Wang Jie, Liu Fupeng, Liao Bin, Liao Chunfa, Zhang Wei, Tan Haofeng, Hu Dongfeng, Wu Caigui
School of Metallurgical Engineering, Jiangxi University of Science and Technology, Ganzhou 341000, Jiangxi, China.
Danxia Smelter, Shenzhen Zhongjin Lingnan Nonfemet Company Limited, Shaoguan 512325, China.
ACS Omega. 2024 Dec 18;9(52):51421-51430. doi: 10.1021/acsomega.4c08348. eCollection 2024 Dec 31.
Gallium metal is scattered within Fankou lead-zinc ore, and the existing zinc hydrometallurgy process includes a leaching-extraction-electrowinning sequence to recover the gallium metal. However, impurities from lead-zinc ore have many adverse effects on the gallium electrowinning process such as strong hydrogen evolution reaction and low mass transfer rate, which lead to low current efficiencies and poor quality cathode gallium during gallium electrowinning process. In order to achieve efficient separation and recovery of gallium from zinc hydrometallurgy system, the effects of Al, Zn, and OH impurities on gallium electrowinning were systematically investigated in this study. The research results indicate that the Al impurity did not affect the cathode gallium product, but do affect the current efficiency of the gallium electrowinning process. The Zn impurity had a greater impact on the gallium electrowinning process than the other impurities, and deposition of Zn at the cathode led to a low current efficiency and directly affected the quality of the cathode gallium product. When the Zn concentration exceeded 1 g/L, the purity of the cathode gallium product was reduced to approximately 99%. Both excessively low and high OH concentrations had negative effects on the gallium electrowinning process, and the maximum value of current efficiency of gallium electrowinning is 54.14% when the alkali concentration was 120 g/L NaOH. The optimized main conditions for gallium electrowinning provide suggestions for realization of gallium production in zinc hydrometallurgy system.
镓金属分散在凡口铅锌矿中,现有的锌湿法冶金工艺包括浸出-萃取-电积流程来回收镓金属。然而,铅锌矿中的杂质对镓电积过程有许多不利影响,如强烈的析氢反应和低传质速率,这导致在镓电积过程中电流效率低且阴极镓质量差。为了实现从锌湿法冶金系统中高效分离和回收镓,本研究系统地研究了铝、锌和氢氧根杂质对镓电积的影响。研究结果表明,铝杂质不影响阴极镓产品,但确实会影响镓电积过程的电流效率。锌杂质对镓电积过程的影响比其他杂质更大,锌在阴极的沉积导致电流效率低,并直接影响阴极镓产品的质量。当锌浓度超过1 g/L时,阴极镓产品的纯度降至约99%。过低和过高的氢氧根浓度对镓电积过程都有负面影响,当碱浓度为120 g/L氢氧化钠时,镓电积的电流效率最大值为54.14%。镓电积的优化主要条件为锌湿法冶金系统中实现镓生产提供了建议。