Hexagonal mesoporous silica (HMS) and Al±HMS materials with high surface area and mesoporous structure were synthesized following the neutral templating path way. These materials were used as a support for the ®rst time in preparing W/HMS, and W/Al±HMS catalysts and their Co, and Ni promoted analogu
Physico-chemical characterization and catalysis on mesoporous Al-HMS supported molybdenum hydrotreating catalysts
✍ Scribed by T Chiranjeevi; Prashant Kumar; M.S Rana; G Murali Dhar; T.S.R Prasada Rao
- Publisher
- Elsevier Science
- Year
- 2002
- Tongue
- English
- Weight
- 144 KB
- Volume
- 181
- Category
- Article
- ISSN
- 1381-1169
No coin nor oath required. For personal study only.
✦ Synopsis
HMS and Al-HMS materials were synthesized by neutral templating pathway and Mo, CoMo, NiMo catalysts were prepared using them as the support. On Al-HMS material (Si/Al = 35) as the support, Mo concentration varied from 2 to 14 wt.%. The promotional effects were studied on 10 wt.% Mo/Al-HMS using 1-5 wt.% Co and Ni. All these catalysts were characterized by surface area, X-ray diffraction (XRD), temperature programmed reduction (TPR) and oxygen chemisorption methods. The catalytic activities for HDS, HYD and HDO were evaluated on sulfided catalysts. The oxygen chemisorption and catalytic activities as a function of Mo loading indicated that a correlation exists between these two parameters for all these reactions.
A comparison with ␥-Al 2 O 3 supported catalysts indicated that these catalysts exhibit higher activities. The results on HMS, Al-HMS supported catalysts indicated that HMS mesoporous structure has a unique ability to impart higher activities in the supported MoS 2 phase through metal support interactions.
📜 SIMILAR VOLUMES
## Abstract A series of cobalt‐molybdenum‐alumina catalysts was fabricated using as carriers λ‐Al~2~O~3~ doped with various amounts of sodium. Over these surfaces the H.D.S. of thiophene has been studied. A considerable decrease in the catalytic activity was observed with increasing Na^±^ content.