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Effect of the Carbonation Temperature on the CO2 Carrying Capacity of CaO
Author(s) -
Yolanda A. Criado,
B. Arias,
J.C. Abánades
Publication year - 2018
Publication title -
industrial and engineering chemistry research
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.878
H-Index - 221
eISSN - 1520-5045
pISSN - 0888-5885
DOI - 10.1021/acs.iecr.8b02111
Subject(s) - carbonation , calcium looping , calcination , work (physics) , chemical engineering , atmospheric temperature range , thermodynamics , materials science , carrying capacity , chemistry , mineralogy , process engineering , composite material , catalysis , engineering , physics , ecology , biochemistry , biology
The calcium looping process based on the CaO/CaCO3 carbonation/calcination cycle has been proven to be an efficient CO2 capture technology. Most of the experimental work describing the behavior of the CaO particles has been performed under carbonation reference conditions of 650 °C and 10–15% vol CO2. Although, process schemes recently proposed have pointed out the practical benefits of operating the carbonator reactor at lower temperatures, on the assumption that these would lead to higher CO2 capture efficiencies. However, there is a lack of correlations for estimating the evolution of the carrying capacity along cycling at temperatures below 650 °C. Therefore, in this work the carrying capacity of a high purity natural Ca-material used as reference has been studied in a selected range of representative carbonation temperatures (450–725 °C). The parameters on the CaO deactivation curve that is widely employed have been readjusted to accord with a more general decay model that takes into account the effe...

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