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Using isothermal microcalorimetry to measure the metabolic activity of the mineral-associated microbial community in bioleaching

机译:使用等温微量微量测定法测量生物浸出中矿物相关微生物群落的代谢活性

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Microbial colonisation of mineral ore is critical in efficient mineral solubilisation for metal recovery in heap bioleaching processes. A better understanding of the processes and behaviour by which microorganisms attach to, and colonise, mineral surfaces may help to enhance bioleaching processes. The direct quantification of metabolic activity of mineral associated cells is difficult and has not been demonstrated adequately in ore beds typical of heap leaching. In this investigation, isothermal microcalorimetry (IMC) was used to measure metabolic activity of a mixed mesophilic culture colonising the mineral surface. IMC is non-destructive and measures continuous heat flow from chemical or biological processes. Our results showed an increase of heat output from the colonised surfaces of mineral concentrate in the biotic system with respect to the abiotic system, caused by oxidative reactions facilitated by the mineral-microbial bio film. This confirmed that the attached microorganisms were metabolically active and facilitated ongoing mineral leaching through regeneration of lixiviants. The progression of mineral colonisation in a mini-column system was monitored using IMC, scanning electron microscopy and conventional wet chemistry measurements. The results obtained in this study allowed for the integration of the IMC method with the conventional analytical methods.
机译:矿物质的微生物定植在堆生物浸入过程中有效的矿物质溶解中至关重要。更好地理解微生物的过程和行为,通过该过程和行为,以及殖民化,矿物表面可以有助于增强生物浸入过程。矿物质相关细胞的代谢活性的直接定量难以在典型的堆浸出中充分证明矿床。在该研究中,使用等温微离核(IMC)测量矿物表面的混合中抚化培养物的代谢活性。 IMC是非破坏性的,从化学或生物过程中测量连续热流量。我们的研究结果表明,由矿物微生物生物膜促进的氧化反应引起的生物系统中矿物质浓缩物的殖民化表面的热量增加。这证实,通过再生液化剂,附着的微生物是代谢活性的,促进的矿物浸出。使用IMC,扫描电子显微镜和常规湿化学测量监测矿物定子中矿物定子的进展。在该研究中获得的结果允许使用常规分析方法的IMC方法整合。

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