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Comprehensive process for the recovery of value and critical materials from electronic waste

机译:从电子废物中回收价值和关键材料的综合过程

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The development of technologies that contribute to the proper disposal and treatment of electronic waste is not just an environmental need, but an opportunity for the recovery and recycle of valuable metals and critical materials. Value elements in electronic waste include gold, palladium, silver, copper, nickel, and rare earth elements. This paper presents a technical assessment of the steps involved in a scheme that enables efficient recovery of value and critical materials from scrap mobile electronics. An electrochemical recovery process, based on the regeneration of ferric ion as a weak oxidizer, is studied for the selective recovery of base metals while leaving precious metals for separate extraction at reduced chemical demand. A separate process recovers rare earth oxides from magnets in electronics. Recovery and extraction efficiencies ca. 90% were obtained for the extraction of base metals from the non-ferromagnetic fraction in the two different solution matrices tested (sulfuric and hydrochloric acid). The effect of the pre-extraction of base metals in the increase of precious metals extraction efficiency was verified. On the other hand, the extraction of rare earths from the ferromagnetic fraction, performed by means of anaerobic extraction in acid media, was assessed for the selective recovery of rare earths. A comprehensive flow sheet was developed to process electronic waste to value products. (C) 2016 Elsevier Ltd. All rights reserved.
机译:有助于正确处理和处置电子废物的技术开发不仅是环境需求,而且是回收和再循环有价值的金属和关键材料的机会。电子废物中的有价值元素包括金,钯,银,铜,镍和稀土元素。本文介绍了该计划中涉及的步骤的技术评估,该计划能够从废旧移动电子设备中有效回收价值和关键材料。研究了一种基于铁离子作为弱氧化剂的再生的电化学回收工艺,该工艺可选择性回收贱金属,同时保留贵金属,以减少化学需量进行单独提取。单独的过程可以从电子产品的磁体中回收稀土氧化物。回收和提取效率从两种测试溶液(硫酸和盐酸)中的非铁磁性馏分中提取贱金属可得90%的金属。验证了贱金属预萃取对贵金属提取效率提高的影响。另一方面,通过在酸性介质中进行厌氧萃取,对从铁磁馏分中萃取稀土进行了选择性回收稀土的评估。开发了一个综合流程图来处理电子废物以增值产品。 (C)2016 Elsevier Ltd.保留所有权利。

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