Low hydration and high water demand of MgO limits strength gain in MgO cement-based formulations. This study enhanced the microstructure and performance of MgO concrete mixes by increasing hydration and lowering water demand via the introduction of hydration (HA) and dispersion (DA) agents. Hydration and carbonation mechanisms were evaluated by isothermal calorimetry, TGA, XRD, FTIR and SEM. HA increased MgO dissolution and brucite precipitation. DA reduced water content and resulted in denser microstructures by increasing CO2 diffusion. Formation of dense carbonate networks with improved morphologies resulted in 28-day strengths of 45 MPa, which were >50% higher than the control sample
The performance of reactive MgO cement (RMC)-based concrete formulations is determined by the carbon...
The performance of reactive MgO cement (RMC)-based concrete formulations is determined by the carbon...
Reactive magnesium oxide (MgO)-based cement mixes present several advantages due to their lower prod...
This study proposed the use of hydration agent (HA) and seeds to improve the hydration and carbonati...
This study proposed the use of hydration agent (HA) and seeds to improve the hydration and carbonati...
This study assesses the influence of mix design on the hydration and carbonation of reactive MgO cem...
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...
This study assesses the influence of mix design on the hydration and carbonation of reactive MgO cem...
This study assesses the influence of mix design on the hydration and carbonation of reactive MgO cem...
The low dissolution of magnesium oxide (MgO) limits the performance of carbonated reactive magnesium...
The continuation of the hydration and carbonation reactions within reactive MgO cement formulations ...
The strength gain of reactive MgO cement (RMC) samples depends on carbonation, which is limited by t...
The strength gain of reactive MgO cement (RMC) samples depends on carbonation, which is limited by t...
This study focuses on reactive magnesium oxide (MgO) cements which has lower energy requirements and...
The performance of reactive MgO cement (RMC)-based concrete formulations is determined by the carbon...
The performance of reactive MgO cement (RMC)-based concrete formulations is determined by the carbon...
Reactive magnesium oxide (MgO)-based cement mixes present several advantages due to their lower prod...
This study proposed the use of hydration agent (HA) and seeds to improve the hydration and carbonati...
This study proposed the use of hydration agent (HA) and seeds to improve the hydration and carbonati...
This study assesses the influence of mix design on the hydration and carbonation of reactive MgO cem...
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...
This study assesses the influence of mix design on the hydration and carbonation of reactive MgO cem...
This study assesses the influence of mix design on the hydration and carbonation of reactive MgO cem...
The low dissolution of magnesium oxide (MgO) limits the performance of carbonated reactive magnesium...
The continuation of the hydration and carbonation reactions within reactive MgO cement formulations ...
The strength gain of reactive MgO cement (RMC) samples depends on carbonation, which is limited by t...
The strength gain of reactive MgO cement (RMC) samples depends on carbonation, which is limited by t...
This study focuses on reactive magnesium oxide (MgO) cements which has lower energy requirements and...
The performance of reactive MgO cement (RMC)-based concrete formulations is determined by the carbon...
The performance of reactive MgO cement (RMC)-based concrete formulations is determined by the carbon...
Reactive magnesium oxide (MgO)-based cement mixes present several advantages due to their lower prod...