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Hydrometallurgical Process for Tantalum Recovery from Epoxy-Coated Solid Electrolyte Tantalum Capacitors

机译:环氧涂层固体电解质钽电容器钽储存的液压冶金工艺

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摘要

Tantalum is a critical metal that is widely used in electronic products. The demand for tantalum is increasing, but the supply is limited. As tantalum waste products have increased in Taiwan in recent years, the treatment of spent tantalum capacitors has become necessary and important. The recycling of tantalum from tantalum capacitors will not only decrease pollution from waste, but will also conserve tantalum resources. The tantalum content in epoxy-coated solid electrolyte tantalum capacitors (EcSETCs) is over 40 wt.%. Here, we designed a recycling process that includes pre-treatment, leaching, and solvent extraction to recover tantalum. In the pre-treatment process, epoxy resin and wires were removed. During hydrometallurgical process, pressure leaching by hydrofluoric acid was used to leach tantalum and manganese from solid electrolyte tantalum capacitors (SETCs). During our testing of this proposed process, the acid concentration, reaction time, temperature, and solid–liquid ratio were examined for leaching. After the leaching process, Alamine 336 was used to extract tantalum from the leaching solution. The pH value, extractant concentration, extraction time, and aqueous–organic ratio were investigated. Then, tantalum was stripped using HNO3, and the HNO3 concentration, stripping time, and organic–aqueous ratio were analyzed in detail. Under optimal conditions, the recovery efficiency of tantalum reached over 98%, and a final product of tantalum pentoxide with 99.9% purity was obtained after chemical precipitation and calcination.
机译:钽是一种临界金属,广泛用于电子产品。对钽的需求正在增加,但供应有限。由于近年来台湾的钽废物产品增加,花费钽电容器的处理已成为必要和重要性。来自钽电容器的钽的再循环不仅将减少浪费的污染,但也将节省钽资源。环氧涂层固体电解质钽电容器(ECSetcs)中的钽含量超过40重量%。%。在这里,我们设计了一种回收过程,包括预处理,浸出和溶剂萃取以回收钽。在预处理过程中,除去环氧树脂和线。在湿法冶金过程中,氢氟酸的压力浸出用于浸出钽和锰通过固体电解质钽电容器(SETCS)。在我们对该提出的方法的测试期间,检查酸浓度,反应时间,温度和固液比进行浸出。在浸出过程之后,亚胺胺336用于从浸出溶液中提取钽。研究了pH值,提取剂浓度,提取时间和水性比率。然后,使用HNO3剥离钽,并详细分析HNO 3浓度,剥离时间和有机水 - 水性比。在最佳条件下,钽的恢复效率达到98%以上,在化学沉淀和煅烧后获得了99.9%纯度的钽五氧化钽的最终产物。

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