Effect of surface proton exchange on hydrodesulfurization performance of MCM-41-supported catalysts
Author:
Publisher
Elsevier BV
Subject
Process Chemistry and Technology,Catalysis
Reference34 articles.
1. Present State of the Art and Future Challenges in the Hydrodesulfurization of Polyaromatic Sulfur Compounds
2. Hydrodesulfurization catalysis by transition metal sulfides
3. Hydrodesulfurization of Dibenzothiophene Catalyzed by Alumina-Supported Ruthenium Carbonyl Complexes in a Pressurized Flow System
4. Noble metals supported on mesoporous silicate FSM-16 as new hydrodesulfurization catalyst
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1. Insight into effects of SO42- species on hydrodesulfurization of dibenzothiophene over an Fe-based bulk catalyst;Catalysis Today;2023-02
2. Sulfided NiMo/(Al)‐MCM‐41 Catalysts for Anisole Hydrodeoxygenation: Impact of Aluminium Incorporation in the Mesostructured Support;ChemistrySelect;2022-11-10
3. Development of nickel-incorporated MCM-41–carbon composites and their application in nitrophenol reduction;Journal of Materials Chemistry A;2019
4. Synergy between a sulfur-tolerant Pt/Al2O3@sodalite core–shell catalyst and a CoMo/Al2O3 catalyst;Journal of Catalysis;2018-12
5. Dibenzothiophene hydrodesulfurization with NiMo and CoMo catalysts supported on niobium-modified MCM-41;Applied Catalysis B: Environmental;2017-12
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