The use of reactive magnesia (MgO) as the binder in porous blocks demonstrated significant advantages due to its low production temperatures and ability to carbonate, leading to significant strengths. This paper investigates the enhancement of the carbonation process through different curing conditions: water to cement ratio (0.6–0.9), CO2 concentration (5–20%), curing duration (1–7 days), relative humidity (55–98%), and wet/dry cycling frequency (every 0–3 days), improving the carbonation potential through increased amounts of CO2 absorbed and enhanced mechanical performance. UCS results were supported with SEM, XRD, and HCl acid digestion analyses. The results show that CO2 concentrations as low as 5% can produce the required strengths af...
In this report, studies on Reactive Magnesium Oxide Cement (RMC) will be conducted, looking into det...
This study assesses the influence of mix design on the hydration and carbonation of reactive MgO cem...
The strength gain of reactive MgO cement (RMC) samples depends on carbonation, which is limited by t...
The use of reactive magnesia (MgO) as the binder in porous blocks demonstrated significant advantage...
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...
Reactive MgO cement (RMC) formulations had garnered interests as a replacement to Portland Cement, f...
Reactive MgO cement (RMC) formulations had garnered interests as a replacement to Portland Cement, f...
Portland cement (PC) production is accountable for 5-7% of anthropogenic carbon dioxide (CO2) emissi...
Portland cement (PC) production is accountable for 5-7% of anthropogenic carbon dioxide (CO2) emissi...
Carbonation governs the microstructure and the overall mechanical performance of mixes involving MgO...
Reactive magnesia cement (RMC) has emerged as a sustainable and technically promising novel binder b...
Sustainability of modern concrete industry recently has become an important topic of scientific disc...
Sustainability of modern concrete industry recently has become an important topic of scientific disc...
This study assesses the influence of mix design on the hydration and carbonation of reactive MgO cem...
In this report, studies on Reactive Magnesium Oxide Cement (RMC) will be conducted, looking into det...
This study assesses the influence of mix design on the hydration and carbonation of reactive MgO cem...
The strength gain of reactive MgO cement (RMC) samples depends on carbonation, which is limited by t...
The use of reactive magnesia (MgO) as the binder in porous blocks demonstrated significant advantage...
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...
Reactive MgO cement (RMC) formulations had garnered interests as a replacement to Portland Cement, f...
Reactive MgO cement (RMC) formulations had garnered interests as a replacement to Portland Cement, f...
Portland cement (PC) production is accountable for 5-7% of anthropogenic carbon dioxide (CO2) emissi...
Portland cement (PC) production is accountable for 5-7% of anthropogenic carbon dioxide (CO2) emissi...
Carbonation governs the microstructure and the overall mechanical performance of mixes involving MgO...
Reactive magnesia cement (RMC) has emerged as a sustainable and technically promising novel binder b...
Sustainability of modern concrete industry recently has become an important topic of scientific disc...
Sustainability of modern concrete industry recently has become an important topic of scientific disc...
This study assesses the influence of mix design on the hydration and carbonation of reactive MgO cem...
In this report, studies on Reactive Magnesium Oxide Cement (RMC) will be conducted, looking into det...
This study assesses the influence of mix design on the hydration and carbonation of reactive MgO cem...
The strength gain of reactive MgO cement (RMC) samples depends on carbonation, which is limited by t...