Article (Scientific journals)
Quantitative study of catalytic activity and catalytic deactivation of Fe–Co/Al2O3 catalysts for multi-walled carbon nanotube synthesis by the CCVD process
Pirard, Sophie; Heyen, Georges; Pirard, Jean-Paul
2010In Applied Catalysis A: General, 382, p. 1-9
Peer Reviewed verified by ORBi
 

Files


Full Text
AppliedCatalysis2010.pdf
Publisher postprint (769.44 kB)
Download

All documents in ORBi are protected by a user license.

Send to



Details



Keywords :
Carbon nanotubes; Catalytic deactivation; Modeling
Abstract :
[en] The catalytic deactivation during multi-walled carbon nanotube (MWNT) synthesis by the CCVD process and the influence of hydrogen on it were quantified. Initial specific reaction rate, relative specific productivity and catalytic deactivation were studied. Carbon source was ethylene, and a bimetallic iron–cobalt catalyst supported on alumina was used. The catalytic deactivation was modeled by a decreasing hyperbolic law, reflecting the progressive accumulation of amorphous carbon on active sites. While the initial specific reaction rate was found not to be influenced by hydrogen, catalytic deactivation was found to be modified in the presence of hydrogen, which delayed and slowed down the deactivation by avoiding amorphous carbon deposition, thus leading to a greater relative specific productivity of carbon nanotubes.
Disciplines :
Chemical engineering
Author, co-author :
Pirard, Sophie ;  Université de Liège - ULiège > Département de chimie appliquée > Génie chimique - Génie catalytique
Heyen, Georges ;  Université de Liège - ULiège > Département de chimie appliquée > LASSC (Labo d'analyse et synthèse des systèmes chimiques)
Pirard, Jean-Paul ;  Université de Liège - ULiège > Département de chimie appliquée > Génie chimique - Génie catalytique
Language :
English
Title :
Quantitative study of catalytic activity and catalytic deactivation of Fe–Co/Al2O3 catalysts for multi-walled carbon nanotube synthesis by the CCVD process
Publication date :
2010
Journal title :
Applied Catalysis A: General
ISSN :
0926-860X
eISSN :
1873-3875
Publisher :
Elsevier Science, Amsterdam, Netherlands
Volume :
382
Pages :
1-9
Peer reviewed :
Peer Reviewed verified by ORBi
Available on ORBi :
since 24 January 2012

Statistics


Number of views
110 (6 by ULiège)
Number of downloads
375 (3 by ULiège)

Scopus citations®
 
21
Scopus citations®
without self-citations
17
OpenCitations
 
14
OpenAlex citations
 
20

publications
18
supporting
0
mentioning
3
contrasting
0
Smart Citations
18
0
3
0
Citing PublicationsSupportingMentioningContrasting
View Citations

See how this article has been cited at scite.ai

scite shows how a scientific paper has been cited by providing the context of the citation, a classification describing whether it supports, mentions, or contrasts the cited claim, and a label indicating in which section the citation was made.

Bibliography


Similar publications



Contact ORBi