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与原位浸出采铀过程相关的微生物群落与酸性矿山排水群落有关。

Microbial communities associated with uranium in-situ recovery mining process are related to acid mine drainage assemblages.

机构信息

Central Environmental Laboratory, School of Architecture, Civil and Environmental Engineering, Ecole Polytechnique Fédérale de Lausanne, Station 2, 1015 Lausanne, Switzerland.

AREVA Mines, R&D Dpt., Tour AREVA, 1, place Jean Millier, 92084 Paris, La Défense, France.

出版信息

Sci Total Environ. 2018 Jul 1;628-629:26-35. doi: 10.1016/j.scitotenv.2018.01.321. Epub 2018 Feb 13.

Abstract

A large fraction (47%) of the world's uranium is mined by a technique called "In Situ Recovery" (ISR). This mining technique involves the injection of a leaching fluid (acidic or alkaline) into a uranium-bearing aquifer and the pumping of the resulting solution through cation exchange columns for the recovery of dissolved uranium. The present study reports the in-depth alterations brought to autochthonous microbial communities during acidic ISR activities. Water samples were collected from a uranium roll-front deposit that is part of an ISR mine in operation (Tortkuduk, Kazakhstan). Water samples were obtained at a depth of ca 500 m below ground level from several zones of the Uyuk aquifer following the natural redox zonation inherited from the roll front deposit, including the native mineralized orebody and both upstream and downstream adjacent locations. Samples were collected equally from both the entrance and the exit of the uranium concentration plant. Next-generation sequencing data showed that the redox gradient shaped the community structures, within the anaerobic, reduced, and oligotrophic habitats of the native aquifer zones. Acid injection induced drastic changes in the structures of these communities, with a large decrease in both cell numbers and diversity. Communities present in the acidified (pH values < 2) mining areas exhibited similarities to those present in acid mine drainage, with the dominance of Sulfobacillus sp., Leptospirillum sp. and Acidithiobacillus sp., as well as the archaean Ferroplasma sp. Communities located up- and downstream of the mineralized zone under ISR and affected by acidic fluids were blended with additional facultative anaerobic and acidophilic microorganisms. These mixed biomes may be suitable communities for the natural attenuation of ISR mining-affected subsurface through the reduction of metals and sulfate. Assessing the effect of acidification on the microbial community is critical to evaluating the potential for natural attenuation or active bioremediation strategies.

摘要

世界上很大一部分(47%)的铀是通过一种名为“原地浸出”(ISR)的技术开采的。这种采矿技术包括将浸出液(酸性或碱性)注入含铀含水层,并通过阳离子交换柱泵送由此产生的溶液,以回收溶解的铀。本研究报告了在酸性 ISR 活动过程中对原地微生物群落带来的深入改变。水样取自正在运行的 ISR 矿(哈萨克斯坦的 Tortkuduk)中的铀前缘矿床。水样是从 Uyuk 含水层的几个区域采集的,这些区域的深度约为地下 500 米,遵循了前缘矿床继承的自然氧化还原分带,包括原生矿化矿体以及上下游相邻位置。样品在铀浓缩厂的入口和出口处等量采集。下一代测序数据显示,氧化还原梯度塑造了群落结构,处于原生含水层区的厌氧、还原和贫营养生境中。酸的注入导致这些群落的结构发生了剧烈变化,细胞数量和多样性都大幅减少。在酸化(pH 值 < 2)矿区存在的群落与酸性矿山排水中存在的群落相似,优势种为 Sulfobacillus sp.、Leptospirillum sp. 和 Acidithiobacillus sp.,以及古菌 Ferroplasma sp.。在 ISR 下位于矿化区上下游且受酸性流体影响的群落与额外的兼性厌氧和嗜酸微生物混合。这些混合生物群可能是适合通过还原金属和硫酸盐来实现自然衰减或主动生物修复策略的群落。评估酸化对微生物群落的影响对于评估自然衰减或主动生物修复策略的潜力至关重要。

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