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Author Bell, A.V.
Title Some Recent Experiences In Treatment Of Acidic, Metal-Bearing Mine Drainages Type Journal Article
Year 1975 Publication CIM Bull. Abbreviated Journal
Volume 68 Issue 764 Pages 39-46
Keywords mine water treatment
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Notes Some Recent Experiences In Treatment Of Acidic, Metal-Bearing Mine Drainages; Wos:A1975az60400006; Times Cited: 1; ISI Web of Science Approved no
Call Number CBU @ c.wolke @ 9249 Serial 99
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Author Larsen, H.P.
Title Chemical Treatment Of Metal-Bearing Mine Drainage Type Journal Article
Year 1973 Publication J. Water Poll. Control Fed. Abbreviated Journal
Volume 45 Issue 8 Pages 1682-1695
Keywords mine water treatment
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Notes Chemical Treatment Of Metal-Bearing Mine Drainage; Wos:A1973q499100009; Times Cited: 12; ISI Web of Science Approved no
Call Number CBU @ c.wolke @ 9257 Serial 100
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Author Lovell, H.L.
Title Mine Water Treatment Control Type Journal Article
Year 1971 Publication Min. Congr. J. Abbreviated Journal
Volume 57 Issue 6 Pages 83-&
Keywords mine water treatment
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Notes Mine Water Treatment Control; Wos:A1971j677200018; Times Cited: 0; ISI Web of Science Approved no
Call Number CBU @ c.wolke @ 9264 Serial 102
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Author Sasaki, K.
Title Immobilization of Mn(II) ions by a Mn-oxidizing fungus – Paraconiothyrium sp.-like strain at neutral pHs Type Journal Article
Year 2006 Publication Mater. Trans. Abbreviated Journal
Volume 47 Issue 10 Pages 2457-2461
Keywords mine water treatment
Abstract A Mn-oxidizing fungus was isolated from a constructed wetland of Hokkaido (Japan), which is receiving the Mn-impacted drainage, and genetically and morphologically identified as Paraconiothyrium sp.-like strain. The optimum pHs were 6.45-6.64, where is more acidic than those of previously reported Mn-oxidizing fungi. Too much nutrient inhibited fungal Mn-oxidation, and too little nutrient also delayed Mn oxidation even at optimum pH. In order to achieve the oxidation of high concentrations of Mn like mine drainage containing several hundreds g-m(-3) of Mn, it is important to find the best mix ratio among the initial Mn concentrations, inocolumn size and nutrient concentration. The strain has still Mn-tolerance with more than 380 g-m(-3) of Mn, but high Mn(II) oxidation was limited by pH control and supplied nutrient amounts. The biogenic Mn deposit was poorly crystallized birnessite. The strain is an unique Mn-oxidizing fungus having a high Mn tolerance and weakly acidic tolerance, since there has been no record about the property of the strain. There is a potentiality to apply the strain to the environmental bioremediation.
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Notes Immobilization of Mn(II) ions by a Mn-oxidizing fungus – Paraconiothyrium sp.-like strain at neutral pHs; Wos:000242429300002; Times Cited: 0; ISI Web of Science Approved no
Call Number CBU @ c.wolke @ 16940 Serial 103
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Author Bearcock, J.M.
Title Accelerated precipitation of ochre for mine water remediation Type Journal Article
Year 2006 Publication Geochim. Cosmochim. Acta Abbreviated Journal
Volume 70 Issue 18 Pages A42-A42
Keywords mine water treatment
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Notes Accelerated precipitation of ochre for mine water remediation; Wos:000241374200094; Times Cited: 0; ISI Web of Science Approved no
Call Number CBU @ c.wolke @ 16919 Serial 104
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