2015
DOI: 10.1016/j.cej.2015.02.075
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CO2 chemisorption and evidence of the CO oxidation–chemisorption mechanisms on sodium cobaltate

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Cited by 22 publications
(36 citation statements)
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“…The hydroxylation process is confirmed by the second weight loss evidenced between 290 and 420 °C. Finally, at T ≥ 550 °C, samples presented the last weight decrement associated with superficial and bulk decarbonation processes and/or cobalt oxide reduction, as it has been previously reported 2 NaHCO 3 false( normals false) Na 2 CO 3 false( normals false) + H 2 O (v) + CO 2 false( normalg false) …”
Section: Resultssupporting
confidence: 65%
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“…The hydroxylation process is confirmed by the second weight loss evidenced between 290 and 420 °C. Finally, at T ≥ 550 °C, samples presented the last weight decrement associated with superficial and bulk decarbonation processes and/or cobalt oxide reduction, as it has been previously reported 2 NaHCO 3 false( normals false) Na 2 CO 3 false( normals false) + H 2 O (v) + CO 2 false( normalg false) …”
Section: Resultssupporting
confidence: 65%
“…Complementarily, Na 2 CO 3 decomposition was analyzed by considering weight decrements at T > 500 °C. Nevertheless, it must be noted that at this temperature not only Na 2 CO 3 decomposes, as it has been reported that cobalt oxide is reduced on these physicochemical conditions, releasing O 2 . Thus, if all cobalt is reduced from Co 2 O 3 to CoO, weight decrement recorded corresponds both to CO 2 desorbed and O 2 released [reaction ]: Co 2 O 3 false( normals false) 2 CoO (s) + 1 2 O 2 false( normalg false) …”
Section: Resultsmentioning
confidence: 99%
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“…The evidence of catalytic activity of Na2ZrO3 was reported by Alcantar-Vazquez et al, 21 where CO was catalytically oxidized into CO2 and chemisorbed at T ≥ 200 °C with the processes apparently taking place simultaneously. Li2CuO2 104 , NaCoO2 105 and Li2ZrO3 106 were also reported to perform catalytic CO oxidation to CO2 and subsequent chemisorption of CO2. The CO-CO2 conversion in Li2CuO2 and NaCoO2 follows a double reaction Mars-van Krevelen mechanism.…”
Section: Use Of Alkali Metals In Catalysis 480mentioning
confidence: 99%