Kuzminova Anna, Dmitrenko Mariia, Zolotarev Andrey, Korniak Aleksandra, Poloneeva Daria, Selyutin Artem, Emeline Alexei, Yushkin Alexey, Foster Andrew, Budd Peter, Ermakov Sergey
St. Petersburg State University, 7/9 Universitetskaya nab., 199034 St. Petersburg, Russia.
A. V. Topchiev Institute of Petrochemical Synthesis RAS, 29 Leninsky Prospekt, 119991 Moscow, Russia.
Membranes (Basel). 2021 Dec 23;12(1):14. doi: 10.3390/membranes12010014.
Nowadays, nanofiltration is widely used for water treatment due to its advantages, such as energy-saving, sustainability, high efficiency, and compact equipment. In the present work, novel nanofiltration membranes based on the polymer of intrinsic microporosity PIM-1 modified by metal-organic frameworks (MOFs)-MIL-140A and MIL-125-were developed to increase nanofiltration efficiency for the removal of heavy metal ions and dyes. The structural and physicochemical properties of the developed PIM-1 and PIM-1/MOFs membranes were studied by the spectroscopic technique (FTIR), microscopic methods (SEM and AFM), and contact angle measurement. Transport properties of the developed PIM-1 and PIM-1/MOFs membranes were evaluated in the nanofiltration of the model and real mixtures containing food dyes and heavy metal ions. It was found that the introduction of MOFs (MIL-140A and MIL-125) led to an increase in membrane permeability. It was demonstrated that the membranes could be used to remove and concentrate the food dyes and heavy metal ions from model and real mixtures.
如今,纳滤因其节能、可持续、高效和设备紧凑等优点而被广泛应用于水处理领域。在本研究中,开发了基于固有微孔聚合物PIM-1并由金属有机框架(MOFs)-MIL-140A和MIL-125改性的新型纳滤膜,以提高去除重金属离子和染料的纳滤效率。通过光谱技术(傅里叶变换红外光谱法)、显微镜方法(扫描电子显微镜和原子力显微镜)以及接触角测量对所制备的PIM-1和PIM-1/MOFs膜的结构和物理化学性质进行了研究。在对含有食用染料和重金属离子的模型混合物及实际混合物进行纳滤时,评估了所制备的PIM-1和PIM-1/MOFs膜的传输性能。结果发现,引入MOFs(MIL-140A和MIL-125)可提高膜的渗透性。结果表明,这些膜可用于从模型混合物和实际混合物中去除和浓缩食用染料及重金属离子。