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An integrated approach to the key parameters in methanol-to-olefins reaction catalyzed by MFI/MEL zeolite materials
Quantifying the impact of dispersion, acidity and porosity of Mo/HZSM-5 on the performance in methane dehydroaromatization
A site-sensitive quasi-in situ strategy to characterize Mo/HZSM-5 during activation
Revealing Lattice Expansion of Small-Pore Zeolite Catalysts during the Methanol-to-Olefins Process Using Combined Operando X-ray Diffraction and UV-vis Spectroscopy
Progress in Developing a Structure-Activity Relationship for the Direct Aromatization of Methane
Facile manufacture of porous organic framework membranes for precombustion CO
2
capture
On the dynamic nature of Mo sites for methane dehydroaromatization
Benzimidazole linked polymers (BILPs) in mixed-matrix membranes: Influence of filler porosity on the CO
2
/N
2
separation performance
Relevance of the Mo-precursor state in H-ZSM-5 for methane dehydroaromatization
Insights into the Activity and Deactivation of the Methanol-to-Olefins Process over Different Small-Pore Zeolites As Studied with Operando UV-vis Spectroscopy
Consequences of secondary zeolite growth on catalytic performance in DMTO studied over DDR and CHA
The importance of heat effects in the Methanol to Hydrocarbons reaction over ZSM-5: on the role of mesoporosity on catalyst performance
Methanol-to-olefins process over zeolite catalysts with DDR topology: Effect of composition and structural defects on catalytic performance
Methanol-to-olefins process over zeolite catalysts with DDR topology: Effect of composition and structural defects on catalytic performance
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