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Low-pH mediated goethite precipitation and nickel loss in nickel hydrometallurgy

机译:镍湿法冶金中低pH介导的针铁矿沉淀和镍损失

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The goethite process was conducted in nickel hydrometallurgy to examine the effects of pH levels (2.0-4.3) on the performance of iron removal and associated rate of nickel loss. The goethite precipitate was characterized by its crystallinity, particle size and microtopography using X-ray diffraction, laser particle size analyzer and scanning electron microscopy. Nickel adsorption was analyzed to study the nickel loss adsorbed on the goethite surface, and energy dispersive spectroscopy was used to detect the nickel distribution on the surface and interior of the goethite particles. Results show that as the pH decreases, the crystallinity of goethite lessens, goethite particles tend to agglomerate, the particle size increases significantly, and the filterability of the precipitate improves. Nickel is lost in iron precipitates by incorporation into the lattices and adsorption on the surface of the goethite particles. The nickel loss to the goethite lattices increases sharply with pH, and the nickel adsorption loss could be determined by the specific surface area of the goethite particles. This study demonstrates that a lower reaction pH causes the particle size of the precipitate to increase, improves the filterability, and results in a lower loss of nickel. (C) 2016 Published by Elsevier B.V.
机译:在镍湿法冶金中进行针铁矿工艺,以检查pH值(2.0-4.3)对除铁性能和相关的镍损失速率的影响。针铁矿沉淀物的特征在于其结晶度,粒度和使用X射线衍射,激光粒度分析仪和扫描电子显微镜的微观形貌。对镍的吸附进行了分析,以研究吸附在针铁矿表面上的镍损失,并使用能量分散光谱法检测了针铁矿颗粒表面和内部的镍分布。结果表明,随着pH值的降低,针铁矿的结晶度降低,针铁矿颗粒趋于聚集,粒径显着增加,沉淀物的过滤性得到改善。镍通过掺入晶格并吸附在针铁矿颗粒表面而在铁沉淀物中损失。针铁矿晶格中的镍损失随pH值急剧增加,镍吸附损失可由针铁矿颗粒的比表面积决定。这项研究表明,较低的反应pH会导致沉淀物的粒径增大,改善过滤性,并导致较低的镍损失。 (C)2016由Elsevier B.V.发布

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