Keywords
heterogeneous catalysis, deactivation, regeneration
Abstract
Deactivation of heterogeneous catalysts is a ubiquitous problem that causes loss of catalytic rate with time. This review on deactivation and regeneration of heterogeneous catalysts classifies deactivation by type (chemical, thermal, and mechanical) and by mechanism (poisoning, fouling, thermal degradation, vapor formation, vapor-solid and solid-solid reactions, and attrition/crushing). The key features and considerations for each of these deactivation types is reviewed in detail with reference to the latest literature reports in these areas. Two case studies on the deactivation mechanisms of catalysts used for cobalt Fischer-Tropsch and selective catalytic reduction are considered to provide additional depth in the topics of sintering, coking, poisoning, and fouling. Regeneration considerations and options are also briefly discussed for each deactivation mechanism.
Original Publication Citation
Argyle, M. D., & Bartholomew, C. H. (2015). Heterogeneous Catalyst Deactivation and Regeneration: A Review. Catalysts, 5(1), 145-269. https://doi.org/10.3390/catal5010145
BYU ScholarsArchive Citation
Argyle, Morris D. and Bartholomew, Calvin H., "Heterogeneous Catalyst Deactivation and Regeneration: A Review" (2015). Faculty Publications. 8078.
https://scholarsarchive.byu.edu/facpub/8078
Document Type
Peer-Reviewed Article
Publication Date
2015-02-26
Publisher
Catalysts
Language
English
College
Ira A. Fulton College of Engineering
Department
Chemical Engineering
Copyright Status
© 2015 by the authors
Copyright Use Information
https://lib.byu.edu/about/copyright/