Birnessites precipitated by bacteria are typically poorly crystalline Mn(IV) oxides enmeshed within biofilms to form complex biomass-birnessite assemblages. The strong sorption affinity of bacteriogenic birnessites for environmentally important trace metals is relatively well understood mechanistically, but the role of bacterial cells and extracellular polymeric substances appears to vary among trace metals. To assess the role of biomass definitively, comparison between metal sorption by biomass at high metal loadings in the presence and absence of birnessite is required. We investigated the biomass effect on Ni sorption through laboratory experiments utilizing the birnessite produced by the model bacterium, Pseudomonas putida. Surface exce...
Fe(II)-oxidizing bacteria form biogenic cell–mineral aggregates (CMAs) composed of microbial cells,...
Fe(II)-oxidizing bacteria form biogenic cell–mineral aggregates (CMAs) composed of microbial cells,...
Soil is a heterogeneous porous media that is comprised of a variety of organo-mineral aggregates. So...
A synergistic experimental-computational approach was used to study the molecular-scale mechanisms o...
Sorption of Ni to birnessite is a fundamental control on the concentration of Ni in natural waters a...
The uptake of nickel [Ni(II)] by Paenibacillus sp., Methylobacterium sp., Paraburkholderia sp., and ...
The uptake of nickel [Ni(II)] by Paenibacillus sp., Methylobacterium sp., Paraburkholderia sp., and ...
The uptake of nickel [Ni(II)] by Paenibacillus sp., Methylobacterium sp., Paraburkholderia sp., and ...
The uptake of nickel [Ni(II)] by Paenibacillus sp., Methylobacterium sp., Paraburkholderia sp., and ...
Synthetic hexagonal birnessite (Hx-birnessite) is a close analogue to natural poorly crystalline phy...
International audienceBiofilm-embedded Mn oxides exert important controls on trace metal cycling in ...
International audienceBiofilm-embedded Mn oxides exert important controls on trace metal cycling in ...
International audienceBiofilm-embedded Mn oxides exert important controls on trace metal cycling in ...
International audienceBiofilm-embedded Mn oxides exert important controls on trace metal cycling in ...
The presence of anionic functional groups on the surface of microbial cells makes the bacterial biom...
Fe(II)-oxidizing bacteria form biogenic cell–mineral aggregates (CMAs) composed of microbial cells,...
Fe(II)-oxidizing bacteria form biogenic cell–mineral aggregates (CMAs) composed of microbial cells,...
Soil is a heterogeneous porous media that is comprised of a variety of organo-mineral aggregates. So...
A synergistic experimental-computational approach was used to study the molecular-scale mechanisms o...
Sorption of Ni to birnessite is a fundamental control on the concentration of Ni in natural waters a...
The uptake of nickel [Ni(II)] by Paenibacillus sp., Methylobacterium sp., Paraburkholderia sp., and ...
The uptake of nickel [Ni(II)] by Paenibacillus sp., Methylobacterium sp., Paraburkholderia sp., and ...
The uptake of nickel [Ni(II)] by Paenibacillus sp., Methylobacterium sp., Paraburkholderia sp., and ...
The uptake of nickel [Ni(II)] by Paenibacillus sp., Methylobacterium sp., Paraburkholderia sp., and ...
Synthetic hexagonal birnessite (Hx-birnessite) is a close analogue to natural poorly crystalline phy...
International audienceBiofilm-embedded Mn oxides exert important controls on trace metal cycling in ...
International audienceBiofilm-embedded Mn oxides exert important controls on trace metal cycling in ...
International audienceBiofilm-embedded Mn oxides exert important controls on trace metal cycling in ...
International audienceBiofilm-embedded Mn oxides exert important controls on trace metal cycling in ...
The presence of anionic functional groups on the surface of microbial cells makes the bacterial biom...
Fe(II)-oxidizing bacteria form biogenic cell–mineral aggregates (CMAs) composed of microbial cells,...
Fe(II)-oxidizing bacteria form biogenic cell–mineral aggregates (CMAs) composed of microbial cells,...
Soil is a heterogeneous porous media that is comprised of a variety of organo-mineral aggregates. So...