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METHOD FOR INDIVIDUAL RARE EARTH METALS RECYCLING FROM FLUORESCENT POWDER E-WASTES

机译:含氟粉末电子废物中回收稀土金属的方法

摘要

A robust and economically viable process technology is developed for the recycling of critical rare earth (REEs) metals from end of life lamp fluorescent powder (FP) e-waste. This is one of the first efforts to recycle invidual pure REEs from municipal e-waste components to arrive at commercially promising individual REEs purity, which are knowingly difficult to separate from wastes. The process technology addresses the management of strategically important REEs resources relevant for green energy and smart/hybrid technology. The methodology involves cheap mineral acid for near quantitative RE metal sequential digestion and extractive (liquid-liquid) separation protocols using the selective extractant ligand molecules and hydrometallurgical process conditions to separate Y, Eu, and Tb, to more than 99% purity and Gd, La and Ce to elevated purities each from the metal digested FP waste fractions. The developed technology has potential for scale up on industrial scale, re-use of extractant and organic phase as well as extended use for recovering RE metals from other e-waste after optimizations. The process can be employed to REE mixtures from e-waste as well as mining tailings origin. The process has the advantage over inseparable combined digested phosphor fractions as well as over inefficient leaching of Tb from LAP phosphor. It is also one of the first attempts to achieve the individual purity of rare earths raw materials from such a complex waste streams. The novel approach proposed herein with judicial choices of extractants and inventive steps of process hydrometallurgy will help to tap potential in e-waste secondary resources.
机译:开发了一种可靠且经济可行的工艺技术,用于从报废灯荧光粉(FP)电子废物中回收关键稀土(REE)金属。这是从市政电子废物成分中回收单个纯REE以获得商业上有希望的单个REE纯度的第一个努力之一,已知这些REE很难与废物分离。该过程技术解决了与绿色能源和智能/混合技术相关的具有战略意义的REEs资源的管理。该方法学涉及廉价的矿物酸,用于近乎定量的稀土金属顺序消化和萃取(液-液)分离方案,使用选择性萃取剂配体分子和湿法冶金工艺条件将Y,Eu和Tb分离,以达到99%以上的纯度和Gd, La和Ce分别从金属消化的FP废物馏分中提纯。这项开发的技术具有扩大工业规模,重新利用萃取剂和有机相以及在优化后从其他电子废物中回收可再生金属的潜力。该方法可用于从电子废物以及采矿尾矿中提取稀土元素。该方法具有优于不可分离的组合的消化的磷光体级分以及来自LAP磷光体的Tb的低效浸出的优点。这也是从如此复杂的废物流中获得稀土原料个别纯度的首次尝试之一。本文提出的带有提取物的司法选择和工艺湿法冶金的创造性步骤的新方法将有助于挖掘电子废物二次资源中的潜力。

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