Acknowledgement
This research was supported by a grant from National Land Transportation Technology Project by Ministry of Land, Infrastructure, and Transport of Korean(No. 22AUDP-B146511-05).
References
- Kim DS, Khil BS, KIM WJ, Choi SJ, Lee SY, Jung SJ. An experimental study on the engineering properties and chlorides penetration resistance of concrete added with durability improvement agent. Proceeding of Annual Conference of the Architectural Institute of Korea; 2006 Oct 27-28; Daegu, Korea. Seoul (Korea): Architectural institute of korea; 2006. p. 433-6.
- Bazaldua-Medellin ME, Fuentes AF, Gorokhovsky A, Escalante-Garcia JI. Early and late hydration of supersulphated cements of blast furnace slag with fluorgypsum. Materiales de Construccion. 2015 Feb;65(317):06013. http://dx.doi.org/10.3989/mc.2015.06013
- 15743+ A1. Supersulfated cement-Composition, specifications and conformity criteria. United Kingdom: British Standards Institution. 2015.
- Gruskovnjak A, Lothenbach B, Holzer L, Figi R, Winnefeld F. Hydration of alkali-activated slag: comparison with ordinary Portland cement. Advances in cement research. 2006 Jul;18(3):119-28. https://doi.org/10.1680/adcr.2006.18.3.119
- Haha MB, Le Saout G, Winnefeld F, Lothenbach B. Influence of activator type on hydration kinetics, hydrate assemblage and microstructural development of alkali activated blast-furnace slags. Cement and Concrete Research. 2011 Mar;41(3):301-10. https://doi.org/10.1016/j.cemconres.2010.11.016
- Dutta DK, Borthakur PC. Activation of low lime high alumina granulated blast furnace slag by anhydrite. Cement and Concrete Research. 1990 Sep;20(5):711-22. https://doi.org/10.1016/0008-8846(90)90005-I
- Bijen J, Niel E. Supersulphated cement from blastfurnace slag and chemical gypsum available in the Netherlands and neighbouring countries. Cement and Concrete Research. 1981 May;11(3):307-22. https://doi.org/10.1016/0008-8846(81) 90104-6
- Huang, TY, Nguyen HA, Chang TP, Chen CT, Liu YW. Engineering properties and microstructural performance of low energy super-sulfated cement using industrial waste anhydrite. Concrete and asphalt materials. 2017 Oct;130:04001-5. https://doi.org/10.1051/matecconf/201713004001
- Cyr M, Andre L. Durability of supersulfated cement with improved early strength. karen scrivener. 15th International Congress on the Chemistry of Cement. 2019 Sep 16-20; Prague, Czech. Dusseldorf (Germany): Cement and Concrete Research. 2019. p. 616-23.
- Kim HS, Kim IK, Yang WH, Moon SY, Lee JY. Analyzing the basic properties and environmental footprint reduction effects of highly sulfated calcium silicate cement. Sustainability. 2021 Jul;13(14):7540. https://doi.org/10.3390/su13147540
- Shi C, Stegemann J, Caldwell R. Effect of supplementary cementing materials on the rapid chloride permeability test (AASHTO T 277 and ASTMC 1202) results. ACI Materials. 1998 Jul;95(4):389-94. https://doi.org/10.14359/381
- Roy DM. Hydration, microstructure, and chloride diffusion of slag-cement pastes and mortars - Fly Ash, Silica Fume, Slag, and Natural Pozzolans in Concrete. Third International Conference Proceedings; 1989 Jun 18-23; Trondheim, Norway. Southern California (USA): Special Publication. 1989. p. 1265-82.