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Author |
Ackman, T.E.; Kleinmann, R.L.P. |
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Title |
In-line aeration and treatment of acid mine drainage |
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Journal Article |
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Year |
1984 |
Publication |
Report of investigations |
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8868 |
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16 |
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In-line aeration and treatment of acid mine drainage; U.S. Dept. of the Interior, Bureau of Mines; Washington, DC; Opac |
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Call Number |
CBU @ c.wolke @ 6963 |
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493 |
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Author |
Edwards, P.J.; Bolton, C.P.; Ranson, C.M.; Smith, A.C. |
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Book Whole |
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Year |
1997 |
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17-32 |
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wetland Pelenna mine water |
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Chartered Institution of Water and Environmental Management |
Place of Publication |
London |
Editor |
Younger Paul, L. |
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Minewater Treatment Using Wetlands |
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The River Pelenna minewater treatment project; 1; AMD ISI | Wolkersdorfer; Fg |
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CBU @ c.wolke @ 9607 |
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395 |
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Author |
Sastri, V.S. |
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Title |
Reverse osmosis for the treatment of metal waste solutions |
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Journal Article |
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Year |
1975 |
Publication |
Canada Centre For Mineral And Energy Technology Scientific Bulletin |
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75-07 |
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18 |
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Pamphlet; Reverse osmosis for the treatment of metal waste solutions; Ottawa : Energy, Mines and Resources Canada; Opac |
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Call Number |
CBU @ c.wolke @ 7154 |
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254 |
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Title |
World first: Full-scale BioSure plant commissioned |
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Journal Article |
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Year |
2006 |
Publication |
Water Wheel |
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Volume |
5 |
Issue |
3 |
Pages |
19-21 |
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Waste Management and Pollution Policy geographical abstracts: human geography environmental planning (70 11 5) wastewater waste facility mine waste gold mine sewage treatment |
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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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0258-2244 |
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Trade-; World first: Full-scale BioSure plant commissioned; 2865725; South-Africa; Geobase |
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Call Number |
CBU @ c.wolke @ 17495 |
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494 |
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Author |
Kim, A.G. |
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Title |
Acid mine drainage: control and abatement research |
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Journal Article |
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Year |
1982 |
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United States / Bureau of Mines: Information circular. 1925 - |
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22 |
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Acid mine drainage: control and abatement research; U.S.Dep.of the Interior; Washington, DC; Opac |
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Call Number |
CBU @ c.wolke @ 6965 |
Serial |
333 |
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