with the experiment without pyoverdine. Here, we demonstrate that Cs phytoextraction enhanced by bacterial by-products may constitute a relevant solution to speed up phytoextraction rate.
机译:放射性CS污染是在2011年福岛事故等核事故的主要担忧。已经提出了修复方法,包括土壤洗涤,去除和垃圾填埋场处理,这具有许多缺点,如高成本和土壤资源的高守恒。因此,正在开发创新的修复方法,例如原位生物修复,例如植物申请。在本框架中,我们通过与细菌百voverdine铁道的红三叶草调查了来自illite的CS摄取。使用透析膜来防止灰叶和植物之间的直接接触。结果表明,在荚膜存在的情况下,来自Imlite的Cs提取的增加,主要是由于Al,Fe和Si的illite改变和溶解。在百倍的存在下,与没有百voverdine的实验相比,红三叶草从illite中提取了5.6倍的Cs。在此,我们证明了细菌副产物增强的Cs植物萃取症可以构成加速植物萃取率的相关溶液。

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