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Preparation of Binderless Silicoaluminophosphates by Vapor-Phase Crystallization of Kaolin–Phosphoric Acid Grains

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TLDR
In this article, it was shown that the selectivity of the structure-directing action of amines under vapor-phase crystallization conditions basically corresponds to the template hydrothermal synthesis.
Abstract
Transformations of granules based on kaolin and phosphoric acid under conditions of vapor-phase crystallization in a mixture of water vapor and a structure-directing agent have been studied. It has been shown that silicoaluminophosphate granules obtained in the presence of dipropylamine, triethylamine, or tetramethylammonium hydroxide as a structure-directing agent consist of a shell formed by dense nonporous cristobalite, tridymite, and berlinite phases and the core made mainly of microporous crystalline silicoaluminophosphates. The formation of the shell, which ensures the strength of the silicoaluminophosphate granules, is due to the interaction of steam with the material of the granules at the initial stages of vapor-phase crystallization. It has been established that the selectivity of the structure-directing action of the amines under vapor-phase crystallization conditions basically corresponds to the template hydrothermal synthesis. It has been assumed that the specific features of the structure-directing action of dimethylamine during vapor-phase transport synthesis are due to its low boiling point, which ensures the primary contact of the granules with template, rather than water molecules. As a result, the products of the transformation of granules in the presence of a mixture of dimethylamine and water do not contain dense nonporous phases and are cocrystallized silicoaluminophosphate and calcium aluminosilicate with the gismondine structure.

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Journal ArticleDOI

Bulk and surface properties of commercial kaolins

TL;DR: In this paper, a correlation between surface acidity and structural and chemical properties of kaolins has been attempted, with a very small amount of medium acidic centers, which gave rise to a weak protonic acidity arising from bridging hydroxy-groups on exposed basal planes and silanol groups likely formed on non-basal planes.
Journal ArticleDOI

Dry gel conversion synthesis of SAPO-34 nanocrystals

TL;DR: SAPO-34 nanocrystals were synthesized by a dry gel conversion method using tetraethylammonium hydroxide as a structure-directing agent in this article.
Journal ArticleDOI

Characterization and catalytic performance of SAPO-11/Hβ composite molecular sieve compared with the mechanical mixture

TL;DR: SAPO-11/Hβ composite molecular sieve was synthesized with hydrothermal method as discussed by the authors, and the physicochemical properties of the composite and the mechanical mixture were comparatively characterized by using XRD, FT-IR, 27Al and 31P MAS NMR, SEM, N2 isothermal adsorption-desorption and Py-FTIR.
Journal ArticleDOI

Rapid synthesis of SAPO-34 nanocatalyst by dry gel conversion method templated with morphline: Investigating the effects of experimental parameters

TL;DR: In this article, the effects of synthesis parameters, such as crystallization time, gel drying temperature and water content added in the crystallization stage, on crystallinity, shape and particle size of SAPO-34 are investigated and the advantages of the dry-gel conversion (DGC) method are described for the synthesis of molecular sieves.
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