H-SAPO-5 as methanol-to-olefins (MTO) model catalyst: Towards elucidating the effects of acid strength
Author:
Publisher
Elsevier BV
Subject
Physical and Theoretical Chemistry,Catalysis
Reference47 articles.
1. Conversion of Methanol to Hydrocarbons: How Zeolite Cavity and Pore Size Controls Product Selectivity
2. The Mechanism of Methanol to Hydrocarbon Catalysis
3. The conversion of methanol and other O-compounds to hydrocarbons over zeolite catalysts
4. Methanol-to-hydrocarbons: catalytic materials and their behavior
5. An Oft-Studied Reaction That May Never Have Been: Direct Catalytic Conversion of Methanol or Dimethyl Ether to Hydrocarbons on the Solid Acids HZSM-5 or HSAPO-34
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1. Exploring the influence of mesoporosity in hard carbon-templated hierarchical SAPO-5 for ethanol dehydration;RSC Applied Interfaces;2024
2. Chloromethane-to-olefin using metal oxide-impregnated small-pore SSZ-13 zeolites with controlled acidity, reactant affinity, and reaction pathway;Chemical Engineering Journal;2023-10
3. Tailoring porosity and acidity of Sn-modified ZSM-5 for co-aromatization of methanol with 2-methylfuran;Fuel;2023-05
4. Core-shell SAPO-34@ZSM-5 composite via in situ solid-solid transformation of pre-coating MCM-41 shell and its application in methanol-to-olefins;Microporous and Mesoporous Materials;2023-04
5. Reaction mechanism of methanol-to-hydrocarbons conversion: Fundamental and application;Chinese Journal of Catalysis;2023-04
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