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Author Smith, I.J.H. openurl 
  Title AMD treatment, it works but are we using the right equipment? Type Journal Article
  Year 2000 Publication Tailings and mine waste ' Abbreviated Journal  
  Volume Issue Pages 419-427  
  Keywords Groundwater problems and environmental effects geomechanics abstracts: excavations (77 10 10) acid mine drainage conference proceedings methodology mine drainage remediation waste management  
  Abstract For the past 40 years various approaches have been developed to treat acid waters coming from abandoned as well as operating mining operations. System designs have evolved to meet increasingly stringent discharge permit limits for treated water, as well as to provide solid disposal within economic constraints. A treatment system for remediation of acid mine drainage (AMD) or acid groundwater (AG) requires two main steps: 1. The addition of chemicals to precipitate dissolved metals contained in the waters, and if necessary, to coagulate the precipitated solids ahead of physical separation. 2. Physical separation of the precipitated solids from the water so the water can be lawfully discharged from the site. Choosing the appropriate technology and equipment results in the most efficient plant design, the lowest capital outlay, and minimum operating cost. The goal of these plants is to discharge liquids and solids able to meet standards. The separation of solids from liquids can be achieved through various means, including gravity settling, flotation, mechanical dewatering, filtration and evaporation. As important as the liquid solids separation unit operations are, they are driven by the chemistry of the water to be treated. The content of the dissolved solids will influence the quality and quantity of the solids produced during precipitation. Thus the two aspects must be integrated, with chemistry first, then mechanical engineering. This presentation will provide an overview of a number of liquid solids separation tools currently being used to treat AMD-AG at several sites in the USA. It will also discuss how their operations are impacted by the chemistry of their particular acid water feeds. The tools used include clarifier-thickeners, solids contact clarifiers, dissolved air flotation, polishing filters, membrane filters, and mechanical dewatering devices (belt and filter presses, vacuum filters, and driers).  
  Address J.H. Smith III, SEPCO Incorporated, Fort Collins, CO, United States  
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  Notes Book; Conference-Paper; AMD treatment, it works but are we using the right equipment?; 2263351; Using Smart Source Parsing 00-Proceedings-of-the-7th-international-conference-Fort-Collins-January- 2000 Netherlands; Geobase Approved no  
  Call Number CBU @ c.wolke @ 17541 Serial 237  
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Author Skousen, J.G.; Sexstone, A.; Ziemkiewicz, P.F. isbn  openurl
  Title Type Book Whole
  Year 2000 Publication Abbreviated Journal  
  Volume Issue Pages 131-168  
  Keywords acid mine drainage; ground water; pollution; remediation; surface water; waste management; water pollution; water treatment 22, Environmental geology Umwelt Bergbau AMD  
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  Publisher American Society of Agronomy Place of Publication Madison, Wis. Editor Barnhisel Richard, I.; Darmody Robert, G.; Daniels, W.L.  
  Language Summary Language Original Title  
  Series Editor Series Title Reclamation of Drastically Disturbed Lands Abbreviated Series Title  
  Series Volume Series Issue Edition  
  ISSN ISBN 0-89118-146-6 Medium  
  Area Expedition Conference  
  Notes Acid Mine Drainage Control and Treatment; 2; AMD ISI | Wolkersdorfer; SSZB; TUBAFG 01.4564 1 Abb., 3 Tab. Approved no  
  Call Number CBU @ c.wolke @ 9907 Serial 242  
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Author Skousen, J.; Rose, A.; Geidel, G.; Foreman, J.; Evans, R.; Hellier, W. openurl 
  Title A handbook of technologies for avoidance and remediation of acid mine drainage Type RPT
  Year 1998 Publication Abbreviated Journal  
  Volume Issue Pages  
  Keywords acid mine drainage bioremediation coal mines constructed wetlands disposal barriers ion exchange mines pollution pumping recharge remediation reverse osmosis surface water technology waste disposal waste management water treatment wetlands 22, Environmental geology  
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  Language Summary Language Original Title  
  Series Editor Acid Drainage Technology Initiative, A. and R.W.G.U.S. Series Title Abbreviated Series Title  
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  Notes A handbook of technologies for avoidance and remediation of acid mine drainage; 2001-074240; GeoRef; English; References: 72; illus. incl. 5 tables West Virginia University, National Mine Land Reclamation Center, Morgantown, WV, United States Approved no  
  Call Number CBU @ c.wolke @ 16615 Serial 245  
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Author Rukin, N. openurl 
  Title Whittle mine water treatment system: In-river attenuation of manganese Type Journal Article
  Year 2003 Publication Land Contam. Reclam. Abbreviated Journal  
  Volume 11 Issue 2 Pages 137-144  
  Keywords Pollution and waste management non radioactive Groundwater problems and environmental effects geological abstracts: environmental geology (72 14 2) geomechanics abstracts: excavations (77 10 10) river water natural attenuation manganese water treatment mine drainage coal mine  
  Abstract Much work has been undertaken on the design of treatment systems to remove iron from ochreous mine water discharges. Unlike iron, manganese removal is far more difficult and generally requires active chemical dosing rather than passive treatment. The need for manganese removal can therefore significantly change the economics, management attention and sustainability of a site. Understanding natural attenuation of manganese in river systems is therefore key to deciding whether (active) manganese treatment is needed to protect downstream receptors. Nuttall (2002, this volume) describes the effectiveness of the passive treatment system at Whittle in reducing both iron and manganese concentrations in ochreous mine waters. This paper discusses the results of in-river monitoring and provides evidence for manganese removal downstream of the discharge point. In addition to dilution, attenuation appears to be in the order of 20 to 50%, depending on relative rates of mine water discharge and river flows. Such attenuation means that active treatment may not be needed for the long-term operation of the Whittle scheme. Operation of the scheme commenced in July 2002, with monitoring to further examine evidence for manganese attenuation and any impact on the ecology of the recipient watercourses.  
  Address N. Rukin, Entec UK Ltd., 160-162 Abbey Foregate, Shrewsbury SY2 6BZ, United Kingdom  
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  ISSN 0967-0513 ISBN Medium  
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  Notes Whittle mine water treatment system: In-river attenuation of manganese; 2530418; United-Kingdom 2; Geobase Approved no  
  Call Number CBU @ c.wolke @ 17521 Serial 257  
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Author Miller, S.D. isbn  openurl
  Title Overview of acid mine drainage issues and control strategies Remediation and management of degraded lands Type Book Chapter
  Year 1999 Publication Abbreviated Journal  
  Volume Issue Pages  
  Keywords acid mine drainage; controls; decontamination; environmental analysis; environmental effects; geochemistry; ground water; land management; lime; oxidation; pH; pollutants; pollution; preventive measures; risk assessment; soils; sulfides; surface water; waste disposal; waste management 22, Environmental geology  
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  Publisher Lewis Publishers Place of Publication Boca Raton Editor Wong, M.H.; Wong, J.W.C.; Baker, A.J.M.  
  Language Summary Language Original Title  
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  ISSN ISBN 157504109x Medium  
  Area Expedition Conference  
  Notes Overview of acid mine drainage issues and control strategies Remediation and management of degraded lands; GeoRef; English; 2000-057936 Approved no  
  Call Number CBU @ c.wolke @ 5951 Serial 298  
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