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- W4386483399 abstract "Abstract Characterising physicochemistry and microbial diversity in uranium (U) mine water is a key prerequisite for understanding the biogeochemical processes occurring in these water mass and for the design of an efficient bioremediation strategy. In this study water samples from two former U-mines in East Germany were analysed. The U and sulphate (SO 4 2− ) concentrations of Schlema-Alberoda mine water (U: 1 mg/L; SO 4 2− : 335 mg/L) are 2 and 3 order of magnitude higher than those of the Pöhla sample (U: 0.01 mg/L; SO 4 2− : 0.5 mg/L). U, SO 4 2− and Fe seem to shape the differential microbial diversity of the two water samples. Microbial diversity analysis identified U(VI)-reducing bacteria (e.g., Desulfurivibrio ) and wood-degrading fungi (e.g., Cadophora ) providing electron donors for the growth of U-reducers. U-bioreduction experiments were performed to screen electron donors (glycerol, vanillic acid and gluconic acid) for Schlema-Alberoda U mine water bioremediation. Glycerol effectively removed 99% of soluble U (initially present as Ca 2 UO 2 (CO 3 ) 3 (aq) and UO 2 (CO 3 ) 3 4− ), along with 95% of Fe and 58% of SO 4 2− from the mine water. The results may contribute to the design of low U concentrations bioremediation strategies based on the biostimulation of U-reducing bacteria." @default.
- W4386483399 created "2023-09-07" @default.
- W4386483399 creator A5008435454 @default.
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- W4386483399 date "2023-09-06" @default.
- W4386483399 modified "2023-09-27" @default.
- W4386483399 title "Biostimulation of Indigenous Microbes for Uranium Bioremediation in Former U Mine Water: Multidisciplinary approach assessment." @default.
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