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Carbon gasification from Fe-Ni catalysts for methane dry reforming

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RAMAN-SPECTROSCOPY, NICKEL-CATALYSTS, TRANSITION-METALS, BULK DIFFUSION, SOOT OXIDATION, COKE FORMATION, SUPPORTED NI, CO2, MOBILITY, GRAPHITE, Fe-Ni catalyst, Catalyst regeneration, Carbon gasification mechanism, Methane dry reforming, In situ XRD, TAP reactor

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Citation

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Chicago
Theofanidis, Stavros-Alexandros, Vladimir Galvita, Hilde Poelman, and Guy Marin. 2016. “Carbon Gasification from Fe-Ni Catalysts for Methane Dry Reforming.” Applied Catalysis B-environmental 185: 42–55.
APA
Theofanidis, S.-A., Galvita, V., Poelman, H., & Marin, G. (2016). Carbon gasification from Fe-Ni catalysts for methane dry reforming. APPLIED CATALYSIS B-ENVIRONMENTAL, 185, 42–55.
Vancouver
1.
Theofanidis S-A, Galvita V, Poelman H, Marin G. Carbon gasification from Fe-Ni catalysts for methane dry reforming. APPLIED CATALYSIS B-ENVIRONMENTAL. 2016;185:42–55.
MLA
Theofanidis, Stavros-Alexandros, Vladimir Galvita, Hilde Poelman, et al. “Carbon Gasification from Fe-Ni Catalysts for Methane Dry Reforming.” APPLIED CATALYSIS B-ENVIRONMENTAL 185 (2016): 42–55. Print.
@article{8055171,
  author       = {Theofanidis, Stavros-Alexandros and Galvita, Vladimir and Poelman, Hilde and Marin, Guy},
  issn         = {0926-3373},
  journal      = {APPLIED CATALYSIS B-ENVIRONMENTAL},
  keyword      = {RAMAN-SPECTROSCOPY,NICKEL-CATALYSTS,TRANSITION-METALS,BULK DIFFUSION,SOOT OXIDATION,COKE FORMATION,SUPPORTED NI,CO2,MOBILITY,GRAPHITE,Fe-Ni catalyst,Catalyst regeneration,Carbon gasification mechanism,Methane dry reforming,In situ XRD,TAP reactor},
  language     = {eng},
  pages        = {42--55},
  title        = {Carbon gasification from Fe-Ni catalysts for methane dry reforming},
  url          = {http://dx.doi.org/10.1016/j.apcatb.2015.12.006},
  volume       = {185},
  year         = {2016},
}

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