The development of a green alternative that can partially or completely substitute the Ordinary Portland cement (OPC) as a practical construction material with low CO2 footprint is an important subject to researchers for decades. The use of artificial pozzolanic materials, e.g. fly ash, slag, silica fume, etc. cannot meet the huge-scale demand for cement replacement. Kaolinitic clay, with its high pozzolanic reactivity after activation and abundant resources worldwide, is regarded as a promising supplementary cementitious material (SCM) for cement. Recent studies have addressed that the utilization of calcined kaolinitic clay as SCM can effectively improve the properties of cement products. This paper presents a comprehensive review of the ...
The use of supplementary cementitious materials (SCMs) to replace part of the clinker in cement is t...
AbstractDuring the last decades, there has been an increasing interest in the cement industry to inc...
The present paper explores the methods of transforming low grade kaolinitic clay, sandstone clay, in...
With 3-5 billion tons cement-produced every year, the cement industry is today the third largest emi...
Recently, the cement industry has faced new challenges in addition to the environmental constraints ...
AbstractIn the clinker production process, the main component of Portland cement (PC), large amount ...
Portland cement-based materials such as concrete are nowadays the most widely used construction mate...
The availability of some supplementary cementitious materials, especially fly ash, is of imminent co...
In the clinker production process, the main component of Portland cement (PC), large amount of CO2 a...
The cement industry involves high-energy consumption that generates high CO2 emissions into the atmo...
Supplementary Cementitious Materials (SCMs) are the proper partial substitute for Ordinary Portland ...
The hydration of cement pastes with addition of a kaolinite rich clay (Clay A) and a calcareous smec...
The potential use of two raw clays (Clay A: kaolin; Clay B: calcareous montmorillonite) as supplemen...
Gibbsite in tropical kaolinite material greatly influences its reactivity as pozzolanic material. Th...
Presently, the search for urgent solutions to mitigate climate change has become a global priority. ...
The use of supplementary cementitious materials (SCMs) to replace part of the clinker in cement is t...
AbstractDuring the last decades, there has been an increasing interest in the cement industry to inc...
The present paper explores the methods of transforming low grade kaolinitic clay, sandstone clay, in...
With 3-5 billion tons cement-produced every year, the cement industry is today the third largest emi...
Recently, the cement industry has faced new challenges in addition to the environmental constraints ...
AbstractIn the clinker production process, the main component of Portland cement (PC), large amount ...
Portland cement-based materials such as concrete are nowadays the most widely used construction mate...
The availability of some supplementary cementitious materials, especially fly ash, is of imminent co...
In the clinker production process, the main component of Portland cement (PC), large amount of CO2 a...
The cement industry involves high-energy consumption that generates high CO2 emissions into the atmo...
Supplementary Cementitious Materials (SCMs) are the proper partial substitute for Ordinary Portland ...
The hydration of cement pastes with addition of a kaolinite rich clay (Clay A) and a calcareous smec...
The potential use of two raw clays (Clay A: kaolin; Clay B: calcareous montmorillonite) as supplemen...
Gibbsite in tropical kaolinite material greatly influences its reactivity as pozzolanic material. Th...
Presently, the search for urgent solutions to mitigate climate change has become a global priority. ...
The use of supplementary cementitious materials (SCMs) to replace part of the clinker in cement is t...
AbstractDuring the last decades, there has been an increasing interest in the cement industry to inc...
The present paper explores the methods of transforming low grade kaolinitic clay, sandstone clay, in...