The ability of sulphate-reducing bacterial biofilms to reduce hexavalent chromium (Cr(VI)) to insoluble Cr(III), a process of environmental and biotechnological significance, was investigated. The reduction of chromate to insoluble form has been quantified and the effects of chromate on the carbon source utilization and sulphate-reducing activity of the bacterial biofilms evaluated. Using lactate as the carbon/energy source and in the presence of sulphate, reduction of 500 μmol l-1 Cr(VI) was monitored over a 48-h period where 88% of the total chromium was removed from solution. Mass balance calculations showed that ca 80% of the total chromium was precipitated out of solution with the bacterial biofilm retaining less than 10% of the chromi...
Extensive use of hexavalent chromium in various industrial processes and improper treatment technol...
The biotransformation of hexavalent chromium [Cr(VI)] via Cr(VI)-reducing microorganisms is consider...
Bacteria performing dissimilatory sulfate reduction were isolated from Yaziv sulfur deposit wells. 1...
The ability of sulphate-reducing bacterial biofilms to reduce hexavalent chromium (Cr(VI)) to insolu...
While developing a low-sulphate system combining indirect chromate-reduction by biologically-produce...
Purpose of review hexavalent chromium, cr(vi), and trivalent chromium, cr(iii), are two chromium com...
Hexavalent chromium (Cr(VI)) has been identified as a high priority pollutant by the U.S. Environmen...
The reduction of Cr(VI) by the metal-reducing bacterium Shewanella oneidensis MR-1 was evaluated, to...
When ferrochromium is produced at Vargon Alloys AB (Vargon, Sweden), an offgas dust is generated as ...
This paper describes the removal of Cr(VI) using the combination of bacterial reduction of Cr(VI) to...
Immobilization of microorganisms is an effective method of intensification of wastewater purificatio...
For the first time, we demonstrate chromate (Cr(VI)) bioreduction using methane (CH<sub>4</sub>) as...
An enrichment consortium and an isolate (isolate TKW) of sulfate-reducing bacteria (SRB) have been o...
Toxic heavy metals constitute a worldwide environmental pollution problem. Bioremediation technologi...
In time course experiments, bacterial community compositions were compared between a sulfidogenic an...
Extensive use of hexavalent chromium in various industrial processes and improper treatment technol...
The biotransformation of hexavalent chromium [Cr(VI)] via Cr(VI)-reducing microorganisms is consider...
Bacteria performing dissimilatory sulfate reduction were isolated from Yaziv sulfur deposit wells. 1...
The ability of sulphate-reducing bacterial biofilms to reduce hexavalent chromium (Cr(VI)) to insolu...
While developing a low-sulphate system combining indirect chromate-reduction by biologically-produce...
Purpose of review hexavalent chromium, cr(vi), and trivalent chromium, cr(iii), are two chromium com...
Hexavalent chromium (Cr(VI)) has been identified as a high priority pollutant by the U.S. Environmen...
The reduction of Cr(VI) by the metal-reducing bacterium Shewanella oneidensis MR-1 was evaluated, to...
When ferrochromium is produced at Vargon Alloys AB (Vargon, Sweden), an offgas dust is generated as ...
This paper describes the removal of Cr(VI) using the combination of bacterial reduction of Cr(VI) to...
Immobilization of microorganisms is an effective method of intensification of wastewater purificatio...
For the first time, we demonstrate chromate (Cr(VI)) bioreduction using methane (CH<sub>4</sub>) as...
An enrichment consortium and an isolate (isolate TKW) of sulfate-reducing bacteria (SRB) have been o...
Toxic heavy metals constitute a worldwide environmental pollution problem. Bioremediation technologi...
In time course experiments, bacterial community compositions were compared between a sulfidogenic an...
Extensive use of hexavalent chromium in various industrial processes and improper treatment technol...
The biotransformation of hexavalent chromium [Cr(VI)] via Cr(VI)-reducing microorganisms is consider...
Bacteria performing dissimilatory sulfate reduction were isolated from Yaziv sulfur deposit wells. 1...