Redirigiendo al acceso original de articulo en 23 segundos...
Inicio  /  Water  /  Vol: 8 Núm: 12 Par: 0 (2016)  /  Artículo
ARTÍCULO
TITULO

Metal?Organic Framework-Functionalized Alumina Membranes for Vacuum Membrane Distillation

Jian Zuo    
Tai-Shung Chung    

Resumen

Nature-mimetic hydrophobic membranes with high wetting resistance have been designed for seawater desalination via vacuum membrane distillation (VMD) in this study. This is achieved through molecular engineering of metal?organic framework (MOF)-functionalized alumina surfaces. A two-step synthetic strategy was invented to design the hydrophobic membranes: (1) to intergrow MOF crystals on the alumina tube substrate and (2) to introduce perfluoro molecules onto the MOF functionalized membrane surface. With the first step, the surface morphology, especially the hierarchical roughness, can be controlled by tuning the MOF crystal structure. After the second step, the perfluoro molecules function as an ultrathin layer of hydrophobic floss, which lowers the surface energy. Therefore, the resultant membranes do not only possess the intrinsic advantages of alumina supports such as high stability and high water permeability, but also have a hydrophobic surface formed by MOF functionalization. The membrane prepared under an optimum condition achieved a good VMD flux of 32.3 L/m2-h at 60 °C. This study may open up a totally new approach for design of next-generation high performance membrane distillation membranes for seawater desalination.

 Artículos similares

       
 
Ayesha Kausar, Ishaq Ahmad, M. H. Eisa and Malik Maaza    
Polymeric coatings have been widely selected for the corrosion resistance of metallic surfaces. Both the conducting and non-conducting polymers have been applied for corrosion confrontation. The conducting polymers usually possess high electrical conduct... ver más

 
Shilong Peng, Zhijun Li, Yuhao Xu and Guangyong Cao    
The study of deep soil mechanics is the basis of deep shaft construction. Exploring the nonlinear permeability mechanism of deep confined aquifers in depth is the prerequisite and foundation for carrying out calculations of the hydrophobic consolidation ... ver más
Revista: Applied Sciences

 
Mariusz Szymczak, Patryk Kaminski, Marta Turlo, Justyna Bucholska, Damir Mogut, Piotr Minkiewicz, Malgorzata Mizielinska and Magdalena Stobinska    
The temperature has a significant effect on cathepsin activity, but the effect of temperature on the ripening of marinades, and the formation of protein hydrolysis products, is less studied than other technological factors. The results of this study show... ver más
Revista: Applied Sciences

 
Kai Yao, Qing Li, Ping Chen, Juntong Li, Penghuai Wang and Wenqi Tang    
In response to the high water sorptivity of alkali-activated slag?red mud?steel slag cementitious material (AASRSS), water and aggressive ions are easily transferred to the interior of cementitious materials, which poses a significant threat to their dur... ver más
Revista: Applied Sciences

 
Irfan Wazeer, Hanee F. Hizaddin, Ng Xue Wen, Lahssen El Blidi, Mohd A. Hashim and Mohamed K. Hadj-Kali    
Due to their toxicity and persistence in the environment, phenolic pollutants pose a serious threat to the ecosystem. In this work, the performance of hydrophobic deep eutectic solvents (HDESs) for phenol removal from aqueous effluents is thoroughly inve... ver más
Revista: Water