Zobrazeno 1 - 10
of 13
pro vyhledávání: '"Seif Yusuf"'
Publikováno v:
ACS Catalysis. 9:3174-3186
The present study investigates the effect of sodium and tungsten promoters on Mg6MnO8-based redox catalysts in a chemical looping oxidative dehydrogenation (CL-ODH) scheme. CL-ODH has the potential...
Autor:
Junchen Liu, Seif Yusuf, Daniel Jackson, William Martin, Dennis Chacko, Kyle Vogt-Lowell, Luke Neal, Fanxing Li
Publikováno v:
Applied Catalysis A: General. 646:118869
Publikováno v:
The Journal of chemical physics. 152(4)
MoO
Autor:
Jeffrey A. Bennett, Jacob Lustik, Zachary S. Campbell, Milad Abolhasani, Seif Yusuf, Fanxing Li, Amur K. Al-Rashdi, Matthew D. Parker
Publikováno v:
Chemistry of Materials. 30:8948-8958
A microfluidic strategy is developed for continuous synthesis of monodisperse yolk–shell titania microspheres. The continuous flow synthesis of titania microparticles is achieved by decoupling the microdroplet formation and interfacial hydrolysis r
Publikováno v:
Catalysis Today. 317:50-55
Oxidative dehydrogenation (ODH) of ethane offers large reductions in energy consumption and associated greenhouse gas emissions when compared to conventional steam cracking for ethylene production; however, catalytic ODH of ethane using co-fed O2 req
Publikováno v:
Applied Catalysis B: Environmental. 232:77-85
The current study investigates manganese silicate based redox catalysts for ethane to ethylene conversion in a chemical looping oxidative dehydrogenation (CL-ODH) process. Facilitated by a two-step cyclic redox scheme, CL-ODH has the potential to ove
Autor:
Yuhang Li, Feng Peng, Fanxing Li, Seif Yusuf, Hao Yu, Chengxiong Dang, Yonghai Cao, Hongjuan Wang
Publikováno v:
Energy & Environmental Science. 11:660-668
The sorption enhanced steam reforming (SESR) technology has the potential to produce high purity hydrogen by Le Chatelier's principle. However, its practical applicability is limited by sorbent sintering and deactivation at high reaction/decarbonatio
Publikováno v:
Energy Technology. 4:1200-1208
The current study investigates a chemical-looping-based oxidative dehydrogenation (CL-ODH) concept for ethane-to-ethylene conversion. In this cyclic redox scheme, an oxide-based redox catalyst is used to selectively combust hydrogen from ethane dehyd
Publikováno v:
The Journal of Chemical Physics. 152:044713
MoO3/γ-Al2O3 catalysts containing 0.3–3 monolayer (ML) equivalents of MoO3 were prepared, characterized, and tested for ethane oxidative dehydrogenation (ODH) in cyclic redox and co-feed modes. Submonolayer catalysts contain highly dispersed (2D)
Publikováno v:
Applied Catalysis B: Environmental. 257:117885
The chemical looping-oxidative dehydrogenation (CL-ODH) of ethane is investigated in this study. In CL-ODH, a redox catalyst donates its lattice oxygen to combust hydrogen formed from ethane dehydrogenation (ODH reactor). The reduced redox catalyst i