In this study, concretes and pastes were produced from a high magnesium oxide (MgO) ground granulated blast furnace slag (magnesium oxide content 16·1 wt%) by alkali activation with various amounts and combinations of sodium carbonate and sodium silicate. Sodium carbonate activators tended to reduce slump compared to sodium silicate at the same dose, and, in contrast to the literature for many blast furnace slags with more moderate magnesium oxide, to shorten the initial and final setting times in comparison with concretes activated by sodium silicate for dosages less than 10 wt%. Higher heat curing temperatures and the use of larger dosages of alkali activators resulted in higher early-age compressive cube strength values. The X-ray diffraction analysis of 7 and 28 d old pastes activated with sodium carbonates revealed formation of gaylussite, calcite, nahcolite and calcium-aluminium-silicate-hydrate (C–A–S–H) gel. Curing at 20°C appeared to promote dissolution of gaylussite and calcite, while heat curing promoted their replacement with C–A–S–H, which also resulted in higher ultimate cube compressive strength values. Conversely, mixes activated with sodium silicate contained less crystalline phases and more disordered gel, which strengthened the binder matrix.
Article navigation
December 2018
Research Article|
February 19 2018
Alkali activation of a high MgO GGBS – fresh and hardened properties
Abeer M. Humad
;
Abeer M. Humad
Structural Engineering Division, Luleå University of Technology, Luleå, Sweden; Civil Engineering Department, Babylon University, Babylon, Iraq (corresponding author: abeer.humad@ltu.se)
Search for other works by this author on:
John L. Provis
;
John L. Provis
Department of Materials Science and Engineering, University of Sheffield, Sheffield, UK
Search for other works by this author on:
Andrzej Cwirzen
Andrzej Cwirzen
Structural Engineering Division, Luleå University of Technology, Luleå, Sweden
Search for other works by this author on:
Publisher: Emerald Publishing
Received:
September 19 2017
Revision Received:
December 11 2017
Accepted:
December 12 2017
Online ISSN: 1751-763X
Print ISSN: 0024-9831
ICE Publishing: All rights reserved
2018
Magazine of Concrete Research (2018) 70 (24): 1256–1264.
Article history
Received:
September 19 2017
Revision Received:
December 11 2017
Accepted:
December 12 2017
Citation
Humad AM, Provis JL, Cwirzen A (2018), "Alkali activation of a high MgO GGBS – fresh and hardened properties". Magazine of Concrete Research, Vol. 70 No. 24 pp. 1256–1264, doi: https://doi.org/10.1680/jmacr.17.00436
Download citation file:
New and popular articles
Suggested Reading
Optimisation of magnesium oxychloride cement properties by silica glass
Advances in Cement Research (September,2016)
The compressive strength and microstructural properties of alkali-activated slag cement mixed with zinc oxide
Magazine of Concrete Research (May,2022)
Effects of mixture design parameters on the properties of belitic calcium sulfoaluminate concrete
Magazine of Concrete Research (November,2023)
Enhancement of geopolymerisation reactivity and thermal resistance using mixed types of fly ash
Advances in Cement Research (May,2023)
Effect of presoaked superabsorbent polymer on strength and permeability of cement mortar
Magazine of Concrete Research (September,2017)
Related Chapters
CONCRETE MIXES FOR DESERT ENVIRONMENTS
Achieving Sustainability in Construction: Proceedings of the International Conference held at the University of Dundee, Scotland, UK on 5–6 July 2005
APPLICATION AND RESEARCH OF THE HOUSING BASE CONCRETE TO THE CURING USING HEATING SHEET
Challenges of Concrete Construction: Volume 6, Concrete for Extreme Conditions: Proceedings of the International Conference held at the University of Dundee, Scotland, UK on 9–11 September 2002
MECHANICAL PROPERTIES OF SELF-COMPACTING CONCRETE AT DIFFERENT CURING CONDITIONS
Cement Combinations for Durable Concrete: Proceedings of the International Conference held at the University of Dundee, Scotland, UK on 5–7 July 2005
Recommended for you
These recommendations are informed by your reading behaviors and indicated interests.
