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Development of Ni- and CaO-based mono- and bi-functional catalyst and sorbent materials for Sorption Enhanced Steam Methane Reforming: Performance over 200 cycles and attrition tests

2019

Di Giuliano, A. | Gallucci, K. | Kazi, S.S. | Giancaterino, F. | Di Carlo, A. | Courson, C. | Meyer, J. | Di Felice, L.


Bibliographic information
Fuel processing technology
Volume 195 Pagination 106160 ISSN 0378-3820
Publisher
Elsevier B.V.
Other Subjects
Energy-dispersive x-ray analysis; Scanning electron microscopy; Sorbents; Combined sorbent-catalyst material; Fluidized beds; Industrial applications; Resistance to attrition; Transmission electron microscopy; Industrially relevant conditions; Multicycle process; Sorption enhanced steam methane reforming; Catalytic cracking
Language
English
Type
Text; Journal Article

2024-02-28
MODS
Data Provider
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