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Catalyst ignition and extinction : a microkinetics-based bifurcation study of adiabatic reactors for oxidative coupling of methane

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Industrial and Manufacturing Engineering, Applied Mathematics, General Chemistry, General Chemical Engineering

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Chicago
Vandewalle, Laurien, Istvan Lengyel, David H. West, Kevin Van Geem, and Guy Marin. 2019. “Catalyst Ignition and Extinction : a Microkinetics-based Bifurcation Study of Adiabatic Reactors for Oxidative Coupling of Methane.” Chemical Engineering Science 199: 635–651.
APA
Vandewalle, L., Lengyel, I., West, D. H., Van Geem, K., & Marin, G. (2019). Catalyst ignition and extinction : a microkinetics-based bifurcation study of adiabatic reactors for oxidative coupling of methane. CHEMICAL ENGINEERING SCIENCE, 199, 635–651.
Vancouver
1.
Vandewalle L, Lengyel I, West DH, Van Geem K, Marin G. Catalyst ignition and extinction : a microkinetics-based bifurcation study of adiabatic reactors for oxidative coupling of methane. CHEMICAL ENGINEERING SCIENCE. Elsevier ; 2019;199:635–51.
MLA
Vandewalle, Laurien et al. “Catalyst Ignition and Extinction : a Microkinetics-based Bifurcation Study of Adiabatic Reactors for Oxidative Coupling of Methane.” CHEMICAL ENGINEERING SCIENCE 199 (2019): 635–651. Print.
@article{8615641,
  author       = {Vandewalle, Laurien and Lengyel, Istvan and West, David H. and Van Geem, Kevin and Marin, Guy},
  issn         = {0009-2509},
  journal      = {CHEMICAL ENGINEERING SCIENCE},
  language     = {eng},
  pages        = {635--651},
  publisher    = {Elsevier },
  title        = {Catalyst ignition and extinction : a microkinetics-based bifurcation study of adiabatic reactors for oxidative coupling of methane},
  url          = {http://dx.doi.org/10.1016/j.ces.2018.08.053},
  volume       = {199},
  year         = {2019},
}

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