Quantified Database for Methane Dehydroaromatization Reaction
Author:
Affiliation:
1. Department of Chemical Engineering Texas A&M University at Qatar 23874 Doha Qatar
2. Department of Electrical and Computer Engineering Texas A&M University at Qatar 23874 Doha Qatar
Funder
Total
Publisher
Wiley
Subject
Inorganic Chemistry,Organic Chemistry,Physical and Theoretical Chemistry,Catalysis
Link
https://onlinelibrary.wiley.com/doi/pdf/10.1002/cctc.202200711
Reference26 articles.
1. Assessment of CO2 capture options from various points in steam methane reforming for hydrogen production
2. “CO2 Capture and storage: A key carbon abatement option – Analysis – IEA ” can be found underhttps://www.iea.org/reports/co2-capture-and-storage-a-key-carbon-abatement-option n. d.
3. Quantifying the impact of dispersion, acidity and porosity of Mo/HZSM-5 on the performance in methane dehydroaromatization
4. Recent advances in methane dehydro-aromatization over transition metal ion-modified zeolite catalysts under non-oxidative conditions
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1. Gas-phase surface modification to control catalyst structure and yields in methane dehydroaromatization;Microporous and Mesoporous Materials;2024-09
2. Forced periodic operation via pulsing and feed switching to address methane dehydroaromatization catalyst deactivation challenge;Chemical Engineering Research and Design;2023-08
3. Numerical Study to Define Initial Thermal Integration Window for Methane Oxidative Coupling with Dehydroaromatization Reactors;International Journal of Chemical Engineering;2023-07-13
4. Coke relocation and Mo immobilization in donut-shaped Mo/HZSM-5 catalysts for methane dehydroaromatization;Journal of Materials Chemistry A;2023
5. CH4裂解制备C2H2过程气体空芯光纤增强拉曼光谱检测研究;ACTA PHOTONICA SINICA;2023
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