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Acidianus brierleyi is the dominant thermoacidophile in a bioleaching community processing chalcopyrite containing concentrates at 70°C

机译:酸InianusBrierleyi是在70℃下含有浓缩物的生物浸出群落加工含氯铜矿的主导热酰磷骨

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Bioleaching test work was performed in continuously operated multi-stage reactor systems at 70°C using a thermophilic culture treating an Aguablanca Ni-Cu concentrate from Spain and a blend of Cu concentrates from Bor, Serbia. The copper in both these concentrates occurs as chalcopyrite and therefore the use of thermophiles was applied, which resulted in copper recoveries of over 95%. Qualitative assessment of the microbial community in the bioreactors was performed by terminal restriction enzyme fragment length polymorphism (T-RFLP) and clone library analysis of the 16S rRNA genes amplified by PCR. T-RFLP analysis revealed that only archaea were present, and that the communities in both the Aguablanca and Bor systems consisted of two different microorganisms. A 16S rRNA gene clone library using DNA from the Aguablanca system was constructed and screened. Again, two archaea were detected in similar relative abundance in the population as found by T-RFLP analyses. The sequences of these two cloned genes revealed that the dominant archaeon (up to 98% of the total archaea detected) was Acidianus brierleyi, and the other was Metallosphaera sedula. Quantitative assessment of the microbial community was performed by Q-PCR and confirmed the dominance of archaea in the system with Acidianus being the dominant strain (98-99% of the total population) and a minor part of the population (1-2%) consisted of Metallosphaera. Additionally, very small amounts of Sulfolobus spp. were detected. This study, along with other recent studies on the diversity of thermoacidophiles involved in the solubilization of copper from chalcopyrite concentrates, revealed that a wider variety of thermoacidophiles are involved in bioprocessing of metal sulfides, and showed that A. brierleyi should be considered an important biomining acidophile.
机译:使用从西班牙治疗Aguablanca Ni-Cu浓缩物的嗜热培养物在70℃下在70℃下在连续操作的多级反应器系统中进行生物浸出试验工作。来自Bor,塞尔维亚的Cu浓缩物的混合物。这两种浓缩物中的铜发生为醋铜矿,因此施加蒸发器的使用,从而导致铜回收率超过95%。通过终端限制酶片段长度多态性(T-RFLP)和PCR扩增的16S rRNA基因的克隆文库分析进行了生物反应器中微生物分子的定性评估。 T-RFLP分析显示,只有古亚亚亚亚亚亚亚亚洲,而Aguablanca和Bor系统的社区由两种不同的微生物组成。构建并筛选使用来自Aguablanca系统的DNA的16S RRNA基因克隆文库。同样,在T-RFLP分析中发现的群体中的相似性相似丰富,检测到两种古亚基。这两种克隆基因的序列显示,占优势的archaeon(占检测到的总亚眠总数的98%)是acidianus brierleyi,而另一个是金属育疗区。通过Q-PCR进行微生物群落的定量评估,并确认了酸度的亚古痤疮的优势,是酸性菌株(占总人口的98-99%)和群体的一部分(1-2%)由Metallosphaera组成。另外,非常少量的磺脲SPP。被检测到。本研究以及最近关于从硫代铜矿浓缩物中溶解的铜溶解的热酸化分集的研究表明,较宽的热酰胺磷酸化合物参与了金属硫化物的生物处理,并显示了A. Brierleyi应该被认为是一个重要的生物化嗜酸性。

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