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Extremophiles in Mineral Sulphide Heaps: Some Bacterial Responses to Variable Temperature, Acidity and Solution Composition

机译:矿物硫化物堆中的极端微生物:对变化的温度,酸度和溶液成分的一些细菌反应

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摘要

In heap bioleaching, acidophilic extremophiles contribute to enhanced metal extraction from mineral sulphides through the oxidation of Fe(II) and/or reduced inorganic sulphur compounds (RISC), such as elemental sulphur or mineral sulphides, or the degradation of organic compounds derived from the ore, biota or reagents used during mineral processing. The impacts of variable solution acidity and composition, as well as temperature on the three microbiological functions have been examined for up to four bacterial species found in mineral sulphide heaps. The results indicate that bacteria adapt to sufficiently high metal concentrations (Cu, Ni, Co, Zn, As) to allow them to function in mineral sulphide heaps and, by engaging alternative metabolic pathways, to extend the solution pH range over which growth is sustained. Fluctuating temperatures during start up in sulphide heaps pose the greatest threat to efficient bacterial colonisation. The large masses of ores in bioleaching heaps mean that high temperatures arising from sulphide oxidation are hard to control initially, when the sulphide content of the ore is greatest. During that period, mesophilic and moderately thermophilic bacteria are markedly reduced in both numbers and activity.
机译:在堆浸生物浸出过程中,嗜酸性的极端微生物通过氧化Fe(II)和/或还原的无机硫化合物(RISC)(例如元素硫或矿物硫化物)或从金属硫化物衍生的有机化合物的降解,来促进从矿物硫化物中提取金属。选矿过程中使用的矿石,生物群或试剂。对于矿物硫化物堆中发现的多达四种细菌,已经研究了可变的溶液酸度和组成以及温度对三种微生物功能的影响。结果表明,细菌能够适应足够高的金属浓度(铜,镍,钴,锌,砷),使其能够在矿物硫化物堆中发挥作用,并通过参与其他代谢途径来扩展溶液的pH值范围,从而在该范围内持续生长。在硫化物堆中启动期间温度波动对有效细菌定殖构成最大威胁。生物浸出堆中大量的矿石意味着,当矿石中的硫化物含量最高时,硫化物氧化产生的高温最初很难控制。在此期间,嗜温和中度嗜热细菌的数量和活性均明显降低。

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