The use of MgO-based materials for sequestration of CO2 offers technical advantages and environmental incentives. However, the understanding of accelerated carbonation of MgO-based materials in flowing CO2 gas is limited. This study elucidates the carbonation behaviour of reactive MgO cement (MC) and MgO-Portland binary cement (BC) in a simulated CO2-rich industrial exhaust. Quantitative X-ray diffraction and thermogravimetric analyses showed that nesquehonite (MgCO3·3H2O) was the major carbonation product in MC pastes, whereas CaCO3 was preferentially generated in BC pastes. The relative humidity of exhaust gas influenced CO2 diffusion and the carbonation rate; 98% humidity facilitated MC carbonation whereas 50% was favourable for BC carbo...
The use of reactive magnesia (MgO) as the binder in porous blocks demonstrated significant advantage...
When exposed to carbonation, Na2CO3-activated slag (SCAS) concrete demonstrated 53% mass loss and 57...
When exposed to carbonation, Na2CO3-activated slag (SCAS) concrete demonstrated 53% mass loss and 57...
With the large carbon dioxide emission in the Portland cement industry, the need to mitigate the emi...
Portland cement (PC) production is accountable for 5-7% of anthropogenic carbon dioxide (CO2) emissi...
Reactive magnesia (MgO) cements have emerged as a potentially more sustainable and technically super...
Reactive magnesia (MgO) cements have emerged as a potentially more sustainable and technically super...
Global warming arising from the release of greenhouse gasses into the atmosphere is one of the bigge...
Portland cement (PC) production is accountable for 5-7% of anthropogenic carbon dioxide (CO2) emissi...
The use of reactive magnesia (MgO) as the binder in porous blocks demonstrated significant advantage...
This study investigated the feasibility of producing reactive MgO cement from reject brine obtained ...
In this report, studies on Reactive Magnesium Oxide Cement (RMC) will be conducted, looking into det...
Sustainability of modern concrete industry recently has become an important topic of scientific disc...
Cement industry is one of the main sources of greenhouse gases, which accounts for about 7% of globa...
Sustainability of modern concrete industry recently has become an important topic of scientific disc...
The use of reactive magnesia (MgO) as the binder in porous blocks demonstrated significant advantage...
When exposed to carbonation, Na2CO3-activated slag (SCAS) concrete demonstrated 53% mass loss and 57...
When exposed to carbonation, Na2CO3-activated slag (SCAS) concrete demonstrated 53% mass loss and 57...
With the large carbon dioxide emission in the Portland cement industry, the need to mitigate the emi...
Portland cement (PC) production is accountable for 5-7% of anthropogenic carbon dioxide (CO2) emissi...
Reactive magnesia (MgO) cements have emerged as a potentially more sustainable and technically super...
Reactive magnesia (MgO) cements have emerged as a potentially more sustainable and technically super...
Global warming arising from the release of greenhouse gasses into the atmosphere is one of the bigge...
Portland cement (PC) production is accountable for 5-7% of anthropogenic carbon dioxide (CO2) emissi...
The use of reactive magnesia (MgO) as the binder in porous blocks demonstrated significant advantage...
This study investigated the feasibility of producing reactive MgO cement from reject brine obtained ...
In this report, studies on Reactive Magnesium Oxide Cement (RMC) will be conducted, looking into det...
Sustainability of modern concrete industry recently has become an important topic of scientific disc...
Cement industry is one of the main sources of greenhouse gases, which accounts for about 7% of globa...
Sustainability of modern concrete industry recently has become an important topic of scientific disc...
The use of reactive magnesia (MgO) as the binder in porous blocks demonstrated significant advantage...
When exposed to carbonation, Na2CO3-activated slag (SCAS) concrete demonstrated 53% mass loss and 57...
When exposed to carbonation, Na2CO3-activated slag (SCAS) concrete demonstrated 53% mass loss and 57...