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RECOVERY OF PRECIOUS METALS FROM ELECTRONIC SCRAPS

机译:从电子废料中回收贵金属

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摘要

Recovery of precious metals (PMs) is a present topic, as they are used almost in every electronic-electric device. Gold is the second PM in order of consumption (following silver) and it is almost ubiquitary in electronics where it mainly finds application to produce bonding wires in integrated circuits and as a coating for contacts and connectors. Given this, discontinued electronic and, with a minor role, electric devices may represent a primary source of PMs as gold mines or jewelery wastes.At present the recovery of gold from such waste is generally accomplished by two strategies: by oxidative thermal treatment followed by metallurgical or chemical processes or by cyanide chemical etching; both techniques do not represent the optimum as the first one deserves a great amount of energy and non-combustible pollutant slag and fumes are produced, while the second procedure comports the use of a highly pollutant agent as cyanide.The aim of this work is the characterization of different electronics scraps to evaluate the gold concentration, and the selective recovery of this metal using enviromentally-friendly techniques. In particular, a new process was developed in order to overcome such environmental and efficiency issues. The process reaches the goal of detach the gold film from the substrate by selective leaching of the supporting metal.
机译:贵金属(PM)的回收是当前的主题,因为几乎所有的电子电气设备都使用它们。黄金是消耗量第二大的粉末冶金(其次是白银),在电子领域几乎无处不在,主要用于制造集成电路中的键合线以及用作触点和连接器的涂层。鉴于此,已停产的电子设备(以及次要的作用是电气设备)可能代表着作为金矿或珠宝废料的PM的主要来源。 目前,从这种废物中回收金通常通过两种策略来完成:通过氧化热处理,然后进行冶金或化学工艺,或者通过氰化物化学刻蚀;或者通过化学方法进行。两种技术都不是最优方法,因为第一种技术应消耗大量能量,并且会产生不可燃的污染物炉渣和烟气,而第二种方法则推荐使用高污染物的试剂作为氰化物。 这项工作的目的是表征不同的电子废料以评估金的浓度,并使用环保技术选择性回收这种金属。特别是,为了克服这种环境和效率问题,开发了一种新的方法。该工艺达到了通过选择性浸出支撑金属将金膜从基底上分离的目的。

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