Acidity, Surface Species, and Mechanism of Methanol Transformation into Olefins on a SAPO-34
Author:
Affiliation:
1. Departamento de Ingeniería Química, Universidad del País Vasco, Apartado 644, 48080 Bilbao, Spain
Publisher
American Chemical Society (ACS)
Subject
Industrial and Manufacturing Engineering,General Chemical Engineering,General Chemistry
Link
https://pubs.acs.org/doi/pdf/10.1021/ie970748z
Reference33 articles.
1. Isotherms of chemical adsorption of bases on solid catalysts for acidity measurement
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3. Effect of Si/Al Ratio and of Acidity of H-ZSM5 Zeolites on the Primary Products of Methanol to Gasoline Conversion
4. Concentration-Dependent Kinetic Model for Catalyst Deactivation in the MTG Process
5. A comparative study of acidic properties of SAPO-5, −11, −34 and −37 molecular sieves
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1. Effect of Thermal, Acid, and Alkaline Treatments over SAPO-34 and Its Agglomerated Catalysts: Property Modification and Methanol-to-Olefin Reaction Performance;Industrial & Engineering Chemistry Research;2024-01-10
2. MTO with SAPO-34 in a Fixed-Bed Reactor: Deactivation Profiles;Industrial & Engineering Chemistry Research;2021-10-27
3. Modeling and simulation analysis of methanol conversion to olefins (MTO): A critical comparison of a honeycomb monolith and a fixed-bed of cylindrical extruded HZSM-5 catalyst;Chemical Engineering and Processing - Process Intensification;2021-10
4. Efficient Methanol-to-Olefins Conversion Via Photothermal Effect Over TiN/SAPO-34 Catalyst;Catalysis Letters;2021-07-29
5. Counteracting SAPO-34 catalyst deactivation in MTO process using a two zone fluidized bed reactor: Reactor testing and process viability;Catalysis Today;2021-02
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