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Author Ziemkiewicz, P.F.; Skousen, J.G.; Skousen, J.G.; Ziemkiewicz, P.F.
Title (up) Overview of acid mine drainage at-source control strategies Type Book Chapter
Year 1996 Publication Acid mine drainage control and treatment Abbreviated Journal
Volume Issue Pages
Keywords acid mine drainage; acidification; alkalinity; backfill; coal mines; disposal barriers; geochemistry; ground water; hydrochemistry; hydrology; leaching; legislation; mines; mitigation; Pennsylvania; pollution; prediction; reclamation; remediation; simulation; SMCRA; soils; Surface Mine Control and Reclamation Act; surface water; topsoil; toxicity; United States; waste disposal; waste rock; water quality; weathering 22, Environmental geology
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Publisher West Virginia University and the National Mine Land Reclamation Center Place of Publication Morgantown Editor
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Notes Overview of acid mine drainage at-source control strategies; GeoRef; English; 2004-051145; Edition: 2 References: 44 Approved no
Call Number CBU @ c.wolke @ 6355 Serial 186
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Author Hill, R.D.
Title (up) Overview of use of carbonate rocks for controlling acid mine drainage Type Journal Article
Year 1974 Publication Abbreviated Journal
Volume Issue Pages
Keywords acid mine drainage; carbonate rocks; environmental geology; ground water; lime; limestone; pollution; regional; sedimentary rocks; source; treatment; United States; water 22, Environmental geology
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Publisher Place of Publication Editor
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Notes Overview of use of carbonate rocks for controlling acid mine drainage; 1976-017404; illus. United States (USA); GeoRef; English Approved no
Call Number CBU @ c.wolke @ 6841 Serial 351
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Author Hart, W.M.
Title (up) Prediction and amelioration of acid mine drainage Type Book Whole
Year 1992 Publication Abbreviated Journal
Volume Issue Pages
Keywords acid mine drainage; leaching; North Carolina; oxidation; pH; phosphate ion; porosimetry; prediction; remediation; SEM data; United States; West Virginia 22, Environmental geology
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Corporate Author Thesis Ph.D. thesis
Publisher West Virginia University, Place of Publication Morgantown Editor
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Area Expedition Conference
Notes Prediction and amelioration of acid mine drainage; GeoRef; English Approved no
Call Number CBU @ c.wolke @ 6723 Serial 360
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Author Ziemkiewicz, P.F.; Skousen, J.G.; Skousen, J.G.; Ziemkiewicz, P.F.
Title (up) Prevention of acid mine drainage by alkaline addition Type Book Chapter
Year 1996 Publication Acid mine drainage control and treatment Abbreviated Journal
Volume Issue Pages
Keywords acid mine drainage; acidification; alkalinity; Appalachians; coal; land use; leachate; leaching; mines; mitigation; North America; oxidation; pollution; preventive measures; pyrite; reclamation; sampling; sedimentary rocks; soils; spoils; sulfides; surface water; techniques; United States; water pollution; water quality; water treatment; weathered materials; West Virginia 22, Environmental geology
Abstract
Address
Corporate Author Thesis
Publisher West Virginia University and the National Mine Land Reclamation Center Place of Publication Morgantown Editor
Language Summary Language Original Title
Series Editor Series Title Abbreviated Series Title
Series Volume Series Issue Edition
ISSN ISBN Medium
Area Expedition Conference
Notes Prevention of acid mine drainage by alkaline addition; GeoRef; English; 2004-051146; Edition: 2 References: 18; illus. incl. 2 tables Approved no
Call Number CBU @ c.wolke @ 6356 Serial 185
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Author Berg, G.J.; Arthur, B.
Title (up) Proposed mine water treatment in Wisconsin Type Book Chapter
Year 1999 Publication Sudbury '99; mining and the environment II; Conference proceedings Abbreviated Journal
Volume Issue Pages
Keywords metals mines pollutants pollution remediation tailings United States waste water water water management water quality water resources water treatment Wisconsin 22, Environmental geology
Abstract Water quality standards are driving wastewater effluent limits to ultra-low levels in the nanogram/L range. Standards are proposed that require discharges to match background water quality. The new ultra-low level standards require cautious sampling techniques, super clean laboratory methods and more advanced treatment technologies. This paper follows a case history through water quality standards for ultra-low metals, laboratory selection, and the design of a wastewater treatment system that can meet the water quality standards which are required to permit a proposed copper and zinc mine in Northern Wisconsin. A high degree of care must be taken when sampling for ultra-low level metals. Both surface water and treated effluent samples present new challenges. Sampling methods used must assure that there are no unwanted contaminants being introduced to the samples. The selection of a laboratory is as critical as the construction of a state of the art wastewater treatment system. Treatment methods such as lime and sulfide precipitation have had a high degree of success, but they do have limitations. Given today's ultra-low standards, it is necessary to assess the ability of reverse osmosis, deionization, and evaporation to provide the high level of treatment required.
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Corporate Author Thesis
Publisher Sudbury Environmental Place of Publication Sudbury Editor Goldsack, D.; Belzile, N.; Yearwood, P.; Hall, G.J.
Language Summary Language Original Title
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ISSN ISBN 0886670470 Medium
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Notes Proposed mine water treatment in Wisconsin; GeoRef; English; 2000-043747; Sudbury '99; Mining and the environment II--Sudbury '99; L'exploitation miniere et l'environnement II, Sudbury, ON, Canada, Sept. 13-17, 1999 illus. incl. 5 tables Approved no
Call Number CBU @ c.wolke @ 16588 Serial 451
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