Department of Chemistry, University of Puerto Rico , Rio Piedras Campus, PO Box 23346, San Juan, Puerto Rico 00931-3346, United States.
Molecular Sciences Research Center, University of Puerto Rico , 1390 Ponce De Leon Ave, Suite 2, San Juan, Puerto Rico 00931-3346, United States.
Environ Sci Technol. 2017 Apr 18;51(8):4585-4595. doi: 10.1021/acs.est.6b05955. Epub 2017 Apr 4.
Herein, we study the feasibility of using nanocellulose (NC)-based composites with silver and platinum nanoparticles as additive materials to fabricate the support layer of thin film composite (TFC) membranes for water purification applications. In brief, the NC surface was chemically modified and then was decorated with silver and platinum nanoparticles, respectively, by chemical reduction. These metalized nanocellulose composites (MNC) were characterized by several techniques including: FTIR, XPS, TGA, XRD, and XANES to probe their integrity. Thereafter, we fabricated the MNC-TFC membranes and the support layer was modified to improve the membrane properties. The membranes were thoroughly characterized, and the performance was evaluated in forward osmosis (FO) mode with various feed solutions: nanopure water, urea, and wastewater samples. The fabricated membranes exhibited finger-like pore morphologies and varying pore sizes. Interestingly, higher water fluxes and solute rejection was obtained with the MNC-TFC membranes with wastewater samples. The overall approach of this work provides an effort to fabricated membranes with high water flux and enhanced selectivity.
在此,我们研究了将纳米纤维素(NC)基复合材料与银和铂纳米粒子作为添加剂材料用于制造用于水净化应用的薄膜复合(TFC)膜的支撑层的可行性。简而言之,通过化学还原,NC 表面被化学修饰,然后分别用银和铂纳米粒子进行修饰。这些金属化纳米纤维素复合材料(MNC)通过多种技术进行了表征,包括:FTIR、XPS、TGA、XRD 和 XANES,以探测其完整性。此后,我们制造了 MNC-TFC 膜,并且修饰了支撑层以改善膜性能。对膜进行了彻底的表征,并在正向渗透(FO)模式下用各种进料溶液(去离子水、尿素和废水样品)对其性能进行了评估。所制造的膜表现出指状孔形态和不同的孔径。有趣的是,使用具有废水样品的 MNC-TFC 膜获得了更高的水通量和更高的溶质截留率。这项工作的整体方法提供了一种制造具有高水通量和增强选择性的膜的方法。