An optimized strategy for the enhancement of microbially induced calcium precipitation including spore viability ensurance, nutrient selection and O2 supply was developed. Firstly, an optimal yeast extract concentration of 5 g/l in sporulation medium was determined based on viable spore yield and spore viability. Furthermore, the effects of certain influential factors on microbial calcium precipitation process of H4 in the presence of oxygen releasing tablet (ORT) were evaluated. The results showed that CaO2 is preferable to other peroxides in improving the calcium precipitation by H4. H4 strain is able to precipitate a highly insoluble calcium at the CaO2 dosage range of 7.5–12.5 g/l, and the most suitable spore concentration is 6 × 108 sp...
Bacterially induced calcium carbonate precipitation has received considerable attention for its pote...
Cracks in concrete can weaken structures, destroy integrity, impair function and open pathways for c...
The suitability of using a spore-forming ureolytic strain, Bacillus sphaericus, was evaluated for se...
An optimized strategy for the enhancement of microbially induced calcium precipitation including spo...
Calcium carbonate precipitation through microbial means is a promising pathway for concrete self-hea...
Concrete is a remarkable construction material. However, its low tensile strength makes it prone to ...
Microbially induced calcium carbonate precipitation (MICP) can be mentioned among the popular approa...
Microbial calcium carbonate has been widely investigated to self-heal concrete cracks. However, the ...
Microbially induced calcium carbonate precipitation is an emerging process for the production of sel...
Microbial-induced calcium precipitation (MICP) has shown adequate potential to act as a healing prod...
International audienceBacteria-based healing of cracks remaining in self-healed concrete is under de...
This doctoral dissertation explores an alternative approach to the crack repair in concrete structur...
Concrete has a relatively low tensile strength which makes it prone to cracking. Without immediate a...
Cracks are intrinsic characteristics in concrete which endanger the durability of concret...
Biogenic self-healing cementitious materials target on the closure of micro-cracks with precipitated...
Bacterially induced calcium carbonate precipitation has received considerable attention for its pote...
Cracks in concrete can weaken structures, destroy integrity, impair function and open pathways for c...
The suitability of using a spore-forming ureolytic strain, Bacillus sphaericus, was evaluated for se...
An optimized strategy for the enhancement of microbially induced calcium precipitation including spo...
Calcium carbonate precipitation through microbial means is a promising pathway for concrete self-hea...
Concrete is a remarkable construction material. However, its low tensile strength makes it prone to ...
Microbially induced calcium carbonate precipitation (MICP) can be mentioned among the popular approa...
Microbial calcium carbonate has been widely investigated to self-heal concrete cracks. However, the ...
Microbially induced calcium carbonate precipitation is an emerging process for the production of sel...
Microbial-induced calcium precipitation (MICP) has shown adequate potential to act as a healing prod...
International audienceBacteria-based healing of cracks remaining in self-healed concrete is under de...
This doctoral dissertation explores an alternative approach to the crack repair in concrete structur...
Concrete has a relatively low tensile strength which makes it prone to cracking. Without immediate a...
Cracks are intrinsic characteristics in concrete which endanger the durability of concret...
Biogenic self-healing cementitious materials target on the closure of micro-cracks with precipitated...
Bacterially induced calcium carbonate precipitation has received considerable attention for its pote...
Cracks in concrete can weaken structures, destroy integrity, impair function and open pathways for c...
The suitability of using a spore-forming ureolytic strain, Bacillus sphaericus, was evaluated for se...