生物矿化
生物修复
铀
生物吸附
生物累积
贫化铀
环境化学
放射性废物
环境科学
化学
污染
污染
废物管理
生态学
生物
天体生物学
工程类
吸附
核化学
材料科学
冶金
有机化学
吸附
作者
Rehemanjiang Wufuer,Yong-Yang Wei,Qinghua Lin,Huawei Wang,Wenjuan Song,Wen Liu,Daoyong Zhang,Xiangliang Pan,Geoffrey Michael Gadd
标识
DOI:10.1016/bs.aambs.2017.01.003
摘要
Following the development of nuclear science and technology, uranium contamination has been an ever increasing concern worldwide because of its potential for migration from the waste repositories and long-term contaminated environments. Physical and chemical techniques for uranium pollution are expensive and challenging. An alternative to these technologies is microbially mediated uranium bioremediation in contaminated water and soil environments due to its reduced cost and environmental friendliness. To date, four basic mechanisms of uranium bioremediation-uranium bioreduction, biosorption, biomineralization, and bioaccumulation-have been established, of which uranium bioreduction and biomineralization have been studied extensively. The objective of this review is to provide an understanding of recent developments in these two fields in relation to relevant microorganisms, mechanisms, influential factors, and obstacles.
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