Keyphrases
Regeneration
100%
Spinel Catalyst
100%
Crude Bio-oil
100%
NiAl2O4 Spinel
100%
Bio-oil
75%
Oxidative Steam Reforming
75%
NiAl
75%
Bulk Catalyst
50%
X-ray Photoelectron Spectroscopy
25%
Aluminum Oxide
25%
Reactor
25%
Combustion
25%
Fluidized Bed
25%
Thermal Treatment
25%
Characterization Techniques
25%
X Ray Diffraction
25%
Pyrolytic Lignin
25%
Ni Catalyst
25%
Spinel
25%
Regeneration Condition
25%
Industrial Implementation
25%
Catalytic Reactor
25%
Oven
25%
Oxy-steam
25%
Supported Catalysts
25%
Carbon Ratio
25%
Spinel Phases
25%
Reaction Steps
25%
Catalyst Regeneration
25%
Reforming Reaction
25%
Metallic Properties
25%
Temperature-programmed Reduction
25%
Regenerability
25%
Steam Reforming Reaction
25%
Total Recovery
25%
Supported Ni
25%
La2O3
25%
Coke Combustion
25%
Regenerative Cycle
25%
Transmission Electronic Microscopy
25%
In Situ Regeneration
25%
Reaction-regeneration
25%
Connected in Series
25%
INIS
oils
100%
regeneration
100%
catalysts
100%
spinels
100%
steam
33%
oxidation
25%
combustion
16%
reactors
16%
control
8%
surfaces
8%
implementation
8%
viability
8%
x-ray photoelectron spectroscopy
8%
carbon
8%
space
8%
recovery
8%
reduction
8%
losses
8%
lignin
8%
heat treatments
8%
aluminium oxides
8%
deposition
8%
transmission electron microscopy
8%
coke
8%
oxygen
8%
fluidized bed
8%
units
8%
x-ray diffraction
8%
diffraction (x-ray)
8%
ovens
8%
lanthanum oxides
8%
Chemical Engineering
Fluidized Bed
100%
Temperature-programmed Reduction
100%
Ni Catalyst
100%
Catalytic Reactor
100%
Engineering
Bio-Oil
100%
Steam Reforming
60%
Heat Treatment
20%
Carbon Ratio
20%
Programmed Temperature
20%
Ray Photoelectron Spectroscopy
20%
Supported Catalyst
20%
Fluidized Bed
20%
Ray Diffraction
20%