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State-of-the-art of coke formation during steam cracking: anti-coking surface technologies

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Industrial and Manufacturing Engineering, General Chemistry, General Chemical Engineering

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Chicago
Symoens, Steffen, Natália Olahová, Andrés Muñoz Gandarillas, Hadiseh Karimi, Marko Djokic, Marie-Françoise Reyniers, Guy Marin, and Kevin Van Geem. 2018. “State-of-the-art of Coke Formation During Steam Cracking: Anti-coking Surface Technologies.” Industrial & Engineering Chemistry Research 57 (48): 16117–16136.
APA
Symoens, S., Olahová, N., Muñoz Gandarillas, A., Karimi, H., Djokic, M., Reyniers, M.-F., Marin, G., et al. (2018). State-of-the-art of coke formation during steam cracking: anti-coking surface technologies. INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH, 57(48), 16117–16136.
Vancouver
1.
Symoens S, Olahová N, Muñoz Gandarillas A, Karimi H, Djokic M, Reyniers M-F, et al. State-of-the-art of coke formation during steam cracking: anti-coking surface technologies. INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH. American Chemical Society (ACS); 2018;57(48):16117–36.
MLA
Symoens, Steffen et al. “State-of-the-art of Coke Formation During Steam Cracking: Anti-coking Surface Technologies.” INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH 57.48 (2018): 16117–16136. Print.
@article{8587788,
  author       = {Symoens, Steffen and Olahová, Natália and Muñoz Gandarillas, Andrés and Karimi, Hadiseh and Djokic, Marko and Reyniers, Marie-Françoise and Marin, Guy and Van Geem, Kevin},
  issn         = {0888-5885},
  journal      = {INDUSTRIAL & ENGINEERING CHEMISTRY RESEARCH},
  keywords     = {Industrial and Manufacturing Engineering,General Chemistry,General Chemical Engineering},
  language     = {eng},
  number       = {48},
  pages        = {16117--16136},
  publisher    = {American Chemical Society (ACS)},
  title        = {State-of-the-art of coke formation during steam cracking: anti-coking surface technologies},
  url          = {http://dx.doi.org/10.1021/acs.iecr.8b03221},
  volume       = {57},
  year         = {2018},
}

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