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Author Curi, A.C.; Granda, W.J.V.; Lima, H.M.; Sousa, W.T. openurl 
  Title (down) Zeolites and their application in the decontamination of mine waste water Type Journal Article
  Year 2006 Publication Informacion Tecnologica Abbreviated Journal  
  Volume 17 Issue 6 Pages 111-118  
  Keywords adsorption decontamination effluents industrial waste ion exchange metallurgical industries metallurgy mining mining industry porosity wastewater treatment zeolites zeolites decontamination mine waste water genesis porosity adsorption ionic exchange mineral metallurgical effluents mercury pollution artisan mining activities heavy metals removal metal mining effluents mercury vapors ovens fire amalgams Manufacturing and Production  
  Abstract This paper describes the genesis, structure and classification of natural zeolites, including their most relevant properties such as porosity, adsorption and ionic exchange. The use of natural zeolites in the treatment of effluents containing heavy metals is reviewed based on current literature. These uses are focused on mineral-metallurgical effluents and mercury pollution related to artisan mining activities. The study shows that natural zeolites are efficient in removal of heavy metals in metal mining effluents, can be produced and improved at a low cost, and can also be used to adsorb mercury vapors from ovens used to fire amalgams.  
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  ISSN 0716-8756 ISBN Medium  
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  Notes Zeolites and their application in the decontamination of mine waste water; 9532002; Journal Paper; SilverPlatter; Ovid Technologies Approved no  
  Call Number CBU @ c.wolke @ 16784 Serial 409  
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Author openurl 
  Title (down) World first: Full-scale BioSure plant commissioned Type Journal Article
  Year 2006 Publication Water Wheel Abbreviated Journal  
  Volume 5 Issue 3 Pages 19-21  
  Keywords Waste Management and Pollution Policy geographical abstracts: human geography environmental planning (70 11 5) wastewater waste facility mine waste gold mine sewage treatment  
  Abstract ERWAT's Ancor Wastewater Treatment Works on the Far East Rand commissioned a 10 Ml/day full-scale plant to treat toxic mine-water from the Grootvlei gold mine using primary sewage sludge. The R15-million plant is treating sulphate rich acid mine drainage using the Rhodes BioSURE Process. First, the pumped mine-water is treated at a high-density separation (HDS) plant to remove iron and condition pH levels. Then it is pumped two km via a newly-constructed 10 Ml capacity pipeline to the Ancor works. This mine-water is then mixed together with primary sewage sludge in a mixing tank from where a splitter box directs the material to eight biological sulphate reducing reactors or bioreactors. The overflow water which is rich in sulphide is pumped through the main pump station to another mixing box. Here, iron slurry is mixed with the material before it is again divided between four reactor clarifiers for sulphide removal. The overflow water, now containing reduced sulphate levels and virtually no sulphide is pumped to Ancor's biofilters for removal of remaining Chemical Oxygen Demand (COD) and ammonia following the conventional sewage treatment process for eventual release into the Blesbokspruit.  
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  ISSN 0258-2244 ISBN Medium  
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  Notes Trade-; World first: Full-scale BioSure plant commissioned; 2865725; South-Africa; Geobase Approved no  
  Call Number CBU @ c.wolke @ 17495 Serial 494  
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Author Rukin, N. openurl 
  Title (down) 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 Sanders, F.; Rahe, J.; Pastor, D.; Anderson, R. openurl 
  Title (down) Wetlands treat mine runoff Type Journal Article
  Year 1999 Publication Civil Engineering Abbreviated Journal  
  Volume 69 Issue 1 Pages 53-55  
  Keywords Reclamation and conservation Groundwater problems and environmental effects geological abstracts: environmental geology (72 14 1) geomechanics abstracts: excavations (77 10 10) abandoned mine acid mine drainage constructed wetland heavy metal remediation United States Montana Blackfoot River  
  Abstract In the late 1890s, silver, lead and zinc deposits were discovered along the headwaters of the Blackfoot River, northeast of Missoula, Mont. Settlers began mining the metals in earnest, and eventually the mines became known as the Upper Blackfoot Mining Complex (UBMC). Many of the mines were operated long enough to supply metals for World War II weaponry, but after the war the mines were abandoned, and by the 1960s, their orange-tainted runoff began to concern both passersby and state officials. In 1991, the state contacted the current owners of several of those mines-including the Mike Horse and the Anaconda-to negotiate a voluntary cleanup. The American Smelting and Refining Co. (ASARCO) and the Atlantic Richfield Co. (ARCO) agreed to remediate the sites' metal-enriched, moderately to severely acidic drainage, which was discharging into the upper Blackfoot River. As part of effort to reclaim the Mike Horse and Anaconda mines, engineers with McCulley, Frick and Gilman Inc. (MFG), Boulder, Colo., developed an integrated, passive wetland treatment system that will take several years to reach full treatment capacity in the high-elevation environment, but will last for decades. (Constructed and restored wetlands have also been part of the remediation of other UBMC mines, such as the Carbonate and Paymaster mines.) The Mike Horse and Anaconda system, designed to meet National Pollutant Discharge Elimination Systems (NPDES) restrictions, concentrates primarily on zinc and iron and, to a lesser extent, on copper, lead and other metals.  
  Address F. Sanders, McCulley, Frick and Gilman Inc., Boulder, CO, United States  
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  ISSN 0885-7024 ISBN Medium  
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  Notes Wetlands treat mine runoff; 0411276; United-States; Geobase Approved no  
  Call Number CBU @ c.wolke @ 17551 Serial 256  
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Author Jones, D.R.; Chapman, B.M. openurl 
  Title (down) Wetlands to treat AMD – facts and fallacies. Wetlands zur Sanierung saurer Grubenwässer – Fakten und Irrtümer Type Conference Article
  Year 1995 Publication Second Australian Acid Mine Drainage Workshop, Charters Towers, AU, 28 31 March 1995 Abbreviated Journal  
  Volume Issue Pages 127-145  
  Keywords Bergbau Geochemie anaerober-Prozess Verrieselungsfeld Kläranlage biologischer-Abbau Schwermetall Schwefelsäure Abwasserbehandlung Durchlaufverfahren Kosten Bauart Modulbauweise Funktionsprinzip Funktionswahrscheinlichkeit Literaturübersicht Betriebserfahrung Versuchsergebnis Acid mine drainage Wetland Wasseraufbereiten  
  Abstract Nach einer Definition der Wetlands wird ihre zunehmende Bedeutung als kostengünstige, ästhetische und nahezu wartungslose Alternative zur chemischen Aufbereitung saurer und schwermetallbelasteter Grubenwässer erläutert. Es werden die physikalischen Voraussetzungen behandelt und unter Bezugnahme auf ein umfangreiches Schrifttum die chemischen und mikrobiologischen Prozesse, die in Wetlands ablaufen, tabellarisch aufgelistet und detailliert unter Angabe der möglichen Reaktionen erläutert. Anschließend werden der Aufbau und die Funktionsweise der einzelnen Komponenten eines Wetlandsystems vorgestellt und die unterschiedlichen Typen der möglichen Ausführungsvarianten erläutert, was durch bildliche Darstellungen illustriert wird. Es wird ein Überblick zur Anwendung von Wetlands in Australien vermittelt. Die bei diesen Anwendungsfällen erzielten Ergebnisse werden diskutiert. Es werden Hinweise zur Planung sowie zur Anordnung der Wetlands gegeben, die auch grobe Kostenabschätzungen enthalten.  
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  Notes Wetlands to treat AMD – facts and fallacies. Wetlands zur Sanierung saurer Grubenwässer – Fakten und Irrtümer; BERG, Copyright FIZ Technik e.V.; EN Englisch; 0-646-24771-9; U9609 0034 586; 11338, BERG , 07.09.96; Words: 463; 19 Seiten, 7 Bilder, 3 Tabellen, 35 Quellen 3UXX *Belastung von Wasser, Wasserreinhaltung, Abwasser* 3BW *Geowissenschaften, physik* 3PZ *Bioverfahrenstechnik, Biotechnologie* Approved no  
  Call Number CBU @ c.wolke @ 17608 Serial 335  
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