School of Water Resources and Environmental Engineering, East China University of Technology, Nanchang 330013, Jiangxi, China; State Key Laboratory of Nuclear Resources and Environment, East China University of Technology, Nanchang 330013, Jiangxi, China.
School of Water Resources and Environmental Engineering, East China University of Technology, Nanchang 330013, Jiangxi, China.
J Environ Manage. 2024 Jun;362:121303. doi: 10.1016/j.jenvman.2024.121303. Epub 2024 Jun 1.
Spent phosphor is an important secondary resource for extracting rare earth elements. Microwave absorption properties and enhanced extraction of Eu from blue phosphor by microwave alkali roasting were studied. Dielectric properties of alkali roasting system were measured by resonator perturbation method. Dielectric constant increases linearly from 250 °C until it reaches a peak at 400 °C. The dielectric loss reaches a higher value at 400-550 °C, due to the strong microwave absorption properties of molten alkali and roasted products. Effects of roasting temperature, roasting time and alkali addition amount on Eu leaching were investigated. The phosphor was completely decomposed into EuO, BaCO and MgO at 400 °C. The alkaline decomposition process of phosphor is more consistent with diffusion control model with E being 28.9 kJ/mol. Effects of the main leaching conditions on Eu leaching were investigated. The leaching kinetic of Eu was in line with diffusion control model with E being 5.74 kJ/mol. The leaching rules of rare earths in the mixed phosphor were studied. The results showed that the presence of red and green phosphor affected the recovery of blue phosphor. The optimum process parameters of rare earth recovery in single blue phosphor and mixed phosphor were obtained, and the recovery of Eu were 97.81% and 94.80%, respectively. Microwave alkali roasting promoted the dissociation of phosphor and leaching of rare earths. The results can provide reference for the efficient and selective recovery of rare earths in phosphors.
废荧光粉是提取稀土元素的重要二次资源。本文研究了微波吸收性能和微波碱焙烧对蓝色荧光粉中 Eu 提取的强化作用。采用谐振腔微扰法测量了碱焙烧体系的介电性能。介电常数从 250℃线性增加,直到在 400℃时达到峰值。由于熔融碱和焙烧产物具有很强的微波吸收特性,介电损耗在 400-550℃时达到较高值。考察了焙烧温度、焙烧时间和碱用量对 Eu 浸出的影响。在 400℃下,荧光粉完全分解为 EuO、BaCO 和 MgO。荧光粉的碱性分解过程更符合扩散控制模型,E 值为 28.9kJ/mol。研究了主要浸出条件对 Eu 浸出的影响。Eu 的浸出动力学符合扩散控制模型,E 值为 5.74kJ/mol。研究了混合荧光粉中稀土的浸出规律。结果表明,红、绿荧光粉的存在影响了蓝色荧光粉的回收。得出了单蓝光荧光粉和混合荧光粉中回收稀土的最佳工艺参数,Eu 的回收率分别为 97.81%和 94.80%。微波碱焙烧促进了磷光体的解离和稀土的浸出。研究结果可为荧光粉中稀土的高效、选择性回收提供参考。