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Relative importance of diffusion and reaction control during the bacterial and ferric sulphate leaching of zinc sulphide

机译:硫化锌细菌和硫酸铁浸出过程中扩散和反应控制的相对重要性

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摘要

A study has been undertaken on the bacterial and ferric sulphate leaching of sphalerite, with the aim of observing the relative importance of both diffusion and reaction control, across a range of operating conditions. To facilitate this kinetic analysis a mixed-control rate equation was developed based upon the shrinking particle and shrinking core models, featuring both an intrinsic rate of zinc extraction and a product layer diffusion coefficient. The ferric sulphate oxidation of a pure sphalerite sample was first studied, and the process was found to be mainly controlled by surface diffusion, thought to be due to formation of the elemental sulphur product layer. The mesophilic bacterial oxidation of a high-grade zinc ore was studied at 35 deg C, and the process was observed to be controlled by both chemical reaction and diffusion. However, during the mesophilic bacterial oxidation of a low-grade zinc ore at 25 deg C, diffusion was found to be rate limiting. It was proposed that this diffusion resistance arises from an unreacted layer of gangue material.
机译:已经对闪锌矿的细菌和硫酸铁的浸出进行了研究,目的是观察在各种操作条件下扩散和反应控制的相对重要性。为了便于进行动力学分析,基于收缩颗粒和收缩核模型开发了混合控制速率方程,该方程具有锌提取的固有速率和产物层扩散系数的特征。首先研究了纯闪锌矿样品的硫酸铁氧化,发现该过程主要受表面扩散控制,这被认为是由于元素硫产物层的形成。研究了高品位锌矿石的中温细菌氧化作用,温度为35℃,并且该过程受到化学反应和扩散的控制。然而,在25℃下低品位锌矿的嗜温细菌氧化过程中,发现扩散是限速的。有人提出,这种扩散阻力是由未反应的石材料层引起的。

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