Zhang Ziyi, Chen Xinyun, Yu Yongyi, Pan Wenbin, Liu Ruilai, Song Jiangyan, Hu Jiapeng
College of Environment and Safety Engineering, Fuzhou University, Fuzhou 350001, China.
Key Laboratory of Green Chemical Technology of Fujian Province University, Fujian Provincial Key Laboratory of Eco-Industrial Green Technology, Wuyi University, Wuyishan 354300, China.
Nanomaterials (Basel). 2025 Jul 4;15(13):1043. doi: 10.3390/nano15131043.
Phosphate and fluoride ions are common water pollutants whose presence and excessive discharge cause potential hazards to the environment and human health. MOF materials commonly used to remove phosphate and fluoride ions are usually in powder form, with low recovery during regeneration. Herein, to address these issues, FeO@La-Zr-MOFs magnetic composites for phosphate and fluoride removal were fabricated by means of the hydrothermal method. The adsorption properties of the adsorbent were systematically assessed by means of adsorption experiments. The magnetic FeO@La-Zr-MOFs exhibited a magnetic recovery efficiency of 93%, and they could maintain outstanding adsorption performance at a broad range of pH values and superior selectivity for phosphate and fluoride ions. The adsorption process conformed to the Langmuir isotherm and pseudo-second-order models, indicating that it was dominated by monomolecular chemisorption. Further characterization of the FeO@La-Zr-MOFs before and after adsorption and kinetic thermodynamic investigation revealed that the elimination mechanism of phosphate and fluoride ions by FeO@La-Zr-MOFs includes ion exchange, electrostatic interactions, and surface complexation. This study demonstrates that magnetic reusable FeO@La-Zr-MOFs composites have great promise for phosphate and fluoride removal and recovery.
磷酸根离子和氟离子是常见的水污染物,它们的存在和过量排放会对环境和人类健康造成潜在危害。常用于去除磷酸根离子和氟离子的金属有机框架(MOF)材料通常为粉末状,再生过程中的回收率较低。在此,为了解决这些问题,通过水热法制备了用于去除磷酸根和氟离子的FeO@La-Zr-MOFs磁性复合材料。通过吸附实验系统地评估了吸附剂的吸附性能。磁性FeO@La-Zr-MOFs的磁回收效率为93%,并且在广泛的pH值范围内能够保持出色的吸附性能,对磷酸根离子和氟离子具有优异的选择性。吸附过程符合朗缪尔等温线和准二级模型,表明其以单分子化学吸附为主导。对吸附前后的FeO@La-Zr-MOFs进行进一步表征以及动力学热力学研究表明,FeO@La-Zr-MOFs去除磷酸根离子和氟离子的机制包括离子交换、静电相互作用和表面络合。本研究表明,磁性可重复使用的FeO@La-Zr-MOFs复合材料在去除和回收磷酸根及氟离子方面具有巨大潜力。