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Author Rammlmair, D.; Grissemann, C.
Title Natural attenuation in slag heaps versus remediation Type Book Chapter
Year 2000 Publication Applied mineralogy in research, economy, technology, ecology and culture Abbreviated Journal
Volume Issue Pages 645-648
Keywords acid mine drainage; alteration; concentration; concepts; crust; deposition; design; development; diagenesis; exhalative processes; fines; fluvial features; ground water; leaching; metallurgy; mining; mining geology; mobilization; natural attenuation; physicochemical properties; Plantae; pollution; precipitation; remediation; rivers; slag; time scales; toxic materials; transportation; volatiles; wind transport 22, Environmental geology
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Publisher Place of Publication Editor Rammlmair, D.; Mederer, J.; Oberthuer, T.; Heimann, R.B.; Pentinghaus, H.J.
Language Summary Language Original Title
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ISSN ISBN 9058091643 Medium
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Notes Natural attenuation in slag heaps versus remediation; GeoRef; English; 2007-039910; Sixth international congress on Applied mineralogy in research, economy, technology, ecology, and culture, Gottingen, Federal Republic of Germany, July 17-19, 2000 References: 5; illus. Approved no
Call Number CBU @ c.wolke @ 5864 Serial 266
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Author Rees, B.
Title An overview of passive mine water treatment in Europe Type Journal Article
Year 2005 Publication Mine Water Env. Abbreviated Journal
Volume 24 Issue 1 Pages 26-28
Keywords abandoned mines; Europe; ground water; mines; mining; pollutants; pollution; protection; surface water; water pollution; water quality; water treatment 22, Environmental geology
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ISSN 1025-9112 ISBN Medium
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Notes An overview of passive mine water treatment in Europe; 2007-023994; 1 table Federal Republic of Germany (DEU); GeoRef; English Approved no
Call Number CBU @ c.wolke @ 5411 Serial 19
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Author Scharp, R.A.; Kawahara, F.; Burckle, J.; Allan, J.; Govind, R.
Title Recovery of metals from acid mine drainage Hardrock mining 2002; issues shaping the industry Type Book Chapter
Year 2002 Publication Abbreviated Journal
Volume Issue Pages
Keywords acid mine drainage; bacteria; Berkeley Pit; Butte Montana; cost; decontamination; metals; mining; Montana; pH; pollution; recovery; remediation; Silver Bow County Montana; smelting; sulfates; United States 22, Environmental geology
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Notes Recovery of metals from acid mine drainage Hardrock mining 2002; issues shaping the industry; GeoRef; English; 2007-046147; Hardrock mining 2002; issues shaping the industry, Westminster, CO, United States, May 7-9, 2002 U. S. Environmental Protection Agency, Office of Research and Development, Washington, DC, United States Approved no
Call Number CBU @ c.wolke @ 5614 Serial 251
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Author Smit, J.P.
Title Type Book Whole
Year 1999 Publication Abbreviated Journal
Volume Issue Pages 467-471
Keywords experimental studies; ground water; laboratory studies; methods; mine drainage; pollutants; pollution; remediation hydrogeology mining water treatment contamination sulphate economy ettringite acid mine drainage plants agriculture laboratory hydrochemistry
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Publisher International Mine Water Association Place of Publication Ii Editor Fernández Rubio, R.
Language Summary Language Original Title
Series Editor Series Title Mine, Water & Environment Abbreviated Series Title
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Notes The Treatment of polluted Mine Water; 1; AMD ISI | Wolkersdorfer; FG 'de' 5 Abb., 5 Tab. Approved no
Call Number CBU @ c.wolke @ 9909 Serial 241
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Author Stark, L.R.; Williams, F.M.
Title The roles of spent mushroom substrate for the mitigation of coal mine drainage Type Journal Article
Year 1994 Publication Compost Science and Utilization Abbreviated Journal
Volume 2 Issue 4 Pages 84-94
Keywords acid mine drainage rehabilitation coal mining spent mushroom substrate 3 Geology
Abstract Spent mushroom substrate (SMS) has been used widely in coal mining regions of the USA as the primary substrate in constructed wetlands for the treatment of coal mine drainage. In laboratory and mesocosm studies, SMS has emerged as one of the substrates for mine water treatment. Provided the pH of the mine water does not fall below 3.0, SMS can be used in the mitigation plan. However, neither Mn nor dissolved ferric Fe appears to be treatable using reducing SMS wetlands. Since after a few years much of the nonrefractive organic carbon in SMS wil have been decomposed and metabolized, carbon supplementation can significantly extend the life of the SMS treatment wetland and improve water treatment. -from Authors
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Notes The roles of spent mushroom substrate for the mitigation of coal mine drainage; (1099507); 95k-07480; Using Smart Source Parsing pp; Geobase Approved no
Call Number CBU @ c.wolke @ 17639 Serial 233
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