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Green Recovery of Rare Earths from Waste Cathode Ray Tube Phosphors: Oxidative Leaching and Kinetic Aspects

机译:从废阴极射线管荧光粉中绿色回收稀土:氧化浸出和动力学方面

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摘要

In this work, we developed a green and efficient process for the recovery of rare earths from waste cathode ray tube phosphors. The mixture of hydrochloric acid and hydrogen peroxide was identified as the most suitable leaching agent due to the synergistic effect. The effects of various parameters on leaching process were explored, and the optimal conditions with stirring speed 600 rpm, temperature 313 K, 1 M of H2O2, 4 M of HCl, and leaching time of 90 min were determined. Furthermore, a possible reaction mechanism was proposed, and the kinetics for the leaching process was investigated in detail. The leaching process was found to follow a shirking-core model, with the chemical reaction as the rate-controlling step. The apparent activation energy of the reaction was calculated as 52.3 kJ/mol, and the reaction orders for H2O2 and HCl were established as 0.82 and 2.13, respectively. The kinetic equation was established. Moreover, the optimal leaching conditions were applied to the waste phosphors, and the oxalate precipitation process was employed, achieving the recovery rate of rare earths >99.5%. After calcining, a well crystallized (Y0.95Eu0.05)2O3 product with a purity of 99% was obtained with an average diameter of 5 μm.
机译:在这项工作中,我们开发了一种绿色高效的方法,用于从废阴极射线管荧光粉中回收稀土。由于协同作用,盐酸和过氧化氢的混合物被认为是最合适的浸出剂。探索了各种参数对浸出过程的影响,确定了搅拌速度为600 rpm,温度为313 K,H2O2为1 M,HCl为4 M,浸出时间为90 min的最佳条件。此外,提出了可能的反应机理,并详细研究了浸出过程的动力学。浸出过程被发现遵循一个“漏芯”模型,化学反应是控制速率的步骤。反应的表观活化能经计算为52.3 kJ / mol,H2O2和HCl的反应阶数分别为0.82和2.13。建立动力学方程。此外,对废荧光粉采用了最佳浸出条件,并采用草酸盐沉淀工艺,实现了稀土回收率> 99.5%。煅烧后,获得结晶度良好的(Y0.95Eu0.05)2 O 3产物,纯度为99%,平均直径为5μm。

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