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A modified sulfation-roasting-leaching process for recovering Se, Cu, and Ag from copper anode slimes at a lower temperature

机译:一种改进的硫酸盐焙烧-浸出工艺,用于在较低温度下从铜阳极泥中回收硒,铜和银

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摘要

Copper anode slimes are source of valuable elements such as selenium, tellurium, copper, silver, lead, antimony, tin, gold, and platinum group metals. There are vast, diverse methods to recover precious elements from the copper anode slimes. Sulfation roasting is one of the prevalent methods that became widespread because of the simplicity of the technology and available knowledge of the process. High energy consumption and too many stages that produce gaseous and liquid effluents in each stage are the main drawbacks of this approach. In this study, the conventional sulfation roasting approach was environmentally modified to a lower temperature sulfation-roasting-leaching process by reducing the temperature from 600 to 800 degrees C to ca. 247 degrees C. Therefore the energy consumption is lowered significantly and the number of stages is shortened to 2 separate stages of sulfation-roasting and leaching as the main stages of the process. In this regard, the gaseous and liquid effluents of the process are reduced and therefore, the environmental drawbacks decreases. The effects of the two parameters of temperature and liquid to solid ratio were investigated using response surface methodology. At the optimum condition, temperature of ca. 247 degrees C and L/S ratio of 1.95, 99.93% of selenium, 96.53% of copper, and 96.48% of silver were recovered. After separation of selenium, copper and silver were taken apart by solvent extraction using CP-150. Using 10% (V/V) CP-150 in kerosene, a 5 min contact time, pH of 4 and organic to aqueous ratio of 1, 99.87% of copper was extracted.
机译:铜阳极泥是有价值元素的来源,例如硒,碲,铜,银,铅,锑,锡,金和铂族金属。有多种多样的方法可从铜阳极泥中回收贵重元素。硫酸盐焙烧是由于技术的简单性和现有工艺知识而变得广泛使用的普遍方法之一。这种方法的主要缺点是高能耗和在每个阶段产生气态和液态废水的阶段过多。在这项研究中,通过将温度从600到800摄氏度降低到大约200摄氏度,将传统的硫酸盐焙烧方法在环境上进行了改进,以适应较低温度的硫酸盐焙烧-浸出过程。 247摄氏度。因此,能耗显着降低,并且阶段数缩短为硫酸盐焙烧和浸出的两个独立阶段,这是该过程的主要阶段。在这方面,减少了该方法的气态和液态流出物,因此减少了环境缺陷。使用响应面方法研究了温度和液固比这两个参数的影响。在最佳条件下,温度约为247℃,L / S比为1.95,回收了99.93%的硒,96.53%的铜和96.48%的银。分离硒后,使用CP-150进行溶剂萃取,分离出铜和银。使用在煤油中的10%(V / V)CP-150,萃取5分钟的接触时间,pH值为4,有机与水的比率为1,提取了99.87%的铜。

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