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The effect of electrolyte additives on cathode surface quality during copper electrorefining

机译:电解添加剂对铜电精炼过程中阴极表面质量的影响

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The use of electrolyte additives to smoothen cathode deposits during copper deposition is practised worldwide. These additives absorb on the cathode surface and take part in the electrochemical crystallization process. However, these additives also affect the quality of the cathodes when they are inadequately controlled.Electrolyte additives used by Palabora are glue, thiourea, Avitone and chloride. Their effects were determined on cathode quality, the size of the current density region that gives the desired compact morphology, and current efficiency. This was done in a small-scale cell. Small cells have different hydrodynamics from industrial-scale cells, which makes it difficult to simulate the operation of industrial cells in a laboratory. The approach used here was to use a rotating cylinder cathode to attain controlled hydrodynamics. The rotation speed was chosen to give a diffusion layer thickness that is similar to that of an industrial-scale cell. It was shown that even fairly small changes in the additive levels can significantly affect the cathode morphology, and the current density range over which this morphology can be obtained.
机译:全世界都在使用电解质添加剂来平滑铜沉积过程中的阴极沉积。这些添加剂吸收在阴极表面上并参与电化学结晶过程。但是,如果控制不当,这些添加剂也会影响阴极的质量。Palabora使用的电解质添加剂包括胶水,硫脲,Avitone和氯化物。确定了它们对阴极质量,给出所需紧凑形态的电流密度区域大小以及电流效率的影响。这是在一个小型单元中完成的。小型电池具有不同于工业规模电池的流体动力学,这使得很难在实验室中模拟工业电池的运行。此处使用的方法是使用旋转圆柱体阴极来实现受控的流体动力学。选择旋转速度以给出类似于工业规模电池的扩散层厚度。结果表明,即使添加量的很小变化也能显着影响阴极形态,以及可以得到该形态的电流密度范围。

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