Department of Chemical Engineering, Kermanshah University of Technology, 67178 Kermanshah, Iran.
Department of Chemical Engineering, Kermanshah University of Technology, 67178 Kermanshah, Iran.
J Hazard Mater. 2018 Sep 15;358:376-388. doi: 10.1016/j.jhazmat.2018.07.017. Epub 2018 Jul 5.
Thin-film nanocomposite (TFN) membranes were prepared by embedding nano-porous SAPO-34 nanoparticles in a polypyrrole thin-film layer polymerized on PES substrate. SEM, EDX, AFM, hydrophilicity, zeta potential and MWCO measurements were applied to verify characteristics of membranes. TFN membranes presented considerably higher pure water permeability (by more than 300%) due to high hydrophilicity and also nano-channels created in thin-film. Performance of TFN membranes were also evaluated by removal of different anionic and cationic dyes (methyl violet 6B, reactive blue 4 and acid blue 193) from water. TFN membranes effectively removed 100% of all dyes from feed aqueous solutions with a low concentration (50 mg/l). Moreover, TFN membrane prepared with the highest amount of nano-filler presented an elevated water flux in filtration of solutions containing each dyes (e.g. more than 500% for reactive blue 4), a reduced flux decline ratio (36%) and also a higher flux recovery ratio (85%) in comparison with the pristine thin-film membrane, consequently indicating high performance of TFN membranes and potential of recovery just after a simple water washing. TFN membranes also revealed an efficient performance in filtration of high concentrations of dye solutions as well as in treatment of a real wastewater produced by a weaving company.
采用在聚醚砜基底上聚合聚吡咯薄膜层的方法制备了嵌入纳米多孔 SAPO-34 纳米粒子的薄膜纳米复合(TFN)膜。采用扫描电子显微镜(SEM)、能量色散 X 射线光谱(EDX)、原子力显微镜(AFM)、亲水性、Zeta 电位和 MWCO 测量来验证膜的特性。由于高亲水性和薄膜中形成的纳米通道,TFN 膜的纯水透过率显著提高(提高了 300%以上)。还通过从水中去除不同的阴离子和阳离子染料(甲紫 6B、活性蓝 4 和酸性蓝 193)来评估 TFN 膜的性能。TFN 膜有效地从低浓度(50mg/L)的进料水溶液中去除了所有染料的 100%。此外,与原始薄膜相比,用最高量纳米填料制备的 TFN 膜在过滤含有每种染料的溶液时表现出更高的水通量(例如,活性蓝 4 的通量增加了 500%以上)、更低的通量下降率(36%)和更高的通量恢复率(85%),这表明 TFN 膜具有优异的性能,并且在简单水洗后即可进行回收。TFN 膜在过滤高浓度染料溶液以及处理纺织公司产生的实际废水方面也表现出了有效的性能。