Activity Thermodynamics of Compounds in Carbonation-Hydration Hardening Cements

It is established by calculating the equilibrium partial pressure of carbon dioxide gas p CO 2 or the equilibrium activity of carbonation CO 3 2 - in the carbonation reactions of various mineral compounds that practically all investigated compounds are capable of carbonation under the influence of d...

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Veröffentlicht in:Glass and ceramics 2023, Vol.79 (9-10), p.371-377
Hauptverfasser: Sivkov, S. P., Korchunov, I. V., Potapova, E. N., Dmitrieva, E. A., Klimenko, N. N.
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container_end_page 377
container_issue 9-10
container_start_page 371
container_title Glass and ceramics
container_volume 79
creator Sivkov, S. P.
Korchunov, I. V.
Potapova, E. N.
Dmitrieva, E. A.
Klimenko, N. N.
description It is established by calculating the equilibrium partial pressure of carbon dioxide gas p CO 2 or the equilibrium activity of carbonation CO 3 2 - in the carbonation reactions of various mineral compounds that practically all investigated compounds are capable of carbonation under the influence of dry or wet carbon dioxide with the formation of calcium or magnesium carbonates. The comparative thermodynamic activity of certain mineral compounds in the carbonation reactions is much higher than that of the minerals wollastonite CS and rankinite C 3 S 2 , which are present in clinker for the production of carbonate hardening cement Solidia.
doi_str_mv 10.1007/s10717-023-00516-6
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subjects Calcium carbonate
Calcium compounds
Carbon dioxide
Carbonates
Carbonation
Cements
Ceramics
Characterization and Evaluation of Materials
Chemistry and Materials Science
Clinker
Composites
Glass
Hardening
Magnesium
Materials Science
Natural Materials
Partial pressure
Thermodynamics
Wollastonite
title Activity Thermodynamics of Compounds in Carbonation-Hydration Hardening Cements
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