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- W2981826220 endingPage "123291" @default.
- W2981826220 startingPage "123291" @default.
- W2981826220 abstract "Abstract Hexalithium cobaltate (Li6CoO4) was synthesized, characterized and tested as a possible carbon dioxide (CO2) captor. Li6CoO4 was prepared by solid-state reaction, where an initial structural analysis suggests high lithium ion diffusion, based on the crystal oxygen triangle gap structural area measurements. Li6CoO4 was dynamic and isothermally tested under different CO2 or CO2-O2 atmospheres, where Li6CoO4 exhibited good CO2 chemisorption kinetics and efficiencies. All these results allowed to determine the CO2 chemisorption reaction mechanism, which varies based on temperature and the oxygen presence or absence. Additionally, cyclic Li6CoO4 carbonation-decarbonation experiments showed interesting efficiencies. Thus, Li6CoO4 presents an interesting alternative as a high temperature CO2 captor for post-combustion processes." @default.
- W2981826220 created "2019-11-01" @default.
- W2981826220 creator A5014037867 @default.
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- W2981826220 date "2020-03-01" @default.
- W2981826220 modified "2023-10-16" @default.
- W2981826220 title "High and efficient carbon dioxide chemisorption on a new high lithium-content ceramic; hexalithium cobaltate (Li6CoO4)" @default.
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- W2981826220 doi "https://doi.org/10.1016/j.cej.2019.123291" @default.
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