This study focused on the synthesis of aragonite whiskers through a synergistic wet carbonation technology utilizing waste magnesia slag (MS) and magnesium sulfate (MgSO4), aiming to improve the microstructure and mechanical properties of ordinary Portland cement (OPC) paste. The influence of MgSO4 concentration on the wet carbonation process, phase composition, and microstructure of MS was investigated. Furthermore, the effect of incorporating carbonated MS (C-MS) on the mechanical properties and microstructure of Portland cement paste was evaluated. Results showed that appropriate MgSO4 concentrations favored aragonite whisker formation. A concentration of 0.075 M MgSO4 yielded 86.6% aragonite with high aspect ratio nanofibers. Incorporat...
Reactive magnesia (MgO) cements have emerged as a potentially more sustainable and technically super...
A paradigm shift is observed in the production of ordinary Portland cement (OPC) due to its high car...
With lower calcination temperature, reactive magnesia cement (RMC) can be a potential alternative to...
202208 bcrcRGCOthersOthers: Construction Industry CouncilStrategic Public Policy Research (SPPR) Fun...
The Portland cement (PC) industry is a big producer of CO2 – a major contributor to the global warmi...
This PhD study aims to understand the carbonation mechanism of slag-rich waste forms and consequentl...
In this report, studies on Reactive Magnesium Oxide Cement (RMC) will be conducted, looking into det...
Two approaches for the intensification of the mineral carbonation reaction are combined and studied ...
Magnesium slag is a kind of industrial waste with the similar chemical composition to silicate cemen...
One of the major durability concerns for limestone calcined clay cement (LC3) concrete is its high s...
This paper reports the carbonation characteristics of a cement-slag system exposed to accelerated ca...
Carbon nanotubes (CNTs) have excellent mechanical properties and can be used to reinforce cement-bas...
In recent years, worldwide research and development in the cement industry has gathered momentum wit...
Carbon nanotubes (CNTs) have excellent mechanical properties and can be used to reinforce cement-bas...
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...
A paradigm shift is observed in the production of ordinary Portland cement (OPC) due to its high car...
With lower calcination temperature, reactive magnesia cement (RMC) can be a potential alternative to...
202208 bcrcRGCOthersOthers: Construction Industry CouncilStrategic Public Policy Research (SPPR) Fun...
The Portland cement (PC) industry is a big producer of CO2 – a major contributor to the global warmi...
This PhD study aims to understand the carbonation mechanism of slag-rich waste forms and consequentl...
In this report, studies on Reactive Magnesium Oxide Cement (RMC) will be conducted, looking into det...
Two approaches for the intensification of the mineral carbonation reaction are combined and studied ...
Magnesium slag is a kind of industrial waste with the similar chemical composition to silicate cemen...
One of the major durability concerns for limestone calcined clay cement (LC3) concrete is its high s...
This paper reports the carbonation characteristics of a cement-slag system exposed to accelerated ca...
Carbon nanotubes (CNTs) have excellent mechanical properties and can be used to reinforce cement-bas...
In recent years, worldwide research and development in the cement industry has gathered momentum wit...
Carbon nanotubes (CNTs) have excellent mechanical properties and can be used to reinforce cement-bas...
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...
A paradigm shift is observed in the production of ordinary Portland cement (OPC) due to its high car...
With lower calcination temperature, reactive magnesia cement (RMC) can be a potential alternative to...