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Hydrometallurgical recovery of silver from waste silver oxide button cells

机译:从废氧化银纽扣电池中湿法冶金回收银

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In recent years, recycling of household batteries has attracted much attention mainly with respect to environmental aspects in addition to the savings. Small silver oxide primary cells used in electric watches become a waste after their life is over. Recycling procedures are needed to prevent any environmental impact from these wastes and to recover the value inherent in the scrap. Smelting and electrolytic methods are discussed for silver recovery from this battery waste. Acid leaching of waste batteries and precipitation of silver as silver chloride followed by smelting at 1000 deg C yields a silver recovery of about 83 percent. An electrolytic route is studied as an alternative to the smelting operation and involves the electrodeposition of silver with higher purity from a silver thiosulfate complex prepared from silver chloride. The electrolysis is potentiostatically controlled at a potential of -0.400 to -0.600 V (SCE) for avoiding side-reactions such as the sulfiding of silver. Although recovery methods have been identified in principle, their suitability for mixed small battery waste and economic factors have yet to be demonstrated.
机译:近年来,家用电池的回收除了节约之外,还主要在环境方面引起了人们的广泛关注。电表中使用的小型氧化银原电池寿命一旦耗尽,便成为废物。需要采取回收程序以防止这些废物对环境造成的影响并回收废料中的固有价值。讨论了从电池废料中回收银的冶炼和电解方法。废电池的酸浸和以氯化银的形式沉淀银,然后在1000℃下熔炼,回收的银量约为83%。研究了一种电解方法,作为熔炼操作的替代方法,该方法涉及从氯化银制得的硫代硫酸银络合物中电沉积更高纯度的银。将电解恒电位控制在-0.400至-0.600 V(SCE)的电位,以避免发生副反应,例如硫化银。尽管原则上已经确定了回收方法,但是它们对于混合小废电池的适用性和经济因素尚未得到证实。

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