Xu Chongqin, Liu Qi, Han Yawen, Hu Shaokuan, Xu Shuyan
College of Home and Art Design, Northeast Forestry University, Harbin, Heilongjiang, 150040, PR China.
College of Home and Art Design, Northeast Forestry University, Harbin, Heilongjiang, 150040, PR China.
Environ Res. 2025 Mar 15;269:120877. doi: 10.1016/j.envres.2025.120877. Epub 2025 Jan 16.
Cellulose has been broadly used in wastewater treatment. However, its adsorption capacity is limited by the lack of strong sites interacted with pollutants. Because of the good ability of carrying other substances, cellulose-based materials still have considerable room for improvement in adsorption capacity. Therefore, in virtue of this property, we synthesized a cellulose nanofibril (CNF) composite, ZnCo-ZIF@GEL aerogel, using mussel-bionic technique and zeolitic imidazolate frameworks (ZIFs) materials, which was applied in adsorbing copper ions. The experiments indicated the adsorption kinetics was consistent with the pseudo-second-order model. Langmuir model had a better fitting effect in isotherm analysis, revealing that the maximum adsorption capacity was 274.73 mg/g at 25 °C. Furthermore, we found that the appropriate doping of Co element to achieve an optimal synergistic effect enhance the adsorption capacity of Cu greatly. The mechanisms of synthesis and adsorption progress were also deeply researched. Overall, the findings of ZnCo-ZIF@GEL promote the application of ZIFs in the adsorption field of polydopamine-composited CNF aerogel.
纤维素已广泛应用于废水处理。然而,其吸附能力受到与污染物相互作用的强位点缺乏的限制。由于具有良好的负载其他物质的能力,纤维素基材料在吸附能力方面仍有相当大的提升空间。因此,基于这一特性,我们采用贻贝仿生技术和沸石咪唑酯骨架(ZIFs)材料合成了一种纤维素纳米原纤(CNF)复合材料ZnCo-ZIF@GEL气凝胶,并将其应用于铜离子吸附。实验表明吸附动力学符合准二级模型。在等温线分析中,Langmuir模型拟合效果更好,表明在25℃时最大吸附容量为274.73mg/g。此外,我们发现适当掺杂Co元素以实现最佳协同效应可大大提高对Cu的吸附能力。还深入研究了合成和吸附过程的机制。总体而言,ZnCo-ZIF@GEL的研究结果促进了ZIFs在聚多巴胺复合CNF气凝胶吸附领域的应用。