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Author |
Kleinmann, R.L.P. |
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Title |
Biological treatment of acid mine water using engineered wetlands |
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Journal Article |
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Year |
1990 |
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Keywords |
acid mine drainage; biodegradation; natural resources; reclamation; surface water; wetlands 22, Environmental geology |
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Annual Meeting - Association of Engineering Geologists |
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Series Title |
Engineering geology for the 90's |
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Notes |
1991-006081; Association of Engineering Geologists, 33rd annual meeting; Engineering geology for the 90's, Pittsburgh, PA, United States, Oct. 1-5; GeoRef; English |
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Call Number |
CBU @ c.wolke @ 6736 |
Serial |
329 |
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Author |
Ballard, J.J. |
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Title |
Parametric study for metal ion removal from acid mine water using Rhizopus javanicus |
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Book Whole |
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Year |
1995 |
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Keywords |
Mine water Purification Montana Metal wastes Biodegradation Bioremediation Montana Butte Berkeley Pit |
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Ph.D. thesis |
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Publisher |
The University of Montana, Montana Tech |
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Montana |
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Notes |
Parametric study for metal ion removal from acid mine water using Rhizopus javanicus; Opac |
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Call Number |
CBU @ c.wolke @ 7217 |
Serial |
469 |
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Author |
Anonymous; Unten, L.; Wildeman, T.R.; Gusek, J.J. |
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Title |
Passive treatment for contaminants in mine waters Effluent treatment in the mining industry |
Type |
Book Chapter |
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Year |
1998 |
Publication |
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Abbreviated Journal |
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Keywords |
acid mine drainage; alkalinity; biodegradation; chemical reactions; coal mines; constructed wetlands; controls; degradation; heavy metals; ions; kinetics; metal ores; mines; mitigation; oxidation; pH; pollution; polymetallic ores; remediation; solubility; sulfate ion; sulfides; waste disposal; wetlands 22, Environmental geology |
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Publisher |
University of Concepcion |
Place of Publication |
Concepcion |
Editor |
Castro, S.H.; Vergara, F.; Sanchez, M.A. |
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University of Concepcion, D. of M.E.C.C. |
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9562271560 |
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Passive treatment for contaminants in mine waters Effluent treatment in the mining industry; GeoRef; English; 2002-047084; References: 59; illus. incl. 3 tables |
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Call Number |
CBU @ c.wolke @ 6215 |
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477 |
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Author |
Blowes, D.W.; Bain, J.G.; Smyth, D.J.; Ptacek, C.J.; Jambor, J.L.; Blowes, D.W.; Ritchie, A.I.M. |
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Title |
Treatment of mine drainage using permeable reactive materials |
Type |
Journal Article |
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Year |
2003 |
Publication |
Environmental Aspects of Mine Wastes |
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Volume |
31 |
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Pages |
361-376 |
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Keywords |
acid mine drainage; acidification; aquatic environment; aquifer vulnerability; aquifers; bacteria; biodegradation; Canada; case studies; chemical reactions; Cochrane District Ontario; concentration; damage; degradation; disposal barriers; Eastern Canada; effluents; environmental analysis; ferric iron; Fry Canyon; ground water; iron; Kidd Creek Site; metal ores; metals; mines; models; Monticello Canyon; Ontario; pollution; preferential flow; reactive barriers; remediation; sediments; solid waste; sulfate ion; sulfates; sulfides; tailings; Timmins Ontario; United States; uranium ores; Utah; waste disposal; waste management; waste rock mine water treatment |
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ISSN |
0144-7815 |
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Notes |
Treatment of mine drainage using permeable reactive materials; Ccc:000186842900017; Times Cited: 0; ISI Web of Science |
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Call Number |
CBU @ c.wolke @ 7910 |
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182 |
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Author |
Ciftci, H.; Akcil, A. |
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Title |
Asidik maden drenajinin (AMD) giderilmesinde uygulanan biyolojik yontemler. Biological methods applied in the treatment of acid mine drainage (AMD) |
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Journal Article |
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Year |
2006 |
Publication |
Madencilik = The = Journal of the Chamber of Mining Engineers of Turkey |
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Volume |
45 |
Issue |
1 |
Pages |
35-45 |
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Keywords |
acid mine drainage biodegradation methods microorganisms oxidation pollutants pollution remediation sulfides 22, Environmental geology |
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Abstract |
Acidic mine drainage (AMD) is a serious environmental problem in mining areas throughout the world. AMD occurs as a result of the natural oxidation of sulfide minerals when they are exposed to oxygen and water during their disposal and storage at the mining areas. Because it includes low pH and high concentrations of dissolved metals and sulphates, AMD can potentially damage to the environment. If the formation of AMD can't be prevented and controlled, it must be collected and treated to remove acidity and reduce the concentration of heavy metals and suspended solids before its release to the environment. Different types of microorganisms in the treatment of AMD can play a very important role in the development and the application of microbiological prevention, control and treatment technologies. The purpose of this article is to give information about the passive biological methods used in the treatment and the control of AMD and the role of microorganisms in these methods. |
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ISSN |
0024-9416 |
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Notes |
Asidik maden drenajinin (AMD) giderilmesinde uygulanan biyolojik yontemler. Biological methods applied in the treatment of acid mine drainage (AMD); 2006-075215; References: 58 Turkey (TUR); GeoRef; Turkish |
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Call Number |
CBU @ c.wolke @ 16444 |
Serial |
416 |
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