Title of article :
Catalytic and molecular separation properties of Zeogrids and Zeotiles
Author/Authors :
Johan A. Martens، نويسنده , , Joris W. Thybaut، نويسنده , , Joeri F.M Denayer، نويسنده , , Sreeprasanth Pulinthanathu Sree، نويسنده , , Alexander Aerts، نويسنده , , Marie-Françoise Reyniers، نويسنده , , Veronique Van Speybroeck، نويسنده , , Michel Waroquier، نويسنده , , Anita Buekenhoudt، نويسنده , , Ivo Vankelecom، نويسنده , , Wim Buijs، نويسنده , , Jeroen Persoons، نويسنده , , Gino V. Baron ، نويسنده , , S، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2011
Pages :
11
From page :
17
To page :
27
Abstract :
Zeogrids and Zeotiles are hierarchical materials built from assembled MFI zeolite precursor units. Permanent secondary porosity in these materials is obtained through self assembly of nanoparticles encountered in MFI zeolite synthesis in the presence of supramolecular templates. Hereon, the aggregated species are termed nanoslabs. Zeogrids are layered materials with lateral spacings between nanoslabs creating galleries qualifying as supermicropores. Zeotiles present a diversity of tridimensional nanoslab assemblies with mesopores. Zeotile-1, -4 and -6 are hexagonal mesostructures. Zeotile-1 has triangular and hexagonal channels; Zeotile-4 has hexagonal channels interconnected via slits. Zeotile-2 has a cubic structure with gyroid type mesoporosity. The behavior of Zeogrids and Zeotiles in adsorption, membrane and chromatographic separation and catalysis has been characterized and compared with zeolites and mesoporous materials derived from unstructured silica sources. Shape selectivity was detected via adsorption of n- and iso-alkanes. The mesoporosity of Zeotiles can be exploited in chromatographic separation of biomolecules. Zeotiles present attractive separation properties relevant to CO2 sequestration. Because of its facile synthesis procedure without hydrothermal steps Zeogrid is convenient for membrane synthesis. The performance of Zeogrid membrane in gas separation, nanofiltration and pervaporation is reported. In the Beckmann rearrangement of cyclohexanone oxime Zeogrids and Zeotiles display a catalytic activity characteristic of silicalite-1 zeolites. Introduction of acidity and redox catalytic activity can be achieved via incorporation of Al and Ti atoms in the nanoslabs during synthesis. Zeogrids are active in hydrocracking, catalytic cracking, alkylation and epoxidation reactions. Zeogrids and Zeotiles often behave differently from ordered mesoporous materials as well as from zeolites and present a valuable extension of the family of hierarchical silicate based materials.
Keywords :
Molecular separation , Catalysis , Membranes , Zeogrid , Zeotile-1 , Zeotile-2 , Zeotile-4 , Zeotile-6 , Hierarchical materials
Journal title :
CATALYSIS TODAY
Serial Year :
2011
Journal title :
CATALYSIS TODAY
Record number :
1237966
Link To Document :
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