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Author |
Skousen, J.G. |
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Title |
An Evaluation Of Acid-Mine Drainage Treatment Systems And Costs |
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Journal Article |
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1991 |
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Environmental Management for the 1990s |
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173-178 |
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mine water treatment |
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An Evaluation Of Acid-Mine Drainage Treatment Systems And Costs; Isip:A1991bs89e00024; Times Cited: 0; ISI Web of Science |
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CBU @ c.wolke @ 9041 |
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148 |
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Author |
Franchet, J. |
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Title |
An example of sulphate removal by nanofiltration – The treatment of iron ore mine water in Lorraine |
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Journal Article |
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Year |
1995 |
Publication |
Membranes in Drinking Water Production |
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27-31 |
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mine water treatment |
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An example of sulphate removal by nanofiltration – The treatment of iron ore mine water in Lorraine; Isip:A1995bh14e00006; Times Cited: 0; ISI Web of Science |
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CBU @ c.wolke @ 8899 |
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136 |
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Author |
Murayama, T. |
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Title |
Application Of Immobilized Thiobacillus-Ferrooxidans For Large-Scale Treatment Of Acid-Mine Drainage |
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Journal Article |
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Year |
1987 |
Publication |
Methods Enzymol. |
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136 |
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530-540 |
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mine water treatment |
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Application Of Immobilized Thiobacillus-Ferrooxidans For Large-Scale Treatment Of Acid-Mine Drainage; Wos:A1987m167600047; Times Cited: 6; ISI Web of Science |
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CBU @ c.wolke @ 9106 |
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92 |
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Author |
Riveros, P.A. |
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Title |
Applications of ion exchangers to the treatment of acid mine drainage |
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Journal Article |
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Year |
1995 |
Publication |
Sudbury '95 – Mining and the Environment, Conference Proceedings, Vols 1-3 |
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441-449 |
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mine water treatment |
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Applications of ion exchangers to the treatment of acid mine drainage; Isip:A1995bg39j00044; Times Cited: 0; ISI Web of Science |
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Call Number |
CBU @ c.wolke @ 8884 |
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141 |
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Author |
Catalan, L.J.J.; Yin, G. |
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Title |
Comparison of calcite to quicklime for amending partially oxidized sulfidic mine tailings before flooding |
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Journal Article |
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Year |
2003 |
Publication |
Environ Sci Technol |
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37 |
Issue |
7 |
Pages |
1408-1413 |
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mine water treatment |
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Abstract |
Flooding partially oxidized mine tailings for the purpose of mitigating further oxidation of sulfide minerals and generation of acid drainage is generally preceded by treatment with alkaline amendments to prevent releasing previously accumulated acidity to the water cover. This work compares the ability of calcite (CaCO3) and quicklime (CaO), two common amendments, to establish and maintain pH conditions and dissolved metal concentrations within environmentally acceptable ranges over long time periods. Although higher initial pH values were obtained with quicklime, the pH of quicklime treated tailings decreased over time. This was attributed to the low buffering capacity of quicklime treated tailings and to the consumption of hydroxide ions by incongruent dissolution of water-insoluble iron oxyhydroxysulfate minerals. In contrast, the pH of tailings treated with calcite increased initially and then remained stable at pH approximate to 6.7. This pH behavior was due to the lower reactivity of iron oxyhydroxysulfates with calcite, the increased buffering capacity provided by bicarbonate ions, and the incomplete dissolution of calcite. Overall, calcite was found preferable to quicklime for maintaining long-term neutral pH conditions in the treated tailings. With the exception of zinc, acceptable dissolved metal concentrations were achieved with calcite treated tailings. |
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0013-936x |
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Apr. 01; Comparison of calcite to quicklime for amending partially oxidized sulfidic mine tailings before flooding; Wos:000181977000050; Times Cited: 2; file:///C:/Dokumente%20und%20Einstellungen/Stefan/Eigene%20Dateien/Artikel/7917.pdf; ISI Web of Science |
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CBU @ c.wolke @ 7917 |
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118 |
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