Related Experiment Video
Updated: Feb 9, 2026

Building Double-decker Traps for Early Detection of Emerald Ash Borer
Published on: October 4, 2017
Reducing setting time of blended cement paste containing high-SO3 fly ash (HSFA) using chemical/physical accelerators
Franco Zunino1, Dale P Bentz2, Javier Castro3
1Laboratory of Construction Materials, EPFL STI IMX LMC Station 12, CH-1015 Lausanne, Switzerland.
Abstract:
Reducing the carbon footprint of the cement industry has become one of the main concerns of researchers in the field. This study explores different strategies to reduce the setting retardation effect of high-SO3 fly ash (HSFA) on cement paste. The SO3 phase was found to correspond to hannebachite (CaSO3·0.5H2O). Chemical (calcium chloride), physical (fine limestone powder), and pre-washing strategies were investigated as means to reduce or eliminate the retardation. Each of these strategies showed some potential to decrease the retardation effect. A combination of fine limestone powder and HSFA pre-washing showed almost the same accelerating power as the calcium chloride, offering a good alternative when chloride incorporation is restricted. The retardation effect can be associated with a combined extension of the induction period and a depression of the initial silicate reactions of the clinker phases. A methodology to assess the hannebachite content based on a thermogravimetric analysis (TGA) technique is proposed, allowing a good alternative control approach for field conditions or for where X-ray (XRD or XRF) equipment is not readily available.
Related Concept Videos
Setting Time of Cement
Porosity in Cement Paste
The balance of water to cement in the mix is...
Physical and Chemical Properties of Matter
Urine: Physical and Chemical Properties
The concentration of these solutes varies, with urea being the most abundant nitrogenous waste product. Other solutes include sodium, chloride, potassium, phosphate,...
Hydration of Cement
Soundness of Cement

