Calcium sulfoaluminate (C$A) cement is a binder of increasing interest to the cement industry and is undergoing rapid development. Current formulations do not contain alite; however, alite calcium sulfoaluminate (a-C$A) cements can combine the favourable characteristics of Portland cement (PC) with those of C$A cement while also having a lower carbon dioxide footprint than the current generation of PC clinkers. This paper presents two results on the formation of a-C$A clinkers. The first is a thermodynamic study demonstrating that the production of a-C$A clinker is possible without the use of mineralisers, doping with foreign elements, or using multiple stages of heating. It is established that a-C$A clinker can be readily produced in a standard process by controlling the oxygen and sulfur dioxide fugacity in the atmosphere. This allows for the stabilisation of ye’elimite to the higher temperatures required for alite stability. The second result establishes that when using fluorine to mineralise a-C$A clinker production, the iron content in the clinker is also an important variable. Although the exact mechanism of alite stabilisation is not known, it is shown that alite formation increases with the combination of calcium fluoride and iron (III) oxide in the mix.
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March 2019
Research Article|
December 21 2018
Alite calcium sulfoaluminate cement: chemistry and thermodynamics
Theodore Hanein
;
Theodore Hanein
Postdoctoral Research Associate, Department of Materials Science & Engineering, University of Sheffield, Sheffield, UK (corresponding author: theodorehanein@gmail.com)
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Tristana Y. Duvallet;
Tristana Y. Duvallet
Senior Research Engineer, University of Kentucky Center for Applied Energy Research, Lexington, KY, USA (corresponding author: tristana.duvallet@uky.edu)
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Robert B. Jewell;
Robert B. Jewell
Research Program Manager, University of Kentucky Center for Applied Energy Research, Lexington, KY, USA
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Anne E. Oberlink;
Anne E. Oberlink
Senior Research Scientist, University of Kentucky Center for Applied Energy Research, Lexington, KY, USA
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Thomas L. Robl;
Thomas L. Robl
Associate Director, University of Kentucky Center for Applied Energy Research, Lexington, KY, USA
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Yongmin Zhou;
Yongmin Zhou
Professor, College of Material Science and Engineering, Nanjing Tech University, Nanjing, Jiangsu, China
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Fredrik P. Glasser;
Fredrik P. Glasser
Emeritus Professor, Department of Chemistry, University of Aberdeen, Aberdeen, UK
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Marcus N. Bannerman
Marcus N. Bannerman
Lecturer, School of Engineering, University of Aberdeen, Aberdeen, UK
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Publisher: Emerald Publishing
Received:
June 29 2018
Revision Received:
November 12 2018
Accepted:
November 12 2018
Online ISSN: 1751-7605
Print ISSN: 0951-7197
ICE Publishing: All rights reserved
2018
Advances in Cement Research (2019) 31 (3): 94–105.
Article history
Received:
June 29 2018
Revision Received:
November 12 2018
Accepted:
November 12 2018
Citation
Hanein T, Duvallet TY, Jewell RB, Oberlink AE, Robl TL, Zhou Y, Glasser FP, Bannerman MN (2019), "Alite calcium sulfoaluminate cement: chemistry and thermodynamics". Advances in Cement Research, Vol. 31 No. 3 pp. 94–105, doi: https://doi.org/10.1680/jadcr.18.00118
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