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A Unified Aromatic Hydrogenation Kinetic Model Accounting for Ring Substituents

Seyyedeh Naghmeh Fatemi, Kenneth Toch UGent and Joris Thybaut UGent (2016) 24th International Symposium on Chemical Reaction Engineering.
Please use this url to cite or link to this publication:
author
organization
year
type
conference
publication status
published
subject
in
24th International Symposium on Chemical Reaction Engineering
pages
376 -
conference name
24th International Symposium on Chemical Reaction Engineering (ISCRE 24)
conference location
Minneapolis, USA
conference start
2016-06-12
conference end
2016-06-15
language
English
UGent publication?
yes
classification
C3
copyright statement
I have retained and own the full copyright for this publication
id
8202619
handle
http://hdl.handle.net/1854/LU-8202619
date created
2016-12-02 14:30:02
date last changed
2017-03-09 12:55:20
@inproceedings{8202619,
  author       = {Fatemi, Seyyedeh Naghmeh and Toch, Kenneth and Thybaut, Joris},
  booktitle    = {24th International Symposium on Chemical Reaction Engineering},
  language     = {eng},
  location     = {Minneapolis, USA},
  title        = {A Unified Aromatic Hydrogenation Kinetic Model Accounting for Ring Substituents},
  year         = {2016},
}

Chicago
Fatemi, Seyyedeh Naghmeh, Kenneth Toch, and Joris Thybaut. 2016. “A Unified Aromatic Hydrogenation Kinetic Model Accounting for Ring Substituents.” In 24th International Symposium on Chemical Reaction Engineering, 376.
APA
Fatemi, S. N., Toch, K., & Thybaut, J. (2016). A Unified Aromatic Hydrogenation Kinetic Model Accounting for Ring Substituents. 24th International Symposium on Chemical Reaction Engineering (p. 376). Presented at the 24th International Symposium on Chemical Reaction Engineering (ISCRE 24).
Vancouver
1.
Fatemi SN, Toch K, Thybaut J. A Unified Aromatic Hydrogenation Kinetic Model Accounting for Ring Substituents. 24th International Symposium on Chemical Reaction Engineering. 2016. p. 376.
MLA
Fatemi, Seyyedeh Naghmeh, Kenneth Toch, and Joris Thybaut. “A Unified Aromatic Hydrogenation Kinetic Model Accounting for Ring Substituents.” 24th International Symposium on Chemical Reaction Engineering. 2016. 376. Print.