Biochemical reactors (BCRs) based on the stimulation of sulphate-reducing microorganisms (SRM) are emerging semi-passive remediation technologies for treatment of mine-influenced water. Their successful removal of metals and sulphate has been proven at the pilot-scale, but little is known about the types of SRM that grow in these systems and whether they are diverse or restricted to particular phylogenetic or taxonomic groups. A phylogenetic study of four established pilot-scale BCRs on three different mine sites compared the diversity of SRM growing in them. The mine sites were geographically distant from each other, nevertheless the BCRs selected for similar SRM types. Clostridia SRM related to Desulfosporosinus spp. known to be tolerant ...
Biological treatment using sulfate-reducing bacteria (SRB) is a promising approach to remediate acid...
The soils of three fumaroles and one mining site, all with high metal content, were surveyed for the...
Waste streams from industrial processes such as metal smelting or mining contain high concentrations...
Biochemical reactors (BCRs) based on the stimulation of sulphate-reducing microorganisms (SRM) are e...
Metals, sulfate, nitrate and ammonia are the main chemical constituents of mining-influenced water (...
Metals, sulfate, nitrate and ammonia are the main chemical constituents of mining-influenced water (...
Drainage from metal-sulphide rich rocks may cause considerable environmental stress in the form of e...
Drainage from metal-sulphide rich rocks may cause considerable environmental stress in the form of e...
Toxic heavy metals and metalloids constitute an international pollution problem that not only impact...
Toxic heavy metals and metalloids constitute an international pollution problem that not only impact...
The use of synthesis gas fed sulfate-reducing bioreactors to simultaneously remove both oxidized sul...
The use of synthesis gas fed sulfate-reducing bioreactors to simultaneously remove both oxidized sul...
Drainage from metal-sulphide rich rocks may cause considerable environmental stress in the form of e...
INTRODUCTION Interactions between dissimilatory sulphate-reducing bacteria (SRB) and metal(loid) ion...
INTRODUCTION Interactions between dissimilatory sulphate-reducing bacteria (SRB) and metal(loid) ion...
Biological treatment using sulfate-reducing bacteria (SRB) is a promising approach to remediate acid...
The soils of three fumaroles and one mining site, all with high metal content, were surveyed for the...
Waste streams from industrial processes such as metal smelting or mining contain high concentrations...
Biochemical reactors (BCRs) based on the stimulation of sulphate-reducing microorganisms (SRM) are e...
Metals, sulfate, nitrate and ammonia are the main chemical constituents of mining-influenced water (...
Metals, sulfate, nitrate and ammonia are the main chemical constituents of mining-influenced water (...
Drainage from metal-sulphide rich rocks may cause considerable environmental stress in the form of e...
Drainage from metal-sulphide rich rocks may cause considerable environmental stress in the form of e...
Toxic heavy metals and metalloids constitute an international pollution problem that not only impact...
Toxic heavy metals and metalloids constitute an international pollution problem that not only impact...
The use of synthesis gas fed sulfate-reducing bioreactors to simultaneously remove both oxidized sul...
The use of synthesis gas fed sulfate-reducing bioreactors to simultaneously remove both oxidized sul...
Drainage from metal-sulphide rich rocks may cause considerable environmental stress in the form of e...
INTRODUCTION Interactions between dissimilatory sulphate-reducing bacteria (SRB) and metal(loid) ion...
INTRODUCTION Interactions between dissimilatory sulphate-reducing bacteria (SRB) and metal(loid) ion...
Biological treatment using sulfate-reducing bacteria (SRB) is a promising approach to remediate acid...
The soils of three fumaroles and one mining site, all with high metal content, were surveyed for the...
Waste streams from industrial processes such as metal smelting or mining contain high concentrations...