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Performance and bacterial community shifts during bioremediation of acid mine drainage from two Portuguese mines.

机译:从两个葡萄牙矿山进行酸性矿山排水的生物修复过程中,性能和细菌群落转移。

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The performance of two up-flow anaerobic packed bed systems (UAPB) to treat acid mine drainage (AMD) from the Portuguese mines Sao Domingos and Tinoca was investigated. The response of bacterial populations to influent characteristics was also analysed by temperature gradient gel electrophoresis (TGGE). Effective neutralisation (pH raised from 2.8 to 6.5) and removal of metals (>99%) and sulphate (>72%) were observed independently of the AMD source. TGGE fingerprinting and phylogenetic analysis of 16S rRNA gene revealed that the structure of the bacterial consortia developed in each bioreactor was different. The main bacterial groups involved in the treatment of AMD from Tinoca mine were Desulfovibrio sp., Clostridium sp., Desulfitobacterium sp. and members of Bacteroidales order. These bacterial groups were also present in the community developed in the UAPB fed with AMD from Sao Domingos mine but an unidentified bacterium and bacteria affiliated to Citrobacter and Cronobacter genera were detected only in this last system. The results of present study showed that the AMD source fed to the system was determinant for the establishment of different bacterial populations. Furthermore, the potential of the bioremediation systems for the production of water for irrigation purposes was demonstrated.Digital Object Identifier http://dx.doi.org/10.1016/j.ibiod.2011.07.006
机译:研究了两个上流式厌氧填充床系统(UAPB)处理来自葡萄牙圣多明哥和蒂诺卡矿山的酸性矿山排水(AMD)的性能。还通过温度梯度凝胶电泳(TGGE)分析了细菌种群对进水特性的响应。独立于AMD来源,观察到有效的中和作用(pH从2.8提高到6.5)以及金属(> 99%)和硫酸盐(> 72%)的去除。 TGGE指纹图谱和16S rRNA基因的系统发育分析表明,每个生物反应器中形成的细菌聚生体的结构是不同的。 Tinoca矿山处理AMD的主要细菌种类是 Desulfovibrio sp。, Clostridium sp。, Desulfitobacterium sp。和细菌纲的成员。这些细菌群也存在于圣多明各矿的AMD喂养的UAPB中开发的群落中,但仅在以下地区发现了未鉴定的细菌和 Citrobacter 和 Cronobacter 属细菌。最后一个系统。本研究的结果表明,送入系统的AMD来源是建立不同细菌种群的决定因素。此外,还展示了生物修复系统在灌溉用水中的潜力。数字对象标识符http://dx.doi.org/10.1016/j.ibiod.2011.07.006

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