Joint Research Centre for Protective Infrastructure Technology and Environmental Green Bioprocess, Department of Environmental and Municipal Engineering, Tianjin Chengjian University, Tianjin 300384, China E-mail:
TG Hilyte Environment Technology (Beijing) Co., LTD., Beijing 100000, China.
Water Sci Technol. 2022 Jun;85(11):3196-3207. doi: 10.2166/wst.2022.170.
Fluorine is one of the essential trace elements for human life activities, but excessive intake of fluoride poses a great risk to people's health. In this paper, a series of mixed matrix membrane (MMM)-based polysulfone for removing fluoride were prepared by phase inversion, and their properties, adsorption capacity, adsorption isotherms, adsorption kinetics of fluoride ions, and mechanism were all investigated. The results confirmed that the MMM contained a large number of hydroxyl and aluminum functional groups due to resin being added. The MMM exhibited the best fluorine ion adsorption capacity of 2.502 mg/g at a pH of 6 with the initial concentration of 6 mg/L. As well, adsorption kinetics of fluorine ion on MMM followed the pseudo-second-order model, while the adsorption behavior of fluorine ion on MMM was well simulated by the Langmuir isotherm model. The adsorption capacity of MMM remained stable after six cycles and the regeneration efficiency was still above 80%, resulting in a long-term stability adequate for fluorine ion removal. Complexation and ion exchange played a key role in the fluorine ion adsorption of MMM. These results indicated the MMM as novel type of absorbent had an excellent capacity for removing fluoride.
氟是人体生命活动必需的微量元素之一,但过量摄入氟化物会对人体健康造成极大的危害。本文采用相转化法制备了一系列基于混合基质膜(MMM)的聚砜,用于去除氟化物,并对其性能、吸附容量、吸附等温线、氟离子吸附动力学和机理进行了研究。结果表明,由于添加了树脂,MMM 中含有大量的羟基和铝官能团。在 pH 值为 6、初始浓度为 6mg/L 时,MMM 对氟离子的吸附容量最大,为 2.502mg/g。氟离子在 MMM 上的吸附动力学符合准二级动力学模型,而氟离子在 MMM 上的吸附行为则很好地符合 Langmuir 等温线模型。MMM 在六次循环后吸附容量保持稳定,再生效率仍高于 80%,具有足够的长期稳定性,可用于去除氟离子。配位和离子交换在 MMM 对氟离子的吸附中起着关键作用。这些结果表明,MMM 作为一种新型的吸附剂,具有去除氟化物的优异能力。