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Bacterial Interactions With Uranium: An Environmental Perspective

机译:铀与细菌的相互作用:环境的观点

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The presence of actinides in radioactive wastes is of major concern because of their potential for migration from the waste repositories and long-term contamination of the environment. Studies have been and are being made on inorganic processes affecting the migration of radionuclides from these repositories to the environment but it is becoming increasingly evident that microbial processes are of importance as well. Bacteria interact with uranium through different mechanisms including, biosorption at the cell surface, intracellular accumulation, precipitation, and redox transformations (oxidation/reduction). The present study is intended to give a brief overview of the key processes responsible for the interaction of actinides e.g. uranium with bacterial strains isolated from different extreme environments relevant to radioactive repositories. Fundamental understanding of the interaction of these bacteria with U will be useful for developing appropriate radioactive waste treatments, remediation and long-term management strategies as well as for predicting the microbial impacts on the performance of the radioactive waste repositories.
机译:放射性废物中act系元素的存在引起了人们的极大关注,因为act系元素有可能从废物储存库中迁移出来,并长期污染环境。已经并且正在对影响放射性核素从这些储存库向环境中迁移的无机过程进行研究,但是越来越明显的是,微生物过程也很重要。细菌通过不同的机制与铀相互作用,包括细胞表面的生物吸附,细胞内积累,沉淀和氧化还原转化(氧化/还原)。本研究旨在简要概述造成act系元素相互作用的关键过程,例如:从与放射性储存库相关的不同极端环境中分离出的细菌菌株的铀。从根本上了解这些细菌与U的相互作用将有助于开发适当的放射性废物处理,修复和长期管理策略,并预测微生物对放射性废物储存库性能的影响。

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