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缺氧条件下U(VI)的生物还原及固定化铀的稳定性

Bioreduction of U(VI) and stability of immobilized uranium under suboxic conditions.

作者信息

Hu Nan, Ding De-xin, Li Shi-mi, Tan Xiang, Li Guang-yue, Wang Yong-dong, Xu Fei

机构信息

Key Discipline Laboratory for National Defense for Biotechnology in Uranium Mining and Hydrometallurgy, University of South China, Hengyang 421001, PR China.

Key Discipline Laboratory for National Defense for Biotechnology in Uranium Mining and Hydrometallurgy, University of South China, Hengyang 421001, PR China.

出版信息

J Environ Radioact. 2016 Apr;154:60-7. doi: 10.1016/j.jenvrad.2016.01.020. Epub 2016 Feb 6.

Abstract

In order to study the bioreduction of U(VI) and stability of immobilized uranium under suboxic conditions, microcosm were amended with ethanol, lactate and glucose, and incubated under suboxic conditions. During the incubation, total dissolved U in amended microcosms decreased from 0.95 mg/L to 0.03 mg/L. Pyrosequencing results showed that, the proportion of anaerobic microorganisms capable of reducing U(VI) under suboxic conditions was small compared with that under anoxic conditions; the proportion of aerobic and facultative anaerobic microorganisms capable of consuming the dissolved oxygen was large; and some of the facultative anaerobic microorganisms could reduce U(VI). These results indicated that different microbial communities were responsible for the bioreduction of U(VI) under suboxic and anoxic conditions. After the electron donors were exhausted, total dissolved U in the amended microcosms remained unchanged, while the U(VI)/U(IV) ratio in the solid phase of sediments increased obviously. This implied that the performance of bioreduction of the U(VI) can be maintained under suboxic condition.

摘要

为了研究缺氧条件下U(VI)的生物还原及固定态铀的稳定性,向微观世界添加乙醇、乳酸和葡萄糖,并在缺氧条件下进行培养。培养期间,添加后的微观世界中总溶解态铀从0.95 mg/L降至0.03 mg/L。焦磷酸测序结果表明,与缺氧条件相比,缺氧条件下能够还原U(VI)的厌氧微生物比例较小;能够消耗溶解氧的好氧和兼性厌氧微生物比例较大;一些兼性厌氧微生物能够还原U(VI)。这些结果表明,缺氧和缺氧条件下U(VI)的生物还原由不同的微生物群落负责。电子供体耗尽后,添加后的微观世界中总溶解态铀保持不变,而沉积物固相中的U(VI)/U(IV)比值明显增加。这意味着在缺氧条件下U(VI)的生物还原性能可以维持。

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