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环境对汉福德场地 300 区含水层微生物群落活性的控制。

Environmental controls on the activity of aquifer microbial communities in the 300 area of the Hanford site.

机构信息

Microbiology Group, Pacific Northwest National Laboratory, P.O. Box 999, MSIN J4-18, Richland, WA, 99352, USA,

出版信息

Microb Ecol. 2013 Nov;66(4):889-96. doi: 10.1007/s00248-013-0283-3. Epub 2013 Sep 6.

Abstract

Aquifer microbes in the 300 Area of the Hanford Site in southeastern Washington State, USA, are located in an oligotrophic environment and are periodically exposed to U(VI) concentrations that can range up to 10 μM in small sediment fractures. Assays of (3)H-leucine incorporation indicated that both sediment-associated and planktonic microbes were metabolically active, and that organic C was growth-limiting in the sediments. Although bacteria suspended in native groundwater retained high activity when exposed to 100 μM U(VI), they were inhibited by U(VI) <1 μM in synthetic groundwater that lacked added bicarbonate. Chemical speciation modeling suggested that positively charged species and particularly (UO2)3(OH)5 (+) rose in concentration as more U(VI) was added to synthetic groundwater, but that carbonate complexes dominated U(VI) speciation in natural groundwater. U toxicity was relieved when increasing amounts of bicarbonate were added to synthetic groundwater containing 4.5 μM U(VI). Pertechnetate, an oxyanion that is another contaminant of concern at the Hanford Site, was not toxic to groundwater microbes at concentrations up to 125 μM.

摘要

美国华盛顿州东南部汉福德场址 300 区含水层中的微生物位于贫营养环境中,并且周期性地暴露于可高达 10 μM 的 U(VI)浓度中,这些 U(VI)浓度存在于小的沉积物裂缝中。(3)H-亮氨酸掺入测定表明,沉积物相关微生物和浮游微生物均具有代谢活性,并且沉积物中的有机 C 是生长的限制因素。尽管悬浮在天然地下水中的细菌在暴露于 100 μM U(VI)时仍保持高活性,但在缺乏添加碳酸氢盐的合成地下水中,它们会被 <1 μM 的 U(VI)抑制。化学形态建模表明,随着更多 U(VI)被添加到合成地下水中,带正电荷的物质,特别是(UO2)3(OH)5 (+),浓度上升,但在天然地下水中,碳酸盐络合物主导 U(VI)的形态。当向含有 4.5 μM U(VI)的合成地下水中添加越来越多的碳酸氢盐时,U 毒性得到缓解。高锝酸盐,一种含氧阴离子,也是汉福德场址的另一种关注污染物,在高达 125 μM 的浓度下对地下水微生物没有毒性。

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