Use of properly calcined kaolinite rich clay (i.e., metakaolin) to offset part of CO2-intensive clinkers not only reduces CO2 footprint from cement industry but also improves the performance of concrete. However, calcination under inappropriately high temperatures or long retention times may deplete metakaolin into unwanted products (e.g., mullite), which limits the use of the calcines as a supplementary cementitious material. With this regard, a dynamic model of flash calcination of kaolinite rich clay particles is developed using gPROMS (general PROcess Modeling System) to predict the impacts of calcination temperature and residence time on the transformation of the clay particles and to derive a favorable production path that is able to ...
Among the cementitious materials, geopolymers not only attract interest due to the low emission of C...
The use of calcined clays as supplementary cementitious materials provides the opportunity to signif...
Portland cement-based materials such as concrete are nowadays the most widely used construction mate...
Calcination of kaolinite particles under appropriate conditions to produce materials that can replac...
The use of SCMs (supplementary cementitious materials) to replace part of the clinker in cement indu...
AbstractThe use of SCMs (supplementary cementitious materials) to replace part of the clinker in cem...
National audienceThe use of metakaolin in substitution of part of cement to design constructive prod...
Kaolinite rich clay particles calcined under certain conditions can attain favorable pozzolanic prop...
WOS:000326661300034International audienceThis paper presents physical, chemical and mechanical chara...
The calcination of kaolinite clay to produce metakaolin can be achieved using a range of processes, ...
WOS:000360772000032International audienceTo understand the morphological changes of three commercial...
<p>Current research aims to investigate the influence of calcination temperature on the pozzolanic a...
The adoption of blended cements to reduce the carbon footprint has increased significantly over the ...
Most of metakaolin is used in portland cement industries as an additive to improve the compressive s...
This paper presents the results of an industrial trial for the production of calcined clay to be use...
Among the cementitious materials, geopolymers not only attract interest due to the low emission of C...
The use of calcined clays as supplementary cementitious materials provides the opportunity to signif...
Portland cement-based materials such as concrete are nowadays the most widely used construction mate...
Calcination of kaolinite particles under appropriate conditions to produce materials that can replac...
The use of SCMs (supplementary cementitious materials) to replace part of the clinker in cement indu...
AbstractThe use of SCMs (supplementary cementitious materials) to replace part of the clinker in cem...
National audienceThe use of metakaolin in substitution of part of cement to design constructive prod...
Kaolinite rich clay particles calcined under certain conditions can attain favorable pozzolanic prop...
WOS:000326661300034International audienceThis paper presents physical, chemical and mechanical chara...
The calcination of kaolinite clay to produce metakaolin can be achieved using a range of processes, ...
WOS:000360772000032International audienceTo understand the morphological changes of three commercial...
<p>Current research aims to investigate the influence of calcination temperature on the pozzolanic a...
The adoption of blended cements to reduce the carbon footprint has increased significantly over the ...
Most of metakaolin is used in portland cement industries as an additive to improve the compressive s...
This paper presents the results of an industrial trial for the production of calcined clay to be use...
Among the cementitious materials, geopolymers not only attract interest due to the low emission of C...
The use of calcined clays as supplementary cementitious materials provides the opportunity to signif...
Portland cement-based materials such as concrete are nowadays the most widely used construction mate...