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Biostimulation of indigenous microbes for uranium bioremediation in former U mine water: multidisciplinary approach assessment

Antonio M. Newman-Portela; Evelyn Krawczyk-Bärsch; Margarita Lopez-Fernandez; Frank Bok; Andrea Kassahun; Björn Drobot; Robin Steudtner; Thorsten Stumpf; Johannes Raff; Mohamed L. Merroun
Environmental Science and Pollution Research · Vol. 31, Issue 5 · pp. 7227-7245 · 2023

Abstract

Characterizing uranium (U) mine water is necessary to understand and design an effective 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) were 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 and SO 4 2− seemed to influence the 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 as 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 purpose. Thermodynamic speciation calculations show that under experimental conditions, U(VI) is not coordinated to the amended electron donors. Glycerol was the best-studied electron donor as it effectively removed 99% of soluble U, 95% of Fe, and 58% of SO 4 2− from the mine water, probably by biostimulation of indigenous microbes. Vanillic acid removed 90% of U, and no U removal occurred using gluconic acid.

Bibliographic Information

JournalEnvironmental Science and Pollution Research
PublisherSpringer
Publication Date2023-12-29
Publication Year2023
Volume31
Issue5
Pages7227-7245
Document TypeJournal Article
eISSN1614-7499
DOI10.1007/s11356-023-31530-4

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NARA Access Coverage1994-01-01~Current
Journal Homepagehttps://www.springer.com/journal/11356
Publisher PageOpen Publisher Page
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