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Industrial application of shape-selective catalysis

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TLDR
Weisz and V. J. Frilette as discussed by the authors described the catalytic properties of small pore molecular sieve zeolites, and great strides in the use of shape-selective zeolite have been made, both scientifically and technologically.
Abstract
In the 26 years since the term “shape-selective catalysis” was coined by P. B. Weisz and V. J. Frilette [1] to describe the unique catalytic properties of small pore molecular sieve zeolites, great strides in the use of shape-selective zeolites have been made, both scientifically and technologically. Since then, in addition to small pore zeolites, synthetic medium pore zeolites, such as ZSM-5 [2], ZSM-11 [3], ZSM-22 [4], ZSM-23 [5], ZSM-35 [6], ZSM-38 [7], ZSM-48 [8], etc., have been discovered. The availability of these synthetic medium pore zeolites has expanded the realm of “shape selectivity” beyond the original discovery of selective conversion of straight chain molecules to include certain branched molecules, single-ring aromatics, naphthenes, and nonhydrocarbons with a critical molecular dimension smaller than about 6 A.

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Citations
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Journal ArticleDOI

Methanol-to-hydrocarbons: catalytic materials and their behavior

TL;DR: The literature related to methanol-to-hydrocarbons (MTHC) technology over the past two decades has been reviewed, covering mainly the MTO and MTG reactions as mentioned in this paper.
Journal ArticleDOI

Zeolites: Catalysts for Organic Syntheses

TL;DR: The characteristic properties of zeolites, such as acidity, shape-selectivity and thermal stability, also enable them to be used for highly selective synthesis in the fields of chemical intermediates and fine chemicals as mentioned in this paper.
Journal ArticleDOI

Recent advances in the industrial alkylation of aromatics: new catalysts and new processes

TL;DR: In this paper, the authors review the options industrially worthy of note in the alkylations of benzene and toluene for the production of ethylbenzene (EB), cumene, linear alkyl benzene, and cymene.
Journal ArticleDOI

Acid-catalyzed synthesis of mono- and dialkyl benzenes over zeolites: active sites, zeolite topology, and reaction mechanisms

TL;DR: In this article, a review of catalytic reactions leading to mono-and dialkyl benzenes over zeolites is presented, with an emphasis on the effect of the type of acid sites, zeolite structure, and reaction conditions on the activity and selectivity of these complex reactions.
Journal ArticleDOI

The implications of the fundamentals of shape selectivity for the development of catalysts for the petroleum and petrochemical industries

TL;DR: The shape-selective catalysis in molecular sieves has been extensively studied in the literature as discussed by the authors, and the fundamental concepts underlying shape selectivity have been used very effectively in the development of new catalysts for the petroleum and petrochemical industries.
References
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Book

Atlas of Zeolite Structure Types

TL;DR: The number of known and topologically distinct tetrahedral networks has risen to 64 and is expected to continue to increase at the rate of at least three per year as mentioned in this paper, with the advent of modern methods of structure solving, in particular powder techniques including ab initio structure determinations and Rietveld refinements.
Journal ArticleDOI

The conversion of methanol and other O-compounds to hydrocarbons over zeolite catalysts

TL;DR: In this article, the conversion of methanol and other O-compounds to C 2 ǫC 10 hydrocarbons using a new class of shape-selective zeolites is reported.
Journal ArticleDOI

Silicalite, a new hydrophobic crystalline silica molecular sieve

TL;DR: In this article, a new polymorph of SiO2 (silicalite, refractive index 1.39, density 1.76 g cm−3) has been proposed, which encloses a three-dimensional system of intersecting channels defined by 10-rings wide enough to adsorb molecules up to 0.6 nm diameter.
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