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The framework topology of zeolite beta

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TLDR
The tetrahedral framework structure of zeolite beta is disordered along (001) planes as mentioned in this paper, and the disordered structure is related by a/3 and/or b/3 displacements on (1) planes to three ordered polytype structures with triclinic, monoclinic and tetragonal symmetry.
Abstract
The tetrahedral framework structure of zeolite beta is disordered along (001). The disordered structure is related by a/3 and/or b/3 displacements on (001) planes to three ordered polytype structures with triclinic, monoclinic, and tetragonal symmetry. Three mutually perpendicular 12-ring channel systems are characteristic of the three ordered polytypes and the disordered beta structure. The proposed framework structures are consistent with the known diffraction, sorption an cation exchange properties of zeolite beta.

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Aluminum Location and Acid Strength in an Aluminum-Rich Beta Zeolite Catalyst: A Combined Density Functional Theory and Solid-State NMR Study

TL;DR: In this article, a density functional theory has been performed to investigate the specific Al distribution and the origination of Bronsted acid strength in Al-rich Beta zeolite catalyst.
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Design of organic structure directing agents for polymorph A zeolite beta

TL;DR: In this paper, the authors design chemically synthesizable organic structure directing agents that may aid the nucleation and growth of pure zeolite beta A, excluding the competing product Zeolite Beta B.
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Dehydration of 1-Octadecanol over H-BEA: A Combined Experimental and Computational Study

TL;DR: In this paper, the liquid phase dehydration of 1-octadecanol has been studied, combining experiment and theory, and both the OH group and the alkyl chain interact with zeolite Bronsted acid sites, inducing inefficient utilization.
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Seeded growth of beta zeolite membranes using zeolite structure-directing agent

TL;DR: In this paper, a Beta ZSDA-based structure-directing agent (ZSDA) was used to produce continuous and defect-free β zeolite membranes on seeded α-Al2O3 substrate tubes.
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Effect of Silica Alumina Ratio and Thermal Treatment of Beta Zeolites on the Adsorption of Toluene from Aqueous Solutions

TL;DR: In this paper, the adsorption of toluene from aqueous solutions onto hydrophobic zeolites was studied by combining chromatographic, thermal and structural techniques.
References
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Journal ArticleDOI

The crystal structure of mordenite (ptilolite)

TL;DR: Mordenite, a zeolite, was derived by superposition of the three-dimensional Patterson function and partially refined assuming the centric symmetry Cmcm or Cmc2t as discussed by the authors.
Journal ArticleDOI

The framework topology of ZSM-12: A high-silica zeolite

TL;DR: In this article, the structure of ZSM-12, a high-silica zeolite, was determined by analysis of electron and X-ray powder diffraction data combined with model building.
Journal ArticleDOI

The framework topology of ZSM-22: A high silica zeolite

TL;DR: ZSM-22 as discussed by the authors, an orthorhombic high silica zeolite (Cmcm, a = 13.86 ± 0.03A, b = 17.41± 0.04A, and c = 5.5 × 4.5 A), has a framework consisting of 5-, 6- and 10-rings.
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The framework topology of ZSM-48: A high silica zeolite

TL;DR: In this article, a disordered structure consisting of ferrierite sheets linked via bridging oxygens located on mirror planes is proposed for this material, characterized by ten-ring noninterpenetrating linear channels whose ideal dimensions are 5.3 × 5.6 A.
Journal ArticleDOI

The framework topology of ZSM-23: A high silica zeolite

TL;DR: ZSM-23 as discussed by the authors is a high-silica zeolite with lattice parameters of: a = 5.01 ± 0.02A, b = 21.52± 0.04A, and c = 11.13 ± 1.03A.
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