Microbially precipitated calcium carbonate (CaCO3) has drawn broad attention due to its potential applications in various areas, for example, biocementation, medicine, and soil reinforcement. Sporosarcina pasteurii (S. pasteurii), formerly known as Bacillus pasteurii, has been investigated for CaCO3 biomineralization due to its high ureolytic activity. A high degree of supersaturation with respect to the presence of bacterial cell wall, extracellular polymeric substances, and organic byproducts of bacterial activity plays an important role in the formation and stabilization of CaCO3 polymorphs. Although microbially induced CaCO3 and its polymorphs have been investigated broadly, the mechanisms of polymorph selection and morphological evolut...
CaCO3 precipitation is physical-chemical basis of biomineral formation of hard tissue (shells, skele...
Whey in large quantities can cause environmental problems when discarded, because it reduces dissolv...
Numerous microbial species can selectively precipitate mineral carbonates with enhanced mechanical p...
Microbially precipitated calcium carbonate (CaCO3) has drawn broad attention due to its potential ap...
Many researchers in the past decade have explored the controlled synthesis of calcium carbonate with...
Microbially induced calcium carbonate precipitation (MICP)/Biocementation has emerged as a promising...
This dissertation primarily examines bioinspired mineralization, focusing on the polymorph-selective...
Numerous microbial species can selectively precipitate mineral carbonates with enhanced mechanical p...
Microcosm experiments were performed to identify the influence of bacterial cell surfaces on the mor...
Microbial sulfate reduction is a dominant metabolism in many marine sedimentary environments. The i...
Bacteria are capable of performing metabolic activities which thereby promote precipitation of calci...
This study stresses the role of specific bacterial outer structures (such as glycocalix and parietal...
Numerous microbial species can selectively precipitate mineral carbonates with enhanced mechanical p...
Abstract: Numerous microbial species can selectively precipitate mineral carbonates with enhanced me...
During a study of ureolytic microbial calcium carbonate (CaCO3) precipitation by bacterial isolates ...
CaCO3 precipitation is physical-chemical basis of biomineral formation of hard tissue (shells, skele...
Whey in large quantities can cause environmental problems when discarded, because it reduces dissolv...
Numerous microbial species can selectively precipitate mineral carbonates with enhanced mechanical p...
Microbially precipitated calcium carbonate (CaCO3) has drawn broad attention due to its potential ap...
Many researchers in the past decade have explored the controlled synthesis of calcium carbonate with...
Microbially induced calcium carbonate precipitation (MICP)/Biocementation has emerged as a promising...
This dissertation primarily examines bioinspired mineralization, focusing on the polymorph-selective...
Numerous microbial species can selectively precipitate mineral carbonates with enhanced mechanical p...
Microcosm experiments were performed to identify the influence of bacterial cell surfaces on the mor...
Microbial sulfate reduction is a dominant metabolism in many marine sedimentary environments. The i...
Bacteria are capable of performing metabolic activities which thereby promote precipitation of calci...
This study stresses the role of specific bacterial outer structures (such as glycocalix and parietal...
Numerous microbial species can selectively precipitate mineral carbonates with enhanced mechanical p...
Abstract: Numerous microbial species can selectively precipitate mineral carbonates with enhanced me...
During a study of ureolytic microbial calcium carbonate (CaCO3) precipitation by bacterial isolates ...
CaCO3 precipitation is physical-chemical basis of biomineral formation of hard tissue (shells, skele...
Whey in large quantities can cause environmental problems when discarded, because it reduces dissolv...
Numerous microbial species can selectively precipitate mineral carbonates with enhanced mechanical p...