铀
缺氧水域
生物地球化学
环境化学
铀矿
化学
环境修复
细菌
铀矿
氧化还原
环境科学
微生物
地球微生物学
微生物种群生物学
生物地球化学循环
生物修复
生物矿化
微生物代谢
浓缩铀
化学毒性
重金属
铀矿开采
氧化还原
作者
Antonio M. Newman-Portela,Kristina O. Kvashnina,Elena Bazarkina,André Rossberg,Frank Bok,Sean Ting‐Shyang Wei,Andrea Kassahun,Thorsten Stumpf,Johannes Raff,Mohamed L. Merroun,Evelyn Krawczyk‐Bärsch
标识
DOI:10.1038/s41467-026-72560-z
摘要
O₄ nanoparticles and U(V)-carbonate complexes. U(V) persists for at least 130 days under anoxic conditions and four weeks after exposure to oxygen. Microbial community analysis reveals enrichment of fermentative and sulphate-reducing taxa, consistent with redox conditions favouring U reduction. By demonstrating the stability of immobilised U(V) alongside U(IV), this work advances the understanding of uranium biogeochemistry and offers new insights for sustainable remediation strategies.
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