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Effect of Chloride Electrolyte Additive on the Quality of Electrorefined Copper Cathode

机译:氯化物电解质添加剂对电精炼铜阴极质量的影响

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Sodium chloride (NaCl) is used in electrorefining as an electrolyte additive for refinement of copper grains and reduction of cathode impurities such as Ag and Sb. This is done by precipitating them out of solution as metallic chloride crystals. In this study a laboratory scale electrorefining circuit was used for the electrodeposition of copper in the presence of Bone glue, thiourea, Avitone and NaCl as electrolyte additives. The effect of NaCl on physical and chemical quality of cathode deposits was studied to achieve the optimum chloride concentration in the electrolyte. Cathode chemical composition was analysed using Spark Analysis for Traces (SAFT) machine and cathode morphology analysed using Optical Microscope (OM). Anode slime elemental composition was analysed by Inductively Coupled Plasma Mass Spectroscope (ICP-MS). It was found that chloride concentration in electrolyte affect the cathode deposit physical appearance and chemical quality and also plays a major role in making the composition of anode slime. Ag in cathode was found to be lower between chloride concentrations of 0.02g/l and 0.025g/l whereas Sb in cathode was lower at concentrations lower than 0.025g/l. Chloride concentration of 0.02g/l produced smoother and compact cathode deposits which were free from pits and nodules. At higher chloride concentration cathode deposits developed a pit-like appearance on the surface and grew nodules next to the pits.
机译:氯化钠(NaCl)在电解精炼中用作电解质添加剂,用于精炼铜晶粒和减少阴极杂质(例如Ag和Sb)。这是通过将它们从溶液中沉淀出来作为金属氯化物晶体来完成的。在这项研究中,实验室规模的电精炼电路用于在骨胶,硫脲,阿维酮和NaCl作为电解质添加剂存在下电沉积铜。研究了NaCl对阴极沉积物的物理和化学质量的影响,以实现电解质中最佳的氯化物浓度。使用痕量火花分析(SAFT)机分析阴极化学成分,并使用光学显微镜(OM)分析阴极形态。用电感耦合等离子体质谱仪(ICP-MS)分析阳极泥的元素组成。发现电解质中的氯化物浓度影响阴极沉积物的物理外观和化学质量,并且在制造阳极泥的组成中也起主要作用。发现阴极中的Ag在氯化物浓度为0.02g / l和0.025g / l之间较低,而阴极中的Sb在浓度低于0.025g / l时较低。 0.02g / l的氯化物浓度可产生更光滑,更紧凑的阴极沉积物,其中没有凹坑和结节。在较高的氯化物浓度下,阴极沉积物在表面上会出现类似坑的外观,并且在坑附近会长出结核。

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