2015
DOI: 10.1134/s0965544115080125
|View full text |Cite
|
Sign up to set email alerts
|

Oxidative dehydrogenation of ethane to ethylene in a system with circulating microspherical metal oxide oxygen carrier: 1. Synthesis and study of the catalytic system

Help me understand this report

Search citation statements

Order By: Relevance

Paper Sections

Select...
2
1
1
1

Citation Types

0
6
0

Year Published

2017
2017
2024
2024

Publication Types

Select...
8
1

Relationship

0
9

Authors

Journals

citations
Cited by 20 publications
(6 citation statements)
references
References 18 publications
0
6
0
Order By: Relevance
“…85 Encouraging results for ethane CL-ODH were also obtained with Mo-based redox catalysts, which gave ethylene selectivties of 93-95% and conversion up to 66.5% at 600 1C. 297,316 The oxygen storage capacity of these Mo-based redox catalysts was relatively low (o0.4 wt%), resulting in a decreasing conversion of ethane with time. Nonetheless, in a continuously operating riser reactor system, an ethane conversion of 12% at ethylene selectivities 490% was obtained with a mixed Mo-Te-V-Nb oxide supported on g-Al 2 O 3 when the contact time of ethane feed and redox catalysts was 1-2 s at 500-575 1C.…”
Section: View Article Onlinementioning
confidence: 97%
“…85 Encouraging results for ethane CL-ODH were also obtained with Mo-based redox catalysts, which gave ethylene selectivties of 93-95% and conversion up to 66.5% at 600 1C. 297,316 The oxygen storage capacity of these Mo-based redox catalysts was relatively low (o0.4 wt%), resulting in a decreasing conversion of ethane with time. Nonetheless, in a continuously operating riser reactor system, an ethane conversion of 12% at ethylene selectivities 490% was obtained with a mixed Mo-Te-V-Nb oxide supported on g-Al 2 O 3 when the contact time of ethane feed and redox catalysts was 1-2 s at 500-575 1C.…”
Section: View Article Onlinementioning
confidence: 97%
“…In the 500–650 °C temperature range, steady cycles of 55–85% ethylene selectivities can be achieved but ethane conversions were relatively low (7–28%). Another research group from Russia also tested a wide range of Al 2 O 3 -supported VO x and MoO x catalysts and with other types of support materials (Ga 2 O 3 or Y 2 O 3 ) in a pulse reactor. , Promising results were obtained on MoO x /Al 2 O 3 , and an ethylene selectivity of 94.5% can be achieved at an ethane conversion of 66.5%. The oxygen capacity of this supported MoO x catalyst is relatively low (<0.4 wt %), and the ethylene yield decreased significantly after several pulses.…”
Section: Alternative Approaches For Ethylene Productionmentioning
confidence: 99%
“…Olefins are the important building blocks in the petrochemical industry. Traditional processes for olefin production are steam cracking, fluid catalytic cracking (FCC), and catalytic dehydrogenation (DH). , Cracking and DH processes are endothermic reactions and require reactors that are operated at high temperatures, consuming large amounts of thermal energy. Also, significant and undesirable amounts of coke can be formed in the reactors, imposing severe operating constraints with frequent plant shutdowns. ,,, …”
Section: Introductionmentioning
confidence: 99%