A scanning transmission X-ray microscope illuminated with synchrotron light was used to investigate the speciation and spatial distributions of metals in a microbial biofilm cultivated from river water. Metal 2p absorption edge signals were used to provide metal speciation (through shapes of the absorption spectra) and quantitative spatial distributions of the metal species. This paper presents sample data and describes methods for extracting quantitative maps of metal species from image sequences recorded in the region of the metal 2p edges. Comparisons were made with biochemical characterization of the same region using images recorded at the C 1s and O 1s edges. The method is applied to detailed quantitative analysis of ferrous and ferri...
Industrial biomining processes are currently focused on metal sulfides and their dissolution, which ...
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,...
A scanning transmission X-ray microscope illuminated with synchrotron light was used to investigate ...
Understanding the fate of heavy-metal contaminants in the environment is of fundamental importance i...
Speciation and quantitative mapping of elements, organic and inorganic compounds, and mineral phases...
Biofilms, organic matter, iron/aluminum oxides, and clay minerals bind toxic heavy metal ions and co...
Scanning Transmission X-ray Microscopy (STXM) and Transmission Electron Microscopy (TEM) were combin...
The ability of biofilms to resist pollutants makes them advantageous for use in bioremediation. The ...
Metal(loid)-contamination of the environment due to anthropogenic activities is a global problem. Un...
Micro X-ray Fluorescence (µ-XRF) is a rapidly evolving analytical technique which allows visualizing...
Micro X-ray Fluorescence (µ-XRF) is a rapidly evolving analytical technique which allows visualizing...
Industrial biomining processes are currently focused on metal sulfides and their dissolution, which ...
Pseudomonas putida strain MnB1, a biofilm forming bacteria, was used as a model for the study of bac...
Industrial biomining processes are currently focused on metal sulfides and their dissolution, which ...
Industrial biomining processes are currently focused on metal sulfides and their dissolution, which ...
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,...
A scanning transmission X-ray microscope illuminated with synchrotron light was used to investigate ...
Understanding the fate of heavy-metal contaminants in the environment is of fundamental importance i...
Speciation and quantitative mapping of elements, organic and inorganic compounds, and mineral phases...
Biofilms, organic matter, iron/aluminum oxides, and clay minerals bind toxic heavy metal ions and co...
Scanning Transmission X-ray Microscopy (STXM) and Transmission Electron Microscopy (TEM) were combin...
The ability of biofilms to resist pollutants makes them advantageous for use in bioremediation. The ...
Metal(loid)-contamination of the environment due to anthropogenic activities is a global problem. Un...
Micro X-ray Fluorescence (µ-XRF) is a rapidly evolving analytical technique which allows visualizing...
Micro X-ray Fluorescence (µ-XRF) is a rapidly evolving analytical technique which allows visualizing...
Industrial biomining processes are currently focused on metal sulfides and their dissolution, which ...
Pseudomonas putida strain MnB1, a biofilm forming bacteria, was used as a model for the study of bac...
Industrial biomining processes are currently focused on metal sulfides and their dissolution, which ...
Industrial biomining processes are currently focused on metal sulfides and their dissolution, which ...
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,...