With lower calcination temperature, reactive magnesia cement (RMC) can be a potential alternative to the Portland cement. However, RMC concrete requires accelerated carbonation curing from external sources which greatly hinder the wider applications of RMC. This study proposed a bacteria-based method for the strength gain of RMC through internal carbonation. Sporosarcina pasteurii, urea, and yeast extract were used as a carbonation agent for internal carbonation of RMC pastes. Results showed that the flowability of the fresh bio-RMC paste increased by 20% while the initial setting time remained unchanged. Besides serving as the CO2 provider, urea can also function as superplasticizer to reduce the water demand of the bio-RMC pastes. The res...
In a highly populated country in Singapore, it is inevitable to find buildings constructed using con...
This study investigated the feasibility of crack healing by means of microbial induced carbonate pre...
This study investigated the mechanical, microstructural, and chemical changes in reactive MgO cement...
With lower calcination temperature, reactive magnesia cement (RMC) can be a potential alternative to...
This research project investigated the feasibility of strengthening Reactive Magnesia Cement (RMC) s...
Portland cement (PC) production is accountable for 5-7% of anthropogenic carbon dioxide (CO2) emissi...
In this report, studies on Reactive Magnesium Oxide Cement (RMC) will be conducted, looking into det...
This paper presents a new microbial technique for soil improvement through microbially induced carbo...
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 cement (RMC) has emerged as a sustainable and technically promising novel binder b...
This study focuses on the development of carbonated reactive magnesia cement (RMC) concrete formulat...
Hydration of reactive magnesia cement (RMC) is limited by the formation of a Mg(OH)2 surface-layer o...
Reactive MgO cement (RMC) formulations had garnered interests as a replacement to Portland Cement, f...
With the large carbon dioxide emission in the Portland cement industry, the need to mitigate the emi...
In a highly populated country in Singapore, it is inevitable to find buildings constructed using con...
This study investigated the feasibility of crack healing by means of microbial induced carbonate pre...
This study investigated the mechanical, microstructural, and chemical changes in reactive MgO cement...
With lower calcination temperature, reactive magnesia cement (RMC) can be a potential alternative to...
This research project investigated the feasibility of strengthening Reactive Magnesia Cement (RMC) s...
Portland cement (PC) production is accountable for 5-7% of anthropogenic carbon dioxide (CO2) emissi...
In this report, studies on Reactive Magnesium Oxide Cement (RMC) will be conducted, looking into det...
This paper presents a new microbial technique for soil improvement through microbially induced carbo...
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 cement (RMC) has emerged as a sustainable and technically promising novel binder b...
This study focuses on the development of carbonated reactive magnesia cement (RMC) concrete formulat...
Hydration of reactive magnesia cement (RMC) is limited by the formation of a Mg(OH)2 surface-layer o...
Reactive MgO cement (RMC) formulations had garnered interests as a replacement to Portland Cement, f...
With the large carbon dioxide emission in the Portland cement industry, the need to mitigate the emi...
In a highly populated country in Singapore, it is inevitable to find buildings constructed using con...
This study investigated the feasibility of crack healing by means of microbial induced carbonate pre...
This study investigated the mechanical, microstructural, and chemical changes in reactive MgO cement...