Dalian University of Technology, Dalian, China.
Water Sci Technol. 2013;67(10):2307-13. doi: 10.2166/wst.2013.084.
In the current study, graphene oxide (GO)-modified polypropylene non-woven fabric (PP-NWF) membranes were prepared via inkjet printing and immersion coating methods. Scanning electron microscopy, Fourier transform infrared spectroscopy, contact angle measurements, pure water permeation (JPWP) and protein adsorption were tested to evaluate the impact of the GO nanosheet on the characteristics and performance of modified PP-NWF membranes. The results showed that the exfoliated GO nanosheets uniformly deposited on the membrane surface and firmly embedded into the interlaced fibers, resulting in the improvement of membrane hydrophilicity, permeability and antifouling properties comparing with original PP-NWF membranes. The GO-printed and GO-coated membranes had 113 and 188% higher fluxes, and 70.95 and 75.74% lower protein adsorptions than the original PP-NWF membranes, respectively. After cross-linked treatment, ultrasound processing was conducted to evaluate the stability of the modified PP-NWF membranes. The results demonstrated that there was almost no decrease in permeation after ultrasonic treatment indicating that the cross-linking treatment could enhance the immobilization of the GO nanosheets on and into the modified membranes.
在本研究中,通过喷墨打印和浸渍涂层方法制备了氧化石墨烯(GO)改性的聚丙烯无纺膜(PP-NWF)。扫描电子显微镜、傅里叶变换红外光谱、接触角测量、纯水渗透(JPWP)和蛋白质吸附测试用于评估 GO 纳米片对改性 PP-NWF 膜特性和性能的影响。结果表明,剥离的 GO 纳米片均匀地沉积在膜表面上,并牢固地嵌入交织纤维中,与原始 PP-NWF 膜相比,膜的亲水性、渗透性和抗污染性得到了提高。GO 打印和 GO 涂覆的膜的通量分别比原始 PP-NWF 膜高 113%和 188%,蛋白质吸附率分别低 70.95%和 75.74%。交联处理后,进行超声处理以评估改性 PP-NWF 膜的稳定性。结果表明,超声处理后渗透几乎没有下降,表明交联处理可以增强 GO 纳米片在改性膜上和膜内的固定化。