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The application of zinc calcine as a neutralizing agent for the goethite process in zinc hydrometallurgy

机译:煅烧锌作为针铁矿中和剂在锌湿法冶金中的应用

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The industrial application of the goethite process has been restricted due to the low recovery of zinc and the great loss of lead and silver in zinc calcine with iron residues. In this study, we examined the properties of+35 μm zinc calcine and assessed its feasibility for serving as a neutralizing agent in the goethite process. Due to an insoluble fragment or porous structure, the particle size of + 35 μm zinc calcine only decreased slightly at pH 2-3 and 80-90 °C. Large differences between iron precipitate and leach residues in the particle size and specific gravity favored the separation, as proven by using the terminal settling velocity deduced from Stroke's law. A combined analysis of environmental scanning electron microscopy, X-ray diffraction, energy dispersive spectrometry, and laser particle size analysis provided a fundamental understanding of the properties and behaviors of different particles. This study proved that in the goethite process, +35 μm zinc calcine was a suitable neutralizing agent that could work efficiently and be separated easily from iron residues in the goethite process. Moreover, it ensured the high recovery of valuable metals such as zinc, lead, and silver.
机译:针铁矿法的工业应用由于锌的回收率低以及带有铁残留物的煅烧锌中铅和银的大量损失而受到限制。在这项研究中,我们检查了+35μm煅烧锌的特性,并评估了其在针铁矿工艺中用作中和剂的可行性。由于不溶性碎片或多孔结构,+ 35μm煅烧锌的粒径在pH 2-3和80-90°C下仅略有降低。铁的沉淀物和浸出残渣之间的颗粒大小和比重之间的较大差异有利于分离,这是通过使用Stroke定律得出的最终沉降速度证明的。环境扫描电子显微镜,X射线衍射,能量分散光谱和激光粒度分析的组合分析提供了对不同粒子的性质和行为的基本了解。这项研究证明,在针铁矿工艺中,+ 35μm煅烧锌是一种合适的中和剂,可以在针铁矿工艺中有效地起作用,并且易于与铁残留物分离。此外,它确保了锌,铅和银等有价值金属的高回收率。

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