The rapid development of the construction sector has led to massive use of raw construction materials, which are at risk of exhaustion. The problem is aggravated by the high demand for cement as binding powder and the mass production of clay bricks for construction purposes. This scenario has led to high energy consumption and carbon emissions in their production. In this regard, bio-cementation is considered a green solution to building construction, because this technology is environmentally friendly and capable of reducing carbon emissions, thus slowing the global warming rate. Most of the previously published articles have focused on microbiologically induced calcium carbonate precipitation (MICP), with the mechanism of bio-cementation ...
The construction industry is one of the main sources of greenhouse gas emissions, and portland cemen...
Biodeposition of minerals is a widespread phenomenon in the biological world and is mediated by bact...
Cracks in concrete can weaken structures, destroy integrity, impair function and open pathways for c...
Building materials almost certainly consist of some form of binders. Presently used binders, such as...
The growing concern over climate change has led the drive for the development of alternative buildin...
Nowadays, microbially induced calcium carbonate precipitation (MICP) has received great attention fo...
The production of concrete for construction purposes is a major source of anthropogenic CO2 emission...
Microbially induced calcium carbonate precipitation (MICCP) is a naturally occurring biological proc...
The production of concrete for construction purposes is a major source of anthropogenic CO2 emission...
Concrete is one of the world’s leading material consumed, it is the most crucial material in the Co...
The production of concrete for construction purposes is a major source of anthropogenic CO2 emission...
Microbes play key geoactive roles in the biosphere, particularly in the areas of element biotransfor...
Biodeposition of minerals is a widespread phenomenon in the biological world and is mediated by bact...
Biodeposition of minerals is a widespread phenomenon in the biological world and is mediated by bact...
Microbially induced calcium carbonate precipitation (MICCP) is a naturally occurring biological proc...
The construction industry is one of the main sources of greenhouse gas emissions, and portland cemen...
Biodeposition of minerals is a widespread phenomenon in the biological world and is mediated by bact...
Cracks in concrete can weaken structures, destroy integrity, impair function and open pathways for c...
Building materials almost certainly consist of some form of binders. Presently used binders, such as...
The growing concern over climate change has led the drive for the development of alternative buildin...
Nowadays, microbially induced calcium carbonate precipitation (MICP) has received great attention fo...
The production of concrete for construction purposes is a major source of anthropogenic CO2 emission...
Microbially induced calcium carbonate precipitation (MICCP) is a naturally occurring biological proc...
The production of concrete for construction purposes is a major source of anthropogenic CO2 emission...
Concrete is one of the world’s leading material consumed, it is the most crucial material in the Co...
The production of concrete for construction purposes is a major source of anthropogenic CO2 emission...
Microbes play key geoactive roles in the biosphere, particularly in the areas of element biotransfor...
Biodeposition of minerals is a widespread phenomenon in the biological world and is mediated by bact...
Biodeposition of minerals is a widespread phenomenon in the biological world and is mediated by bact...
Microbially induced calcium carbonate precipitation (MICCP) is a naturally occurring biological proc...
The construction industry is one of the main sources of greenhouse gas emissions, and portland cemen...
Biodeposition of minerals is a widespread phenomenon in the biological world and is mediated by bact...
Cracks in concrete can weaken structures, destroy integrity, impair function and open pathways for c...