High‐Performance Ceramic Membranes with a Separation Layer of Metal Oxide Nanofibers
Identifieur interne : 000F10 ( Main/Curation ); précédent : 000F09; suivant : 000F11High‐Performance Ceramic Membranes with a Separation Layer of Metal Oxide Nanofibers
Auteurs : X. Ke [Australie] ; H. Zhu [Australie] ; X. Gao [République populaire de Chine] ; J. Liu [Australie] ; Z. Zheng [Australie]Source :
- Advanced Materials [ 0935-9648 ] ; 2007-03-19.
English descriptors
- Teeft :
- Alumina, Alumina fibers, Boehmite, Boehmite nanofibers, Calcination, Ceramic membranes, Chem, Dispersion, Filtration, Flux rate, Hierarchical, Hierarchical lrof structure, High flux, High flux rate, Latex, Latex spheres, Lrof, Lrof membrane, Lrof structure, Lrof structures, Mater, Membrane, Nanofibers, Pore, Pore size, Pore sizes, Porous substrate, Selectivity, Separation efficiency, Separation layer, Titanate, Titanate fiber dispersion, Titanate fibers, Titanate nanofibers, Verlag gmbh.
Abstract
Layers of randomly oriented fibers arranged in a hierarchical structure as the separation layer in ceramic membranes (see figure) are shown to greatly improve the separation efficiency compared to conventionally fabricated ceramic membranes, and remove the problems of cracks, pinholes, and serious sintering. The membranes have many potential applications, for example, removing viruses and waterborne pathogens.
Url:
DOI: 10.1002/adma.200601984
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<term>Calcination</term>
<term>Ceramic membranes</term>
<term>Chem</term>
<term>Dispersion</term>
<term>Filtration</term>
<term>Flux rate</term>
<term>Hierarchical</term>
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<term>High flux</term>
<term>High flux rate</term>
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<term>Membrane</term>
<term>Nanofibers</term>
<term>Pore</term>
<term>Pore size</term>
<term>Pore sizes</term>
<term>Porous substrate</term>
<term>Selectivity</term>
<term>Separation efficiency</term>
<term>Separation layer</term>
<term>Titanate</term>
<term>Titanate fiber dispersion</term>
<term>Titanate fibers</term>
<term>Titanate nanofibers</term>
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<front><div type="abstract" xml:lang="en">Layers of randomly oriented fibers arranged in a hierarchical structure as the separation layer in ceramic membranes (see figure) are shown to greatly improve the separation efficiency compared to conventionally fabricated ceramic membranes, and remove the problems of cracks, pinholes, and serious sintering. The membranes have many potential applications, for example, removing viruses and waterborne pathogens.</div>
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