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Development of a selective oxidation CO removal reactor for methanol reformate gas
Mapping Intimacies
◽
10.2172/460229
◽
1996
◽
Author(s):
Shunji Okada
◽
Yoshiaki Takatani
◽
Seijo Terada
◽
Shinichi Ohtani
Keyword(s):
Selective Oxidation
◽
Reformate Gas
◽
Co Removal
Download Full-text
Related Documents
Cited By
References
Scale-up of an Oscillating EPrOx Reactor for Electrochemical CO Removal from Reformate Gas
ECS Meeting Abstracts
◽
10.1149/ma2009-01/7/395
◽
2009
◽
Keyword(s):
Scale Up
◽
Reformate Gas
◽
Co Removal
Download Full-text
On the design of cascades of ECPrOx reactors for deep CO removal from reformate gas
Chemical Engineering Science
◽
10.1016/j.ces.2011.07.031
◽
2012
◽
Vol 67
(1)
◽
pp. 34-43
◽
Cited By ~ 5
Author(s):
P. Heidebrecht
◽
R. Hanke-Rauschenbach
◽
A. Jörke
◽
K. Sundmacher
Keyword(s):
Reformate Gas
◽
Co Removal
Download Full-text
CO removal from reformate gas by improved selective catalytic methanation
Fuel Cells Bulletin
◽
10.1016/s1464-2859(01)80470-3
◽
2001
◽
Vol 4
(35)
◽
pp. 16
Keyword(s):
Reformate Gas
◽
Co Removal
Download Full-text
Spatiotemporal pattern formation in an electrochemical membrane reactor during deep CO removal from reformate gas
Computer Aided Chemical Engineering - 21st European Symposium on Computer Aided Process Engineering
◽
10.1016/b978-0-444-53711-9.50041-9
◽
2011
◽
pp. 201-205
◽
Cited By ~ 1
Author(s):
Richard Hanke-Rauschenbach
◽
Sebastian Kirsch
◽
Kai Sundmacher
Keyword(s):
Pattern Formation
◽
Membrane Reactor
◽
Spatiotemporal Pattern
◽
Spatiotemporal Pattern Formation
◽
Electrochemical Membrane Reactor
◽
Reformate Gas
◽
Co Removal
Download Full-text
Selective oxidation of aniline into azoxybenzene catalyzed by Nb-peroxo@iron oxides at room temperature
New Journal of Chemistry
◽
10.1039/d0nj00520g
◽
2020
◽
Vol 44
(21)
◽
pp. 8710-8717
Author(s):
André L. D. Lima
◽
Humberto V. Fajardo
◽
André E. Nogueira
◽
Márcio C. Pereira
◽
Luiz C. A. Oliveira
◽
...
Keyword(s):
Iron Oxides
◽
Selective Oxidation
◽
Room Temperature
◽
High Selectivity
Nb-peroxo@iron oxides show high selectivity and activity in aniline conversion to azoxybenzene.
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New Developments in Selective Oxidation by Heterogeneous Catalysis
10.1016/s0167-2991(08)x6042-2
◽
1992
◽
Keyword(s):
Heterogeneous Catalysis
◽
Selective Oxidation
◽
New Developments
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Preparation of One-dimensional (1D) Cu-WO3 Nanorods Catalyst for the Selective Oxidation of Ethylbenzene
Journal of Advanced Catalysis Science and Technology
◽
10.15379/2408-9834.2015.02.02.04
◽
2015
◽
Vol 2
(2)
◽
pp. 31-36
◽
Cited By ~ 3
Author(s):
Rajaram Bal
◽
◽
Shankha Acharyya
◽
Peetam Mandal
Keyword(s):
Selective Oxidation
◽
One Dimensional
◽
Oxidation Of Ethylbenzene
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Electrocatalysts design for selective oxidation of organic molecules in high-performance fuel cell
10.31274/etd-180810-4675
◽
2016
◽
Author(s):
Ji Qi
Keyword(s):
Fuel Cell
◽
Selective Oxidation
◽
High Performance
◽
Organic Molecules
Download Full-text
Roles of Vanadium Substitution of Monoclinic TeMo5O16 Catalyst for Propane Selective Oxidation
CHINESE JOURNAL OF CATALYSIS (CHINESE VERSION)
◽
10.3724/sp.j.1088.2010.91153
◽
2010
◽
Vol 31
(6)
◽
pp. 689-694
Author(s):
Xue DONG
◽
Yihan ZHU
◽
Han LI
◽
Weimin LU
Keyword(s):
Selective Oxidation
◽
Vanadium Substitution
◽
Propane Selective Oxidation
Download Full-text
Propane Selective Oxidation to Acrylic Acid over Combined Catalysts
CHINESE JOURNAL OF CATALYSIS (CHINESE VERSION)
◽
10.3724/sp.j.1088.2011.10136
◽
2014
◽
Vol 32
(6)
◽
pp. 1022-1026
Author(s):
Wen FANG
◽
Qingjie GE
◽
Jiafeng YU
◽
Hengyong XU
Keyword(s):
Acrylic Acid
◽
Selective Oxidation
◽
Combined Catalysts
◽
Propane Selective Oxidation
Download Full-text
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