Key Laboratory of Green Utilization of Critical Non-metallic Mineral Resources, Ministry of Education, Wuhan University of Technology, Wuhan, Hubei 430070, China; School of Resources and Environmental Engineering, Wuhan University of Technology, Wuhan, Hubei 430070, China.
Key Laboratory of Green Utilization of Critical Non-metallic Mineral Resources, Ministry of Education, Wuhan University of Technology, Wuhan, Hubei 430070, China; School of Resources and Environmental Engineering, Wuhan University of Technology, Wuhan, Hubei 430070, China E-mail:
Water Sci Technol. 2024 Jul;90(1):32-44. doi: 10.2166/wst.2024.211. Epub 2024 Jun 18.
Developing a feasible and low-cost strategy for the recovery of calcium fluoride efficiently from fluoride-containing wastewater is very essential for the recycle of fluoride resources. Herein, a modified lime precipitation method was employed to recover CaF from fluorinated wastewater using a special icy lime solution. Intriguingly, the highest F removal was greater than 95% under the optimal condition, leaving a fluoride concentration from 200 to 8.64 mg/L, while the lime dosage was much lower than that of industry. Importantly, spherical-shaped CaF particles with a 93.47% purity and size smaller than 600 nm were recovered, which has a high potential for the production of hydrofluoric acid. Besides, the precipitation was significantly affected by Ca/F molar ratio, stirring time, temperature, and solution pH. Furthermore, the thermodynamics and kinetics were investigated in detail to reveal the crystallization process. As a result, the defluorination reaction followed the pseudo-second order reaction kinetics model. Also, CO in the air adversely influenced the CaF purity. Based on this facile method, a high lime utilization efficiency was applied to defluorination, which contributed to protecting the environment and saving costs. This study, therefore, provides a feasible approach for the green recovery of fluorine resources and has significance for related research.
从含氟废水中高效回收氟化钙以实现氟资源循环利用,开发可行且低成本的策略非常重要。本文采用特殊的冰石灰溶液,通过改良石灰沉淀法从含氟废水中回收 CaF。有趣的是,在最佳条件下,氟的去除率大于 95%,氟浓度从 200 降至 8.64mg/L,而石灰用量远低于工业用量。重要的是,回收得到了纯度为 93.47%、粒径小于 600nm 的球形 CaF 颗粒,这对于生产氢氟酸具有很高的潜力。此外,沉淀过程明显受到 Ca/F 摩尔比、搅拌时间、温度和溶液 pH 值的影响。此外,还详细研究了热力学和动力学,以揭示结晶过程。结果表明,脱氟反应遵循拟二级反应动力学模型。此外,空气中的 CO 会对 CaF 的纯度产生不利影响。基于这种简便的方法,高石灰利用率可用于脱氟,有助于保护环境和降低成本。因此,本研究为氟资源的绿色回收提供了一种可行的方法,对相关研究具有重要意义。