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首页> 外文期刊>Radiochimica Acta: International Journal for Chemical Aspects of Nuclear Science and Technology >The interaction of Desulfovibrio aspoensis DSM 10631(T) with plutonium
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The interaction of Desulfovibrio aspoensis DSM 10631(T) with plutonium

机译:脱硫弧菌DSM 10631(T)与p的相互作用

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Microbes are widely distributed in nature and they can strongly influence the migration of actinides in the environment. This investigation describes the interaction of plutonium in mixed oxidation states (Pu(VI) and Pu(IV)polymers) with cells of the sulfate-reducing bacterial (SRB) strain Desulfovibrio dspbensis DSM 10631(T), which frequently occurs in the deep granitic rock aquifers at the Aspo Hard Rock Laboratory (Aspo HRL), Sweden. In this study, accumulation experiments were performed in order to obtain information about the amount of Pu bound by the bacteria in dependence on the contact time and the initial plutonium concentration. We used solvent extractions, UV-Vis absorption spectroscopy and X-ray absorption near edge structure (XANES) spectroscopy to determine the speciation of Pu oxidation states. Extended X-ray absorption fine structure (EXAFS) spectroscopy was used to study the coordination of the Pu bound by the bacteria. In the first step, the Pu(VI) and Pu(IV)-polymers are bound to the biomass. Solvent extractions showed that 97% of the initially present Pu(VI) is reduced to Pu(V) due to the activity of the cells within the first 24 h of contact time. Most of the formed Pu(V) dissolves from the cell envelope back to the aqueous solution due to the weak complexing properties of this plutonium oxidation state. Indications were found for a penetration of Pu species inside the bacterial cells.
机译:微生物在自然界中分布广泛,可以强烈影响act系元素在环境中的迁移。这项研究描述了混合氧化态(Pu(VI)和Pu(IV)聚合物)中的p与硫酸盐还原细菌(SRB)菌株Desulfovibrio dspbensis DSM 10631(T)的细胞之间的相互作用,这种情况经常发生在深花岗岩中瑞典Aspo硬石实验室(Aspo HRL)的岩石含水层。在这项研究中,进行了积累实验,以便获得与细菌结合的Pu量有关的信息,该信息取决于接触时间和初始p浓度。我们使用溶剂萃取,UV-Vis吸收光谱和X射线吸收近边缘结构(XANES)光谱来确定Pu氧化态的形态。扩展的X射线吸收精细结构(EXAFS)光谱用于研究细菌结合的Pu的配位。在第一步中,Pu(VI)和Pu(IV)聚合物与生物质结合。溶剂萃取表明,由于接触时间的最初24小时内细胞的活性,最初存在的97%的Pu(VI)还原为Pu(V)。由于这种p氧化态的弱络合特性,大多数形成的Pu(V)从细胞包膜溶解回到水溶液中。发现了Pu种类在细菌细胞内部的渗透的迹象。

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