Microbially induced calcium carbonate precipitation (MICP) can be mentioned among the popular approaches to develop a self-healing concrete. The production of dissolved inorganic carbon through microbial activity is the main precursor for MICP in concrete and it is limited by the bioavailability of the nutrients. When nutrients are added to the mortar as admixtures, their bioavailability becomes more significant for crack repair because nutrients disperse in the mortar and considerable fraction stays far from a single crack. Therefore, the determination of bioavailability of nutrients and its variation with the initial nutrient content and crack age is essential to optimize a recipe for bacteria-based self-healing concrete. This study prese...
Concrete is considered as the most widely used construction material in the world. However, concrete...
Microbial-induced calcium precipitation (MICP) has shown adequate potential to act as a healing prod...
Concrete is a remarkable construction material. However, its low tensile strength makes it prone to ...
Recently, cost-efficient nitrate reducing biogranules were suggested as an alternative to axenic mic...
This paper investigates the composition of the biological self-healing agent based on its impact on ...
Microbial self-healing of concrete has been widely investigated, yet the suggested microbial pathway...
Biogenic self-healing cementitious materials target on the closure of micro-cracks with precipitated...
Autonomous repair systems in construction materials have become a promising alternative to current u...
Attentive monitoring and regular repair of concrete cracks are necessary to avoid further durability...
Calcium carbonate precipitation through microbial means is a promising pathway for concrete self-hea...
Cracks in concrete can weaken structures, destroy integrity, impair function and open pathways for c...
An optimized strategy for the enhancement of microbially induced calcium precipitation including spo...
Microbial calcium carbonate has been widely investigated to self-heal concrete cracks. However, the ...
The potential for self-healing of concrete via biomineralization processes in which microorganisms i...
Microbially induced calcium carbonate precipitation is an emerging process for the production of sel...
Concrete is considered as the most widely used construction material in the world. However, concrete...
Microbial-induced calcium precipitation (MICP) has shown adequate potential to act as a healing prod...
Concrete is a remarkable construction material. However, its low tensile strength makes it prone to ...
Recently, cost-efficient nitrate reducing biogranules were suggested as an alternative to axenic mic...
This paper investigates the composition of the biological self-healing agent based on its impact on ...
Microbial self-healing of concrete has been widely investigated, yet the suggested microbial pathway...
Biogenic self-healing cementitious materials target on the closure of micro-cracks with precipitated...
Autonomous repair systems in construction materials have become a promising alternative to current u...
Attentive monitoring and regular repair of concrete cracks are necessary to avoid further durability...
Calcium carbonate precipitation through microbial means is a promising pathway for concrete self-hea...
Cracks in concrete can weaken structures, destroy integrity, impair function and open pathways for c...
An optimized strategy for the enhancement of microbially induced calcium precipitation including spo...
Microbial calcium carbonate has been widely investigated to self-heal concrete cracks. However, the ...
The potential for self-healing of concrete via biomineralization processes in which microorganisms i...
Microbially induced calcium carbonate precipitation is an emerging process for the production of sel...
Concrete is considered as the most widely used construction material in the world. However, concrete...
Microbial-induced calcium precipitation (MICP) has shown adequate potential to act as a healing prod...
Concrete is a remarkable construction material. However, its low tensile strength makes it prone to ...