Next Article in Journal
The Effect of Finely-Grinded Crushed Brick Powder on Physical and Microstructural Characteristics of Lightweight Concrete
Next Article in Special Issue
Fast-Curing Geopolymer Foams with an Enhanced Pore Homogeneity Derived by Hydrogen Peroxide and Sodium Dodecyl Sulfate Surfactant
Previous Article in Journal
Bodies and Glazes of Architectural Ceramics from the Ilkhanid Period at Takht-e Soleyman (North-Western Iran)
Previous Article in Special Issue
Geopolymer Materials Based on Natural Pozzolans from the Moroccan Middle Atlas
 
 
Font Type:
Arial Georgia Verdana
Font Size:
Aa Aa Aa
Line Spacing:
Column Width:
Background:
Article

Characterisation of the Hydration Products of a Chemically and Mechanically Activated High Coal Fly Ash Hybrid Cement

by
Grizelda du Toit
1,
Elizabet M. van der Merwe
2,
Richard A. Kruger
3,
James M. McDonald
1 and
Elsabé P. Kearsley
4,*
1
Centre of Product Excellence, AfriSam South Africa (Pty) Ltd., Johannesburg 1724, South Africa
2
Department of Chemistry, University of Pretoria, Pretoria 0002, South Africa
3
Richonne Consulting, P.O. Box 742, Somerset Mall 7137, South Africa
4
Department of Civil Engineering, University of Pretoria, Pretoria 0002, South Africa
*
Author to whom correspondence should be addressed.
Minerals 2022, 12(2), 157; https://doi.org/10.3390/min12020157
Submission received: 15 October 2021 / Revised: 8 December 2021 / Accepted: 20 December 2021 / Published: 27 January 2022
(This article belongs to the Special Issue Alkali-Activated Cements and Concretes)

Abstract

Cement companies are significant contributors of the planet’s anthropogenic CO2 emissions. With increased awareness of the substantial volume of CO2 emissions from cement production, a variety of mitigation strategies are being considered and pursued globally. Hybrid cements are deemed to be technologically viable materials for contemporary construction. They require less clinker than that for ordinary Portland cement, leading to a decrease in CO2 emissions per tonne of hybrid cement manufactured. The hybrids produced in this study consist of 70% siliceous coal fly ash and 30% Portland cement, and combines chemical (sodium sulphate) and mechanical (milling) activation. The aim of this work was to develop a better understanding of the hydration products formed and the resulting effect of activation on these hydration products, of hybrid coal fly ash cement pastes over an extended curing period of up to one year. The results indicated that chemical activation increases the formation of stable, well crystallised ettringite. Chemical activation as well as mechanical activation increased the rate of the pozzolanic reaction between portlandite contained in cement and coal fly ash. The application of combined chemical and mechanical activation definitely resulted in the fastest rate of portlandite consumption, hence an increased rate of the pozzolanic reaction.
Keywords: hybrid cement; coal fly ash; ettringite; pozzolanic reactivity; compressive strength hybrid cement; coal fly ash; ettringite; pozzolanic reactivity; compressive strength
Graphical Abstract

Share and Cite

MDPI and ACS Style

du Toit, G.; van der Merwe, E.M.; Kruger, R.A.; McDonald, J.M.; Kearsley, E.P. Characterisation of the Hydration Products of a Chemically and Mechanically Activated High Coal Fly Ash Hybrid Cement. Minerals 2022, 12, 157. https://doi.org/10.3390/min12020157

AMA Style

du Toit G, van der Merwe EM, Kruger RA, McDonald JM, Kearsley EP. Characterisation of the Hydration Products of a Chemically and Mechanically Activated High Coal Fly Ash Hybrid Cement. Minerals. 2022; 12(2):157. https://doi.org/10.3390/min12020157

Chicago/Turabian Style

du Toit, Grizelda, Elizabet M. van der Merwe, Richard A. Kruger, James M. McDonald, and Elsabé P. Kearsley. 2022. "Characterisation of the Hydration Products of a Chemically and Mechanically Activated High Coal Fly Ash Hybrid Cement" Minerals 12, no. 2: 157. https://doi.org/10.3390/min12020157

APA Style

du Toit, G., van der Merwe, E. M., Kruger, R. A., McDonald, J. M., & Kearsley, E. P. (2022). Characterisation of the Hydration Products of a Chemically and Mechanically Activated High Coal Fly Ash Hybrid Cement. Minerals, 12(2), 157. https://doi.org/10.3390/min12020157

Note that from the first issue of 2016, this journal uses article numbers instead of page numbers. See further details here.

Article Metrics

Back to TopTop