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Distribution of germanium under lead smelting conditions

机译:铅冶炼条件下锗的分布

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摘要

Germanium is present as a minor element in most mined lead-zinc concentrates, and during subsequent processing part of it is carried in electrolyte to zinc electro-winning. Germanium is well known to reduce drastically the current efficiency of zinc deposition and to cause a multitude of pinholes in the cathode deposit, even at concentrations < 0.1 ppm, so it is important to under-stand how to minimise the amount of germanium proceeding to zinc calcines leaching. This work was aimed at determining the distribution of germanium during lead smelting among lead, slag and gas and generating thermodynamic data for use in process modelling. Lead and a small amount of GeO_2 was equilibrated with CaO-SiO_2-FeO-Al_2O_3 slag under oxygen partial pressures from 10~(-10) to 10~(-12.5) atm at temperatures from 1150 to 1250 deg C. It was found that most germanium is incorporated in the slag, some volatilises and little dissolves into the lead. Germanium is present hi the slag predominately as GeO and its activity coefficient in this slag is calculated to be in the range 1 centre dot 44-2 centre dot 55. The implications of these findings on processing are also discussed
机译:在大多数开采的铅锌精矿中,锗以微量元素的形式存在,在随后的加工过程中,锗的一部分被带入电解质中,从而电解获得锌。众所周知,即使在浓度小于0.1 ppm的情况下,锗也会大大降低当前锌沉积的效率,并在阴极沉积物中造成大量针孔,因此,重要的是要了解如何最大程度地减少进入锌的锗量煅烧浸出。这项工作旨在确定铅熔炼过程中锗在铅,矿渣和气体中的分布,并生成热力学数据以用于过程建模。在氧气分压为10〜(-10)至10〜(-12.5)atm的氧气分压下,在1150至1250摄氏度的温度下,用CaO-SiO_2-FeO-Al_2O_3炉渣平衡了铅和少量的GeO_2。大部分锗掺入炉渣中,有些挥发且几乎不溶入铅中。锗主要以GeO的形式存在于炉渣中,其活动系数经计算在1个中心点44-2个中心点55范围内。还讨论了这些发现对加工的影响。

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