Keyphrases
Mesoporous
100%
One-step Synthesis
100%
Methane Reforming
100%
Methane Partial Oxidation
100%
Syngas Production
100%
Ni-Mg-Al Catalyst
100%
Reform Process
100%
Methane Dry Reforming
57%
Methanation Reaction
42%
NiAl
42%
Syngas
28%
Mg-Al
28%
Used Catalyst
14%
Large Surface Area
14%
High Temperature
14%
Catalytic Stability
14%
Impregnation Method
14%
Coke Deposition
14%
Ni-based
14%
H2-TPR
14%
CO2-TPD
14%
Reference Catalyst
14%
Ni-Al2O3
14%
Physicochemical Properties
14%
High Catalytic Activity
14%
Evaporation-induced Self-assembly
14%
Reforming Reaction
14%
Al-Al2O3
14%
CH4 Conversion
14%
H2 Chemisorption
14%
Activity Test
14%
TG Analysis
14%
Nickel Nanoparticles (NiNPs)
14%
Ni Particle Size
14%
H2 Selectivity
14%
Metallic Ni
14%
Ni-Al2O3 Catalyst
14%
Ni Dispersion
14%
Synergistic Cooperation
14%
High-Ni
14%
Methane Oxidation
14%
NiAl2O4
14%
Mg Incorporation
14%
Chemistry
Meso Porosity
100%
Methane
100%
Syngas Generation
100%
Partial Oxidation
40%
Syngas
20%
X-Ray Diffraction
20%
Surface Area
10%
Scanning Electron Microscopy
10%
Alkalinity
10%
Reforming Reaction
10%
Differential Thermal Analysis
10%
Chemisorption
10%
stability
10%
Carbon Dioxide
10%
Catalyst Activity
10%
Nanoparticle
10%
coke
10%
Material Science
Partial Oxidation
100%
Synthesis Gas
100%
X-Ray Diffraction
50%
Al2O3
50%
Carbon Dioxide
25%
Nanoparticle
25%
Catalyst Activity
25%
Scanning Electron Microscopy
25%
Chemisorption
25%
Evaporation Induced Self-Assembly
25%
Chemical Engineering
Syngas Generation
100%
Temperature Programmed Desorption
50%
Carbon Dioxide
50%
Methane
50%
Nickel Nanoparticle
50%
Chemisorption
50%