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Innovative Application of Mechanical Activation for Rare Earth Elements Recovering: Process Optimization and Mechanism Exploration

机译:机械活化在稀土元素回收中的创新应用:工艺优化和机理探索

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摘要

With the rapidly expanding use of fluorescent lamps (FLs) and increasing interest in conservation and sustainable utilization of critical metals such as rare earth elements (REEs), the recovering of REEs from phosphors in waste FLs is becoming a critical environmental and economic issue. To effectively recycle REEs with metallurgical methods, mechanical activation by ball milling was introduced to pretreat the waste phosphors. This current study put the emphasis on the mechanical activation and leaching processes for REEs, and explored the feasibility of the method from both theoretical and practical standpoints. Results showed physicochemical changes of structural destruction and particle size reduction after mechanical activation, leading to the easy dissolution of REEs in the activated samples. Under optimal conditions, dissolution yields of 89.4%, 93.1% and 94.6% for Tb, Eu and Y, respectively, were achieved from activated waste phosphors using hydrochloric acid as the dissolution agent. The shrinking core model proved to be the most applicable for the leaching procedure, with an apparent activation energy of 10.96 ± 2.79 kJ/mol. This novel process indicates that mechanical activation is an efficient method for recovering REEs from waste phosphors, and it has promising potential for REE recovery with low cost and high efficiency.
机译:随着荧光灯(FL)的迅速扩展以及人们对保护和可持续利用诸如稀土元素(REE)等关键金属的兴趣日益浓厚,从废FLs中的磷光体中回收REE已成为一个关键的环境和经济问题。为了通过冶金方法有效地回收稀土元素,引入了通过球磨进行机械活化的方法,以预处理废磷。目前的研究重点是稀土的机械活化和浸出过程,并从理论和实践的角度探讨了该方法的可行性。结果表明,机械活化后结构破坏和粒径减小的物理化学变化,导致稀土元素容易溶解在活化样品中。在最佳条件下,使用盐酸作为溶解剂的活化废磷光体的Tb,Eu和Y的溶解产率分别为89.4%,93.1%和94.6%。收缩核模型被证明是最适用于浸出过程的方法,其表观活化能为10.96±2.79 kJ / mol。这种新颖的方法表明,机械活化是一种从废磷光体中回收稀土的有效方法,并且具有低成本和高效率回收稀土的潜力。

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