Eine Plattform für die Wissenschaft: Bauingenieurwesen, Architektur und Urbanistik
Bimetallic Sulfur-Reducing Additives Based on Al–MCM-41 Structured Aluminosilicate for Cracking Catalysts
Abstract An ordered mesoporous aluminosilicate of the Al–MCM-41 type has been studied as a component of additives for of petroleum feedstock cracking catalysts. The influence of the nature of the modifying material and its concentration on the activity of the additive has been investigated. It has been shown that the use of bimetallic additives on the basis of ordered mesoporous aluminosilicate makes it possible to reduce the sulfur content in liquid cracking products of vacuum gas oil by 37% more effectively in comparison with that for an additive-free industrial catalyst.
Bimetallic Sulfur-Reducing Additives Based on Al–MCM-41 Structured Aluminosilicate for Cracking Catalysts
Abstract An ordered mesoporous aluminosilicate of the Al–MCM-41 type has been studied as a component of additives for of petroleum feedstock cracking catalysts. The influence of the nature of the modifying material and its concentration on the activity of the additive has been investigated. It has been shown that the use of bimetallic additives on the basis of ordered mesoporous aluminosilicate makes it possible to reduce the sulfur content in liquid cracking products of vacuum gas oil by 37% more effectively in comparison with that for an additive-free industrial catalyst.
Bimetallic Sulfur-Reducing Additives Based on Al–MCM-41 Structured Aluminosilicate for Cracking Catalysts
Glotov, A. P. (Autor:in) / Levshakov, N. S. (Autor:in) / Vutolkina, A. V. (Autor:in) / Lysenko, S. V. (Autor:in)
Petroleum Chemistry ; 58 ; 214-219
01.03.2018
6 pages
Aufsatz (Zeitschrift)
Elektronische Ressource
Englisch
Aluminosilicate-supported cobalt catalysts in the Fischer-Tropsch synthesis
Springer Verlag | 2009
|Selective Hydrogenation of Acetylene over Palladium Catalysts Based on Aluminosilicate Nanotubes
Springer Verlag | 2022
|Effect of Styrene Additives on the Cracking Kinetics of Components of High-Sulfur Vacuum Residue
Springer Verlag | 2020
|