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Investigation and visualisation of microbial attachment trends to sulphide minerals in a bioieach environment

机译:生物砍环境中微生物附着趋势对硫化物矿物的调查与可视化

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Two novel experimental approaches have been developed to investigate the attachment of microorganisms to sulphide minerals as a function of the mineral and microbial phase in a joint project with BHP Billiton, conceptualised in 2005 and initiated in 2006. In the first approach, selective attachment of pure cultures to minerals was studied in the "particle coated column reactor" using A. ferrooxidans and L. ferriphilum. The saturated reactor containing glass beads coated with fine mineral concentrates provided a quantifiable surface area of mineral concentrate and maintained good fluid flow. Results are reported for chalcopyrite and pyrite concentrates, a low grade chalcopyrite ore and quartzite. The latter, representing typical gangue material, is used as a control. A. ferrooxidans displayed greater attachment to pyrite, and selective attachment to sulfide minerals over quartz. Similar attachment behaviour trends resulted for Leptospirillum spp. In the second approach, a novel technique was developed to investigate microbial ecology of microbe-mineral attachment, site and mineral specific associations of microorganisms and spatial organisation of microbial communities present. Qualitative assessment and visualisation of microorganisms associated with the mineral surface and subsequent biofilm development was shown in the biofilm reactor, using microscopy techniques and fluorochromes. FISH analyses of A. ferrooxidans and L. ferriphilum on massive chalcopyrite sections are presented. The consequence of the observed attachment on heap bioieach performance is discussed.
机译:已经开发了两种新的实验方法来研究微生物与硫化物矿物的附着在与BHP Billiton的联合项目中的矿物和微生物相中,2005年概念化,并于2006年开始。在第一种方法中,选择性地附着纯净使用A.Ferrooxidans和L.Ferriphilum在“颗粒涂覆的柱反应器”中研究了矿物质的培养物。含有细矿物浓缩物的玻璃珠含有玻璃珠的饱和反应器提供了矿物浓缩物的可量化表面积,并保持良好的流体流动。据报道了黄铜矿和硫铁矿浓缩物,低级黄铜矿矿石和石英岩。后者代表典型的钻石材料,用作控制。 A.铁氧播丹苷对硫铁矿的展示较大,并选择性附着于硫化物矿物质上石英。 Leptospirillum SPP导致类似的附着行为趋势。在第二种方法中,开发了一种新颖的技术来调查微生物矿物附着,遗传学和矿物质特异性关联的微生物生态学以及存在的微生物社区的空间组织的微生物生态学。使用显微镜技术和荧光染料,在生物膜反应器中显示了与矿物表面和随后的生物膜显影相关的微生物的定性评估和可视化。提出了A.Ferrooxidans和L.Ferriphilum的鱼分析。讨论了观察到的附着对堆生物脱叶绩效的结果。

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