Reduction of soluble iron and reductive dissolution of ferric iron-containing minerals by moderately thermophilic iron-oxidizing bacteria
T.A.M. Bridge, and D.B. Johnson Reduction of soluble iron and reductive dissolution of ferric iron-containing minerals by moderately thermophilic iron-oxidizing bacteria Appl. Environ. Microbiol. 64 1998 2181 2590
Oxidation of iron, sulfur and arsenic in mine waters and mine wastes: An important role for novel Thiomonas spp
K. Coupland, F. Battaglia-Brunet, K.B. Hallberg, M.C. Dictor, F. Garrido, and D.B. Johnson Oxidation of iron, sulfur and arsenic in mine waters and mine wastes: an important role for novel Thiomonas spp Biohydrometallurgy: a sustainable technology in evolution: Proceedings of the 15th International Biohydrometallurgy Symposium 2003 (in press)
Anaerobic growth on elemental sulfur using dissimilar iron reduction by autotrophic Thiobacillus ferrooxidans
A. Das, A.K. Mishra, and P. Roy Anaerobic growth on elemental sulfur using dissimilar iron reduction by autotrophic Thiobacillus ferrooxidans FEMS Microbiol. Lett. 97 1992 167 172
Microbiology of a wetland ecosystem constructed to remediate mine drainage from a heavy metal mine
K.B. Hallberg, and D.B. Johnson Microbiology of a wetland ecosystem constructed to remediate mine drainage from a heavy metal mine Sci. Total Environ. 338 2004 53 66 [this volume]
Passive treatment systems for the remediation of acid mine drainage at Wheal Jane, Cornwall
Q.U.I. Hamilton, H.M. Lamb, C. Hallett, and J.A. Proctor Passive treatment systems for the remediation of acid mine drainage at Wheal Jane, Cornwall J. Chart. Inst. Water Environ. Manag. 13 1999 93 103
Sen AM. Acidophilic sulphate reducing bacteria: candidates for bioremediation of acid mine drainage pollution, Ph.D. Thesis, University of Wales, Bangor; 2001.
Acidophilic Sulphate-reducing Bacteria: Candidates for Bioremediation of Acid Mine Drainage
R. Amils A. Ballester Elsevier Amsterdam
A.M. Sen, and D.B. Johnson R. Amils A. Ballester Acidophilic Sulphate-reducing Bacteria: Candidates for Bioremediation of Acid Mine Drainage Biohydrometallurgy and the Environment Toward the Mining of the 21st Century vol. 9A 1999 Elsevier Amsterdam 709 718
Bioremediation of acid mine drainage: An introductory overview of the Wheal Jane wetlands project
P.G. Whitehead, and H. Prior Bioremediation of acid mine drainage: an introductory overview of the Wheal Jane wetlands project Sci. Total Environ. 338 2004 1 [this volume]
A. Balows H.G. Truper M. Dworkin W. Harder K.H. Schleifer Springer-Verlag New York
F. Widdel, and F. Bak Gram-negative mesophilic sulfate-reducing bacteria A. Balows H.G. Truper M. Dworkin W. Harder K.H. Schleifer The Prokaryotes 1992 Springer-Verlag New York 3352 3378