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Chemical Speciation and Association of Plutonium with Bacteria, Kaolinite Clay, and Their Mixture

机译:B与细菌,高岭石粘土及其混合物的化学形态及缔合

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We investigated the interactions of Pu(Ⅵ) with Bacillus subtilis, kaolinite clay, and a mixture of the two to determine and delineate the role of the microbes in regulating the environmental mobility of Pu. The bacteria, the kaolinite, and their mixture were exposed to a 4 x 10~(-4) M Pu(Ⅵ) solution at pH 5.0. The amount of Pu sorbed by B. subtilis increased with time, but had not reached equilibrium in 48 h, whereas equilibrium was attained in kaolinite within 8 h. After 48 h, the oxidation state of Pu in the solutions exposed to B. subtilis and the mixture had changed to Pu-(Ⅴ), whereas the oxidation state of Pu associated with B. subtilis and the mixture was Pu(Ⅳ). Exudates released from B. subtilis reduced Pu(Ⅵ) to Pu(Ⅴ). In contrast, there was no change in the oxidation state of Pu in the solution or on kaolinite after exposure to Pu(Ⅵ). Scanning electron microscopy-energy dispersive spectrometry analysis indicated that most of the Pu in the mixture was associated with B. subtilis. These results suggest that Pu-(Ⅳ) is preferably sorbed to bacterial cells in the mixture and that Pu(Ⅵ) is reduced to Pu(Ⅴ) and Pu(Ⅳ).
机译:我们研究了Pu(Ⅵ)与枯草芽孢杆菌,高岭石粘土以及两者的混合物之间的相互作用,以确定并描绘了微生物在调节Pu的环境迁移中的作用。将细菌,高岭石及其混合物暴露于pH 5.0的4 x 10〜(-4)M Pu(Ⅵ)溶液中。枯草芽孢杆菌吸附的Pu量随时间增加,但在48 h内未达到平衡,而在8 h内高岭石达到Pu平衡。 48 h后,暴露于枯草芽孢杆菌和混合物中的溶液中Pu的氧化态变为Pu-(Ⅴ),而与枯草芽孢杆菌和混合物混合的Pu的氧化态为Pu(Ⅳ)。从枯草芽孢杆菌释放的分泌物将Pu(Ⅵ)还原为Pu(Ⅴ)。相反,暴露于Pu(Ⅵ)后,溶液或高岭石上Pu的氧化态没有变化。扫描电子显微镜-能量色散光谱分析表明混合物中的大多数Pu与枯草芽孢杆菌有关。这些结果表明,优选将Pu-(Ⅳ)吸附到混合物中的细菌细胞上,并且将Pu(Ⅵ)还原为Pu(Ⅴ)和Pu(Ⅳ)。

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