Key Laboratory of Desert Shrub Resource Fibrosis and Energy Development and Utilization in Inner Mongolia Autonomous Region, College of Materials Science and Art Design, Inner Mongolia Agricultural University, Hohhot, Inner Mongolia 010018, China.
Laboratory of Fibrosis and Energy Utilization of Shrubby Resources in Inner Mongolia Autonomous Region, Hohhot, Inner Mongolia 010018, China.
Langmuir. 2024 Aug 6;40(31):16291-16302. doi: 10.1021/acs.langmuir.4c01456. Epub 2024 Jul 23.
Carboxymethyl wood powder-imprinted membranes (CMSM-MIPs) were prepared by using wet spinning technology and molecular-imprinting technology for the selective removal of tetracycline from wastewater. Scanning electron microscopy, X-ray diffraction, thermogravimetry, and X-ray photoelectron spectroscopy characterizations demonstrate that CMSM-MIPs retain the membranous structure of Carboxymethyl wood powder membranes, successfully encapsulate thin layers of imprinted polymers on the membrane surface, and exhibit excellent thermal stability. The adsorption results showed that CMSM-MIPs had the highest selective adsorption capacity for tetracycline, which was 253.8 mg/g. In addition, the adsorption capacities for oxytetracycline and chlortetracycline were 208.8 and 188 mg/g, respectively. It can be observed that CMSM-MIPs not only exhibit a high adsorption capacity for tetracycline but also demonstrate good adsorption capacities for oxytetracycline and chlortetracycline. The experimental results showed that CMSM-MIPs were best fitted with pseudo-second-order kinetics and most consistent with Freundlich fitting. The regeneration experiment showed that CMSM-MIPs still had good regeneration performance after 5 regeneration cycles. In conclusion, the CMSM-MIPs can not only have the natural adsorption performance of wood powder but also give it higher selectivity through molecular imprinting, so as to achieve efficient removal of target organic pollutants in water.
羧甲基木粉印迹膜(CMSM-MIPs)通过湿法纺丝技术和分子印迹技术制备,用于从废水中选择性去除四环素。扫描电子显微镜、X 射线衍射、热重分析和 X 射线光电子能谱表征表明,CMSM-MIPs 保留了羧甲基木粉膜的膜状结构,成功地在膜表面包埋了薄的印迹聚合物层,并表现出优异的热稳定性。吸附结果表明,CMSM-MIPs 对四环素具有最高的选择性吸附容量,为 253.8mg/g。此外,对土霉素和金霉素的吸附容量分别为 208.8 和 188mg/g。可以看出,CMSM-MIPs 不仅对四环素表现出高吸附容量,而且对土霉素和金霉素也表现出良好的吸附容量。实验结果表明,CMSM-MIPs 最符合准二级动力学模型,最符合 Freundlich 拟合。再生实验表明,CMSM-MIPs 在经过 5 次再生循环后仍具有良好的再生性能。总之,CMSM-MIPs 不仅可以具有木粉的天然吸附性能,而且通过分子印迹赋予其更高的选择性,从而实现水中目标有机污染物的高效去除。