Microcosm experiments were performed to identify the influence of bacterial cell surfaces on the morphology, mineralogy, size and solubility of CaCO3 precipitated in response to the enzymatic hydrolysis of urea in an artificial groundwater (AGW) by the ureolytic bacteria, Bacillus pasteurii. In each microcosm, B. pasteurii were contained within a cellulose dialysis membrane (10 K Dalton MWCO), resulting in bacteria-inclusive and bacteria-free AGW solution. Urea hydrolysis by B. pasteurii resulted in the production of ammonium and an increase in pH in the whole AGW solution. This initiated predominantly rhombohedral calcite precipitation at the same critical saturation state ( S critical = 12) in the B. pasteurii-inclusive and bacteria-free ...
The bacterium Sporosarcina pasteurii (SP) is known for its ability to cause the phenomenon of microb...
The bacterium Sporosarcina pasteurii (SP) is known for its ability to cause the phenomenon of microb...
The particular bacterium under investigation here (S. pasteurii) is unique in its ability, under the...
Microcosm experiments were performed to identify the influence of bacterial cell surfaces on the mor...
Microbial-induced CaCO3 precipitation (MICP) is an innovative technique that harnesses bacterial act...
Abstract: Activated microbial induction of CaCO3 precipitation (AMICP) is a niche with innovative ap...
Abstract: Activated microbial induction of CaCO3 precipitation (AMICP) is a niche with innovative ap...
To investigate potential implications of microbial activity on sand bioconsolidation and subsurface ...
Despite the potential contribution of microbially induced carbonate precipitation (MICP) to a range ...
Despite the potential contribution of microbially induced carbonate precipitation (MICP) to a range ...
Despite the potential contribution of microbially induced carbonate precipitation (MICP) to a range ...
Despite the potential contribution of microbially induced carbonate precipitation (MICP) to a range ...
To investigate potential implications of microbial activity on sand bioconsolidation and subsurface ...
Despite the potential contribution of microbially induced carbonate precipitation (MICP) to a range ...
The bacterium Sporosarcina pasteurii (SP) is known for its ability to cause the phenomenon of microb...
The bacterium Sporosarcina pasteurii (SP) is known for its ability to cause the phenomenon of microb...
The bacterium Sporosarcina pasteurii (SP) is known for its ability to cause the phenomenon of microb...
The particular bacterium under investigation here (S. pasteurii) is unique in its ability, under the...
Microcosm experiments were performed to identify the influence of bacterial cell surfaces on the mor...
Microbial-induced CaCO3 precipitation (MICP) is an innovative technique that harnesses bacterial act...
Abstract: Activated microbial induction of CaCO3 precipitation (AMICP) is a niche with innovative ap...
Abstract: Activated microbial induction of CaCO3 precipitation (AMICP) is a niche with innovative ap...
To investigate potential implications of microbial activity on sand bioconsolidation and subsurface ...
Despite the potential contribution of microbially induced carbonate precipitation (MICP) to a range ...
Despite the potential contribution of microbially induced carbonate precipitation (MICP) to a range ...
Despite the potential contribution of microbially induced carbonate precipitation (MICP) to a range ...
Despite the potential contribution of microbially induced carbonate precipitation (MICP) to a range ...
To investigate potential implications of microbial activity on sand bioconsolidation and subsurface ...
Despite the potential contribution of microbially induced carbonate precipitation (MICP) to a range ...
The bacterium Sporosarcina pasteurii (SP) is known for its ability to cause the phenomenon of microb...
The bacterium Sporosarcina pasteurii (SP) is known for its ability to cause the phenomenon of microb...
The bacterium Sporosarcina pasteurii (SP) is known for its ability to cause the phenomenon of microb...
The particular bacterium under investigation here (S. pasteurii) is unique in its ability, under the...