Zhou Meimei, Tang Weizhen, Luo Pingping, Lyu Jiqiang, Chen Aixia, Qiao Longkai, Nover Daniel
Key Laboratory of Subsurface Hydrology and Ecological Effect in Arid Region of Ministry of Education, School of Environmental Science and Engineering, Chang'an University, 710054 Xi'an, China E-mail:
Urban Planning Design Institute of Shenzhen, Shenzhen, Guangdong 518028, China.
Water Sci Technol. 2017 Nov;76(9-10):2526-2534. doi: 10.2166/wst.2017.405.
Ureido-functionalized mesoporous polyvinyl alcohol/silica composite nanofibre membranes were prepared by electrospinning technology and their application for removal of Pb and Cu from wastewater was discussed. The characteristics of the membranes were investigated by scanning electron microscopy, transmission electron microscopy, X-ray diffraction, and N adsorption-desorption analysis. Results show that the membranes have long fibrous shapes and worm-like mesoporous micromorphologies. Fourier transform infrared spectroscopy confirmed the membranes were successfully functionalized with ureido groups. Pb and Cu adsorption behavior on the membranes followed a pseudo-second-order nonlinear kinetic model with approximately 30 minutes to equilibrium. Pb adsorption was modelled using a Langmuir isotherm model with maximum adsorption capacity of 26.96 mg g. However, Cu adsorption was well described by a Freundlich isotherm model with poor adsorption potential due to the tendency to form chelating complexes with several ureido groups. Notably, the membranes were easily regenerated through acid treatment, and maintained adsorption capacity of 91.87% after five regeneration cycles, showing potential for applications in controlling heavy metals-related pollution and metals reuse.
通过静电纺丝技术制备了脲基功能化的介孔聚乙烯醇/二氧化硅复合纳米纤维膜,并探讨了其在去除废水中铅和铜方面的应用。通过扫描电子显微镜、透射电子显微镜、X射线衍射和N吸附-脱附分析对膜的特性进行了研究。结果表明,该膜具有长纤维形状和蠕虫状介孔微观形貌。傅里叶变换红外光谱证实该膜已成功用脲基官能化。膜上铅和铜的吸附行为遵循伪二级非线性动力学模型,约30分钟达到平衡。铅吸附采用朗缪尔等温线模型进行模拟,最大吸附容量为26.96 mg/g。然而,由于铜倾向于与多个脲基形成螯合络合物,其吸附势较差,采用弗伦德里希等温线模型能很好地描述铜的吸附。值得注意的是,该膜通过酸处理易于再生,在五个再生循环后仍保持91.87%的吸附容量,显示出在控制重金属相关污染和金属再利用方面的应用潜力。