Identification of the coke accumulation and deactivation sites of Mo2C/HZSM-5 catalyst in CH4 dehydroaromatization
Author:
Publisher
Elsevier BV
Subject
Process Chemistry and Technology,General Chemistry,Catalysis
Reference16 articles.
1. Dehydrogenation and aromatization of methane under non-oxidizing conditions
2. Bifunctional Catalysis of Mo/HZSM-5 in the Dehydroaromatization of Methane to Benzene and Naphthalene XAFS/TG/DTA/MASS/FTIR Characterization and Supporting Effects
3. Structure and Density of Mo and Acid Sites in Mo-Exchanged H-ZSM5 Catalysts for Nonoxidative Methane Conversion
4. Catalytic conversion of methane to benzene over Mo/ZSM-5
5. Aromatization of Methane over Supported and Unsupported Mo-Based Catalysts
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1. Tailored chemical modification of ZSM-5 zeolite supports for Mo-based catalysts optimized for methane dehydroaromatization: Hydrothermal dealumination was key to improving the selectivity of desired aromatic compounds;Catalysis Today;2024-01
2. Micro-kinetics of non-oxidative methane coupling to ethylene over Pt/CeO2 catalyst;Chemical Engineering Journal;2020-09
3. Kinetic modeling of methane dehydroaromatization over a Mo2C/H-ZSM5 catalyst: Different deactivation behaviors of the Mo2C and H-ZSM5 sites;Catalysis Today;2020-08
4. Process, reactor and catalyst design: Towards application of direct conversion of methane to aromatics under nonoxidative conditions;Carbon Resources Conversion;2019-12
5. Quantifying the impact of dispersion, acidity and porosity of Mo/HZSM-5 on the performance in methane dehydroaromatization;Applied Catalysis A: General;2019-03
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