Wang Ruixiang, Xu Piao, Xie Boyi, Liu Chaxiang, Zhong Xiaocong, Zhang Zhongtang, Fan Helin
School of Metallurgical Engineering, Jiangxi University of Science and Technology Ganzhou 341000 China
Ganzhou Engineering Technology Research Center of Green Metallurgy and Process Intensification Ganzhou 341000 China.
RSC Adv. 2024 Dec 12;14(53):39353-39360. doi: 10.1039/d4ra06334a. eCollection 2024 Dec 10.
Rare earth elements are commonly used in various fields due to their unique physical and chemical properties. Waste phosphors represent an important secondary source of rare earth elements, and their recovery is a crucial means of improving the utilization of these resources. When using FeCl as a reducing agent to reduce Tb and Ce from washed phosphors, a large amount of reducing agent is required, and the Fe cycle becomes complicated. In this study, the electrochemical reduction process was employed to treat washed phosphors. Under optimum conditions of FeCl concentration of 0.10 mol L, current density of 100 A m, HCl concentration of 3 mol L, temperature of 80 °C, L/S ratio of 30 mL g, and time of 60 min, the leaching efficiencies of Tb and Ce reached 99.2% and 98.5%, respectively. The apparent activation energies of Tb and Ce were calculated as 17.71 and 18.46 kJ mol, respectively, illustrating that the leaching processes of Tb and Ce depend on the diffusion. By applying an external electric field, Fe can be recycled in the system, thereby reducing the amount of reducing agent needed and achieving a higher leaching efficiency for Tb and Ce. These results are beneficial for the resource utilization of waste phosphors and have significant implications for the sustainable development of rare earth resources.
稀土元素因其独特的物理和化学性质而广泛应用于各个领域。废荧光粉是稀土元素的重要二次来源,其回收是提高这些资源利用率的关键手段。当使用FeCl作为还原剂从洗涤后的荧光粉中还原Tb和Ce时,需要大量的还原剂,并且铁循环变得复杂。在本研究中,采用电化学还原工艺处理洗涤后的荧光粉。在FeCl浓度为0.10 mol/L、电流密度为100 A/m²、HCl浓度为3 mol/L、温度为80°C、液固比为30 mL/g以及时间为60分钟的最佳条件下,Tb和Ce的浸出效率分别达到99.2%和98.5%。计算得出Tb和Ce的表观活化能分别为17.71和18.46 kJ/mol,表明Tb和Ce的浸出过程取决于扩散。通过施加外部电场,铁可以在系统中循环利用,从而减少所需还原剂的用量,并实现更高的Tb和Ce浸出效率。这些结果有利于废荧光粉的资源利用,对稀土资源的可持续发展具有重要意义。