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GROWTH AND ACTIVITY OF PURE AND MIXED BIOLEACHING STRAINS ON LOW GRADE CHALCOPYRITE ORE

机译:低级黄铜矿矿石纯净和混合生物浸出菌株的生长和活性

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The kinetics of iron and sulfur oxidation by selected bioleaching strains grown in simple chemically defined media have in some instances been studied exhaustively. However, there is very little available information on the growth and leaching kinetics of known bioleaching strains on low grade chalcopyrite ore. Eleven known bioleaching strains were shown to be capable of growing, although at a slow rate, on low grade chalcopyrite ore in pure culture. When the same eleven strains were added as a mixed inoculum and enriched on low grade ore at a range of different temperatures, the resultant mixed population was shown to comprise both iron and sulfur oxidising microorganisms. Dominant strains in the mixed cultures were determined using PCR-DGGE and included Metallosphaera hakonensis, Sulfolobus metallicus, Sulfobacillus thermosulfidooxidans, Acidimicrobium ferrooxidans, Acidithiobacillus caldus and Leptospirillum ferriphilum. Further development of methods to accurately quantify microbial growth and activity on low grade ore will likely help us understand the role of bioleaching microorganisms in heap bioleaching of low grade ore.
机译:通过在简单化学定义的培养基中生长的选定的生物浸出菌株的熨斗和硫氧化动力学在一些情况下已经详细研究了一些实例。然而,有关低级硫代铜矿矿石上已知的生物浸出菌株的生长和浸出动力学的可用信息很少。显示11个已知的生物浸出菌株能够生长,尽管在纯培养中的低级硫代铜矿矿石上以慢速速度生长。当加入相同的11株作为混合的接种物中并在一系列不同温度下富含低级矿石时,显示所得混合群体包括铁和硫氧化微生物。使用PCR-DGGE测定混合培养物中的显性菌株,并包括金属育核糖菌,磺脲金属,磺胺嘧啶,热磷酸氟苯脱西,亚磺酸铁氧化物,Caldus和Leptospirillum Ferriphilum。进一步开发用于准确定量微生物生长和低等级矿石的活性的方法可能有助于我们了解生物浸出微生物在低级矿石堆生物浸出中的作用。

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