Uranium Biomineralization as a Result of Bacterial Phosphatase Activity:  Insights from Bacterial Isolates from a Contaminated Subsurface

生物矿化 环境化学 生物修复 化学 磷酸盐 环境修复 水解 磷酸盐矿物 铀矿 有机磷 污染 地质学 生物化学 生态学 杀虫剂 生物 材料科学 冶金 古生物学
作者
Melanie J. Beazley,Robert J. Martinez,Patricia A. Sobecky,Samuel M. Webb,Martial Taillefert
出处
期刊:Environmental Science & Technology [American Chemical Society]
卷期号:41 (16): 5701-5707 被引量:184
标识
DOI:10.1021/es070567g
摘要

Uranium contamination is an environmental concern at the Department of Energy's Field Research Center in Oak Ridge, Tennessee. In this study, we investigated whether phosphate biomineralization, or the aerobic precipitation of U(VI)-phosphate phases facilitated by the enzymatic activities of microorganisms, offers an alternative to the more extensively studied anaerobic U(VI) bioreduction. Three heterotrophic bacteria isolated from FRC soils were studied for their ability to grow and liberate phosphate in the presence of U(VI) and an organophosphate between pH 4.5 and 7.0. The objectives were to determine whether the strains hydrolyzed sufficient phosphate to precipitate uranium, to determine whether low pH might have an effect on U(VI) precipitation, and to identify the uranium solid phase formed during biomineralization. Two bacterial strains hydrolyzed sufficient organophosphate to precipitate 7395% total uranium after 120 h of incubation in simulated groundwater. The highest rates of uranium precipitation and phosphatase activity were observed between pH 5.0 and 7.0. EXAFS spectra identified the uranyl phosphate precipitate as an autunite/meta-autunite group mineral. The results of this study indicate that aerobic heterotrophic bacteria within a uranium-contaminated environment that can hydrolyze organophosphate, especially in low pH conditions, may play an important role in the bioremediation of uranium.
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