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THE EFFECTS OF MINERALOGY ON THE BIOLOGICAL LEACHING OF NICKEL LATERITE ORES

机译:矿物学对镍红土矿生物浸出的影响

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摘要

The amenability of limonite ore, the iron rich nickel laterite phase, was observed to be less than saprolite, the silicate rich phase, when subjected to biological leaching with heterotrophic microorganisms. To understand this difference, controlled leaching of the various nickel laterite minerals was conducted using citric acid to mimic the chemical action of the organisms and subsequent characterization of the leached residues. The raw ore and the leached mineral residues were examined using high-resolution synchrotron based X-ray diffraction and optical microscopy. The possible contribution of electrosorption and solid porosity was also considered. The results suggest that although electrosorption contributes to nickel and cobalt losses, it is the structural changes induced by the acid in the minerals which effects the recovery of the metals. Citric acid was found to dehydroxylate saprolite minerals resulting in an unstable nickel oxide and thus making it susceptible to acid attack. This behaviour was not observed in the limonite ore, which was found to be poorly leached by citric acid.
机译:当用异养微生物进行生物浸出时,观察到褐铁矿矿石(富铁的镍红土相)的适应性小于腐泥土(富含硅酸盐的相)。为了理解这种差异,使用柠檬酸模拟了生物体的化学作用和随后的浸出残渣特征,对各种镍红土矿物进行了浸提。使用基于高分辨率同步加速器的X射线衍射和光学显微镜检查了原矿石和浸出的矿物残渣。还考虑了电吸附和固体孔隙率的可能贡献。结果表明,尽管电吸附有助于镍和钴的损失,但矿物中酸引起的结构变化会影响金属的回收率。发现柠檬酸会使腐泥土矿物脱羟基,从而导致不稳定的氧化镍,从而使其容易受到酸的侵蚀。在褐铁矿中未观察到这种行为,褐铁矿发现柠檬酸浸出性差。

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