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Investigation of coke formation on Ni-Mg-Al catalyst for hydrogen production from the catalytic steam pyrolysis-gasification of polypropylene
Chunfei Wu
, Paul T. Williams
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Corresponding author for this work
Research output
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Article
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peer-review
119
Citations (Scopus)
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Dive into the research topics of 'Investigation of coke formation on Ni-Mg-Al catalyst for hydrogen production from the catalytic steam pyrolysis-gasification of polypropylene'. Together they form a unique fingerprint.
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Chemical Engineering
Temperature
100%
Carbon
100%
Polypropylene
100%
Hydrogen Production
100%
Pyrolysis
100%
Calcination
66%
Hydrogen
33%
Hydrocarbon
33%
Oxidation Reaction
33%
Chemistry
Catalyst
100%
Pyrolysis
100%
Poly(propylene)
100%
Gasification
100%
Chemical Reaction
18%
Carbon
18%
Calcination Temperature
18%
Reaction Temperature
9%
Oxidation Reaction
9%
Decomposition
9%
Surface
9%
Scanning Electron Microscopy
9%
Particle Size
9%
Reaction Mechanism
9%
Gas
9%
Surface Area
9%
Hydrogen
9%
Hydrocarbon
9%
Ion Beam
9%
Transmission Electron Microscopy
9%
Energy Dispersive X-Ray Spectroscopy
9%
Metal Carbide
9%
Scanning Electron Microscopy-Energy Dispersive X-Ray
9%
X-Ray Diffraction
9%