Han Jilong, Zhang Hanya, Fan Yuheng, Zhou Lilong, Zhang Zhikun, Li Pengfei, Li Zhengjie, Du Yongsheng, Meng Qingfen
College of Chemical and Pharmaceutical Engineering, Hebei University of Science and Technology, Shijiazhuang 050018, China.
Qinghai Provincial Key Laboratory of Geology and Environment of Salt Lakes, Qinghai Institute of Salt Lakes, Chinese Academy of Sciences, Xining 810008, China.
Molecules. 2024 Apr 3;29(7):1615. doi: 10.3390/molecules29071615.
The sustainable management of wastewater through recycling and utilization stands as a pressing concern in the trajectory of societal advancement. Prioritizing the elimination of diverse organic contaminants is paramount in wastewater treatment, garnering significant attention from researchers worldwide. Emerging metal-organic framework materials (MOFs), bridging organic and inorganic attributes, have surfaced as novel adsorbents, showcasing pivotal potential in wastewater remediation. Nevertheless, challenges like limited water stability, elevated dissolution rates, and inadequate hydrophobicity persist in the context of wastewater treatment. To enhance the performance of MOFs, they can be modified through chemical or physical methods, and combined with membrane materials as additives to create membrane composite materials. These membrane composites, derived from MOFs, exhibit remarkable characteristics including enhanced porosity, adjustable pore dimensions, superior permeability, optimal conductivity, and robust water stability. Their ability to effectively sequester organic compounds has spurred significant research in this field. This paper introduces methods for enhancing the performance of MOFs and explores their potential applications in water treatment. It delves into the detailed design, synthesis strategies, and fabrication of composite membranes using MOFs. Furthermore, it focuses on the application prospects, challenges, and opportunities associated with MOF composite membranes in water treatment.
通过回收利用实现废水的可持续管理是社会发展进程中的一个紧迫问题。在废水处理中,优先消除各种有机污染物至关重要,这引起了全球研究人员的广泛关注。新兴的金属有机框架材料(MOFs)兼具有机和无机特性,已成为新型吸附剂,在废水修复中展现出关键潜力。然而,在废水处理背景下,水稳定性有限、溶解速率高和疏水性不足等挑战依然存在。为提高MOFs的性能,可通过化学或物理方法对其进行改性,并与膜材料作为添加剂结合以制备膜复合材料。这些源自MOFs的膜复合材料具有显著特性,包括孔隙率提高、孔径可调节、渗透性优异、导电性最佳以及水稳定性强。它们有效螯合有机化合物的能力激发了该领域的大量研究。本文介绍了提高MOFs性能的方法,并探讨了其在水处理中的潜在应用。深入研究了使用MOFs的复合膜的详细设计、合成策略和制备。此外,重点关注了MOF复合膜在水处理中的应用前景、挑战和机遇。