Keyphrases
Liquid Fuel
100%
CO2 Hydrogenation
100%
Carburization
100%
Oxide Matrix
100%
Iron Ion
100%
Liquid Chemicals
100%
Fe Oxides
100%
Bifunctional Catalyst
100%
Reactor
66%
CO2 Conversion
66%
Hexaaluminate
66%
N2 Adsorption
66%
Spinel
33%
Iron Oxide
33%
Steady-state Operation
33%
Thermodynamic Equilibrium
33%
Active Sites
33%
Fe-Al-O
33%
Potassium
33%
High-resolution Transmission Electron Microscopy (HRTEM)
33%
Perovskite
33%
Fixed-bed Reactor
33%
RWGS Reaction
33%
Bimetallic
33%
Oxide Phase
33%
Water Inhibition
33%
C5+ Selectivity
33%
Delafossite
33%
Water Separation
33%
Fe Carbide
33%
Trimetallic Oxide
33%
Oxide Precursor
33%
Reactors in Series
33%
Ferrite
33%
C5+ Hydrocarbons
33%
Transient Operation
33%
Continuous Operation Mode
33%
Fe-based Catalyst
33%
Spatial Environment
33%
FTS Reaction
33%
Methanation Reaction
33%
Carbide Phase
33%
Material Science
Crystalline Material
100%
Carbon Dioxide
100%
Liquid Fuels
100%
Oxide Compound
100%
Iron Ion
100%
Hydrogenation
100%
Carburization
60%
X-Ray Diffraction
40%
Potassium
20%
High-Resolution Transmission Electron Microscopy
20%
Carbide
20%
Energy-Dispersive X-Ray Spectroscopy
20%
Engineering
CO2 Hydrogenation
100%
Oxide Matrix
100%
Adsorption
66%
CO2 Conversion
66%
Transients
33%
State Operation
33%
Thermodynamic Equilibrium
33%
Fixed Bed Reactor
33%
Active Site
33%
Methanation
33%
Inhibition
33%
Continuous Operation Mode
33%
Chemical Engineering
Adsorption
100%
Hydrogenation
100%
CO2 Conversion
100%
Perovskite
50%