School of Petrochemical Technology, Jilin Institute of Chemical Technology, Jilin 132022, China.
Yangtze Delta Region Institute (Huzhou), University of Electronic Science and Technology of China, Huzhou 313001, China.
Int J Biol Macromol. 2024 Aug;274(Pt 2):133381. doi: 10.1016/j.ijbiomac.2024.133381. Epub 2024 Jun 22.
Dyes, as organic pollutants, are causing increasingly severe environmental problems. Metal-organic frameworks (MOFs) are considered promising dye adsorbents; however, their application is limited due to their powder or solid particle forms and limited reusability. Therefore, this study proposes an innovative approach to develop a novel MOF-based composite aerogel, specifically a HKUST-1/polyacrylonitrile nanofibers/regenerated cellulose (HKUST-1/PANNs/RC) composite aerogel adsorbent, for the adsorption of pollutants in water. This adsorbent was successfully prepared using a simple method combining covalent crosslinking, quick freezing, freeze-drying, in-situ growth synthesis, and solvothermal techniques. The HKUST-1/PANNs/RC composite aerogel exhibits a significantly large specific surface area, which is approximately 64 times greater than that of PANNs/RC (10.45 m·g), with a specific surface area of 669.9 m·g. The PANNs serve as a support framework, imparting excellent mechanical properties to the composite aerogel, enhancing its overall stability and recoverability. Additionally, the composite aerogel contains numerous -COOH and -OH groups on its surface, providing strong acid resistance and facilitating interactions with pollutant molecules through electrostatic interactions, π-π conjugation, n-π* interactions, and hydrogen bonding, thereby promoting the adsorption process. Using methylene blue (MB) as a probe molecule, the study results demonstrate that the HKUST-1/PANNs/RC composite aerogel has an adsorption capacity of 522.01 mg·g for MB (25 h), exhibiting excellent adsorption performance. This composite aerogel shows great potential for application in water pollution control.
染料作为有机污染物,正导致日益严重的环境问题。金属有机骨架(MOFs)被认为是很有前途的染料吸附剂;然而,由于它们的粉末或固体颗粒形式以及有限的可重复使用性,其应用受到限制。因此,本研究提出了一种开发新型 MOF 基复合气凝胶的创新方法,特别是一种 HKUST-1/聚丙烯腈纳米纤维/再生纤维素(HKUST-1/PANNs/RC)复合气凝胶吸附剂,用于吸附水中的污染物。该吸附剂是通过一种简单的方法制备的,该方法结合了共价交联、快速冷冻、冷冻干燥、原位生长合成和溶剂热技术。HKUST-1/PANNs/RC 复合气凝胶具有显著较大的比表面积,约为 PANNs/RC(10.45 m·g)的 64 倍,比表面积为 669.9 m·g。PANNs 作为支撑骨架,赋予复合气凝胶优异的机械性能,增强其整体稳定性和可回收性。此外,复合气凝胶表面含有大量的-COOH 和-OH 基团,提供了强耐酸性,并通过静电相互作用、π-π 共轭、n-π*相互作用和氢键促进与污染物分子的相互作用,从而促进吸附过程。以亚甲基蓝(MB)作为探针分子,研究结果表明,HKUST-1/PANNs/RC 复合气凝胶对 MB(25 h)的吸附容量为 522.01 mg·g,表现出优异的吸附性能。这种复合气凝胶在水污染控制方面具有很大的应用潜力。